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Sealing properties and structure optimization of packer rubber under high pressure and high temperature 被引量:13
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作者 Wen-Jian Lan Han-Xiang Wang +1 位作者 Xin Zhang Sheng-Shan Chen 《Petroleum Science》 SCIE CAS CSCD 2019年第3期632-644,共13页
During hydraulic fracturing operations of low-permeability reservoirs,packers are the key component to ensure the success of multistage fracturing.Packers enable sections of the wellbore to be sealed off and separatel... During hydraulic fracturing operations of low-permeability reservoirs,packers are the key component to ensure the success of multistage fracturing.Packers enable sections of the wellbore to be sealed off and separately fractured by hydraulic pressure,one at a time,while the remainder of the wellbore is not affected.However,reliable sealing properties of the packer rubber are required to meet the high-pressure and high-temperature(HPHT)conditions of reservoirs(such as 70 MPa and 170 ℃).In this study,the structures of the packer rubber with two different materials are optimized numerically by ABAQUS and validated by experiments.The optimization process starts from the packer rubber with a conventional structure,and then,the weakest spots are identified by ABAQUS and improved by slightly varying its structure.This process is iterative,and the final optimized structure of a single rubber barrel with expanding back-up rings is achieved.For the structure of three rubber barrels with metallic protective covers,both HNBR and AFLAS fail under HPHT conditions.For the final optimized structure,the packer rubber made of AFLAS can work better under HPHT than that made of HNBR which ruptures after setting.The results show that the optimized structure of a single rubber barrel with expanding back-up rings and the material AFLAS are a good combination for the packer rubber playing an excellent sealing performance in multistage fracturing in horizontal wells. 展开更多
关键词 PACKER RUBBER sealING PROPERTY structure optimization Hydrogenated nitrile-butadiene RUBBER (HNBR) AFLAS RUBBER
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Analysis of the sealing performance of combined sealing structure under deep-sea high pressure environment 被引量:2
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作者 JIN Yong-ping YI Pan +1 位作者 PENG You-duo WAN Bu-yan 《Marine Science Bulletin》 CAS 2019年第2期36-56,共21页
For the requirement of safe and stable operation,the combined sealing structure was used for reciprocating motion in the deep sea high-pressure environment,and the effects of different seawater depths and shaft moveme... For the requirement of safe and stable operation,the combined sealing structure was used for reciprocating motion in the deep sea high-pressure environment,and the effects of different seawater depths and shaft movement speed on the sealing performance of the combined sealing structure were studied.The change rule of the sealing performance of the combined sealing structure of reciprocating motion under different working conditions is proved.The study shows that in the combined sealing structure of reciprocating movement,the Von Mises stress and the contact stress of the O-ring varies with the direction of the shaft movement.The Von Mises stress and contact stress of the O-ring,the Von Mises stress and the contact stress on each sealing lip of the slip ring gradually increase with the increasing of seawater depths.At the same time,the Von Mises stress of the O-ring which in the process of the shaft upward movement is greater than the shaft downward movement,making the shaft upward movement more likely to cause the O-ring relaxation and fatigue.The shaft movement speed has no significant influence on the Von Mises stress and contact stress of the O-ring.The research results provide theoretical guidance and technical support for the selection and optimization of the geometrical parameters of the combined sealing structure in the deep-sea high-pressure environment. 展开更多
