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1)  tensiled high density polyethylene
HDPE单向拉伸格栅
2)  HDPE unigeodgid
HDPE单向土工格栅
3)  uniaxial tension
单向拉伸
1.
Investigation on forming response of TRIP sheet steels in uniaxial tension;
TRIP钢板在单向拉伸变形下的相变行为研究
2.
Analysis of necking under condition of uniaxial tension of low-carbon steel specimen based on gradient-dependent plasticity;
基于梯度塑性理论的单向拉伸低碳钢试样颈缩分析
3.
To study the size effect on forming process of micro sheet metal,the uniaxial tension experiment was conducted with the AISI stainless sheet metal with the thickness of 0.
5 mm和1 mm的AISI 304不锈钢薄板进行单向拉伸实验。
4)  uniaxial tensile
单向拉伸
1.
The mechanical property of AZ31 magnesium alloy rolling sheet under different temperatures and strain rates was studied through uniaxial tensile test.
通过单向拉伸试验研究了AZ31镁合金轧制板在不同温度和应变速率下的力学性能。
2.
Based on the metallic plastic theory and associated with the TWB formability characteristic,the equations for the uniaxial tensile TWB specimen with the same material and different thickness are deduced to calculate the value of deformation of the base metal materials when necking.
从金属塑性理论出发,结合拼焊板成形特点,推导出同材差厚拼焊板试件单向拉伸情况下缩颈时焊缝两侧薄厚板变形量公式。
5)  uniaxial tensile test
单向拉伸
1.
The varieties of the tensile formability of sheet metal has been compared and studied via standard uniaxial tensile test.
通过标准单向拉伸试验,对比研究了板材减薄前后单向拉伸性能的变化。
6)  simple tension
单向拉伸
1.
In simple tension experiment,the stress-strain relationship submits Hook s law within the limit of proportionality.
单向拉伸试验中,在比例极限内,应力应变关系服从胡克定律。
2.
Based on the modified shear-lag model,a new calculation model of I-II mixed mode crack of quasi-brittle materials such as rock,concrete and so on under simple tension load is established,and the fracture angle is obtained to be coincided with the experimental data and to be superior to the conventional S criterion.
采用修正的剪滞理论建立了岩石、混凝土等准脆性材料的I-II复合型裂缝在单向拉伸荷载作用下的计算模型,得到了与实验相吻合且优于传统S判据的断裂角。
补充资料:单向拉伸
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性质:在一个方向上对高分子材料施加拉伸应力时,称为单向拉伸。在两个或多个方向上施加拉伸应力时,称为双向拉伸或多向拉伸。高分子纤维都在纺丝后进行单向拉伸。高分子薄膜也可进行单向拉伸。拉伸是使材料产生取向作用以增加其物理性能的一种方法。如在适当的温度条件下对高分子材料进行拉伸时,可导致高分子链或晶区的重排取向,使制品在拉伸强度方面得到改善。

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