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Effect of Process Parameters on Porosity in Aluminum Lost Foam Process 被引量:7
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作者 Kiyoung KIM Kyongwhoan LEE 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2005年第5期681-685,共5页
Porosity is a main defect in aluminum alloy castings, which is also thought to be severe in aluminum alloy castings produced by lost foam process due to the pyrolysis of the polystyrene foam pattern during pouring. Fu... Porosity is a main defect in aluminum alloy castings, which is also thought to be severe in aluminum alloy castings produced by lost foam process due to the pyrolysis of the polystyrene foam pattern during pouring. Fundamental experiments were carried out to evaluate the effect of process parameters such as the melt treatment, the cooling rate and the density of expanded polystyrene (EPS) foam on porosity in A356.2 bar casting. The effect of melt treatment including degassing and refining was investigated. The effect of cooling rate was also evaluated by changing the mold packing material such as the silica sand, the zircon sand and the steel shots. Gas entrapment due to the turbulent metal flow during mold filling in conventional molding process results in porosity. Mold filling sequence in lost foam process is different from that in conventional molding process. The effect of molten metal flow was estimated by comparing the density of the casting by conventional sodium silicate molding with that by lost foam process. Density measurement was conducted to analyze the extent of porosity in the casting. Source of the porosity in lost foam process can be divided into two factors, i.e. turbulence in molten metal flow and entraining residue or gas from the pattern during pouring. 展开更多
关键词 Lost foam process Mold packing material EPS foam POROSITY Melt treatment
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Oxide film on bubble surface of aluminum foams produced by gas injection foaming process 被引量:3
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作者 周宇通 李言祥 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2015年第7期2429-2437,共9页
Based on A356 aluminum alloy,aluminum foams were prepared by gas injection foaming process with pure nitrogen,air and some gas mixtures.The oxygen volume fraction of these gas mixtures varied from 0.2%to 8.0%.Optical ... Based on A356 aluminum alloy,aluminum foams were prepared by gas injection foaming process with pure nitrogen,air and some gas mixtures.The oxygen volume fraction of these gas mixtures varied from 0.2%to 8.0%.Optical microscopy,scanning electron microscopy(SEM) and Auger electron spectroscopy(AES) were used to analyze the influence of oxygen content on cell structure,relative density,macro and micro morphology of cell walls,coverage area fraction of oxide film,thickness of oxide film and other aspects.Results indicate that the coverage area fraction of oxide film on bubble surface increases with the increase of oxygen content when the oxygen volume is less than 1.2%.While when the oxygen volume fraction is larger than 1.6%,an oxide film covers the entire bubble surface and aluminum foams with good cell structure can be produced.The thicknesses of oxide films of aluminum foams produced by gas mixtures containing 1.6%-21%oxygen are almost the same.The reasons why the thickness of oxide film nearly does not change with the variation of oxygen content and the amount of oxygen needed to achieve 100%coverage of oxide film are both discussed.In addition,the role of oxide film on bubble surface in foam stability is also analyzed. 展开更多
关键词 aluminum foam gas injection foaming process oxide film foam stability mechanism
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Oxidation kinetics of oxide film on bubble surface of aluminum foams produced by gas injection foaming process 被引量:1
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作者 周宇通 李言祥 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2015年第8期2781-2788,共8页
