CMD CSV-8050/6 DUAL 6-PORT TRIDENT RAID CONTROLLER MODULE W/FRONT CONTROL PANEL
挂轮齿数;rt,%的选择当q和选定后,根据图形的形状定出即可由式(3)计算挂轮齿数。例如:加工椭圆时,w= =菩,可取2= 60,=3,=々=>45,为保证两齿轮正安装,显然挂轮r和d要选择正传动。
3多用途传动装置的应用如所示,若在M位置安装车刀,或安装带动力的铣刀或砂轮,则可获得相应的加工椭N边形工件的车床、洗床或磨床;如所示,若将工件3与刀具9位置调,SP让刀具运动,工件固定,则可得到加工所示非圆形缸体型腔的铣床、镗床或磨床。由可知,刀具M点在固定坐标系中的坐标为:▲几种非圆形缸体型腔式(5)即为被加工的非圆形缸体型腔的参数方程。有些人认为,由于谐波齿轮传动的弹性变形协调作用,存在少量干涉不会导传动卡,为了控制小侧隙,因而可允许某些干涉存在,这种观点显然是片面的。若设计时允许某些干涉量存在,那么就有可能导传动的磨损加剧,效率降低,波发生器上载荷和柔轮应力增大,甚至引起传动滑移,破坏传动的正常工作。
关于如何在保证不发生干涉的情况下,获得合理侧隙的问题,目前的些计算方法比较复杂,实用性不强。这里介绍种新的计算方法,实践证明这种验算方法度高,能够满足设计要求,而且简单方便,实用性强。
2啮出(或啮入)瞬时不发生齿干涉的条件由于啮合状态的称性,轮齿在啮入瞬时的干涉情况完全可以由啮出瞬时的情况来描述。所不同的是,若啮入瞬时的齿廓干涉发生在柔轮齿左侧齿廓和刚轮齿的右侧齿廓上,那么,啮出瞬时的齿廓干涉必定发生在柔轮齿右侧齿廓和刚轮齿左侧齿廓上。在刚脱离啮合(或刚进行啮合)的瞬间,不产生齿干涉的条件为:刚轮齿工作侧的齿坐标所应之转角PL2应大于柔轮齿工作侧之齿坐标所应转角,如。
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