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Research on non-steam-cured and non-fired fly-ash thermal insulating materials 被引量:3
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作者 LUO Yu-ping WANG Li-jiu 《Journal of China University of Mining and Technology》 EI 2008年第1期116-121,共6页
A thermal insulating material is synthesized via a non-steam-cured and non-fired route by using fly-ash, sorel cement and hydrogen peroxide solution as raw material. Properties such as apparent density, compressive st... A thermal insulating material is synthesized via a non-steam-cured and non-fired route by using fly-ash, sorel cement and hydrogen peroxide solution as raw material. Properties such as apparent density, compressive strength, bending strength, thermal conductivity, water resistance, and thermal tolerance of this matrial are studied, some influencing factors on its performance discussed. This material has an apparent density of 360 kg/m^3, a compressive strength of 1.86 MPa, a thermal conduction coefficient of 0.072 W/(m·K), a softening coefficient of 0.55, and a thermal tolerant temperature of 300 ℃. Test results show that this material is light in weight, of high strength, and good thermal insulation. In addition, neither steam-curing nor sintering is needed in producing it. Further more, large amount of fly ash is used in this material, making it a low cost and environment-friendly building material. 展开更多
关键词 FLY-ASH thermal insulating materials non-steam curing non-fsintering water resistance
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Preparation of Nanoporous Thermal Insulating Materials and Their Application as Ladle Linings 被引量:1
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作者 YU Jingkun HAN Lu 《China's Refractories》 CAS 2014年第4期13-15,共3页
The nanoporous thermal insulating material was prepared by using fumed silica,SiC powder and glass fiber as starting materials,the appropriate thickness of the nanoporous thermal insulating material lined in ladle was... The nanoporous thermal insulating material was prepared by using fumed silica,SiC powder and glass fiber as starting materials,the appropriate thickness of the nanoporous thermal insulating material lined in ladle was discussed by the simulation method,and the effect of its application as ladle lining was investigated.The results show that the thermal conductivity of the nanoporous thermal insulating material prepared in composition of fumed silica: SiC powder: glass fiber =75: 20:5 (in mass) is 0.023 W · m^-1 · K^-1 at 1 000 ℃,the appropriate thickness of the nanoporous thermal insulating material lined in ladle is ≤ 5 mm and the average temperature of the ladle outside surface when lined with the nanoporous thermal insulating material is 95 ℃ lower than that with the ordinary thermal insulating material. 展开更多
关键词 fumed silica glass fiber NANOPOROUS thermal insulating material thermal conductivity ladle lining
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Thermal Performance Analysis of Plaster Reinforced with Raffia Vinifera Particles for Use as Insulating Materials in Building
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作者 Etienne Malbila Danielle Manuella Djouego Tagne +3 位作者 Bouto Kossi Imbga Lareba Adelaide Ouedraogo Sié Kam David Yemboini Kader Toguyeni 《Journal of Minerals and Materials Characterization and Engineering》 2024年第2期112-138,共27页
The present study focuses on the formulation of new composite consisting of plaster and raffia vinifera particle (RVP) with the purpose to reducing energy consumption. The aim of this study is to test this new compoun... The present study focuses on the formulation of new composite consisting of plaster and raffia vinifera particle (RVP) with the purpose to reducing energy consumption. The aim of this study is to test this new compound as an insulating eco-material in building in a tropical climate. The composites samples were developed by mixing plaster with raffia vinifera particles (RVP) using three different sizes (1.6 mm, 2.5 mm and 4 mm). The effects of four different RVP incorporations rates (i.e., 0wt%, 5wt%;10wt%;15wt%) on physical, thermal, mechanicals properties of the composites were investigated. In addition, the use of the raffia vinifera particles and plaster based composite material as building envelopes thermal insulation material is studied by the habitable cell thermal behavior instrumentation. The results indicate that the incorporation of raffia vinifera particle leads to improve the new composite physical, mechanical and thermal properties. And the parametric analysis reveals that the sampling rate and the size of raffia vinifera