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米诺环素软膏联合AH-PLUS糊剂根管填充对逆行性牙髓炎患者的临床疗效
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作者 沈宏 王静 王九德 《吉林医学》 2025年第9期2218-2221,共4页
目的:探讨米诺环素软膏与AH-PLUS糊剂联合应用于逆行性牙髓炎患者的临床疗效。方法:选取常熟市第一人民医院口腔科2021年6月~2022年12月收治的逆行性牙髓炎患者80例为研究对象,随机分为对照组与观察组各40例。对照组在基础牙周洁治后采... 目的:探讨米诺环素软膏与AH-PLUS糊剂联合应用于逆行性牙髓炎患者的临床疗效。方法:选取常熟市第一人民医院口腔科2021年6月~2022年12月收治的逆行性牙髓炎患者80例为研究对象,随机分为对照组与观察组各40例。对照组在基础牙周洁治后采用AH-PLUS糊剂根管填充治疗,观察组在对照组的基础上联合应用米诺环素软膏治疗。比较两组临床疗效,炎性因子水平、牙齿叩痛评分及牙齿松动度评分。结果:治疗后,观察组临床疗效高于对照组,差异有统计学意义(P<0.05),观察组超敏C反应蛋白(hs-CRP)、白细胞介素-6(IL-6)、肿瘤坏死因子-α(TNF-α)水平低于对照组,差异有统计学意义(P<0.05);治疗后,观察组疼痛视觉模拟评分(VAS)、牙齿松动度评分低于对照组,差异有统计学意义(P<0.05)。结论:在逆行性牙髓炎患者的治疗中应用米诺环素软膏联合AH-PLUS糊剂根管填充具备较好的临床效果,可有效降低患者疼痛情况及炎性因子水平,稳固牙齿。 展开更多
关键词 米诺环素软膏 ah-plus糊剂根管填充 逆行性牙髓炎 临床疗效
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生物陶瓷充填材料和AH-plus糊剂对成人慢性根尖周炎根管治疗疗效及血清骨保护素RANKL的影响 被引量:4
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作者 陈珍珍 刘刚 朱坤鹍 《河北医学》 2025年第1期91-96,共6页
目的:探究生物陶瓷充填材料(iRoot SP)和AH-plus糊剂对成人慢性根尖周炎(CAP)根管治疗疗效及血清骨保护素(OPG)、核因子-κB受体活化因子配体(RANKL)的影响。方法:选取2021年1月至2023年12月期间在本院行根管治疗的135例成人CAP患者作... 目的:探究生物陶瓷充填材料(iRoot SP)和AH-plus糊剂对成人慢性根尖周炎(CAP)根管治疗疗效及血清骨保护素(OPG)、核因子-κB受体活化因子配体(RANKL)的影响。方法:选取2021年1月至2023年12月期间在本院行根管治疗的135例成人CAP患者作为研究对象,采用电脑随机数字摇号法将其分为iRoot SP组(iRoot SP行单尖充填,n=68)和AH-plus组(AH-plus热压胶充填,n=67)。比较iRoot SP组和AH-plus组治疗即刻填充情况,治疗7d(T1)疼痛分级,T1、3个月(T2)、6个月(T3)疗效,治疗前(T0)、T1、T2、T3旧根尖周指数(old-periapical index,O-PAI)、血清OPG、RANKL及RANKL/OPG。结果:iRoot SP组适充率为98.53%,高于AH-plus组的89.55%,差异有统计学意义(P<0.05);iRoot SP组疼痛率下降幅度大于AH-plus组疼痛率下降幅度,差异有统计学意义(P<0.05);iRoot SP组T1、T2、T3时间点有效率分别为98.53%、95.59%、91.18%,均高于AH-plus组的89.55%、85.07%、79.10%,差异均有统计学意义(P<0.05);O-PAI、OPG、RANKL、RANKL/OPG组间效应、时间效应、交互效应均有差异统计学意义(P<0.05),且iRoot SP组O-PAI下降幅度、血清OPG上升幅度、RANKL与RANKL/OPG下降幅度均大于AH-plus组,差异均有统计学意义(P<0.05)。结论:相较于AH-plus糊剂作为填充物行根管治疗,iRoot SP作为填充物行根管治疗成人CAP效果更佳,可显著下调患者疼痛分级、RANKL表达及RANKL/OPG值,提高适充率和血清OPG表达,优化牙周病损。 展开更多
关键词 生物陶瓷充填材料 ah-plus糊剂 慢性根尖周炎 骨保护素 核因子-ΚB受体活化因子配体
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i-Root SP和AH-PLUS糊剂对微创根管治疗患者的影响比较
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作者 孙瑗征 李夏宁 王智 《黑龙江医学》 2025年第13期1546-1548,共3页
目的:探究i-Root SP和AH-PLUS糊剂对微创根管治疗患者的影响。方法:选取2021年1月—2023年11月河南赛思口腔医院收治的行微创根管治疗的71例患者作为研究对象,按随机数表法分为对照组(35例)和研究组(36例)。对照组患者行AH-PLUS糊剂治疗... 目的:探究i-Root SP和AH-PLUS糊剂对微创根管治疗患者的影响。方法:选取2021年1月—2023年11月河南赛思口腔医院收治的行微创根管治疗的71例患者作为研究对象,按随机数表法分为对照组(35例)和研究组(36例)。对照组患者行AH-PLUS糊剂治疗,研究组患者实施i-Root SP治疗,比较两组患者临床疗效、填充情况、疼痛程度、炎性因子。结果:研究组患者临床疗效和充填状态评估与对照组比较,差异均无统计学意义(χ^(2)=0.486、0.111、0.001、0.001,P>0.05)。术后24 h,研究组疼痛程度低于对照组;术后7 d,两组患者疼痛程度比较,差异均无统计学意义(t=2.437、0.164,P>0.05)。研究组患者炎性因子低于对照组,差异均有统计学意义(t=7.954、3.631,P<0.001)。结论:通过对患者实施微创根管治疗应用新型生物材料i-Root SP效果良好,可减少炎症及术后疼痛。 展开更多
关键词 新型生物材料 i-Root SP ah-plus糊剂 微创根管
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iRoot SP与AH-Plus应用于单尖法充填椭圆形根管的根尖封闭效果分析
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作者 杨俊生 王承宇 《中文科技期刊数据库(文摘版)医药卫生》 2025年第3期025-028,共4页
探讨iRoot SP与AH-Plus应用于单尖法充填椭圆形根管的根尖封闭效果。方法 选取2022年6月至2023年12月期间本院收治的64例牙髓根尖周病患者,经随机数字抽样法分为 iRoot SP组和 AH-Plus组,各32例。iRoot SP组iRoot SP单尖法根管充... 探讨iRoot SP与AH-Plus应用于单尖法充填椭圆形根管的根尖封闭效果。方法 选取2022年6月至2023年12月期间本院收治的64例牙髓根尖周病患者,经随机数字抽样法分为 iRoot SP组和 AH-Plus组,各32例。iRoot SP组iRoot SP单尖法根管充填治疗,AH-Plus组AH-Plus热牙胶垂直加压充填治疗,对比两组根尖填充效果、牙周指标、咀嚼功能、不良反应及咬合力差异。结果 iRoot SP组患者治疗后根管填充恰填率(90.63%)显著高于冷压组(71.88%)(p<0.05)。iRoot SP组治疗后牙周探诊深度(2.51±0.37mm)、牙周附着丧失(1.52±0.18mm)、探诊出血指数(13.22±1.87分)、牙龈指数(0.85±0.11分)、龈沟出血指数(1.52±0.22分)均显著低于 AH-Plus组(3.56±0.29min、1.84±0.56min、16.34±1.97分、1.23±0.14分、1.76±0.18分)(P<0.05)。iRoot SP组治疗后咀嚼效能[(91.86±4.36)%]和咬合力(138.69±9.62Ibs)均显著高于 AH-Plus组[(77.63±7.11)%、125.27±7.22Ibs](P<0.05)。结论 iRoot SP单尖法根管充填治疗的效果相对较好,具有充填效果好、牙周健康水平高、不良反应少等优势,且有助于改善患者咀嚼效能和咬合力,应用于单尖法充填椭圆形根管的效果更为理想,应用价值较高。 展开更多