In the range of 620?710 °C, air was blown into A356 aluminum alloy melt to produce aluminum foams. In order to study the influence of temperature on the thickness of oxide film on bubble surface, Auger electron ... In the range of 620?710 °C, air was blown into A356 aluminum alloy melt to produce aluminum foams. In order to study the influence of temperature on the thickness of oxide film on bubble surface, Auger electron spectroscopy (AES) was used. Based on the knowledge of corrosion science and hydrodynamics, two oxidation kinetics models of oxide film on bubble surface were established. The thicknesses of oxide films produced at different temperatures were predicted through those two models. Furthermore, the theoretical values were compared with the experimental values. The results indicate that in the range of 620?710 °C, the theoretical values of the thickness of oxide film predicted by the model including the rising process are higher than the experimental values. While, the theoretical values predicted by the model without the rising process are in good agreement with the experimental values, which shows this model objectively describes the oxidation process of oxide film on bubble surface. This work suggests that the oxidation kinetics of oxide film on bubble surface of aluminum foams produced by gas injection foaming process follows the Arrhenius equation. 展开更多
关键词 aluminum foam gas injection foaming process oxide film oxidation kinetics
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THE STRUCTURE CONTROL OF ALUMINUM FOAMS PRODUCED BY POWDER COMPACTED FOAMING PROCESS 被引量:4
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作者 X.H.You F. Wang L.C.Wang 《Acta Metallurgica Sinica(English Letters)》 SCIE EI CAS CSCD 2004年第3期279-282,共4页
A new technique, powder compact foaming process for the production of aluminumfoams has been studied in this article. According to this method, the aluminum pow-der is mixed with a powder foaming agent (TiH_2). Subseq... A new technique, powder compact foaming process for the production of aluminumfoams has been studied in this article. According to this method, the aluminum pow-der is mixed with a powder foaming agent (TiH_2). Subsequent to mixing, the powderblend is hot compacted to obtain a dense semi--finished product. Upon heating to tem-peratures within the range of the melting point, the foaming agent decomposes to evolvegas and the semi--finished product expands into a porous cellular aluminum. Foamingprocess is the key in this method. Based on experiments, the foaming characteris-tics were mainly analyzed and discussed. Experiments show that the aluminum--foamwith closed pores and a uniform cell structure of high porosity can be obtained usingthis method by adjusting the foaming parameters: the content of foaming agent andfoaming temperature. 展开更多
关键词 aluminum foams powder compact foaming process foam structure
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Injection Processing and Foaming Behaviors of Polypropylene Composite Foams 被引量:4
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作者 GONG Wei ZHANG Chun +2 位作者 YU Jie HE Ying HE Li 《Wuhan University Journal of Natural Sciences》 CAS 2014年第2期123-128,共6页
A volume-adjustable cavity of molding machine for polymer foaming was fabricated with renovation of an ordinary injection molding machine. Polypropylene (PP) composite foams were prepared by chemical foaming method ... A volume-adjustable cavity of molding machine for polymer foaming was fabricated with renovation of an ordinary injection molding machine. Polypropylene (PP) composite foams were prepared by chemical foaming method via the volume-adjustable cavity of the molding machine. The decompressing and short shot processes in preparing the samples were carded out to adjust the cell structure of the foamed samples. The structures that foamed insufficiently, moder- ately, and