particles are the most decisive factor to impact these properties, and to decreases in the thermal conductivity which leads to an improvement to the thermal resistance and energy savings. The best improvement of plaster composite was obtained at the raffia vinifera particles size between 2.5 and 4.0 mm loading of 5wt% (C95P5R) with a good ratio of thermo-physical-mechanical properties. Additionally, the habitable cell experimental thermal behavior, with the new raffia vinifera particles and plaster-based composite as thermal insulating material for building walls, gives an average damping of 4°C and 5.8°C in the insulated house interior environment respectively for cold and hot cases compared to the outside environment and the uninsulated house interior environment. The current study highlights that this mixture gives the new composite thermal insulation properties applicable in the eco-construction of habitats in tropical environments. 展开更多
关键词 Fibres PLASTER Thermal Test Mechanical Test insulating Material Indoor Comfort
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Acoustic Propagation Paths for Space-charge Measurement in Thick Insulating Materials
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作者 Xiaoxin Li Yeong-Guk An +2 位作者 Tomohiro Kawashima Yoshinobu Murakami Naohiro Hozumi 《Chinese Journal of Electrical Engineering》 2025年第3期38-46,共9页
This study aims to measure the space charge of extremely thick insulating systems,such as full-scale ultrahigh-voltage cables and joint boxes,with high accuracy using the pulse electroacoustic method.The proposed meth... This study aims to measure the space charge of extremely thick insulating systems,such as full-scale ultrahigh-voltage cables and joint boxes,with high accuracy using the pulse electroacoustic method.The proposed method employs an electrically insulating acoustic coupler to improve acoustic matching.Additionally,a metallic backing with high acoustic impedance is applied to upgrade the sensitivity to almost five times that of conventional measuring systems.However,the proposed structure requires an extremely thick backing material to avoid multiple reflections when the specimen thickens.In this study,a backing structure that combines a thin polymer plate with an air layer is proposed.Because multiple reflections are not returned from the air layer,the backing structure can be designed to be extremely small,thereby maintaining high sensitivity.This advantage is verified experimentally. 展开更多
关键词 Space charge pulsed electroacoustic method acoustic coupling thick insulating materials backing material
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Development of Loose-Fill Thermal Insulation Materials from Annual Plant Residues Using Low-Concentration Chemimechanical Pulping
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作者 Andris Berzins Ramunas Tupciauskas +1 位作者 Gunars Pavlovics Martins Andzs 《Journal of Renewable Materials》 2025年第6期1189-1207,共19页
This study examines the development of loose-fill thermal insulation materials derived from annual plant residues,such as wheat straw,water reeds,and corn stalks,processed using the chemimechanical pulping(CMP)techniq... This study examines the development of loose-fill thermal insulation materials derived from annual plant residues,such as wheat straw,water reeds,and corn stalks,processed using the chemimechanical pulping(CMP)technique.The chopped plants were soda-cooked for 30 min,varying NaOH concentration(2%–8%on a dry basis of biomass),and mechanically refined using different disc types.The CMPprocess enhances the homogeneity and stability of defibratedmaterial,yielding improved insulation properties compared to untreated chopped rawmaterials.Chemical analysis revealed that CMP increases cellulose content and reduces lignin levels,enhancing water retention and vapor diffusion properties.Settlement tests confirmed that CMP materials are more resistant to compaction under vibration,maintaining long-term performance.Additionally,the CMP enables the production of lightweight materials that require less resource consumption while achieving comparable thermal insulation performance.The investigated biobased materials offer a sustainable alternative to conventional insulation,with competing thermal conductivity values(0.041-0.046 W/mK)at the settlement-resistant bulk density level of 60 kg/m^(3).The thermal conductivity of CMP materials remains minimally affected.However,the resulting fibers demonstrate significant advantages in stability and material efficiency.This highlights its suitability for loose-fill applications to improve the sustainability of the construction.Using renewable plant residues,CMP-based insulation materials align with circular economy principles and contribute to environmental sustainability.This research underscores the potential of CMP materials to reduce greenhouse gas emissions,optimize resource use,and promote eco-friendly building practices. 展开更多
