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LPG储罐焊接接头低温抗断裂性分析 被引量:1
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作者 张鹏 张彦华 +3 位作者 曲文卿 郭爱东 韩德辉 张占辉 《物理测试》 CAS 2000年第5期26-28,共3页
通过COD试验测定了两种用于LPG储罐建造的结构钢焊接接头低温抗断裂性能,研究了材料与工艺组合、试验温度等因素对焊接接头低温抗断裂性的影响,所得结果为LPG储罐的选材与焊接工艺制定、结构的抗断裂分析提供了基础数据。
关键词 LPG储罐 焊接接头 裂纹张开位移 低温抗断裂性
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含铁素体—珠光体和魏氏组织的碳素焊接结构钢的抗断裂性
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作者 唐文彬 李殿盈 《舞钢译丛》 1989年第1期18-22,共5页
关键词 碳素结构钢 焊接钢 抗断裂性
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尺寸效应法则对石墨耐火材料的抗断烈性的应用
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作者 郭清勋 《国外耐火材料》 1997年第6期28-31,共4页
微观力学用于测量石墨耐火材料的正面作用带及断裂面接触区的变形和断裂。对于表现断裂韧性Ka和抗断裂增长性K_R的尺寸效应法则不仅成功地用于评价平面应力断裂韧性K_C也可用于评价龟裂顶端正作用带及龟裂面颗粒连接区的形状和尺寸。
关键词 尺寸效应法则 石墨耐火材料 抗断裂性 耐火材料
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气氛热处理工艺对碲镉汞材料性能和力学性能的影响
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作者 吴刚 王勇 +1 位作者 刘苗 陈程 《中文科技期刊数据库(引文版)工程技术》 2023年第10期82-85,共4页
本研究旨在探讨气氛热处理工艺对碲镉汞材料性能和力学性能的影响。通过分析介绍试验所使用的材料和方法,描述了试验材料的选择和试验方法的步骤,并对气氛热处理工艺对材料性能及力学性能的影响作出了结果与分析。其中,涉及到晶界、晶... 本研究旨在探讨气氛热处理工艺对碲镉汞材料性能和力学性能的影响。通过分析介绍试验所使用的材料和方法,描述了试验材料的选择和试验方法的步骤,并对气氛热处理工艺对材料性能及力学性能的影响作出了结果与分析。其中,涉及到晶界、晶粒尺寸和相变行为的调控,以及结晶状态和析出相的形成等方面的影响。此外,通过研究了气氛热处理对材料力学性能的影响,分析出气氛热处理工艺对碲镉汞力学性能方面的拉伸强度和延伸率能够产生一定变化。以期更好地理解气氛热处理工艺对碲镉汞材料的影响,并为进一步优化材料工艺提供参考。 展开更多
关键词 气氛热处理 碲镉汞 结晶状态 拉伸强度 抗断裂性
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多孔硼化锆–碳化硅–石墨超高温陶瓷的抗热冲击性能 被引量:2
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作者 王帅 金鑫鑫 +2 位作者 董丽敏 吴可嘉 陈乐 《硅酸盐学报》 EI CAS CSCD 北大核心 2018年第6期766-771,共6页
为了改善ZrB2基超高温陶瓷的热冲击损伤抗性,采用冷等静压–无压烧结法在ZrB2–SiC–Graphite(ZSG)材料体系中引入孔隙制备ZSG多孔陶瓷,同时利用热压法制备了ZSG致密陶瓷作为对比材料,研究了2种ZSG陶瓷材料的力学性能,并探究了孔的引... 为了改善ZrB2基超高温陶瓷的热冲击损伤抗性,采用冷等静压–无压烧结法在ZrB2–SiC–Graphite(ZSG)材料体系中引入孔隙制备ZSG多孔陶瓷,同时利用热压法制备了ZSG致密陶瓷作为对比材料,研究了2种ZSG陶瓷材料的力学性能,并探究了孔的引入对ZSG复合陶瓷热冲击性能的影响。结果表明:孔的引入降低了ZSG陶瓷的抗弯强度(由230.04 MPa降为98.12 MPa)和断裂韧性(由4.69 MPa·m^1/2降为4.27 MPa·m^1/2),但孔的引入大大提升了ZSG陶瓷的临界裂纹尺寸(由132μm增长为602μm)。孔的引入明显提高了材料的残余强度保持率(由54%增长为84%),即改善了ZrB2基陶瓷的热冲击损伤抗性。与其它材料体系不同的是,孔的引入还提高了ZSG复合陶瓷的临界温差,说明孔对ZSG复合陶瓷的热冲击断裂抗性和损伤抗性具有同时增强的效果。 展开更多
关键词 硼化锆–碳化硅–石墨 力学 热冲击损伤 热冲击断裂
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日本造船用钢新进展 被引量:1
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作者 鞠建斌 《首钢科技》 2009年第2期1-5,10,共6页
面对全球经济一体化和安全环保意识的新需求,对造船用钢的抗断裂性、耐疲劳性和耐腐蚀性提出了新要求,对日本造船用钢的最新进展进行了分析。
关键词 日本 造船用钢 抗断裂性 耐疲劳 耐腐蚀
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Direct tension and fracture resistance curves of ultra high performance marine composite materials
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作者 吴香国 韩相默 《Journal of Marine Science and Application》 2008年第3期218-225,共8页
Fracture behavior is one of the most important,yet still little understood properties of ultra-high performance cementitious composites(UHPCC),a new marine structural engineering material. Research on the fracture and... Fracture behavior is one of the most important,yet still little understood properties of ultra-high performance cementitious composites(UHPCC),a new marine structural engineering material. Research on the fracture and direct tension behavior of UHPCC was carried out.The constitution law of UHPCC was divided into three phases:pre-partial debonding,partial debonding,and pullout phases.A direct tension constitution law was constructed based on the proposed fiber reinforcing parameter as a function of fiber volume fraction,fiber diameter and length,and fiber bonding strength.With the definition of linear crack shape,the energy release rate of UHPCC was derived and the R-curve equation was calculated from