1) adiabatic shear instability
绝热剪切失稳
1.
The join strength,penetration depth and condition of emerging adiabatic shear instability are discussed with single particle of uniform speed and different angle.
针对单个粒子相同入射速度不同入射角度的碰撞条件,探讨粒子与基体的结合强度、侵彻深度以及绝热剪切失稳的发生条件。
2.
The results indicated that the particles with higher effective plastic limit than that of substrate are easy to undergo adiabatic shear instability,while the substrate does not undergo adiabatic shear instability and releases deformation energy,which leads particles to rebound.
结果表明,与基板相比,有效塑性极限大于衬底的金属颗粒易发生绝热剪切失稳,此时,基板不发生失稳,并释放积攒的变形能,使颗粒发生回弹现象。
2) Thermoplastic Shear Instability
热塑剪切失稳
3) unstable shear
失稳剪切
4) shear localization
剪切失稳
1.
Analysis of shear localization in void-containing materials;
含微孔材料的局部剪切失稳分析
5) adiabatic shear
绝热剪切
1.
Effect of several deformation mode on microstructure performance and adiabatic shear sensitivity of tungsten heavy alloy;
几种变形方式对钨合金组织性能及绝热剪切敏感性的影响
2.
These reviews include three search fields: the equipment of electromagnetic riveting,the process of electromagnetic riveting and the deformation mechanism of adiabatic shear: the low voltage electromagnetic riveter is in the works and the simulation of electromagnetic riveting will be more and more importance in the analysis.
从原理出发,对国内外电磁铆接设备、工艺及绝热剪切变形机理的研究进行了分析比较,指出电磁铆接设备将走低电压发展的道路,数值模拟将在今后的研究中发挥越来越重要的作用,最后对该领域的发展趋势提出自己的观点。
3.
By analyzing SEM photo of the chip in turn-milling,it is found that adiabatic shear take place inside the chip.
分析了正交车铣切屑的扫描电子显微镜的照片,发现有绝热剪切发生,证明正交车铣锯齿形切屑产生的原因是切屑内部的局部产生突变性剪切所造成的。
6) Adiabatic Shearing
绝热剪切
1.
Effects of Deformation on Microstructure Performance and Adiabatic Shearing Sensitivity of Tungsten Heavy Alloy;
变形对钨合金微观组织性能及绝热剪切敏感性的影响
2.
Numerical simulation on adiabatic shearing behavior of TB2;
TB2钛合金绝热剪切行为的数值模拟
3.
So, only in 93W, the adiabatic shearing bands can be found.
通过对比发现 ,二者的断裂机理基本相似 ,但侵彻时 ,由于 90W钨合金中存在较多的粘结相而使得其蘑菇头较小 ,其中的钨颗粒变形也较小 ;只在 93W钨合金中发现了绝热剪切现象的征
补充资料:裂纹失稳扩展
分子式:
CAS号:
性质:材料内部裂纹尖端的应力场强度因子达到或超过材料的断裂韧性之后发生的裂纹快速扩展。裂纹失稳扩展将导致材料迅速断裂。
CAS号:
性质:材料内部裂纹尖端的应力场强度因子达到或超过材料的断裂韧性之后发生的裂纹快速扩展。裂纹失稳扩展将导致材料迅速断裂。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条