关键词 单尖法充填根管 iRoot?SP ah-plus 咀嚼效能 咬合力 根尖封闭
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iRoot SP糊剂与AH-plus糊剂根管充填治疗牙隐裂合并牙髓炎患者的效果比较 被引量:1
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作者 崔婕 徐风霞 《中国民康医学》 2024年第23期146-148,共3页
目的:比较iRoot SP糊剂与AH-PLUS糊剂根管充填治疗牙隐裂合并牙髓炎患者的效果。方法:回顾性分析2021年9月至2024年1月该院收治的150例牙隐裂合并牙髓炎患者的临床资料,按照所用糊剂不同将其分为观察组和对照组各75例。两组均进行根管... 目的:比较iRoot SP糊剂与AH-PLUS糊剂根管充填治疗牙隐裂合并牙髓炎患者的效果。方法:回顾性分析2021年9月至2024年1月该院收治的150例牙隐裂合并牙髓炎患者的临床资料,按照所用糊剂不同将其分为观察组和对照组各75例。两组均进行根管充填治疗,对照组采用AH-plus糊剂,观察组采用iRoot SP糊剂。比较两组临床疗效,单位根管充填时间,治疗前后疼痛[视觉模拟评分法(VAS)]评分、咀嚼相关指标(咬合力、咀嚼效率)水平,以及并发症发生率。结果:两组治疗总有效率比较,差异无统计学意义(P>0.05);观察组单位根管充填时间短于对照组,差异有统计学意义(P<0.05);治疗后1、7 d,两组VAS评分均低于治疗前,且观察组低于对照组,差异有统计学意义(P<0.05);治疗后,两组咬合力、咀嚼效率均高于治疗前,且观察组高于对照组,差异有统计学意义(P<0.05);两组并发症发生率比较,差异无统计学意义(P>0.05)。结论:iRoot SP糊剂根管充填治疗牙隐裂合并牙髓炎患者可缩短单位根管充填时间,降低疼痛评分,改善咀嚼相关指标水平,效果优于AH-plus糊剂根管充填。 展开更多
关键词 牙隐裂 牙髓炎 根管充填 iRoot SP糊剂 ah-plus糊剂 咀嚼 疼痛
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iRoot SP单尖充填与AH-Plus联合热牙胶充填效果比较 被引量:1
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作者 卢亚东 姜委杰 陈峰 《世界复合医学(中英文)》 2024年第9期25-28,共4页
目的分析根管充填中应用iRoot SP单尖充填技术与AH-Plus联合热牙胶充填方案的效果。方法选取2022年9月—2023年8月于上海市黄浦区牙病防治所就诊的90例根管治疗患者为研究对象,按照填充材料的不同将患者分为对照组与观察组,各45例。对... 目的分析根管充填中应用iRoot SP单尖充填技术与AH-Plus联合热牙胶充填方案的效果。方法选取2022年9月—2023年8月于上海市黄浦区牙病防治所就诊的90例根管治疗患者为研究对象,按照填充材料的不同将患者分为对照组与观察组,各45例。对照组采用AH-Plus联合热牙胶充填方案,观察组采用iRoot SP单尖充填方案,无症状后两组均采用全瓷冠修复。比较两组填充质量、牙周情况、咀嚼功能恢复程度、修复体效果及满意率。结果观察组填充质量高于对照组,差异有统计学意义(P<0.05)。观察组菌斑指数、龈沟出血指数低于对照组,咀嚼功能恢复程度高于对照组,差异有统计学意义(P均<0.05)。两组修复体效果比较,差异无统计学意义(P均>0.05)。观察组患者满意率为97.78%(44/45),高于对照组的82.22%(37/45),差异有统计学意义(χ^(2)=4.444,P<0.05)。结论iRoot SP单尖充填能提高填充质量,且可在提高牙周与咀嚼功能的同时进一步提高患者满意度。 展开更多
关键词 根管充填 iRoot SP ah-plus 单尖充填 热牙胶充填
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水刀(Versajet^(TM))与传统小切口修剪治疗腋臭的有效性与安全性Meta分析 被引量:1
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作者 王怡贵 李茂玉 +1 位作者 吴丹 郭丽娟 《中国美容医学》 2025年第1期73-78,共6页
目的:对采用水刀与传统小切口修剪术两种术式治疗腋臭的疗效进行系统评价。方法:应用计算机检索知网、万方、维普、CBM、PubMed、Embase、Web Of Science等数据库,收集国内外有关水刀及传统小切口皮下修剪治疗腋臭的随机对照试验研究、... 目的:对采用水刀与传统小切口修剪术两种术式治疗腋臭的疗效进行系统评价。方法:应用计算机检索知网、万方、维普、CBM、PubMed、Embase、Web Of Science等数据库,收集国内外有关水刀及传统小切口皮下修剪治疗腋臭的随机对照试验研究、临床对照研究。对纳入的文献进行质量评价并进行资料提取后,采用RevMan 5.4软件进行Meta分析。结果:最终共纳入7篇文献,其中中文5篇,英文2篇,共纳入662例患者,1324侧腋窝,其中水刀组340例(680侧腋窝),传统手术组322例(644侧腋窝)。Meta分析结果显示,水刀相对于传统手术治疗腋臭在术后早期并发症发生率(RR=0.28)、术后瘢痕发生率(RR=0.26)、术后满意度(非常满意,RR=1.43)上更有优势(P<0.05);水刀相对于传统手术治疗腋臭在治愈率(OR=1.36)上差异无统计学意义(P>0.05)。结论:水刀与传统手术治疗腋臭比较,在术后早期并发症发生率、术后瘢痕发生率、术后满意度(非常满意)上更有优势;在治愈率上两者差异无统计学意义。由于纳入的文献缺少RCT研究,且样本量偏少,需进一步开展更高质量的RCT加以验证。 展开更多
关键词 腋臭 臭汗症 水刀 小切口 皮下修剪术 META分析
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Fluid evolution and fragmentation characteristics under high pressure water jet impact on thermal rock 被引量:1
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作者 Jianming Shangguan Zhaolong Ge +2 位作者 Qinglin Deng Yuhuai Cui Zhi Yao 《International Journal of Mining Science and Technology》 2025年第3期483-497,共15页
In the application of high-pressure water jet assisted breaking of deep underground rock engineering,the influence mechanism of rock temperature on the rock fragmentation process under jet action is still unclear.Ther... In the application of high-pressure water jet assisted breaking of deep underground rock engineering,the influence mechanism of rock temperature on the rock fragmentation process under jet action is still unclear.Therefore,the fluid evolution characteristics and rock fracture behavior during jet impingement were studied.The results indicate that the breaking process of high-temperature rock by jet impact can be divided into four stages:initial fluid-solid contact stage,intense thermal exchange stage,perforation and fracturing stage,and crack propagation and penetration stage.With the increase