表面波纹度

  • 网络waveness;waviness
表面波纹度表面波纹度
  1. 结果表明:脆性材料可以实现塑性域超精密切削加工;控制切削参数可以加工出满足要求的表面粗糙度和表面波纹度,为生产实际提供可靠的工艺条件及技术参数。

    Analysis shows that ductile regime ultraprecision cutting of brittle materials can be realized , the surface roughness and surface waveness that satisfy with requirements can be processed by controlling cutting parameters .

  2. 基于MOTIF参数的零件表面波纹度评定方法

    The Judgment Method of Part Surface Waviness Based on MOTIF Parameters

  3. 节理表面波纹度对其闭合性质的影响

    The effect of surface waviness of joints on their closure behaviors

  4. 工程陶瓷高效平面磨削表面波纹度试验研究

    Research on surface waviness of advanced ceramics in high efficiency surface grinding

  5. 超精工艺参数对表面波纹度的影响

    The influence of superfinishing technology parameters on groove surface waviness

  6. 国家新标准《表面波纹度、词汇》及其应用

    National new standard superficial waviness , vocabulary and application

  7. 金属零件表面波纹度的测试研究

    Research on measurement of surface waviness of metal parts

  8. 表面波纹度几何特征的分析

    Analysis of geometrical property for surface waviness

  9. 磨削表面波纹度的若干影响因素

    Some Effect Factors on Grinding Surface Waviness

  10. 滚动轴承表面波纹度故障诊断参数的确定

    The Detemination of the Parameters in the Failure Diagnosis on the Surface Waviness of Roller Bearing Parts

  11. 高速低粗糙度外圆切入磨削表面波纹度的试验研究

    An Experimental Research in Workpiece Surface Waviness During the Cylindrical Plunge Grinding Process of High Speed and Low Surface Roughness

  12. 结果表明:反射镜表面波纹度引起的散射对成像质量影响较大,加工样品的面形质量有待提高。

    The results indicate that image degradation is caused by scattering produced from surface waviness , and the surface quality of sample mirror should be further improved .

  13. 试验结果表明,在陶瓷材料高效平面磨削中,砂轮线速度和进给速度是影响磨削颤振与表面波纹度的主导因素。

    The results indicate that , in high efficiency surface grinding of engineering ceramics , wheel speed and feeding speed are the dominant factors that affect grinding vibration and surface waviness .

  14. 然后,设计平面磨削颤振的试验方案,获得磨削颤振和磨削表面波纹度的试验结果,进而研究不同的磨削条件对磨削颤振和磨削表面波纹度的影响,得到与理论分析一致的结果。

    Then , the experimental scheme of grinding chatter in surface grinding process is designed . The experimental results of grinding chatter and ground surface waviness on the precise surface grinding machine are obtained .

  15. 根据表面波纹度国家标准的有关规定,结合教学和科研工作的实际,对表面波纹度的概念、评定及其应用作了简要的介绍。

    According to the relative rules of national criteria of superficial waviness , considering realistic situation of education work and scientific research work , the conception , evaluation and application of superficial waviness are introduced in this paper .

  16. 滚动轴承零件各接触表面的波纹度是引起轴承振动的主要原因。

    The waviness of each contact surface of a ball bearing is the main reason which causes the ball bearing vibration .

  17. 表面形貌含波纹度的节理的闭合模型

    Model for closure of joint containing waviness in the surface morphology

  18. 岩石结构面表面形貌的波纹度特征及其力学效应

    The Waviness Characteristics and Mechanical Effects of Topography of Rock Structure Faces

  19. 简述了机加件表面形状、波纹度和粗糙度3个要素的特点、形成机理以及对产品性能的影响。

    The paper summarized the features and forming mechanism of surface three parameters like shape , waviness and roughness , as wells as their effects on product performance .

  20. 激光核聚变KDP晶体的3项主要技术指标是:表面粗糙度、波纹度和透射波前,通过分析影响这3项技术指标的因素,提出了实现KDP晶体精密加工的超精密机床和工艺参数。

    The main targets of the KDP crystals in high power lasers are roughness , waveness and transmitted wave front . The ultra-precision machine and process parameters are presented by analyzing the effects on the three main targets .

  21. 非晶带表面波纹对表面粗糙度的影响

    Influence of Surface Corrugation on Roughness of Amorphous Ribbon

  22. 将连续抛光作为最终加工工序,使加工工件的表面粗糙度和波纹度达到工程要求。

    The continuous polishing process is as the final process which the surface roughness and waviness of the optics satisfy the engineering requirement .

  23. 结果表明:合理选择砂轮振动频率或工件主轴转速能有效提高工件表面精度,降低表面波纹度。

    The results showed that , with appropriate wheel vibration frequency or appropriate workpiece rotate speed , the surface precision of workpiece can be improved .

  24. 化学机械抛光便应运而生,它综合了化学的和机械的共同作用,实现了对部件表面的精密去除从而达到较高的表面粗糙度和表面波纹度。

    Then CMP comes into being , combining the chemical and mechanical actions so as to realize the precise removal of the surfaces to reach the higher level of surface roughness and surface waviness .