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1)  room-temperature tensile test
室温拉伸
1.
The microstructures and properties of Ti17 alloy joints welded by inertia friction welding(IFW) were investigated by room-temperature tensile test,high-temperature tensile test and metallographic analyses.
通过室温拉伸、高温拉伸试验以及金相分析对Ti17合金惯性摩擦焊接接头的显微组织和力学性能进行了研究。
2)  tensile testing at ambient temperature
室温拉伸试验
3)  room-temperature tensile plasticity
室温拉伸塑性
1.
Optical microscope, transmission electron microscope (TEM) and scanning electron microscope (SEM) were used to investigate the relationship between microstructures and room-temperature tensile plasticity.
利用金相显微镜、透射电镜和扫描电镜研究了该合金的室温拉伸塑性与显微组织的关系。
4)  room-temperature tensile property
室温拉伸性能
1.
Effects of long-term aging on microstructure and room-temperature tensile property of alloy GH4586B
长期时效对GH4586B合金组织及室温拉伸性能的影响
5)  high temperature drawing
高温拉伸
6)  warm tensile
温拉伸
1.
The warm tensile properties,relation between temperature,strain rate and the flow stress are discussed.
1s-1下对耐热铝合金(FVS0812)板进行温拉伸实验,研究耐热铝合金板温拉伸性能,以及该合金在升温条件下流变应力与变形温度、应变速率之间的关系,并使用改进了的Fields and Backofen方程建立FVS0812合金在温拉伸时应力-应变本构模型。
2.
A constitutive equation using up-dated Fields-Backofen equation was established to describe the flow behavior of 5182 aluminum alloy during warm tensile.
1/s条件下,采用Instron?8032电子拉伸实验机对汽车用5182铝合金板的流变行为进行研究,采用修正后的Fields-Backofen方程描述5182铝合金温拉伸时的流变行为,建立5182铝合金在温拉伸时的应力-应变本构模型。
补充资料:室温
1.室内温度。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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