关键词 Wheat straw water reed corn stalk chemimechanical pulping lignocellulosic biomass-based thermal insulation materials thermal conductivity
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Properties of thermal insulation materials for deep oil and gas in situ temperature-preserved coring:A focus on interphase
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作者 Zijie Wei Zhiqiang He +3 位作者 Ling Chen Bo Yu Jianping Yang Heping Xie 《Journal of Rock Mechanics and Geotechnical Engineering》 2025年第12期7691-7710,共20页
The high-temperature conditions of deep oil and gas reservoirs notably affect the porosity and permeability of rocks.In situ temperature-preserved coring(ITP-Coring)technology is crucial for accurately assessing rock ... The high-temperature conditions of deep oil and gas reservoirs notably affect the porosity and permeability of rocks.In situ temperature-preserved coring(ITP-Coring)technology is crucial for accurately assessing rock properties in deep reservoirs.High-performance thermal insulation materials are crucial for supporting ITP-Coring during deep oil and gas exploration.This study explores the impact of high-temperature and high-pressure(HTHP)conditions on hollow glass microsphere/epoxy(HGM/EP)thermal insulation materials,focusing on the interphase.Investigations of HGM/EP materials with varying hollow glass microsphere(HGM)strengths and volume fractions reveal that elevated temperatures cause the molecular chains of the epoxy resin matrix to relax,leading to matrix softening and a decline in mechanical properties.Additionally,high-pressure water infiltrates the material,damaging the interphase and HGMs,further compromising material performance.The combined HTHP environment accelerates this degradation.Dynamic mechanical analysis(DMA)shows that S60HS HGMs,which possess higher strength,interact more strongly with the matrix and exhibit higher entanglement density,resulting in superior interphase adhesion.This enhances stress transfer efficiency and reduces the loss of storage modulus at the interphase.Theoretical analysis indicates that the interphase thickness and modulus of S-f40 remain mostly unaffected after HTHP treatment,with values higher than the epoxy matrix.This correlates with DMA results,demonstrating that S-f40 has the smallest adhesion factor(A),indicating the highest interfacial stress transfer efficiency.S-f40 also exhibits optimal thermal conductivity and mechanical properties,making it ideal for ITP-Coring in deep reservoirs.These findings provide insights for optimizing materials in HTHP environments for deep reservoir exploration. 展开更多
关键词 In situ temperature-preserved coring(ITP-Coring) Hollow glass microsphere/epoxy thermal insulation materials Dynamic mechanical analysis(DMA) INTERPHASE Heat transfer and mechanical properties High-temperature and high-pressure(HTHP)environments
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Research on thermal insulation materials properties under HTHP conditions for deep oil and gas reservoir rock ITP-Coring 被引量:2
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作者 Zhi-Qiang He He-Ping Xie +4 位作者 Ling Chen Jian-Ping Yang Bo Yu Zi-Jie Wei Ming-Zhong Gao 《Petroleum Science》 SCIE EI CAS CSCD 2024年第4期2625-2637,共13页
Deep oil and gas reservoirs are under high-temperature conditions,but traditional coring methods do not consider temperature-preserved measures and ignore the influence of temperature on rock porosity and permeability... Deep oil and gas reservoirs are under high-temperature conditions,but traditional coring methods do not consider temperature-preserved measures and ignore the influence of temperature on rock porosity and permeability,resulting in distorted resource assessments.The development of in situ temperaturepreserved coring(ITP-Coring)technology for deep reservoir rock is urgent,and thermal insulation materials are key.Therefore,hollow glass microsphere/epoxy resin thermal insulation materials(HGM/EP materials)were proposed as thermal insulation materials.The materials properties under coupled hightemperature and high-pressure(HTHP)conditions were tested.The results indicated that high pressures led to HGM destruction and that the materials water absorption significantly increased;additionally,increasing temperature accelerated the process.High temperatures directly caused the thermal