of rock temperature,the jet reflection angles and the time required for complete cooling of the impact surface significantly decrease,while the number of cracks and crack propagation rate significantly increase,and the rock breaking critical time is shortened by up to 34.5%.Based on numerical simulation results,it was found that the center temperature of granite at 400℃ rapidly decreased from 390 to 260℃ within 0.7 s under jet impact.In addition,a critical temperature and critical heat flux prediction model considering the staged breaking of hot rocks was established.These findings provide valuable insights to guide the water jet technology assisted deep ground hot rock excavation project. 展开更多
关键词 Fluid evolution Fragmentation characteristics Fracture process Water jet Thermal rock
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Study on the formation characteristics of underwater hemispherical shaped charge jet and its penetration performance into concrete 被引量:1
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作者 Chao Cao Jinxiang Wang +5 位作者 Lingquan Kong Kui Tang Yujie Xiao Yangchen Gu Ming Yang Jian Wang 《Defence Technology(防务技术)》 2025年第5期180-196,共17页
Shaped charge has been widely used for penetrating concrete.However,due to the obvious difference between the propagation of shock waves and explosion products in water and air,the theory governing the formation of sh... Shaped charge has been widely used for penetrating concrete.However,due to the obvious difference between the propagation of shock waves and explosion products in water and air,the theory governing the formation of shaped charge jets in water as well as the underwater penetration effect of concrete need to be studied.In this paper,we introduced a modified forming theory of an underwater hemispherical shaped charge,and investigated the behavior of jet formation and concrete penetration in both air and water experimentally and numerically.The results show that the modified jet forming theory predicts the jet velocity of the hemispherical liner with an error of less than 10%.The underwater jets exhibit at least 3%faster and 11%longer than those in air.Concrete shows different failure modes after penetration in air and water.The depth of penetration deepens at least 18.75%after underwater penetration,accompanied by deeper crater with 65%smaller radius.Moreover,cracks throughout the entire target are formed,whereas cracks exist only near the penetration hole in air.This comprehensive study provides guidance for optimizing the structure of shaped charge and improves the understanding of the permeability effect of concrete in water. 展开更多
关键词 Shaped charge jet Underwater penetration Formation characteristic Concrete failure
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Boundary fluid constraints during electrochemical jet machining of large size emerging titanium alloy aerospace parts in gas–liquid flows:Experimental and numerical simulation 被引量:1
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作者 Yang LIU Ningsong QU +1 位作者 Hansong LI Zhaoyang ZHANG 《Chinese Journal of Aeronautics》 2025年第1期115-130,共16页
Large size titanium alloy parts are widely used in aerospace.However,they are difficult to manufacture using mechanical cutting technology because of severe tool wear.Electrochemical jet machining is a promising techn... Large size titanium alloy parts are widely used in aerospace.However,they are difficult to manufacture using mechanical cutting technology because of severe tool wear.Electrochemical jet machining is a promising technology to achieve high efficiency,because it has high machining flexibility and no machining tool wear.However,reports on the macro electrochemical jet machining of large size