excessively were observed in these two foaming processes. The foamed PP composite samples generated in decompressing pro- cess have more desirable cell s^cture than those generated by short shot process, specifically, the cell structure with the cell size of 46.97 IJxn, cell density of 3.18x 106 cell/cm3, and cell size dispersion of 10.76 ~m was achieved in the decompressing process. A controlled foaming process was realized through the decompressing process using the injection foaming equipment with a volume-adjustable cavity. The foamed PP composite has the insufficient, moderate, and excessive foamed structures in these two foaming processes. 展开更多
关键词 foamING POLYPROPYLENE processING foaming behavior
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3-D SIMULATION OF FLUID FLOW IN LOST FOAM PROCESS 被引量:1
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作者 Zunjie, Wei Geying, An 《中国有色金属学会会刊:英文版》 EI CSCD 1998年第3期62-65,共4页
1INTRODUCTIONDuringthefilingprocesinlostfoamproces,thevelocityandthetemperaturedistributioninmoltenmetalared... 1INTRODUCTIONDuringthefilingprocesinlostfoamproces,thevelocityandthetemperaturedistributioninmoltenmetalarediferentfromthos... 展开更多
关键词 LOST foam process VELOCITY PROFILE numerical SIMULATION
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Properties and corrosion behavior of Al based nanocomposite foams produced by the sintering-dissolution process 被引量:3
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作者 Mostafa Amirjan Mansour Bozorg 《International Journal of Minerals,Metallurgy and Materials》 SCIE EI CAS CSCD 2018年第1期94-101,共8页
The properties orAl based nanocomposite metal foams and their corrosion behaviors were investigated in this study. For this, the composite metal foams with different relative densities (porosity) reinforced with alu... The properties orAl based nanocomposite metal foams and their corrosion behaviors were investigated in this study. For this, the composite metal foams with different relative densities (porosity) reinforced with alumina nanoparticles were prepared using a powder me- tallurgy-based sintering-dissolution process (SDP) and NaC1 particles were used as space holders. Then, the effect of nanoparticle rein- forcement and different amounts of NaC1 space holders (corresponding porosity) on the microstructure, morphology, density, hardness, and electrochemical specifications of the samples were investigated. It was found that as the relative density increased from 60% to 70%, the wall thickness increased from about 200 to 300 pro, which led to a decrease in pore size. Also, the addition of nanoparticle reinforcement and the increased relative density result in increasing metal foam hardness. Moreover, electrochemical test results indicated that increasing the A1203 content reduced the corrosion rate, but increasing the porosity enhanced it. 展开更多
关键词 aluminum-alumina nanocomposite metal foam sintering-dissolution process corrosion behavior electrochemical impedance
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Computational Analysis of Fluid Flow During Filling a Plate Casting Pattern in Lost Foam Process
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作者 魏尊杰 安阁英 邢大伟 《Journal of Harbin Institute of Technology(New Series)》 EI CAS 1996年第4期63-65,共3页
The velocity profile determined by the gas pressure in the gas gap during molten metal filling in Lost Foam Process was numerically simulated. The results show that the molten metal flows forward in a circular-arc sha... The velocity profile determined by the gas pressure in the gas gap during molten metal filling in Lost Foam Process was numerically simulated. The results show that the molten metal flows forward in a circular-arc shape from the ingate, which is different from that in traditional green sand casting. 展开更多
关键词 ss: LOST foam process velocity profile COMPUTATIONAL ANALYSIS
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Porosity of aluminum alloy in lost foam casting process