conductivity of the materials to increase;additionally,the thermal conduction and convection of water caused by high pressures led to an exponential increase in the thermal conductivity.High temperatures weakened the matrix,and high pressures destroyed the HGM,which resulted in a decrease in the tensile mechanical properties of the materials.The materials entered the high elastic state at 150℃,and the mechanical properties were weakened more obviously,while the pressure led to a significant effect when the water absorption was above 10%.Meanwhile,the tensile strength/strain were 13.62 MPa/1.3%and 6.09 MPa/0.86%at 100℃ and 100 MPa,respectively,which meet the application requirements of the self-designed coring device.Finally,K46-f40 and K46-f50 HGM/EP materials were proven to be suitable for ITP-Coring under coupled conditions below 100℃ and 100 MPa.To further improve the materials properties,the interface layer and EP matrix should be optimized.The results can provide references for the optimization and engineering application of materials and thus technical support for deep oil and gas resource development. 展开更多
关键词 Deep oil and gas reservoir rock In situ temperature-preserved coring(ITPCoring) Hollow glass microsphere/epoxy resin thermal insulation materials(HGM/EP materials) High-temperature and high-pressure(HTHP) Physical and mechanical properties
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The Application of Solid Waste in Thermal Insulation Materials: A Review 被引量:2
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作者 Ming Liu Pinghua Zhu +2 位作者 Xiancui Yan Haichao Li Xintong Chen 《Journal of Renewable Materials》 EI CAS 2024年第2期329-347,共19页
As socioeconomic development continues,the issue of building energy consumption has attracted significant attention,and improving the thermal insulation performance of buildings has become a crucial strategic measure.... As socioeconomic development continues,the issue of building energy consumption has attracted significant attention,and improving the thermal insulation performance of buildings has become a crucial strategic measure.Simultaneously,the application of solid waste in insulation materials has also become a hot topic.This paper reviews the sources and classifications of solid waste,focusing on research progress in its application as insulation materials in the domains of daily life,agriculture,and industry.The research shows that incorporating household solid waste materials,such as waste glass,paper,and clothing scraps into cementitious thermal insulation can significantly reduce the thermal conductivity of the materials,leading to excellent thermal insulation properties.Insulation materials prepared from agricultural solid waste,such as barley straw,corn stalk,chicken feather,and date palm fibers,possess characteristics of lightweight and strong thermal insulation.Industrial solid waste,including waste tires,iron tailings,and coal bottom ash,can also be utilized in the preparation of insulation materials.These innovative applications not only have positive environmental significance by reducing waste emissions and resource consumption,but also provide efficient and sustainable insulation solutions for the construction industry.However,to further optimize the mix design and enhance the durability of insulation materials,continuous research is required to investigate the mechanisms through which solid waste impacts the performance of insulation materials. 展开更多
关键词 Solid waste building energy consumption insulation material SUSTAINABILITY
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Hollow glass microspheres/silicone rubber composite materials toward materials for high performance deep in-situ temperaturepreserved coring 被引量:1
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作者 Jian-Ping Yang Ling Chen +6 位作者 Xiao-Bin Gu Zhi-Yu Zhao Cheng-Hang Fu Dong-Sheng Yang Dong-Zhuang Tian Zhi-Sheng Chen He-Ping Xie 《Petroleum Science》 SCIE CAS CSCD 2022年第1期309-320,共12页