titanium alloy parts are very scarce,because it is difficult to achieve effective constraint of the flow field in macro electrochemical jet machining.In addition,titanium alloy is very sensitive to fluctuation of the flow field,and a turbulent flow field would lead to serious stray corrosion.This paper reports a series of investigations of the electrochemical jet machining of titanium alloy parts.Based on the flow analysis and experiments,the machining flow field was effectively constrained.TB6 titanium alloy part with a perimeter of one meter was machined.The machined surface was smooth with no obvious machining defects.The machining process was particularly stable with no obvious spark discharge.The research provides a reference for the application of electrochemical jet machining technology to achieve large allowance material removal in the machining of large titanium alloy parts. 展开更多
关键词 Electrochemical jet machining Titanium alloys Large size parts Flow simulation Turbulent flow
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Experimental and numerical investigation of cavity characteristics in behind-armor liquid-filled containers under shaped charge jet impact 被引量:1
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作者 Shixin Ma Xiangdong Li Lanwei Zhou 《Defence Technology(防务技术)》 2025年第5期242-259,共18页
The cavity characteristics in liquid-filled containers caused by high-velocity impacts represent an important area of research in hydrodynamic ram phenomena.The dynamic expansion of the cavity induces liquid pressure ... The cavity characteristics in liquid-filled containers caused by high-velocity impacts represent an important area of research in hydrodynamic ram phenomena.The dynamic expansion of the cavity induces liquid pressure variations,potentially causing catastrophic damage to the container.Current studies mainly focus on non-deforming projectiles,such as fragments,with limited exploration of shaped charge jets.In this paper,a uniquely experimental system was designed to record cavity profiles in behind-armor liquid-filled containers subjected to shaped charge jet impacts.The impact process was then numerically reproduced using the explicit simulation program ANSYS LS-DYNA with the Structured Arbitrary Lagrangian-Eulerian(S-ALE)solver.The formation mechanism,along with the dimensional and shape evolution of the cavity was investigated.Additionally,the influence of the impact kinetic energy of the jet on the cavity characteristics was analyzed.The findings reveal that the cavity profile exhibits a conical shape,primarily driven by direct jet impact and inertial effects.The expansion rates of both cavity length and maximum radius increase with jet impact kinetic energy.When the impact kinetic energy is reduced to 28.2 kJ or below,the length-to-diameter ratio of the cavity ultimately stabilizes at approximately 7. 展开更多
关键词 Cavity characteristics Shaped charge jet Behind-armor liquid-filled container Impact kinetic energy Hydrodynamic ram
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Micro-characteristics of granite impinged by abrasive water jet from a mineralogical perspective 被引量:1
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作者 Zhongtan Li Zhaolong Ge +4 位作者 Qinglin Deng Zhe Zhou Lei Liu Jianming Shangguan Chuanfu Shao 《Journal of Rock Mechanics and Geotechnical Engineering》 2025年第2期1008-1017,共10页
