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汽缸材料低周疲劳性能研究
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作者 魏双胜 牛丽梅 刘忠艳 《经济技术协作信息》 2004年第12期63-63,共1页
由于汽缸的体积庞大,结构复杂,表面存在一些非平滑过渡区域,在这些位置容易引起应力集中。在工作状态下,汽缸的应力集中区首先进入塑性状态,形成一个或大或小的塑性区。在交变载荷的作用下,塑性区内容易首先形成疲劳裂纹,疲劳裂... 由于汽缸的体积庞大,结构复杂,表面存在一些非平滑过渡区域,在这些位置容易引起应力集中。在工作状态下,汽缸的应力集中区首先进入塑性状态,形成一个或大或小的塑性区。在交变载荷的作用下,塑性区内容易首先形成疲劳裂纹,疲劳裂纹扩展至一定长度后即会发生失稳扩展,造成不可估量的经济损失。目前。 展开更多
关键词 汽缸 材料低周疲劳性能 疲劳裂纹 低周疲劳试验 汽轮机
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增强筋混凝土梁受弯疲劳研究进展
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作者 董苏然 杨勇新 关增伟 《玻璃钢/复合材料》 CAS CSCD 北大核心 2013年第6期J0045-J0050,共6页
本文总结了国内外学者对混凝土、钢筋、FRP筋的材料疲劳性能、破坏准则、损伤模型的研究,论述了由各材料组成的梁构件的疲劳受力过程、破坏形态、刚度退化、挠度增长规律,分析了FRP筋部分代替钢筋的混凝土梁的疲劳性能的特点,并探讨增... 本文总结了国内外学者对混凝土、钢筋、FRP筋的材料疲劳性能、破坏准则、损伤模型的研究,论述了由各材料组成的梁构件的疲劳受力过程、破坏形态、刚度退化、挠度增长规律,分析了FRP筋部分代替钢筋的混凝土梁的疲劳性能的特点,并探讨增强筋混凝土梁的疲劳性能的发展空间与研究价值。 展开更多
关键词 材料疲劳性能 破坏准则 损伤模型 增强筋混凝土梁 研究进展
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Fatigue properties of special kind of reinforced concrete composite beams
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作者 胡铁明 黄承逵 陈小锋 《Journal of Central South University》 SCIE EI CAS 2010年第1期142-149,共8页
The special reinforced concrete composite beam consists of a steel fiber reinforced self-stressing concrete composite layer and a reinforced concrete T-beam, and constructional bars are set up at their bonding interfa... The special reinforced concrete composite beam consists of a steel fiber reinforced self-stressing concrete composite layer and a reinforced concrete T-beam, and constructional bars are set up at their bonding interface. Fatigue properties of the composite beam under the action of negative moment were experimentally studied. Through inverted loading mode the load-beating state of a composite beam was simulated under the action of negative moment. With the ratios of constructional bars being 0, 0.082% and 0.164% respectively as parameters, the effects of constructional bars on the properties of composite beam, such as fatigue life, crack propagation, rigidity loss as well as damage behavior of bonding interface, were studied. The mechanism of the constructional bars on the fatigue properties of the composite beams and the restriction mechanism of crack widths and rigidity loss were analyzed. The test results show that the constructional bars can enhance the shear resistance of the bonding interface between composite layer and old concrete beam and restrict expanding of steel fiber reinforced self-stressing concrete, which are beneficial to synergistic action of composite layer and old concrete beam, to reducing the stress amplitude of bars and the crack width of composite layer, and to increasing the durability and fatigue life of the composite beam. 展开更多
关键词 steel fiber reinforced self-stressing concrete composite beam constructional bar bonding interface FATIGUE
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