Deep petroleum resources are stored under high temperature and pressure conditions,with the temperature having a significant influence on the properties of rocks.Deep in-situ temperature-preserved coring(ITP-coring)de... Deep petroleum resources are stored under high temperature and pressure conditions,with the temperature having a significant influence on the properties of rocks.Deep in-situ temperature-preserved coring(ITP-coring)devices were developed to assess deep petroleum reserves accurately.Herein,hollow glass microspheres(HGMs)/silicone rubber(SR)composites that exhibit excellent thermal insulation properties were prepared as thermal insulation materials for deep ITP-coring devices.The mechanism and process of heat transfer in the composites were explored,as well as their other properties.The results show that the HGMs exhibit good compatibility with the SR matrix.When the volume fraction of the HGMs is increased to 50%,the density of the HGMs/SR composites is reduced from 0.97 to 0.56 g/cm^(3).The HGMs filler introduces large voids into the composites,reducing their thermal conductivity to 0.11 W/m·K.The addition of HGMs into the composites further enhances the thermal stability of the SR,wherein the higher the HGMs filler content,the better the thermal stability of the composites.HGMs significantly enhance the mechanical strength of the SR.HGMs increase the compressive strength of the composites by 828%and the tensile strength by 164%.Overall,HGMs improve the thermal insulation,pressure resistance,and thermal stability of HGMs/SR composites. 展开更多
关键词 In-situ temperature-preserved coring(ITP-coring) Deep in-situ conditions Thermal insulation materials HGMs/SR composites
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Preparation and Properties of TiO2-Coated Hollow Glass Microspheres as Thermal Insulation Materials for Energy-Saving Buildings 被引量:1
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作者 Chunyu Wu Weilin Wang Huiming Ji 《Transactions of Tianjin University》 EI CAS 2020年第4期283-291,共9页
A hollow glass microsphere(HGM)/TiO2 composite hollow sphere was successfully prepared via a simple precipitation method.The TiO2 coating layers grew on the surface of the HGMs that range from 20 to 50μm in diameter ... A hollow glass microsphere(HGM)/TiO2 composite hollow sphere was successfully prepared via a simple precipitation method.The TiO2 coating layers grew on the surface of the HGMs that range from 20 to 50μm in diameter as nanoparticles with the formation of the SiO Ti bonds.The growth mechanism accounting for the formation of the TiO2 nanolayers was proposed.The morphology,composition,thermal insulation properties,and visible-near infrared(VIS-NIR)refl ectance of the HGMs/TiO2 composite hollow spheres were characterized.The VIS-NIR reflectance of the HGMs/TiO2 composite hollow spheres increased by more than 30%compared to raw HGMs.The thermal conductivity of the particles is 0.058 W/(m K).The result indicates that the VIS-NIR reflectance of the composite hollow spheres is strongly influenced by the coating of TiO2.The composite hollow spheres were used as the main functional filler to prepare the organic-inorganic composite coatings.The glass substrates coated by the organic-inorganic coatings had lower thermal conductivity and higher near infrared reflectivity.Therefore,the HGMs/TiO2 composite hollow spheres can reflect most of the solar energy and effectively keep out the heat as a thermal insulation coating for energy-saving constructions. 展开更多
关键词 TIO2 Hollow glass microspheres Thermal insulation materials Near infrared reflectance
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Initial Studies Concerning the Current Status and Problems on the Formulation and Revision of the National Standards for Electric Insulation Materials 被引量:1
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作者 Zhu Meilan 《China Standardization》 2004年第4期40-43,共4页
关键词 Initial Studies Concerning the Current Status and Problems on the Formulation and Revision of the National Standards for Electric Insulation materials
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Preparation and properties of ZrO_(2)-strengthened porous mullite insulation materials using Y_(2)O_(3) additive
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作者 Wang-zhi Yu Yi-hong Shi +8 位作者 Ping Liu Yong-wan Wu Cheng-hao Song Xian-gong Deng Xiang Ding Song-lin Ran Yi Zhang Hai-jun Zhang Hai-liang Deng 《Journal of Iron and Steel Research International》 SCIE EI CAS CSCD 2024年第6期1514-1521,共8页
ZrO_(2)-strengthened porous mullite insulation materials were prepared by foaming technology utilizing ZrSiO_(4) and Al_(2)O_(3) as primary materials and Y_(2)O_(3) as an additive.The effects of Y_(2)O_(3) contents on... ZrO_(2)-strengthened porous mullite insulation materials were prepared by foaming technology utilizing ZrSiO_(4) and Al_(2)O_(3) as primary materials and Y_(2)O_(3) as an additive.The effects of Y_(2)O_(3) contents on the phase composition,microstructure,mechanical properties,and heat conductivity of the porous mullite insulation materials were investigated.A suitable Y_(2)O_(3) content could promote phase transition of monoclinic ZrO_(2)(m-ZrO_(2))to tetragonal ZrO_(2)(t-ZrO_(2)),reduce pore size,and improve the strengths of as-prepared specimens.The cold crushing strength and bending strength of as-prepared specimens with a 119µm spherical pore size using 6 wt.%Y_(2)O_(3) were 35.2 and 13.0 MPa,respectively,with a heat conductivity being only 0.248 W/(m K). 展开更多