关键词 deep sea high-pressure environment combined sealing structure performance analysis
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Nonlinear Finite Element Analysis of the Structure of Door Seals
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作者 赵建才 朱训生 周持兴 《Journal of Donghua University(English Edition)》 EI CAS 2005年第2期62-65,共4页
In order to evaluate the influence of the seal structure on door dosing force, nonlinear finite dement methed is introduced to analyze compression deformation of a door seal for SANTANA (name of the car made by Shang... In order to evaluate the influence of the seal structure on door dosing force, nonlinear finite dement methed is introduced to analyze compression deformation of a door seal for SANTANA (name of the car made by Shanghai Volkswagen Co. Ltd). MSC. Marc software is used to analyze the large deformation of the seal and the compression test is done to prove the computational results. The results show that the compression loads of the door seal are larger than the standard value of Shanghai Volkswagen Co. Ltd and the seal structure needs to be optimized. There are consistent relationships between calculating results and experimental results and the simulation method is effective. 展开更多
关键词 Nonlinear finite element structure Door seal Compression load
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A full-section asphalt concrete waterproof sealing structure for the high-speed railway subgrade
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作者 Qinghong Fu 《Railway Sciences》 2022年第2期193-209,共17页
Purpose–This study aims to investigate the service performances of a new full-section asphalt concrete waterproof sealing structure(FSACWSS)for the high-speed railway subgrade through on-site tracking,monitoring and ... Purpose–This study aims to investigate the service performances of a new full-section asphalt concrete waterproof sealing structure(FSACWSS)for the high-speed railway subgrade through on-site tracking,monitoring and post-construction investigation.Design/methodology/approach–Based on the working state of the waterproof sealing structure,the main functional characteristics were analyzed,and a kind of roller-compacted high elastic modulus asphalt concrete(HEMAC)was designed and evaluated by several groups of laboratory tests.It is applied to an engineering test section,and the long-term performance monitoring and subgrade dynamic performance testing system were installed to track and monitor working performances of the test section and the adjacent contrast section with fiber-reinforced concrete.Findings–Results show that both the dynamic performance of the track structure and the subgrade in the test section meet the requirements of the specification limits.The water content in the subgrade of the test section is maintained at 8–18%,which is less affected by the weather.However,the water content in the subgrade bed of the contrast section is 10–35%,which fluctuates significantly with the weather.The heat absorption effect of asphalt concrete in the test section makes the temperature of the subgrade at the shoulder larger than that in the contrastive section.The monitoring value of the subgrade vertical deformation in the test section is slightly larger than that in the contrastive section,but all of them meet the limit requirements.The asphalt concrete in the test section is in good contact with the base,and there are no diseases such as looseness or spalling.Only a number of cracks are found at the joints of the base plates.However,there are more longitudinal and lateral cracks in the contrastive section,which seriously affects the waterproof and sealing effects.Besides,the asphalt concrete is easier to repair,featuring good maintainability.Originality/value–This research can provide a basis for popularization and application of the asphalt concrete waterproof sealing structure in high-speed railways. 展开更多
关键词 High-speed railway SUBGRADE Asphalt concrete Waterproof sealing structure Service performance
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Structure of V_2O_5-P_2O_5-Sb_2O_3-Bi_2O_3 glass 被引量:1