this.Loading tests of UHPCC using a three-point bending beam with an initial notch were carried out.The predictions from the proposed R-curve were in good agreement with the test results, indicating that the proposed R-curve accurately describes the fracture resistance of UHPCC.Introduction of a fiber reinforcement parameter bridges the fracture property R-curve and micro-composites’ mechanics parameters together.This has laid the foundation for further research into fracture properties based on micro-mechanics.The proposed tension constitution law and R-curve can be references for future UHPCC fracture evaluation. 展开更多
关键词 ultra high performance cementitious composites FRACTURE resistance curve direct tension
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Main Gas Pipelines: Fracture Resistance Assessment of Pipes 被引量:1
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作者 Aleksander Mitin 《Journal of Mechanics Engineering and Automation》 2013年第3期127-140,共14页
This paper proposes an estimation method of fracture resistance of oil & gas pipes, based on the results of full scale hydraulic pressure pipe testing with the artificial notch, made by the authors at 2002-2006. It s... This paper proposes an estimation method of fracture resistance of oil & gas pipes, based on the results of full scale hydraulic pressure pipe testing with the artificial notch, made by the authors at 2002-2006. It shows that the fracture process at the stage of stripping (initialization) of crack can be characterized by Critical Fracture Diagram (CFD). Calculating and experimental way to construct CFD is suggested and discussed. The fracture resistance requirements for oil & gas pipes in terms of fracture mechanics (Kc, Lc) are formulated and proved. The results of full scale hydraulic pressure pipe testing, based on metal testing data of the standard Charpy specimens (KCV) and pipe's specification requirements are interrelated. The way to estimate the admissible temperature operation conditions of oil & gas pipes by means of based metal "KCV-temperature" dependence is proposed. 展开更多
关键词 Critical fracture diagram (CFD) hydraulic pipe testing stress intensity factor main gas pipeline.
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Microstructure and mechanical properties of liquid phase sintered silicon carbide composites 被引量:4
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作者 Jing-mei MA Feng YE +2 位作者 Yan-ge CAO Chun-feng LIU Hai-jiao ZHANG 《Journal of Zhejiang University-Science A(Applied Physics & Engineering)》 SCIE EI CAS CSCD 2010年第10期766-770,共5页
Silicon carbide (SiC) composites were prepared by hot-press sintering from α-SiC starting powders with BaAl2Si2O8 (BAS). The effects of additives on densification, microstructure, flexural strength, and fracture beha... Silicon carbide (SiC) composites were prepared by hot-press sintering from α-SiC starting powders with BaAl2Si2O8 (BAS). The effects of additives on densification, microstructure, flexural strength, and fracture behavior of the liquid phase sintered (LPS) SiC composites were investigated. The results show that the served BAS effectively promotes the densification of SiC composites. The flexural strength and fracture toughness of the SiC composites can reach a maximum value of 454 MPa and 5.1 MPa·m1/2, respectively, for 40% (w/w) BAS/SiC composites. SiC grain pullout, crack deflection, and crack bridging were main toughening mechanisms for the sintered composites. 展开更多
关键词 Silicon carbide (SiC) BaAl2Si2O8 (BAS) Liquid phase sintered (LPS) Mechanical properties
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