关键词 Porous mullite insulation material Zirconium oxide Y_(2)O_(3) Mechanical property Heat conductivity
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Effect of Pyrophyllite Addition on Properties of Lightweight Insulation Refractory Materials
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作者 CHEN Ruoyu LI Yuanbing +4 位作者 XIANG Ruofei LI Shujing FAN Xiafei LI Yawei SANG Shaobai 《China's Refractories》 CAS 2017年第3期38-42,共5页
To solve the problem of over-high density of lightweight insulation refractory bricks prepared with fly ash, new lightweight insulation refractory materials with density 〈 0. 89 g · cm^-3 were .synthesized using... To solve the problem of over-high density of lightweight insulation refractory bricks prepared with fly ash, new lightweight insulation refractory materials with density 〈 0. 89 g · cm^-3 were .synthesized using pyrophyl-lite, .fly ash, and Suzhou clay as the main starting materials and saw dast as the pore forming substance, and controlling the addition of the pyrophyllite (20%, 30% , and 40% by mass ) and the treating temperature (1 250, 1 300, 1 350, and 1 400 ℃ ). The synthesized materials were characterized by the XRD, SEM and the thermal conductivity measuring in.strument. The results show at pyrophyllite addition of 30% and treat temperature of l 400 ℃ , the material can achieve linear shrinkage of 6. 6%, apparent porosity of 57%, bulk density of 0. 75 g · cm^-3, compressive strength of 2.7 MPa, and thermal conductivity at 350 ℃ of 0. 152 -0. 216 W·( m·K)^-1.This indicates that the pyrophyllite decomposition at high temperatures forms mullite and amorphous quartz introducing volume expansion, which counteracts some shrinkage at high temperatures. So it is feasible to use pyrophyllite, fly ash waste and clay to prepare lightweight insulation refractory materials. 展开更多
关键词 PYROPHYLLITE fly ash lightweight insulation refractory materials thermal conductivity bulk density compressive strength
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Preparation of Magnesia Insulation Materials by Walnut Shell Powder Impregnated with Silica Sol
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作者 JIAO Changfa LI Guohua KANG Chi 《China's Refractories》 CAS 2022年第3期34-37,共4页
In order to reduce the thermal energy loss of high temperature kilns and furnaces and lower the surface temperature of the kiln body,magnesia insulation materials were prepared using self-made magnesia porous aggregat... In order to reduce the thermal energy loss of high temperature kilns and furnaces and lower the surface temperature of the kiln body,magnesia insulation materials were prepared using self-made magnesia porous aggregates(using high purity magnesia powder as starting material and potassium oleate as the foaming agent),middle grade magnesia powder,calcium aluminate cement,and SiO_(2) micropowder as starting materials,introducing walnut shell powder impregnated with silica sol(short for Sws)as a pore-forming agent.The effects of the Sws addition(0,10%,15%,and 20%,by mass)and the sintering temperature(1300,1350,1400,and 1480℃)on the properties of magnesia insulation materials were studied.The results show that(1)for the specimens fired at 1480℃,when the Sws addition is 10%,the cold compressive strength is 22 MPa;when the Sws addition is 20%,the thermal conductivity is 0.368 W·m^(-1)·K^(-1)(350℃);(2)nano-silica in the silica sol reacts with MgO in the matrix to form forsterite,which encapsulates the pores volatilized from the walnut shell powder and forms closed pores. 展开更多
关键词 foaming method ignition loss method walnut shell powder impregnated with silica sol magnesia porous aggregates magnesia insulation materials
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Preparation of Periclase-forsterite Lightweight Heat-insulating Refractories by Molten Salt Method
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作者 WANG Shaoyang HOU Qingdong +3 位作者 QI Xin LUO Xudong YOU Jiegang ZHANG Ling 《China's Refractories》 CAS 2023年第4期33-37,共5页