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作者 吴国华 罗吉荣 谢敏 《中国有色金属学会会刊:英文版》 CSCD 2000年第5期645-649,共5页
The effects of modification, grain refinement, polystyrene pattern, pouring temperature and reduced pressure degree on aluminum alloy porosity in lost foam casting (LFC) process were studied. The results show that the... The effects of modification, grain refinement, polystyrene pattern, pouring temperature and reduced pressure degree on aluminum alloy porosity in lost foam casting (LFC) process were studied. The results show that the solidification rate of LFC process is slower than that of resin sand process or clay sand process. The effect of modification and grain refinement on the aluminum alloy casting density in LFC is greater than that on resin sand process. Through α Al phase refinement process with 0.2%Ti for aluminum melt, the subversive effect of Sr modification in LFC process is decreased greatly, and the aluminum casting density in LFC process is nearly equal to that in resin sand process. To decrease the porosity of aluminum castings in LFC process, lower density of polystyrene pattern, higher pouring temperature (760~780 ℃) and lower reduced pressure degree (≤20 kPa) should be applied.[ 展开更多
关键词 ALUMINUM alloy LOST foam CASTING process POROSITY MODIFICATION
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Numerical Simulation of Foaming Processes
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作者 Katharina Gladbach Antonio Delgado Cornelia Rauh 《World Journal of Mechanics》 2017年第11期297-322,共26页
The literature model studied in this article describes bubble formation and growth in a highly viscous polymer liquid with support of a gaseous matter dispersed under pressure before foaming. The foam growth is induce... The literature model studied in this article describes bubble formation and growth in a highly viscous polymer liquid with support of a gaseous matter dispersed under pressure before foaming. The foam growth is induced by the application of vacuum and mass transport of volatile components dissolved in the polymer liquid. Based on this literature model, aeration processes are calculated for intermediate viscosity and low viscosity biological systems, as they are of interest for biomatter foams, in particular for food foams in industrial processes. At the end of this article, the numerical results are presented and discussed. 展开更多
关键词 foamING process CONSERVATION EQUATIONS Finite DIFFERENCE Method Convergence Analysis REYNOLDS Number NEWTONIAN Liquids
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Burning characteristics of high density foamed GAP/CL-20 propellants 被引量:5
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作者 Man-man Li Rui Hu +2 位作者 Ming-hui Xu Qiong-lin Wang Wei-tao Yang 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2022年第10期1914-1921,共8页
The monolithic foamed propellants with high densities were prepared by casting and two-step foaming processes.Glycidyl azide polymer(GAP)and isocyanate were used as the binder system and 2,4,6,8,10,12-hexanitro-2,4,6,... The monolithic foamed propellants with high densities were prepared by casting and two-step foaming processes.Glycidyl azide polymer(GAP)and isocyanate were used as the binder system and 2,4,6,8,10,12-hexanitro-2,4,6,8,10,12-hexaazaisowurtzitane(HNIW,CL-20)was employed as the energetic component.The newly designed formulation containing 60%CL-20 produced a force constant of 1077 J/g and low flame temperature of 2817 K.Two foamed propellants with densities of 1.32 g/cm^(3)and 1.53 g/cm^(3)were fabricated by a confined foaming process and examined by closed bomb tests.The results revealed that porosity significantly affects burning performance.A size effect on combustion behaviors was observed for the foamed propellant with 5.56%porosity,and a double-hump progressive dynamic vivacity curve was obtained.At last,the 30 mm gun test was carried out to demonstrate the interior ballistic performance,and the muzzle velocity increased by 120 m/s at the same maximum chamber pressure when monolithic propellant was added in the charge. 展开更多
