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belt teeth
相关语句
  带齿
     By the finite element method,the following were calculated,the force acting point on the new type arc tooth flank of the belt and the compliance coefficient of the belt teeth.
     通过有限元的方法,计算出了新型圆弧齿同步带齿载荷分布状态、力作用点位置、带齿的柔度及刚度系数,为新型圆弧齿同步带的进一步研究提供了必要数据。
短句来源
     Calculation and analysis of contact stress in synchronous belt teeth
     同步带带齿内应力的计算分析
短句来源
     Based on some new and reasonable hypothesis, this paper makes calculation and analysis of contact stress in synchronous belt teeth by the finite element analysis method and gets some worthy conclusions.
     在一些新的合理的假设条件下,应用有限元分析方法,对同步带带齿内应力进行了分析计算,得出一些有价值的结论.
短句来源
     In order to test the optimal parameters of belt teeth, a non linear FEM is applied to the analysis of belt teeth working process, and geometric and material nonlinearities are considered.
     为了验证新型高齿同步带齿形设计参数的正确性 ,利用非线性有限元法 ,在充分考虑带齿几何非线性和材料非线性的基础上 ,对带齿工作过程中的受力状态进行了分析 ,获得了带齿受载分布规律和最大应力作用位置及数值 ,为带齿的失效形式分析提供了理论依据 .
短句来源
     According to the deformation coordination between belt teeth and pulley teeth, an equation of the contact stress distribution on the flank of the belt tooth is derived, and then equations for calculating the maximum contact stress on the belt tooth flank, the bending stress and the shear stress on tooth root and the stiffness of the belt tooth are worked out.
     根据带齿与轮齿之间的变形协调关系,推导出带齿齿面接触应力分布式,继而求得齿面最大接触应力、齿根弯曲应力、齿根剪切应力及带齿刚度的计算式。
短句来源
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  带带齿
     Calculation and analysis of contact stress in synchronous belt teeth
     同步带带齿内应力的计算分析
短句来源
     Based on some new and reasonable hypothesis, this paper makes calculation and analysis of contact stress in synchronous belt teeth by the finite element analysis method and gets some worthy conclusions.
     在一些新的合理的假设条件下,应用有限元分析方法,对同步带带齿内应力进行了分析计算,得出一些有价值的结论.
短句来源
  “belt teeth”译为未确定词的双语例句
     Through experimental and theoretic analysis, this paper discusses the factors of such as the tension, the pitch difference between belt teeth and pulley teeth and the tooth profile, that influence the failure forms and the fatigue life of synchronous belt transmission. The fatigue failure mechanism of synchronous blet has also been analyzed.
     通过实验及理论分析,探讨了带的张力、带及带轮的节距差、齿形等对同步带传动的失效形式及疲劳寿命的影响,并分析了同步带产生疲劳破坏的机理.
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According to the deformation coordination between belt teeth and pulley teeth, an equation of the contact stress distribution on the flank of the belt tooth is derived, and then equations for calculating the maximum contact stress on the belt tooth flank, the bending stress and the shear stress on tooth root and the stiffness of the belt tooth are worked out. The above-mentioned-stresses are linear with the load on the belt tooth, while the stiffness is proportional...

According to the deformation coordination between belt teeth and pulley teeth, an equation of the contact stress distribution on the flank of the belt tooth is derived, and then equations for calculating the maximum contact stress on the belt tooth flank, the bending stress and the shear stress on tooth root and the stiffness of the belt tooth are worked out. The above-mentioned-stresses are linear with the load on the belt tooth, while the stiffness is proportional to the tooth width and the elastic modulus of the tooth material, and is irrelative to the load.

根据带齿与轮齿之间的变形协调关系,推导出带齿齿面接触应力分布式,继而求得齿面最大接触应力、齿根弯曲应力、齿根剪切应力及带齿刚度的计算式。三种应力与带齿载荷参数成线性关系;带齿刚度与齿宽、带齿材料的弹性摸量成正比,而与载荷大小无关。

In this paper the bending strength and contacting strength of the tooth of the new type arc toothed belt are analyzed on the base of coordination of belt tooth deformation with pulley tooth deformation, and the formulas of calculating bending and contacting stresses and the deformation of the tooth are derived. The results of this paper arc benefical to apply in production practice.

本文以同步带传动中的带齿与轮齿变形协调关系为基础,对新型圆弧齿同步带的带齿齿根弯曲强度和齿面接触强度进行了综合研究,获得了带齿齿根弯曲应力和齿面接触应力计算式。同时推导出带齿刚度与带齿载荷间的关系式,为实际工程的应用奠定了理论基础。

In this paper the belt tooth is regarded as composition of infinite number of narrow shims, among which there are no acting forces, therefore the load distribution along contactline and longitudinal load distribution factor K_β can be calculated according to the belt tooth misalignment f_β, stiffness C and unit mean load(F_m/b). The determing method for belt tooth misalignment f_β is introduced briefly.

本文把带齿受载情况处理成由许多薄片叠成的力学模型,根据带齿失准度f_β、刚度C、平均载荷F_m/b及带传动基本参数计算出齿向载荷分布系数K_β。文中还简要介绍了带齿失准度f_β的确定方法。

 
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