An abrasive water jet(AWJ)is commonly used to develop deep geothermal resources,such as drilling in hot dry rock(HDR).The influence of rock mineral properties,such as mineral types,mineral contents,and grain size,on t... An abrasive water jet(AWJ)is commonly used to develop deep geothermal resources,such as drilling in hot dry rock(HDR).The influence of rock mineral properties,such as mineral types,mineral contents,and grain size,on the formation of perforation by AWJ is unclear yet.In this study,we investigate AWJ impacts on three types of granite samples with different mineral fractions using a polarizing microscope and scanning electron microscope(SEM).The results show that when the grain size is doubled,the perforation depth increases by 16.22%under the same type of structure and properties.In general,fractures are more likely to be created at the position of rough surfaces caused by abrasive impact,and the form of fractures is determined by the mineral type.In addition,microstructure analysis shows that transgranular fractures typically pass through large feldspar particles and quartz removal occurs along mineral boundaries.The longitudinal extension of perforation depends mainly on the strong kinetic energy of the jet,while the lateral extension is controlled by the backflow.The results contribute to a better understanding of the process involved in the breaking of hard rock by abrasive jets during deep geothermal drilling. 展开更多
关键词 Abrasive water jet(AWJ) DRILLING Hot dry rock(HDR) PERFORATION Fracture generation Removal mechanism
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HL-LHC运行下N-subjettiness喷注子结构算法的应用
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作者 杨硕 王宝霞 +1 位作者 周笑然 赵子墨 《辽宁师范大学学报(自然科学版)》 2025年第3期381-385,共5页
在粒子笺理领域,喷注子结构技术可以有效识别大增速强子衰变的大质量粒子,如W玻色子和顶夸克.本文介绍了喷注子结构标记算法N-subjettiness并将其应用在高亮度大型强子对撞机(HL-LHC)上pp→W'→WZ,pp→Z'→tt过程的唯象研究中.... 在粒子笺理领域,喷注子结构技术可以有效识别大增速强子衰变的大质量粒子,如W玻色子和顶夸克.本文介绍了喷注子结构标记算法N-subjettiness并将其应用在高亮度大型强子对撞机(HL-LHC)上pp→W'→WZ,pp→Z'→tt过程的唯象研究中.模拟结果表明在以上过程中,使用N-subjettiness标记算法能有效降低QCD背景噪声的干扰,有助于提取超出标准模型的新物理信号. 展开更多
关键词 N-subjettiness 喷注子结构算法 喷注
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Comparison of aerodynamic characteristics of wing dynamic stall under three typical jets control
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作者 Jianyu GONG Wenqiang PENG +4 位作者 Zhenbing LUO Xiong DENG Yan ZHOU Jianyuan ZHANG Zhijie ZHAO 《Chinese Journal of Aeronautics》 2025年第6期287-303,共17页
Aiming at the dynamic stall problem that restricts the improvement of aircraft maneuverability,a new dynamic stall control method based on leading-edge Dual Synthetic Jets(DSJ)is proposed in this paper.The aerodynamic... Aiming at the dynamic stall problem that restricts the improvement of aircraft maneuverability,a new dynamic stall control method based on leading-edge Dual Synthetic Jets(DSJ)is proposed in this paper.The aerodynamic control characteristics and flow field evolution process of steady jet,Synthetic Jet(SJ)and DSJ in dynamic stall flow field are analyzed in detail,and the corresponding control mechanism is revealed.The strong"wall attachment effect"and quasisteady"characteristics of DSJ are found.The results show that the leading-edge jet technology can improve the dynamic stall flow field environment.For the whole pitching process,the average lift coefficients of steady jet,SJ and DSJ increased by 3.65%,10.51%and 14.62%respectively,and the average drag coefficients decreased by 9.58%,29.9%and 32.0%respectively.In the downward phase,the average lift coefficient increased by 16.31%,26.72%and 35.88%respectively,and the average drag coefficient decreased by 26.21%,50.46%and 54.28%respectively.Due to its strong"wall attachment effect"and"quasi-steady"characteristics,DSJ exhibits optimal control effect,showing its application potential in dynamic stall control. 展开更多
关键词 Steady jet Synthetic jet Dual synthetic jets Dynamic stall Unsteadyvortex-lift Flowcontrol
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Interstitial-oxygen-inducedγ-phase precipitation and martensitic transformation behavior in Ni-Mn-Sn-Co alloy prepared through binder jetting and sintering 被引量:1