关键词 Monolithic foamed propellants Two-step foaming process Casting process GAP/CL-20
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Effect of Al powder and silica sol on the structure and mechanical properties of Al_2O_3-ZrO_2 foams 被引量:1
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作者 H.Sharifi M.Divandari +1 位作者 A.Khavandi M.H.Idris 《Acta Metallurgica Sinica(English Letters)》 SCIE EI CAS CSCD 2010年第4期241-247,共7页
Polymeric sponge replication method is one of the common ways for ceramic foam production. The existence of central triangular voids in the struts results in a decrease of mechanical properties limiting their applicat... Polymeric sponge replication method is one of the common ways for ceramic foam production. The existence of central triangular voids in the struts results in a decrease of mechanical properties limiting their applications. To remove this defect, some additives consisting of Al powder particles and silica sol are added to ceramic slurries consisting of Al2O3 and ZrO2 (partially stabilized zirconia). With increasing temperature for pyrolyzing and sintering of raw materials, first the Al powder and then the glass phase which consisted of melted Al2O3, ZrO2 and SiO2 was soaked into hollow struts. SEM investigations showed that the center of foam struts were free of hollows. XRD considerations depicted that a ZrO2 phase with tetragonal crystallographic structure is present in the produced foam which could be the reason of improved toughness and mechanical properties. Compressive strength of foams increased significantly due to the decrease of closed porosity. The Weibull statistical study showed remarkable increasing of the Weibull module and its value for foams with 10, 20 and 30 ppi was 5.91, 6.06 and 6.53 respectively. 展开更多
关键词 Ceramic foam processING Strut structure AL2O3-ZRO2 Weibull modulus
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Effects of cell size on compressive properties of aluminum foam 被引量:3
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作者 曹晓卿 王志华 +2 位作者 马宏伟 赵隆茂 杨桂通 《中国有色金属学会会刊:英文版》 EI CSCD 2006年第2期351-356,共6页
The effects of cell size on the quasi-static and dynamic compressive properties of open cell aluminum foams produced by infiltrating process were studied experimentally. The quasi-static and dynamic compressive tests ... The effects of cell size on the quasi-static and dynamic compressive properties of open cell aluminum foams produced by infiltrating process were studied experimentally. The quasi-static and dynamic compressive tests were carried out on MTS 810 system and SHPB(split Hopkinson pressure bar) respectively. It is found that the elastic moduli and compressive strengths of the studied aluminum foam are not only dependent on the relative density but also dependent on the cell size of the foam under both quasi-static loading and dynamic loading. The foams studied show a significant strain rate sensitivity, the flow strength can be improved as much as 112%, and the cell size also has a sound influence on the strain rate sensitivity of the foams. The foams of middle cell size exhibit the highest elastic modulus, the highest flow strength and the most significant strain rate sensitivity. 展开更多
关键词 晶胞尺寸 泡沫铝 压缩性 渗透过程
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Influences of synthesis methods and modifier addition on the properties of Ni-based catalysts supported on reticulated ceramic foams
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作者 Vesna Nikolic Zeljko Kamberovic +3 位作者 Zoran Antic Marija Korac Miroslav Sokic Vesna Maksimovic 《International Journal of Minerals,Metallurgy and Materials》 SCIE EI CAS CSCD 2014年第8期806-812,共7页
