实现了对整个剪切过程的多闭环前馈控制。
Multi closed loop control with feedforward control is implemented in the whole cutting process.
分析了剪切过程中椭圆团颗粒试样的组构各向异性演化规律。
The particle rotation property was compared between the elliptical particle samples and the circular particle samples, and the development of fabric anisotropy during loading was also analyzed.
分析结果表明,该模型能较好地反映剪切过程中岩桥的弱化破坏过程。
The results show that the new model can properly reflect the weakening and failure process of rock bridge during shearing.
优化后的飞剪机构满足剪切过程要求,同时提高了飞剪的剪切性能和轧件的剪切质量。
The optimized mechanism can satisfy the cutting process requirement, and enhance both the performance of flying shear and quality of workpieces.
利用计算机断层扫描技术(CT)对冻土在三轴剪切过程中的结构变化进行了动态测试。
The structure changes in frozen silty clay under triaxial shear are dynamically monitored by Computerized Tomography (ct) technique.
节理剪切扩容效应意指节理在剪切过程中,由于节理面的起伏不平引起节理体积和厚度增加的作用。
The Shear Dilatant Effect of Joints Refers to the Increase of Joints' Volume and Thickness Accompanying Shear Displacement as Caused by the Asperity of the Joint Surface.
采用计算机仿真和实验相结合的方法来研究板带剪切过程,可以缩短剪切机的开发周期,降低生产成本。
Using computer simulation and experimental methods to study the strip shearing process, can reduce shearing machine development cycle, reduce production costs.
介绍了具有负偏置结构的新型滚切剪的工作原理、结构特点和剪切过程,对其剪切过程的力学行为进行了分析。
The work principle, structural characteristic and rolling process of the roiling shear with negative offset mechanism are introduced. Mechanical behavior of rolling process is analyzed.
在三轴不排气剪切过程中,试样出现了明显了的剪胀性,且随着干密度的减小,饱和度的增大剪胀性逐渐消失。
As increasing saturation degree and decreasing dry bulk density, the dilatation disappears. The destructional forms of samples may be influenced by dilatation.
剪切过程有利于水—岩反应,形成有利于金富集的物理—化学环境; (4)剪切应力可使低应力载金矿物发生富集作用。
Water-rock reaction formed a environment for gold settling and (4) Shear stress forced gold and bearing-gold minerals into shear failures.
剪切过程有利于水—岩反应,形成有利于金富集的物理—化学环境; (4)剪切应力可使低应力载金矿物发生富集作用。
Water-rock reaction formed a environment for gold settling and (4) Shear stress forced gold and bearing-gold minerals into shear failures.
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