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作者 Hong-yan Li Zhi-liang Zhu +3 位作者 Feng-li Yang Wei-dong Zhuang Yun-sheng Hu Xiao-fan Wen 《International Journal of Minerals,Metallurgy and Materials》 SCIE EI CAS CSCD 2012年第7期628-635,共8页
The structure ofV2O5-P2O5-Sb2O3-Bi2O3glass and its state of crystallization were studied by means of infrared spectroscopy and X-ray diffraction analysis. The results indicate that, in this glass, V and P exist mainly... The structure ofV2O5-P2O5-Sb2O3-Bi2O3glass and its state of crystallization were studied by means of infrared spectroscopy and X-ray diffraction analysis. The results indicate that, in this glass, V and P exist mainly in the form of a single-stranded linear (VO3)n and an isolated (PO4) tetrahedral with no double bond. Partial V and P are connected through O, forming an amorphous structure of layered vana- dium phosphate. Trivalent Sb3+ and Bi3+ open the V=O bond and appear in interlayers, so a weak three-dimensional structure is connected successfully. Along with the substitution of Sb203 for partial V205 or that of P205 for partial V205, the network structure of the glass is rein- forced, and the crystallization is reduced. 展开更多
关键词 GLASS structure sealING vanadium pentoxide phosphorus pentoxide antimonous oxide bismuth trioxide
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Effects of Zn/P ratio on structures and properties of zinc-iron phosphate glasses
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作者 李秀英 杨华明 任宇曦 《Journal of Central South University》 SCIE EI CAS 2013年第1期44-49,共6页
Effects of Zn/P ratio on the structures and properties of glasses with the general composition of (80-x)ZnO-20Fe2O3-xP2O5 (x=40, 45, 50, 55, 60) (molar fraction, %) were investigated. Glass structure was measure... Effects of Zn/P ratio on the structures and properties of glasses with the general composition of (80-x)ZnO-20Fe2O3-xP2O5 (x=40, 45, 50, 55, 60) (molar fraction, %) were investigated. Glass structure was measured by infrared absorption spectrum. Glass density (/9) was measured by the Archimedes method. Coefficients of thermal expansion (a) and characterization temperature were obtained by a dilatometer. Water durability of each glass was estimated from the dissolution rate (DR)in water at 90 ℃ for 24 h. With increasing Zn/P ratio, water durability of zinc-iron phosphate glasses increases dramatically without large increase in the characterization temperature. (80-x)ZnO-20Fe2O3-xP2O5 glasses with 0.3≤Zn/P≤0.5 are suit for low-to-mid temperature sealing application for substrates with a〈8.0× 10^-6℃^-1. 展开更多
关键词 zinc-iron phosphate glass sealING structure water durability characterization temperature
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Seal演算的偶图语义 被引量:2
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作者 金龙飞 刘磊 《计算机学报》 EI CSCD 北大核心 2008年第3期522-528,共7页
偶图反应系统是一种新的理论工具,其基础是一种强调位置和连接的移动计算图形化模型——偶图,偶图范化了π演算和移动Ambient演算的特征,能够表示具有位置和移动性质的复杂系统.偶图反应系统为普适计算不同层次的设计和实现提供了统一... 偶图反应系统是一种新的理论工具,其基础是一种强调位置和连接的移动计算图形化模型——偶图,偶图范化了π演算和移动Ambient演算的特征,能够表示具有位置和移动性质的复杂系统.偶图反应系统为普适计算不同层次的设计和实现提供了统一的建模框架.Seal演算是一种用于描述移动计算的进程语言,具有良好的安全性质.文中给出了一种不带复制进程表达式的Seal演算的偶图表示,分析了该Seal演算与其偶图表示间的结构对应和操作对应.本研究扩展了偶图理论的应用范围,展示了偶图理论在描述安全演算方面的能力,为在偶图反应系统框架下研究Seal演算的性质和应用奠定了基础. 展开更多
关键词 seal演算 偶图 偶图反应系统 结构对应 操作对应
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Multilevel Micro Structures of the Clam Make the Sealing Even Tighter
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作者 Daobing Chen Xiaolong Zhang +6 位作者 Junqiu Zhang Zhiwu Han Ruteng Wang Zhen Lin Yifeng Lei Longjian Xue Sheng Liu 《Journal of Bionic Engineering》 SCIE EI CSCD 2024年第3期1442-1452,共11页