A method of synthesizing Ni-based catalysts supported on α-Al2O3-based foams was developed. The foams were impregnated with aqueous solutions of metal chlorides under an air atmosphere using an aerosol route. Separat... A method of synthesizing Ni-based catalysts supported on α-Al2O3-based foams was developed. The foams were impregnated with aqueous solutions of metal chlorides under an air atmosphere using an aerosol route. Separate procedures involved calcination to form oxides and drying to obtain chlorides on the foam surface. The synthesized samples were subsequently reduced with hydrogen. With respect to the Ni/Al2O3 catalysts, the chloride reduction route enabled the formation ofa Ni coating without agglomerates or cracks. Further research included catalyst modification by the addition of Pd, Cu, and Fe. The influences of the additives on the degree of reduction and on the low-temperature reduction effectiveness (533 and 633 K) were examined and compared for the catalysts obtained from oxides and chlorides. Greater degrees of reduction were achieved with chlorides, whereas Pd was the most effective modifier among those investigated. The reduction process was nearly complete at 533 K in the sample that contained 0.1wt% Pd. A lower reduction temperature was utilized, and the calcination step was avoided, which may enhance the economical and technological aspects of the developed catalyst production method. 展开更多
关键词 CATALYSTS nickel ceramic foams modification aerosol process catalytic properties
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Process intensification in vapor–liquid mass transfer: The state-of-the-art 被引量:1
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作者 Hong Li Chuanhui Wu +2 位作者 Zhiqiang Hao Xingang Li Xin Gao 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2019年第6期1236-1246,共11页
The concept of process intensification(PI) has absorbed diverse definitions and stays true to the mission—'do more with less', which is an approach purposed by chemical engineers to solve the global energy &a... The concept of process intensification(PI) has absorbed diverse definitions and stays true to the mission—'do more with less', which is an approach purposed by chemical engineers to solve the global energy & environment problems. To date, the focus of PI has been on processes mainly involving vapor/liquid systems. Based on the fundamental principles of vapor–liquid mass transfer process like distillation and absorption, there are three strategies to intensify interphase mass transfer: enhancing the overall driving force, improving the mass transfer coefficient and enlarging the vapor–liquid interfacial area. More specifically, this article herein provides an overview of various technologies to strengthen the vapor–liquid mass transfer, including application of external fields, addition of third substances, micro-chemical technology and usage of solid foam, with the objective to contribute to the future developments and potential applications of PI in scientific research and industrial sectors. 展开更多
关键词 MASS TRANSFER Transport process TWO-PHASE flow process INTENSIFICATION Microwave field foam
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Effect of vacuum on solidification process and microstructure of LFC magnesium alloy
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作者 刘子利 刘希琴 +3 位作者 徐江 郭华明 潘青林 周海涛 《中国有色金属学会会刊:英文版》 CSCD 2006年第A03期1685-1689,共5页
Lost foam casting (LFC) is regarded as a cost-effective, environment-friendly vital option to the conventional casting process for production of near-net shape castings with high quality. Effect of vacuum on the solid... Lost foam casting (LFC) is regarded as a cost-effective, environment-friendly vital option to the conventional casting process for production of near-net shape castings with high quality. Effect of vacuum on the solidification process and microstructure of LFC magnesium alloy were explored. The results indicate that vacuum plays a very important role in the heat transfer during mould filling and solidification periods, it increases the cooling rate of the filling melt, but greatly decreases the cooling rate of the casting during solidification period, and the solidification time of the casting is greater than that without vacuum. The microstructure of LFC magnesium alloy is rather coarse. Compared with that without vacuum, the microstructure of the LFC magnesium alloy under vacuum is more refined and has less precipitatedβ-phase, which is formed at the grain boundry and around the Al-Mn compound particle. 展开更多
