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By the analysis of wave mechanics of typical percussive drilling system of rock, characteristic parameter a, which describes wave dynamics and structure of the percussive drill system, has been presented.

通过对冲击凿岩典型系统的波动力学分析,提出了反映冲击凿岩机具波动力学和结构特征的参数α,继而确定冲击凿岩机具的动力学特征参数α和运动学特征参数τ,实现了活塞弹性动力学与刚体运动学的融合,为冲击凿岩机具的概念设计提供了较完整的方法。

The emphasis of the analysis includes the mechanical chrematistics and the influential factors of large componentsand local components(U-shaped ribs).

以界面的剪切破坏作为研究对象的主要破坏形式,针对这种主要的破坏形式,从力学分析的原理出发,相应地提出了力学分析的指标。

The results show that La can refine the microstructure of Zn-22%Al alloy, slow down the grain growth and reduce the equiaxial degree during ageing, that the strength of Zn-22%Al-alloys and Zn-22%Al alloy remains constant after ageing below the warm-rolling temperature, and that La can improve the strength and the stability of mechanical properties of Zn-22%Al alloy.

结果表明:La具有细化Zn-22%Al合金的组织并阻碍时效时晶粒长大和等轴程度降低的作用;在低于温轧温度(80 ℃)下时效时,加La和不加La的Zn-22%Al合金的室温力学性能保持不变; La可提高Zn-22%Al合金的强度以及时效时力学性能的稳定性。

In order to analyze the influence and damage of the top and bottom of rock mass in floor water-resisting layers due to water pressure in water bearing layer and mining pressure, this paper applies the methods of similar material simulation test and mechanical analysis of floor water invasion in the near of faultage to further comprehend the mechanism of floor water invasion.

为了分析底板含水层水压及采动矿压对底板隔水层岩体上部与下部的影响与破坏,应用了相似材料模拟试验以及断层附近底板突水的力学分析方法,对底板突水机理有了进一步的认识;同时,由断层附近底板突水的力学分析方法所得到的理论计算结果,也可以作为判别类似条件下遇断层时承压水体上采煤是否安全的依据。

The physical characteristic of weathered lamprophyre has impenetrability and nonhomogeneity, however, the YDS epoxy resin possesses initial viscosity, strong affinity to mediums, excellent permeability and good ageing property. After chemical grouting, the rock mechanics characteristics are improved greatly and can meet the design requirements, it indicates that lamprophyre can be grouted by YDS epoxy resin.

为此,采用了高渗透性的YDS环氧材料对风化后的煌斑岩脉进行纯压式灌浆试验,试验结果表明:通过YDS改性环氧浆液的&浸透&&浸渗&加固处理,风化的煌斑岩脉力学性能大幅提高,基本能满足设计的力学指标要求。

The paper investigated the effect of malayic grafted polypropylene on WF/PP interface, the respective influence of filler size and filler content on composite performance, and the influence of treatment by stearic acid, titanmi...

研究了马来酸酐接枝聚丙烯对复合材料的界面与性能的影响,竹粉尺寸及含量对复合材料力学性能及加工性能的影响,硬脂酸及偶联剂NDZ105、NDZ201、KH550 对木粉/聚丙烯复合材料界面与性能的影响,以及玻纤/木粉/PP 三相复合体系中玻纤含量和木粉含量对材料力学性能的影响。

The purpose of this thesis is to use finite element software ANSYS to analyze the mechanical behavior of thin-walled SUS304 stainless steel tubes with elliptic-notched subjected to curvature-controlled symmetric cyclic bending. The mechanical behavior contains the relationship among curvature, bending moment and ovalization. There are two kinds of the elliptic-notch.

本研究是以有限元素分析软体ANSYS 分析SUS304 不锈钢椭圆形凹槽薄壁圆管承受对称曲度循环弯曲负载下的力学行为,其中力学行为包含有曲度、弯矩及椭圆化的相互关系,而椭圆凹槽分为两种,一种为固定凹槽的深度,并改变凹槽的宽度;另一种为固定凹槽的宽度,并改变凹槽的深度。

ABSTRACT Purpose By adding additives in carbonated hydroxyapatite cement to increase its rheology to prepare injectable carbonated hydroxyapatite cement.(1) Test the physicochemistry characteristics of ICHA cement.(2) Evaluate the biocompatibility of ICHA cement.(3) Biomechanieal appreciation of ICHA cement used in distal radius fracture.(4) Study the mechanical stability, degradation and bone formation ability of ICHA cement used in goat lateral tibial plateau compression fracture.

目的 在碳酸化羟基磷灰石(Carbonated hydroxyapatite,CHA)水泥原位固化基础上进行改性研究,通过改变其流变学特性,达到具有良好注射性能的可注射性碳酸化羟基磷灰石(Injectable carbonated hydroxyapatite,ICHA)水泥,为骨科的微创治疗提供新方法:(1)制备ICHA水泥,完成理化性质的检测;(2)进行ICHA水泥的生物相容性评价;(3)探讨ICHA水泥在桡骨远端骨折应用的生物力学固定强度;(4)研究ICHA水泥在实验性大动物胫骨平台压缩性骨折中应用的力学稳定性、降解性能及成骨性能。

"Now we can study how molecular structure affects the shape, which affects the mechanical properties, and both of which affect mobility," said study author Subra Suresh of MIT.

&现在我们可以研究分子结构是如何影响细胞形状的,细胞形状又是影响力学特性的。然而,形状和力学特性都会影响物质的流动性,&该研究的发起人、美国麻省理工学院的苏伯拉·苏雷什说。

In order to improve the mechanical properties and thermal stability of UP,in-situ hybrid composites of thermotropic liquid crystalline polymer with the group of —NCO synthesized by us,unsaturated polyester and glass fiber were successfully prepared by melt mixing technology and compression molding.

为了改进不饱和聚酯树脂在高低温和交变应力下力学性能和热稳定性较差的缺点,利用自行合成的端基含有活性基团的热致性液晶聚合物对不饱和聚酯/玻璃纤维复合材料改性,用DMA测试了共混物的动态力学性能,用扫描电镜对材料断面的形态结构进行了研究。

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