Excellent fluid sealing performance is crucial to ensuring the safety of important equipment,especially in aerospace field,such as space capsule and fuel chamber.The frequently opening and closing of the sealing devic... Excellent fluid sealing performance is crucial to ensuring the safety of important equipment,especially in aerospace field,such as space capsule and fuel chamber.The frequently opening and closing of the sealing devices is particularly important.Driven by this background,clams(Mactra chinensis)which can open and close their double shells with superior sealing performance,are studied in this work.Here,we show that the clam’s sealing ability is the result of its unique multilevel intermeshing microstructures,including hinge teeth and micro-blocks.These microstructures,which resemble gear teeth,engage with each other when the shell closes,forming a tight structure that prevents the infiltration of water from the outside.Furthermore,the presence of micron blocks prevents the penetration of finer liquids.The simulation results of the bionic end seal components show that the multilevel microstructure has a superior sealing effect.This research is expected to be applied to undersea vehicles that require frequent door opening and closing. 展开更多
关键词 Multilevel micro structures Opening and closing components CLAM sealING BIONIC
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Study on hydrostatic gas lubricated non-contacting mechanical seal 被引量:7
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作者 李双喜 Zhu Liang Cai Jining Zhang Qiuxiang Gao Jinji 《High Technology Letters》 EI CAS 2012年第4期433-440,共8页
The principle and characteristics of hydrostatic gas lubricated non-contacting mechanical seal (HSGLNMS) are introduced. The flow field of the gas film is established by numerical analysis of end faces of HSGLNMS. T... The principle and characteristics of hydrostatic gas lubricated non-contacting mechanical seal (HSGLNMS) are introduced. The flow field of the gas film is established by numerical analysis of end faces of HSGLNMS. The distribution of gas film pressure and seal performance parameters inclu- ding opening force and leakage are obtained. Influence of operating parameters and sealing configu- ration on the sealing performance is studied. HSGLNMS has been designed and manufactured. Its working film thickness and leakage are measured to verify the theoretical analysis. The investigation results show that HSGLNMS demonstrates good speed adaptability, which means that the seal runs successfully with both low and high speed, showing excellent performance. The seal can be regula- ted and controlled online ; the opening force will not be raised greatly with the increasing of the num- ber of throttle orifices, but the leakage of seal increases apparently ; the uniform pressure groove im- proves the sealing performance, for example, opening force and stiffness are raised obviously. While leakage is reduced. Finally, the theoretical analysis is verified by experiment. 展开更多
关键词 hydrostatic gas lubricated numerical analysis opening torce unitorm pressuregroove seal structure
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Microscopic properties and sealing performance of new gas drainage drilling sealing material 被引量:5
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作者 Zhai Cheng Yu Xu +2 位作者 Ni Guanhua Li Min Hao Zhiyong 《International Journal of Mining Science and Technology》 SCIE EI 2013年第4期474-479,共6页
The geological condition of Chinese coal mines are complex and high gassy,which account for ffty percent to seventy percent.Because of the abundant pores and cracks around the drainage drilling hole,the gas concentrat... The geological condition of Chinese coal mines are complex and high gassy,which account for ffty percent to seventy percent.Because of the abundant pores and cracks around the drainage drilling hole,the gas concentration attenuates rapidly,and the effective gas drainage period is short.The traditional sealing materials of yellow mud and cement-sand grout will readily shrink after the drilling hole is sealed,the sealing length is short and the sealing quality is not satisfactory.Currently widely used polyurethane material will shrink when it comes into contact with water,and the price is also very high.In this study,taking cement as a base material,a novel composite sealing material mixed by expansion admixture,additive,and fbrin and coupling agent was developed and the sealing performance and expansion property of the material were also studied and analyzed.The FEI Quanta TM 250 environmental scanning electron microscope was used to investigate the microstructure of material.The results revealed that the new composite sealing material had a desirable expansion performance and a defnite fluidity convenient for grouting.The solidifed material,combining closely with the drilling wall,possessed an adequate strength and was not easy to shrink.Compared to the conventional polyurethane,the gas drainage concentration by drilling sealing exceeded 40 percent,and the sealing capacity improves5 times,the sealing effect increases signifcantly. 展开更多