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作者 Shijiang Zhong Mingfang Qian +5 位作者 Xinxin Shen Shuhe Gong Liangbo Sun Ping Shen Xuexi Zhang Lin Geng 《Journal of Materials Science & Technology》 2025年第11期272-277,共6页
1.Introduction.Ni-Mn-X(X=Ga,In,Sn,or Sb)Heusler alloys have versatile properties[1-4],such as shape memory effect[1],superelastic-ity[5],magnetocaloric effect[3],elastocaloric effect[6],and even multicaloric effect[7]... 1.Introduction.Ni-Mn-X(X=Ga,In,Sn,or Sb)Heusler alloys have versatile properties[1-4],such as shape memory effect[1],superelastic-ity[5],magnetocaloric effect[3],elastocaloric effect[6],and even multicaloric effect[7],that indicate their potential for use in actu-ators,sensors,micropumps,energy harvesters,and solid-state re-frigeration[8-10].Among the alloys,Ni-Mn-Sn-based alloys are environment-friendly and cost-effective[6,7,11],and hence,they have received widespread attention. 展开更多
关键词 phase precipitation martensitic transformation SINTERING Ni Mn Sn Co alloy shape memory effect superelastic ity magnetocaloric effect elastocaloric effect interstitial oxygen binder jetting multicaloric effect
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The well-posedness of incompressible impinging jet flow in an axisymmetric finitely long nozzle
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作者 WANG Xin ZHANG Fan 《四川大学学报(自然科学版)》 北大核心 2025年第1期31-37,共7页
This paper mainly studies the well-posedness of steady incompressible impinging jet flow problem through a 3D axisymmetric finitely long nozzle.This problem originates from the physical phenomena encountered in practi... This paper mainly studies the well-posedness of steady incompressible impinging jet flow problem through a 3D axisymmetric finitely long nozzle.This problem originates from the physical phenomena encountered in practical engineering fields,such as in short take-off and vertical landing(STOVL)aircraft.Nowadays many intricate phenomena associated with impinging jet flows remain inadequately elucidated,which limits the ability to optimize aircraft design.Given a boundary condition in the inlet,the impinging jet problem is transformed into a Bernoulli-type free boundary problem according to the stream function.Then the variational method is used to study the corresponding variational problem with one parameter,thereby the wellposedness is established.The main conclusion is as follows.For a 3D axisymmetric finitely long nozzle and an infinitely long vertical wall,given an axial velocity in the inlet of nozzle,there exists a unique smooth incom‑pressible impinging jet flow such that the free boundary initiates smoothly at the endpoint of the nozzle and extends to infinity along the vertical wall at far fields.The key point is to investigate the regularity of the corner where the nozzle and the vertical axis intersect. 展开更多
关键词 Existence and uniqueness Impinging jet flow Incompressible flow Free boundary Axisym-metric finitely long nozzle
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The flow field characteristics and rock breaking ability of cone-straight abrasive jet,rotary abrasive jet,and straight-rotating mixed abrasive jet
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作者 Jing-Bin Li Ergun Kuru +3 位作者 Wen-Bin Li Chen-Rui Guo Gen-Sheng Li Zhong-Wei Huang 《Petroleum Science》 2025年第6期2457-2464,共8页