Low grade magnesite is one of the main research directions in the future as the raw material for the preparation of magnesia based insulating refractories.Periclase-forsterite(MgO-Mg_(2)SiO_(4)) lightweight insulating... Low grade magnesite is one of the main research directions in the future as the raw material for the preparation of magnesia based insulating refractories.Periclase-forsterite(MgO-Mg_(2)SiO_(4)) lightweight insulating refractories were prepared by the molten salt method with high silica magnesite and tertiary talc ore as raw materials by pretreating them to get light burnt magnesia and talc,and NaCl molten salt as the reaction medium.The effects of the NaCl addition,the sintering temperature,the holding time and the raw material ratio on the sample preparation were studied.The results show that when the NaCl addition is 20% of the mass of light burnt magnesia and talc mixture,the sintering temperature is 1 200 ℃,the holding time is 6 h,and m(light burnt magnesia):m(talc)=5:5,the sample has the optimal comprehensive properties:the bulk density of 1.46 g·cm^(-3) and the apparent porosity of 55.0%.In addition,it is found that self-decomposition of talc and the formation of forsterite can form pores inside the sample. 展开更多
关键词 sodium chloride molten salt PERICLASE FORSTERITE lightweight insulating material
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Light Weight Insulating Material Prepared from Rice Husk
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作者 I.Bhatti K.Qureshi M.S.Shaikh 《Journal of Environmental Science and Engineering》 2011年第7期882-885,共4页
Pakistan is at 12th number in the rank of rice production countries.Along with the production of 4,500 thousand metric tons of rice enormous quantity of rice husk is left as waste.Light weight thermal insulating mater... Pakistan is at 12th number in the rank of rice production countries.Along with the production of 4,500 thousand metric tons of rice enormous quantity of rice husk is left as waste.Light weight thermal insulating material was prepared from rice husk.Epoxy resin was used as a binder and was mixed with rice husk to give it strength,the sample was compressed at 7000 psi to produce cylindrical shape block.The thermal conductivity of the sample A,B,C and D of thickness 1,2,3 and 4 cm respectively was measured 0.0241,0.0240,0.239 and 0.0219 watts/m-k,which was lower than the common mortar by 51.74%,therefore it could be used in buildings and roof as an insulating material.This would be a suitable alternative which would not only save energy but also solve the environmental disposal problems as well.The results are very promising and we hope insulation material prepared would be useable in hot climate regions like Pakistan in buildings to prevent heat transfer. 展开更多
关键词 insulating material BINDER thermal conductivity
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The Feasibility of a Proposed Plant Design of Sheep Wool Insulation Material in Jordan to Eliminate the Negative Environmental Impact of Wasted Sheep Wool
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作者 Khalid M. Al-Malah Mais R. Al-Khalafat +3 位作者 Nataly A. Al-Zayadeen Aseel S. Al Mfalfal Bahieh M. Alma’atah Taha M. Alkhamis 《Journal of Environmental Protection》 2025年第2期130-147,共18页
This applied research seeks to explore feasible plant design for manufacturing insulation materials for construction projects using waste sheep fleece to address environmental issues related to wasted sheep wool and e... This applied research seeks to explore feasible plant design for manufacturing insulation materials for construction projects using waste sheep fleece to address environmental issues related to wasted sheep wool and enhance the gross national product. The process starts by collecting low-cost sheep fleece from farms and processed via a production line, including scouring, plucking, carding, thermal bonding, and packing. The design process involves determining an optimal location, infrastructure, staffing, machinery, environmental impact, and utilities. A final economic analysis is undertaken to estimate the product’s cost, selling price, and break-even point based on the anticipated capital and operational costs. The plant is intended to process 6778 tons of sheep wool annually. The study suggests that Mafraq Industrial City is a perfect location for the plant, and purchasing land and structures is the optimal option. The projected capital cost is 1,416,679 USD, while the anticipated operational costs amount to 3,206,275 USD. Insulation material production is estimated to be 114,756 m3 annually. The material may be manufactured into 1 m wide, 0.05 m thick sheets for 2.02 USD per square meter. Thus, for a 10-year plant, a 2.47 USD/m2 selling price breaks even in one year. 展开更多
关键词 Sheep Wool Solid Waste Plant Design Insulation materials JORDAN
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Preparation and Properties of Al_(2)O_(3) Aerogels
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作者 TONG Tianbai REN He +2 位作者 LIU Mei WANG Yicong FAN Zhaodong 《China's Refractories》 2025年第3期30-35,共6页