关键词 Drilling sealing material Microcosmic structure Gas drainage sealing performance
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Experiment on Wear Behavior of High Pressure Gas Seal Faces 被引量:1
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作者 XU Jing PENG Xudong +2 位作者 BAI Shaoxian MENG Xiangkai LI Jiyun 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2014年第6期1287-1293,共7页
Current researches show that mechanical deformation of seal ring face makes fluid film clearance decrease at high pressure side, thus a divergent clearance is formed and face wear occurs more seriously at the high pre... Current researches show that mechanical deformation of seal ring face makes fluid film clearance decrease at high pressure side, thus a divergent clearance is formed and face wear occurs more seriously at the high pressure side than that on the low pressure side. However, there is still lack of published experimental works enough to prove the theoretical results. In this paper, a spiral groove dry gas seal at high pressures is experimentally investigated so as to prove the face wear happened at the high pressure side of seal faces due to the face mechanical deformation, and the wear behavior affected by seal ring structure is also studied. The experimental results show that face wear would occur at the high pressure side of seal faces due to the deformation, thus the leakage and face temperature increase, which all satisfies the theoretical predictions. When sealed pressure is not less than 5 MPa, the pressure can provide enough opening force to separate the seal faces. The seal ring sizes have obvious influence on face wear. Face wear, leakage and face temperature of a dry gas seal with the smaller cross sectional area of seal ring are less than that of a dry gas seal with bigger one, and the difference of leakage rate between these two sizes of seal face width is in the range of 24%–25%. Compared with the effect of seal ring sizes, the effect of secondary O-ring seal position on face deformation and face wear is less. The differences between these two types of dry gas seals with different secondary O-ring seal positions are less than 5.9% when the rotational speed varies from 0 to 600 r/min. By linking face wear and sealing performance changes to the shift in mechanical deformation of seal ring, this research presents an important experimental method to study face deformation of a dry gas seal at high pressures. 展开更多
关键词 dry gas seal structureS face wear high pressure mechanical deformation
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Labyrinth Seal Design Optimization Based on Quadratic Regression Orthogonal Experiment 被引量:1
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作者 Lihua Cao Heyong Si +1 位作者 Pan Li Yong Li 《Energy and Power Engineering》 2017年第4期204-215,共12页
The influence of labyrinth seal structure parameters and their interaction on the characteristics of leakage amount are numerically investigated by conducting a quadratic regression orthogonal experiment. To determine... The influence of labyrinth seal structure parameters and their interaction on the characteristics of leakage amount are numerically investigated by conducting a quadratic regression orthogonal experiment. To determine the optimal structure parameters of the steam seal for minimizing the leakage amount, a reliable regression equation that does not lack of fit is established. The flow characteristics of the fluid in the labyrinth seal are