kdam程序的计算机模块结构,用于确定输入环节的运动学和动力学参数

V. Shcherban’, Sergey Shilingov, A. Lukashev, O. Kolisko, Y. Shcherban’
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引用次数: 0

摘要

KDAM程序的计算机模块的开发用于确定轻工业机械机构输入环节的运动学和动力学参数,可以确定曲柄质心的坐标,速度和加速度的投影以及阿修罗组链接的附着点。在对输入环节运行进行动力分析时,确定了输入环节铰链处全反力的投影。在确定工艺设备上填充区螺纹相对张力的变化时,所获得的结果用于评估轻纺工业工艺过程的强度。杠杆机构广泛应用于轻工和纺织工业机械。杠杆机构的工作机构在工作过程中与螺纹接触。轻纺机械机构工作体的覆盖角随运动轨迹的变化而变化。覆盖角值的变化导致螺纹张力的变化。当覆盖角增大到临界值时,螺纹可能断裂,工艺设备可能停止。当穿过工艺设备上的送丝系统的加油区时,螺纹的张力增加。这种增加是由于螺纹与导轨和张力装置的相互作用。最大张力值将在工作区域的前面。张力的急剧增加导致螺纹加工工艺过程的正常进程的违反。新的送丝系统方案的开发需要对工作区域前面的张力值进行操作评估。开发了用于确定工作区域张力的专用计算机程序,使确定必要的工艺参数成为可能。工艺过程优化任务的目标函数是使必要的张力最小。目标函数中的可变参数是螺纹对工作体的覆盖角之和。使用计算机程序可以确定工艺机器填充区的张力和相对张力的变化,从而使您在工艺流程设计阶段就可以优化螺纹供应线的形状。平面机构的运动学和动力学参数的计算机测定允许确定用于确定工艺过程强度的参数。考虑到螺纹在截面直径上的不均匀性,研究螺纹张力装置的设计对其与螺纹相互作用条件的影响,对确定螺纹张力具有重要意义。当穿过工艺设备上的送丝系统的加油区时,螺纹的张力增加。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
STRUCTURE OF THE COMPUTER MODULE OF THE KDAM PROGRAM FOR DETERMINING KINEMATIC AND DYNAMIC PARAMETERS OF THE INPUT LINK
The development of the computer module of the KDAM program for determining the kinematic and dynamic parameters of the input link of the mechanisms of light industry machines allows to determine the coordinates, projections of speeds and accelerations of the center of mass of the crank and the point of attachment of the links of the Asura groups. During the dynamic analysis of the operation of the input link, the projections of the full reaction in the hinge of the input link are determined. The obtained results are used in the program to assess the intensity of technological processes of the light and textile industry when determining the change in the relative tension of the thread in the filling zones on the technological equipment. Lever mechanisms are widely used in light and textile industry machines. The working bodies of the lever mechanisms come into contact with the threads during operation. Depending on the trajectory of the movement, the angle of coverage of the working bodies of the mechanisms of the light and textile industry machines changes. A change in the value of the angle of coverage leads to a change in the tension of the threads. When the coverage angle increases to critical values, the thread may break and the technological equipment may stop. The tension of the thread increases when moving through the refueling zones of the thread feeding system on the technological equipment. This increase is due to the interaction of the thread with the guides and tension devices. The maximum tension value will be in front of the working area. A sharp increase in tension leads to a violation of the normal course of the technological process of thread processing. The development of new schemes of the thread feeding system requires an operational assessment of the value of the tension in front of the working zone. The development of special computer programs for determining the tension in the working area makes it possible to determine the necessary technological parameters. The objective function in the tasks of optimization of technological processes is the minimum necessary tension. The variable parameter in the objective function is the sum of the angles of coverage of the working bodies by the thread. The use of a computer program allows you to determine the tension and change in relative tension in the filling zones of technological machines, which allows you to optimize the shape of the thread supply line even at the stage of designing the technological process. Computer determination of kinematic and dynamic parameters of flat mechanisms allows to determine the parameters used in determining the intensity of technological processes. The study of the influence of the design of the thread tension device on the conditions of its interaction with the thread, taking into account its unevenness in the diameter of the cross section, is important in determining the thread tension. The tension of the thread increases when moving through the refueling zones of the thread feeding system on the technological equipment.
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