首页> 外文会议>Annual International Workshop on Materials Science and Engineering >The Kinematic Analysis of Flat Leverage Mechanism of the Third Class NA ZhauytDKazakh National Research Technical University named after K. I. Satpayev, Almaty 050013, Kazakhstan NG MamatovaDAcademy of Civil Aviation, Almaty 050039, Kazakhstan NG AbdugaliyevaDKaraganda State Technical Universities, Karaganda 100000, Kazakhstan
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The Kinematic Analysis of Flat Leverage Mechanism of the Third Class NA ZhauytDKazakh National Research Technical University named after K. I. Satpayev, Almaty 050013, Kazakhstan NG MamatovaDAcademy of Civil Aviation, Almaty 050039, Kazakhstan NG AbdugaliyevaDKaraganda State Technical Universities, Karaganda 100000, Kazakhstan

机译:第三级Zhauytd 哈萨克国家研究技术大学的平坦杠杆机制的运动学分析名为Ki Satpayev,Almaty 050013,Almaty 050013,哈萨克斯坦N G Mamatovad Canfiation,Almaty 050039,Kazakhstan N G Abdugaliyevad Karaganda 国家技术大学,哈萨克斯坦100000

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It is necessary to make link mechanisms calculation to the strength at designing of flat link mechanisms of high class after definition of block diagrams and link linear sizes i.e. it is rationally to choose their forms and to determine the section sizes. The algorithm of the definition of dimension of link mechanism lengths of high classes (MHC) and their metric parameters at successive approach is offered in this work. It this paper educational and research software named GIM is presented. This software has been developed with the aim of approaching the difficulties students usually encounter when facing up to kinematic analysis of mechanisms. A deep understanding of the kinematic analysis is necessary to go a step further into design and synthesis of mechanisms. In order to support and complement the theoretical lectures, GIM software is used during the practical exercises, serving as an educational complementary tool reinforcing the knowledge acquired by the students.
机译:在定义框图和链路线性尺寸的定义之后,必须使链路机制计算高级的平面链路机制的强度。它是合理选择它们的形式并确定截面尺寸。 在这项工作中提供了高级(MHC)链路机构长度的定义的定义算法及其在连续方法中的度量参数。 本文提出了本文教育和研究软件,名为GIM。 该软件已经开发出来,目的是在面临对机制的运动分析时通常遇到的困难。 对运动学分析的深刻理解是进一步进入设计和合成机制的步骤。 为了支持和补充理论讲座,在实际练习中使用GIM软件,作为一种教育互补工具,加强了学生获得的知识。

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