analyzed in detail. Results show that the leakage amount is greatly influenced by seal cavity depth, convex platform height, seal tooth thickness, and tooth tip clearance, with the tip clearance having the most significant effect. The interaction among the four items exerts a certain impact on the leakage amount. The proposed regression equation exhibits a good significance and does not lack of fit. After optimization, the labyrinth seal demonstrates increased entropy and energy dissipation at the tip of the seal tooth, as well as decreased speed and inertia effect in the cavity, suggesting that the resistance leakage performance of the optimized labyrinth seal is improved. 展开更多
关键词 LABYRINTH seal structure PARAMETERS Regression ORTHOGONAL Test LEAKAGE AMOUNT Optimization
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Methods and Case Studies of Ultra-deep Fault Seal Evaluation 被引量:1
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作者 CHEN Shuping YU Yixin +7 位作者 CHEN Shi WANG Xinpeng FENG Guimin YUAN Haowei GOU Qiwei XU Shidong ZHAO Huaibo KONG Linghua 《Acta Geologica Sinica(English Edition)》 SCIE CAS CSCD 2022年第4期1402-1414,共13页
Fault seals are significant for petroleum exploration and production.This study summarizes the fault sealing impacting factors,including lithological juxtaposition,mud smearing,fault rocks and the fault plane stress s... Fault seals are significant for petroleum exploration and production.This study summarizes the fault sealing impacting factors,including lithological juxtaposition,mud smearing,fault rocks and the fault plane stress states,as well as evaluation methods like Allan maps and Shale Gouge Ratio(SGR).The seal evaluation for a wrench fault focuses on its particular structural features.The evaluation methods were applied to the Jinma-Yazihe structure and the Shunbei oilfield.The source rock is the Xujiahe Formation of the Upper Triassic,the reservoirs and caprocks being of the Shaximiao Formation of the Lower Jurassic.The fault sealing evaluations in major faults proved the reservoir formation processes in the wells Jinfo 1(JF1)and Chuanya 609(CY-609),based on the editions of the Allan map showing lithological juxtaposition,the calculation of SGR showing mud smear and analyses of fault stress states.The analyses of stress states were also applied to Shunbei 5 strike-slip fault in the Shunbei area in Tarim Basin.The various sections along the fault were of different mechanical properties,such as compression and extension.Petroleum exploration has demonstrated that the extensional sections are more favorable for oil accumulation than the compressional sections.These evolutionary methods and other understandings will help in analyses of deep fault sealing. 展开更多
关键词 ultra-deep layer fault sealing Shunbei 5 strike-slip fault Jinma-Yazihe structure
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Flow and Leakage Characteristics in Sealing Chamber of a Variable Geometry Hypersonic Inlet
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作者 XIA Feng SUN Bo +3 位作者 YU Jianyi YUE Lianjie GAO Yu DAI Chunliang 《Transactions of Nanjing University of Aeronautics and Astronautics》 EI CSCD 2022年第6期663-671,共9页
When the variable geometry hypersonic inlet is sealed with ceramic wafers,the cavity flows inside the sealing chamber can be affected by the boundary layer near the side wall.To study the influence of the boundary lay... When the variable geometry hypersonic inlet is sealed with ceramic wafers,the cavity flows inside the sealing chamber can be affected by the boundary layer near the side wall.To study the influence of the boundary layer thickness near the side wall on the flow and leakage characteristics in sealing chamber,the numerical calculation of the cavity flow in the sealing chamber under different inflow boundary layer thicknesses is carried out.The results show that three-dimensional cavity flow structures are close to being asymmetric,and the entrance pressure of the leakage path can also be affected by asymmetry;with the increase of the thickness of the boundary layer,the pressure at the cavity floor and the seal entrance decreases.Finally,the existing leakage prediction model is modified according to the distribution rule of the cavity floor and the flow properties in the leakage path. 展开更多