Radial jet drilling(RJD)technology is expected to be a technology for the efficient exploitation of geothermal resources.However,the low rock-breaking efficiency is the major obstacle hindering the development of RJD ... Radial jet drilling(RJD)technology is expected to be a technology for the efficient exploitation of geothermal resources.However,the low rock-breaking efficiency is the major obstacle hindering the development of RJD technology.The flow field characteristics and rock breaking ability of cone-straight abrasive jet,rotary abrasive jet,and straight-rotating mixed abrasive jet are analyzed by numerical simulations and experiments.Results show that the axial velocity of the cone-straight abrasive jet is high,the tangential velocity is basically zero,the radial velocity is also small,and the jet impact area is concentrated in the center.A deep hole with a diameter of only 25 mm is formed when the cone-straight abrasive jet breaks the granite.Due to the presence of the guiding impeller,the rotary abrasive jet basically has no axial velocity and has the highest tangential and radial velocity,so it can break the granite to form a hole with a diameter of about 55 mm and a central bulge.The straight-rotating mixed abrasive jet has a large axial/tangential/radial velocity at the same time,so it can break the granite to form a hole with a diameter of about 52 mm with a low bulge.The results show that the straight-rotating mixed abrasive jet combines the advantages of the cone-straight jet and the rotary jet,and is more suitable for the RJD technology.The research results can provide reference for the development of efficient rock-breaking and hole-forming technology,and promote the development of RJD technology in the field of geothermal development. 展开更多
关键词 Geothermal resources Radial jet drilling Abrasive water jet Flow field simulation Rock breaking ability
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Shuifu Reeds:Professional on all kinds of air jet reeds
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《China Textile》 2025年第5期46-46,共1页
Shaoxing Shuifu Reeds is professional on producing all kinds of Air Jet Reeds and Flat Reeds,which has an annual output of 90,000 meters air-jet reeds,300,000,000 pcs of profile dents and 60,000 meters of Flat Reeds,W... Shaoxing Shuifu Reeds is professional on producing all kinds of Air Jet Reeds and Flat Reeds,which has an annual output of 90,000 meters air-jet reeds,300,000,000 pcs of profile dents and 60,000 meters of Flat Reeds,Which has been honored with China Air Jet Profile Reeds Research Center by China Textile Machinery Association in 2015.In order to reach the demands of high quality fabric and industrial textile products,the yarn is developing to high count,multicolor,various fibers,and the fabric is developing to high count,high density,environment protection.So we have researched out high density,multicolor,multinozzle,double energy saving type profile reeds to let you choose. 展开更多
关键词 industrial textile products high quality fabric profile dents high count air jet reeds air jet flat reeds flat reedswhich
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Azimuthally-distributed wavy inner wall treatment for high subsonic jet noise control
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作者 Zhenyu NIU Shang WANG +2 位作者 Xiaoquan YANG Xiaolong TANG Peifeng WENG 《Chinese Journal of Aeronautics》 2025年第3期413-434,共22页
The noise generated by subsonic jet nozzles, commonly encountered in civilian aircraft, is rather significant and propagates in both the upstream and downstream directions due to large-scale and fine-scale turbulence ... The noise generated by subsonic jet nozzles, commonly encountered in civilian aircraft, is rather significant and propagates in both the upstream and downstream directions due to large-scale and fine-scale turbulence structures. In this paper, a distinctive inner wall treatment strategy, denoted as the Azimuthally-distributed Wavy Inner Wall (AWIW), is proposed, which is aimed at mitigating jet noise. Within this strategy, a