To optimize the preparation of alumina aerogels,the sol-gel method was combined with supercritical drying,using aluminum isopropoxide(AIP)as the precursor,ethanol(EtOH)as the solvent,and acetic acid(HAc)as the catalys... To optimize the preparation of alumina aerogels,the sol-gel method was combined with supercritical drying,using aluminum isopropoxide(AIP)as the precursor,ethanol(EtOH)as the solvent,and acetic acid(HAc)as the catalyst.The effects of the ethanol addition[n(AIP):n(EtOH):n(H_(2)O):n(HAc)=1:8:0.8:2,1:12:0.8:2,1:16:0.8:2,and 1:20:0.8:2]and acetic acid addition[n(AIP):n(EtOH):n(H_(2)O):n(HAc)=1:16:0.8:1,1:16:0.8:2,1:16:0.8:3,and 1:16:0.8:4]on the pore structure and specific surface area of Al_(2)O_(3) aerogels were studied.The results show that ethanol affects the pore structure of Al_(2)O_(3) aerogels by affecting the condensation probability of Al-OH troups,and acetic acid affects the pore structure of Al_(2)O_(3) aerogels by affecting the reaction rate;when n(AIP):n(EtOH):n(H_(2)O):n(HAc)=1:16:0.8:2,the Al_(2)O_(3) aerogel has a porous microstructure,and its internal pore diameters is generally smaller than the average free path of air molecules,showing excellent thermal insulation characteristics,low density of 0.20 g·cm^(-3),and the specific surface areas of 458,102,and 51 m^(2)·g^(-1) at 25,1000,and 1200℃,respectively. 展开更多
关键词 Al_(2)O_(3)aerogel thermal insulation material specific surface area pore size distribution
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Improving operation lifetime of OLED by using thermally activated delayed fluorescence as host 被引量:1
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作者 HU Jun-tao HU Sheng +3 位作者 YE Kang-li WEI Qing-qing XU Kai WANG Xiang-hua 《Optoelectronics Letters》 EI 2017年第4期271-274,共4页
We fabricated organic light-emitting diodes (OLEDs) with the thermally activated delayed fluorescence (TADF) mate- rial of 4CzlPN, Which show better stability compared with the 4,4'-Bis(carbazol-9-yl)biphenyl ... We fabricated organic light-emitting diodes (OLEDs) with the thermally activated delayed fluorescence (TADF) mate- rial of 4CzlPN, Which show better stability compared with the 4,4'-Bis(carbazol-9-yl)biphenyl (CBP) based devices. The half lifetime of the device using 4CzlPN as host material has doubled, and a slower voltage rise compared with that of CBP-based devices has been achieved, which indicates the improvement of stability. We attribute the better sta- bility to the good film morphology and difficult crystallization property of 4CzlPN. Our results suggest that employing the 4CzlPN as host material can be a promising way of fabricating OLEDs with longer operation lifetime. 展开更多
关键词 FLUORESCENCE Light emitting diodes Sound insulating materials
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High-value recycling of kaolin for preparation of ladle thermal insulation materials
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作者 Xiang Li Zhi Sun +3 位作者 Wu-yang Shi Wei-wei Lu Ya-meng Wan Cheng-liang Ma 《Journal of Iron and Steel Research International》 2025年第11期3817-3825,共9页
Due to the global energy shortage,it has become essential to reduce energy consumption in the steelmaking process in order to promote the sustainable development of the metallurgical industry.The limitations of tradit... Due to the global energy shortage,it has become essential to reduce energy consumption in the steelmaking process in order to promote the sustainable development of the metallurgical industry.The limitations of traditional ladle insulation materials were addressed by using kaolin as the main raw material in combination with foam-gelcasting technique for in-situ synthesis of porous anorthite thermal insulation materials.Concurrently,the effects of sintering temperature and time on the composition of the physical phases,microstructure and physical properties were elucidated.The results showed that anorthite was the main phase obtained in sintering temperature range of 1200-1450℃,and edges of anorthite grains were well defined and well developed,presenting a plate-like morphology,which significantly improved mechanical strength of sample.The best overall performance was achieved at a firing temperature of 1400℃ and a holding time of 3 h.Compared to conventional ladle thermal insulation materials,samples developed herein showed excellent performance with a porosity of 63.3%,a compressive strength of 14.51 MPa,and an ultra-low thermal conductivity of only 0.29 W/(m K). 展开更多
关键词 Anorthite Kaolin Foam-gelcasting Porous ceramics Thermal insulation material
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