关键词 凝固作用 真空技术 微观结构 镁合金 金属铸造
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Experimental observations of the characteristics of hot electron and nonlinear processesproduced in special material
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作者 QI Lanying JIANG Xiaohua +5 位作者 ZHENG Jian WANG Yichao LI Sanwei LI Chaoguang ZHANG Wenhai ZHENG Zhijian(Laboratory fo T Lacer Fusion, Institute of Nuclear Physics and Chemistry, CAEP,Chengdu 610003) 《Nuclear Science and Techniques》 SCIE CAS CSCD 1999年第2期69-73,共5页
Making use of disk targets composed of several peculiar materials (foamAn, foam C8H8) and hohlraum with a special structure, experiments have been doneat "Xing Guang - II" laser facility, which study the cha... Making use of disk targets composed of several peculiar materials (foamAn, foam C8H8) and hohlraum with a special structure, experiments have been doneat "Xing Guang - II" laser facility, which study the characteristics of hot electronsand the related nonlinear processes such as Stimulated airman Scattering (SRS), TwoPlasma Decay (TPD), Stimulated Brillouin Scattering (SBS), etc. 展开更多
关键词 热电子 非线性过程 特殊物质 实验观测
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云南省某石英砂岩矿提纯及尾矿综合利用研究 被引量:1
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作者 邵伟华 刘广学 +4 位作者 刘磊 王守敬 曹飞 张潇 彭团儿 《中国矿业》 北大核心 2025年第7期106-114,共9页
为了充分利用云南省某石英砂岩矿,在工艺矿物学研究的基础上,进行了选矿提纯实验研究,并基于提纯后石英尾矿的特性,进行了发泡陶瓷的制备条件研究。通过原矿工艺矿物学研究,结果表明,矿石中的石英主要呈中细粒砂状结构,粒度主要分布在0.... 为了充分利用云南省某石英砂岩矿,在工艺矿物学研究的基础上,进行了选矿提纯实验研究,并基于提纯后石英尾矿的特性,进行了发泡陶瓷的制备条件研究。通过原矿工艺矿物学研究,结果表明,矿石中的石英主要呈中细粒砂状结构,粒度主要分布在0.1~0.4 mm之间,多数杂质矿物如高岭石、云母和长石等以胶结物形式存在于石英颗粒的边缘和裂隙,锆石和金红石则以碎屑形式存在;部分石英颗粒表面较为纯净,部分石英颗粒表面覆盖有大量尘点、黏土和杂质矿物,还有少量石英颗粒包裹着细粒的金红石和黏土等矿物,去除难度大,影响最终石英产品品质。基于矿石性质,选矿研究进行了各种工艺对比实验,结果表明,在原矿含SiO_(2)98.28%,Fe2O_(3)0.069%、TiO_(2)0.051%,采用“破磨筛分-重选除锆钛-磁选除铁杂-反浮选分离长石云母”的工艺,获得了产率为67.13%,SiO_(2)含量99.87%,Fe2O_(3)含量54μg/g,Al_(2)O_(3)含量0.015%,TiO_(2)含量17μg/g,Cr2O_(3)含量0.6μg/g的石英砂精矿,达到《光伏玻璃用硅质原料》二级品的要求。对石英提纯后的尾矿,进行了原料比例、添加剂用量和烧制温度对发泡陶瓷强度、吸水率和表观密度的影响试验,结果表明,提纯后的石英尾矿与矿山附近某长石尾矿按质量比4∶6的比例,添加碳酸钠用量7%,造孔剂SiC用量1%,在马弗炉温度500℃中保温10 min后按照5℃/min的速率升温至1200℃,烧制15 min,获得强度为12.46 MPa、吸水率为3.22%、表观密度为1.63 g/cm3、导热系数为0.062 W/(m·K)的发泡陶瓷,可用于建材领域。通过该工艺实现石英砂岩的高效回收,为同类型石英资源的综合利用提供了工艺参考。 展开更多
关键词 石英砂岩 工艺矿物学 提纯 光伏玻璃 发泡陶瓷
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3M^(TM) Acrylic Foam Tape 5363在轨道车辆按钮开关上的脱胶分析及工艺优化
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作者 吴吉展 《粘接》 CAS 2023年第6期27-29,共3页
随着中国轨道交通的发展,越来越多的轨交产品走出国门、走向世界,其中以地铁门系统最具特点。按钮开关作为门系统上的关键电子产品之一,有控制开、关门的作用,在国外被广泛采用到门系统上。其中设有盲文的按钮开关,因充分考虑特殊人群出... 随着中国轨道交通的发展,越来越多的轨交产品走出国门、走向世界,其中以地铁门系统最具特点。按钮开关作为门系统上的关键电子产品之一,有控制开、关门的作用,在国外被广泛采用到门系统上。其中设有盲文的按钮开关,因充分考虑特殊人群出行,深受国外客户的青睐。按钮开关盲文盖板粘接的可靠性就显得至关重要,要考虑列车不同的运行环境及各种外界因素,否则就会因为粘接不好,导致盲文盖板翘边或者脱落,引起客户的投诉和不满。企业不得不进行国外整改返修,耗费巨大的人力物力成本,也为公司带来巨大的质量损失。针对盲文盖板出现的粘接问题,对工艺路线进行总结优化,从源头上解决问题。 展开更多
关键词 按钮开关 开关环形盖板 3M^(TM)Acrylic foam Tape 5363 粘接 工艺路线优化
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高熔体强度聚丙烯的挤出发泡工艺及其性能研究
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作者 刘仿军 陈维 潘隆泉 《当代化工研究》 2025年第9期154-156,共3页
文章研究了机筒温度、口模温度及螺杆转速等工艺参数对高熔体强度聚丙烯(High Melt Strength Polypropylene,HMSPP)挤出发泡性能的影响。实验结果表明:机筒温度185℃、口模温度175℃及螺杆转速60~80r/min时为最佳工艺条件,此时HMSPP的... 文章研究了机筒温度、口模温度及螺杆转速等工艺参数对高熔体强度聚丙烯(High Melt Strength Polypropylene,HMSPP)挤出发泡性能的影响。实验结果表明:机筒温度185℃、口模温度175℃及螺杆转速60~80r/min时为最佳工艺条件,此时HMSPP的发泡密度低至0.50~0.60g/cm^(3),泡孔分布均匀且表面光洁度优异。 展开更多
关键词 高熔体强度聚丙烯 发泡工艺 挤出发泡
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