circumferentially dispersed treatment wall characterized by a minute wavy pattern is substituted for the smooth inner wall in proximity to the nozzle outlet. To assess the effectiveness of the AWIW treatment, we conducted numerical simulations. The unsteady flow field and far-field noise were predicted by employing Large Eddy Simulations (LES) coupled with the Ffowcs Williams and Hawkings (FW-H) integration method. To gain a comprehensive understanding of the mechanism underlying the noise reduction facilitated by the AWIW treatment, it examined physical parameters such as the Lighthill source acoustic source term, the turbulent kinetic energy acoustic source term, and the shear layer instability. The results reveal that the AWIW treatment expedites the instability within the shear layer of the jet, leading to an early disruption of the jet shear layer, and consequently turbulent structures in varying sizes are generated downstream. This process effectively regulates the generation and emission of jet noise. By controlling the minor scale turbulence through the AWIW treatment, the mid- and high-frequency noise within the distant field can be significantly reduced. In the context of the flow field, the introduction of AWIW also leads to a decrease in drag on the inner wall surface of the jet, thereby improving the overall aerodynamic performance of the nozzle. Considering these attributes, the AWIW strategy emerges as a viable technique for the reduction of jet noise. 展开更多
关键词 jet noise Azimuthally-dis tributed wavy inner wall jet noise control Large eddy simulation Drag reduction
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The Jet Behavior of Non-Contact Electric Field-Driven Jet Micro 3D Printing
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作者 Chenxu Guo Wenhai Li +5 位作者 Guangming Zhang Daosen Song Yin Li Zhiguo Fu Wei Zhou Hongbo Lan 《Additive Manufacturing Frontiers》 2025年第1期177-186,共10页
Electrohydrodynamic(EHD)jet printing is a promising method for high-resolution manufacturing;however,it often suffers from jet deflection owing to the accumulation of residual charges within printed structures.These r... Electrohydrodynamic(EHD)jet printing is a promising method for high-resolution manufacturing;however,it often suffers from jet deflection owing to the accumulation of residual charges within printed structures.These residual charges lead to jet deflection.This study introduces a novel noncontact electric field-driven(NEFD)jet micro 3D printing technique to address these challenges.By decoupling the high-voltage power supply from both the printing material and substrate,NEFD jet micro 3D printing eliminates the pathway for charge injection into the printing material,reducing residual charges by a factor of five or more compared to EHD jet printing.Our research revealed an inherent attractive force between the material jet and previously deposited material,regardless of the material used.Furthermore,we demonstrate that employing a pre-defined allowance printing strategy during fabrication reduces the standard deviation of actual fiber spacing values from 11.4μm to 1.5μm,thereby improving the fiber spacing consistency.This enhanced control enabled the successful fabrication of line patterns with 20±1μm fiber diameters and 61.1±1.9μm fiber spacing,demonstrating the feasibility of NEFD jet micro 3D printing.This technique offers a novel solution for mitigating the challenges associated with electric fields and charge accumulation in EHD jet printing,paving the way for enhanced resolution and material compatibility in micro-/nanoscale additive manufacturing. 展开更多
关键词 NON-CONTACT Electric field-driven jet deflection Biological scaffold
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