关键词 variable geometry inlet ceramic wafer seal vortex structure leakage rate asymmetry three-dimensional cavity flow
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基于PTFE矩形密封圈的高压容器密封结构设计 被引量:3
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作者 鲁寨军 孙永龙 钟睦 《润滑与密封》 CAS CSCD 北大核心 2024年第4期95-102,共8页
PTFE矩形密封圈具有耐化学性能好、截面稳定性高等优点,可以有效解决腐蚀性介质的密封问题。但在实际使用中,PTFE矩形密封圈及其适配沟槽的尺寸设计缺乏参考依据。针对上述问题,根据高压容器端面密封结构的形状与受力特征,在Ansys Workb... PTFE矩形密封圈具有耐化学性能好、截面稳定性高等优点,可以有效解决腐蚀性介质的密封问题。但在实际使用中,PTFE矩形密封圈及其适配沟槽的尺寸设计缺乏参考依据。针对上述问题,根据高压容器端面密封结构的形状与受力特征,在Ansys Workbench中建立PTFE矩形密封圈的二维轴对称模型,采用双线性等向强化模型表征PTFE的力学性能,对基于PTFE矩形密封圈的高压容器端面密封结构进行分析和设计,讨论压缩率、PTFE矩形密封圈几何参数和沟槽结构参数对高压容器端面密封性能的影响。结果表明,压缩率、矩形圈的高度和宽度以及矩形圈与沟槽侧壁的间隙对密封性能的影响较大,而内径对密封性能的影响较小,因而设计时应优先考虑沟槽深度、矩形圈的截面尺寸以及与沟槽的装配位置等参数。确定PTFE矩形密封圈及适配沟槽的尺寸后,采用有限元仿真手段验证了设计的密封结构在常温30 MPa高压下的密封性能,证实了设计的合理性。 展开更多
关键词 PTFE矩形密封圈 高压容器 密封结构 密封性能
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超高压压裂管汇由壬接头预紧特性分析
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作者 华剑 马忠杰 +3 位作者 袁志强 黄天成 胡家浩 王林虎 《润滑与密封》 CAS CSCD 北大核心 2024年第4期58-65,共8页
针对超高压压裂管汇由壬接头安装预紧力不当导致结构破坏或密封泄漏的问题,以某公司研制的175 MPa超高压由壬接头为研究对象,利用ABAQUS建立由壬接触模型,采用有限单元法对该接头进行应力分析与强度评定以及密封性能判定。结果表明:预... 针对超高压压裂管汇由壬接头安装预紧力不当导致结构破坏或密封泄漏的问题,以某公司研制的175 MPa超高压由壬接头为研究对象,利用ABAQUS建立由壬接触模型,采用有限单元法对该接头进行应力分析与强度评定以及密封性能判定。结果表明:预紧力大小对母由壬应力几乎没有影响,对公由壬、翼型螺母和三瓣挡圈应力有显著影响,且都呈现正相关性,影响程度从高到低依次为公由壬、翼型螺母、三瓣挡圈和母由壬;额定工况下预紧力超过250 kN时,公由壬轴肩圆角处应力超过其材料许用应力,结构静强度不满足要求可能会发生结构破坏;预紧力小于150 kN时,不足以抵抗内压作用,公由壬和母由壬球头锥面密封结构分离;在能够确保球头锥面密封性和结构安全性的150~250 kN预紧力范围内,氢化丁腈橡胶(HNBR)密封圈表面接触应力始终大于实时流体工作压力,密封圈密封性能良好。推荐安装预紧力范围为150~250 kN,在该范围内密封圈结构的静强度以及密封性均能满足要求。 展开更多
关键词 由壬接头 预紧力 结构强度 密封性能 接触应力
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铋酸盐封接玻璃的研究及其连接应用现状
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作者 牛济泰 董文伟 +1 位作者 高增 邱得超 《机械工程材料》 CAS CSCD 北大核心 2024年第1期1-9,共9页
无铅低温封接玻璃由于具有绿色安全、成本低、封接温度低等优势,被广泛应用于航空航天、电真空、集成电路等领域。在磷酸盐、钒酸盐、硼酸盐和铋酸盐等多种封接玻璃体系中,因铋与铅具有相似的性质特点,使得铋酸盐玻璃成为最有可能替代... 无铅低温封接玻璃由于具有绿色安全、成本低、封接温度低等优势,被广泛应用于航空航天、电真空、集成电路等领域。在磷酸盐、钒酸盐、硼酸盐和铋酸盐等多种封接玻璃体系中,因铋与铅具有相似的性质特点,使得铋酸盐玻璃成为最有可能替代铅酸盐玻璃的绿色玻璃钎料。综述了铋酸盐玻璃的成分和性能调控、网络结构的研究现状,介绍了目前使用铋酸盐封接玻璃进行金属、陶瓷同质/异质材料连接的研究进展,最后对未来的发展趋势进行了展望。 展开更多
关键词 铋酸盐封接玻璃 网络结构 陶瓷/金属连接
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俄罗斯液体潜射弹道导弹长期贮存材料工艺技术
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作者 王骁骞 赵峥嵘 吴小宁 《宇航材料工艺》 CAS CSCD 北大核心 2024年第4期131-136,共6页
对液体潜射弹道导弹长期加注贮存技术的发展进程、最新进展及研究现状进行概述。重点介绍俄罗斯液体潜射弹道导弹的结构设计、材料选取和制造工艺以及出厂加注封装和密封性检测方法,最后指出实现长期加注贮存的技术路径。
关键词 长期贮存 相容性 密封性 结构 材料 焊接工艺 封装 检测
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结构参数对液压旋转接头密封性能的影响
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作者 赵秀栩 聂剑涛 《润滑与密封》 CAS CSCD 北大核心 2024年第1期107-112,共6页
为探究结构参数对液压旋转接头间隙密封性能的影响规律,分别以泄漏量和压力损失作为液压旋转接头的性能指标,研究密封有效长度、密封直径、密封间隙值3种主要结构参数对旋转接头性能的影响。采用正交试验与Fluent流体仿真相结合的方法,... 为探究结构参数对液压旋转接头间隙密封性能的影响规律,分别以泄漏量和压力损失作为液压旋转接头的性能指标,研究密封有效长度、密封直径、密封间隙值3种主要结构参数对旋转接头性能的影响。采用正交试验与Fluent流体仿真相结合的方法,分析液压旋转接头间隙密封在不同结构参数下的泄漏量和压力损失情况。结果表明:3种结构参数对泄漏的影响程度由大到小依次为密封间隙值、密封有效长度、密封直径,对压力损失的影响程度由大到小依次为密封有效长度、密封直径、密封间隙值;密封间隙值大小对泄漏量影响非常显著,泄漏量随着间隙的增大呈指数增长关系,而间隙密封有效长度、环形密封直径对泄漏量无显著影响;密封有效长度对压力损失有极其显著影响,而密封直径和密封间隙值对压力损失没有显著影响;从整体上看密封间隙值、间隙密封直径、密封有效长度都大致与压力损失呈一次函数关系,且前两者与压力损失呈正相关关系,后者则与压力损失呈负相关关系。 展开更多
关键词 液压旋转接头 间隙密封 结构参数 密封性能 泄漏量
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基于热流固耦合的液膜密封动态追随性分析
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作者 宋勇 于博 +3 位作者 郝木明 王陈寅 李天照 任宝杰 《振动与冲击》 EI CSCD 北大核心 2024年第7期214-222,238,共10页
为研究热流固耦合下液膜密封动态追随特性,基于小扰动法及热动力润滑理论,考虑非补偿环轴向振动、角向偏摆,建立补偿环三自由度运动方程,对比并分析纯流场和热流固耦合模型下力学元件参数、操作工况参数、结构参数对动态追随性的影响。... 为研究热流固耦合下液膜密封动态追随特性,基于小扰动法及热动力润滑理论,考虑非补偿环轴向振动、角向偏摆,建立补偿环三自由度运动方程,对比并分析纯流场和热流固耦合模型下力学元件参数、操作工况参数、结构参数对动态追随性的影响。结果表明:在热流固耦合模型下求解的液膜密封扰动量略小于纯流场模型下求解的扰动量;增加激励振幅,弹簧刚度和O型圈阻尼均会导致扰动增大,动态追随性变差;减小转速、增加介质压力会导致动态特性系数增加,有利于提高动态追随性;减少槽数会提高动态追随性,且在槽数给定时,槽深17μm,槽坝比0.8,螺旋角22°的结构参数设定会得到更好的动态追随性。 展开更多
关键词 液膜密封 振动特性 小扰动法 热流固耦合
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