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1)  viscoelastic heat
粘弹性热
1.
Simulation of viscoelastic heat during ultrasonic welding of thermoplastics
超声波塑料焊接粘弹性热的仿真计算
2)  thermo-viscoelasticity
热粘弹性
1.
Study on thermo-viscoelasticity of solid propulsive agent column under axial overloading with FEM;
轴向过载下三维药柱热粘弹性有限元分析
2.
A symplectic method in 2D thermo-viscoelasticity;
二维热粘弹性问题中的辛方法(英文)
3)  thermoviscoelastisity
热粘弹性
1.
Calculation of non-stationary thermal stress of low carbon steel thick hollow sphere based on theory of thermoviscoelastisity under non-constant temperature;
基于热粘弹性理论的低碳钢厚壁球非定常热应力计算分析
4)  thermoviscoelasticity
热粘弹性
1.
It was found that the effects of thermoviscoelasticity of the polymeric matrix on the actuation of SMA are significant.
用有限元法对粘弹基形状记忆合金 (SMA)复合材料层合板在横向均布载荷作用下的挠度进行了研究 ,结果发现 ,基体的热粘弹性对 SMA的作动性能有较大影响 ,且其程度随板边界的固结方式、SMA丝的数目、SMA的预应变、板的铺设角的不同而不
2.
In this paper, based on theories of thermoviscoelasticity and finite element method, a finite element calculation pattern is established under the natural environmental conditions, the thermal stress of asphalt screen is calculated and a number of influencing factors are analyzed.
利用热粘弹性力学的理论和有限元方法 ,在自然环境条件下 ,建立其有限元计算模式 ,计算了沥青罩面层温度应力 ,并对多个影响因素进行了分析。
3.
It suggests that it is appropriate to analyze the response of the SMA epoxy composites by the thermoviscoelasticity theory as the temperature rise resulting from activat.
研究发现 ,由热粘弹性分析得到的结果与实验结果吻合较好 ,而由热弹性分析得到的结果与实验结果差异较大 。
5)  thermo viscoelastic
热粘弹性
1.
The thermo viscoelastic theory was applied to the polymeric bar while Brinson's one dimensional constitutive law was employed for SMA.
利用一维变温热粘弹性理论分析聚合物杆 ,Brinson本构方程描述形状记忆合金 ,研究了变温场下形状记忆合金与聚合物杆组合结构的作动性能 ,并与用热弹性理论分析组合结构中聚合物杆的结果进行了比较 。
2.
Using the thermo viscoelastic constitutive model of the bituminous mixture obtained from laboratory testing, the equation for calculating thermal stresses in asphalt pavement is derived through 3 D space thermo viscoelastic theory.
应用室内试验得到的沥青混合料热粘弹性本构模型 ,根据三维空间热粘弹性理论推导了沥青路面温度应力的计算公式 ,对沥青路面低温状态下温度应力进行了计算分析。
6)  thermo-visco-elasto-plasticity
热-粘弹塑性
补充资料:粘弹性
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性质:某些物质(高分子或低分子)在外力作用下所表现的兼有粘性和弹性的性能。例如沥青、油灰、塑料、橡胶、纤维等。如果外力作用较慢即作用时间较长时,它们会像极粘的液体,主要表现为塑性形变。如果外力作用很快即作用时期较短时,它们像弹性固体,主要表现为高弹形变。

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