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Key pulley segment features, segment stack configuration, and cam and roller design and actuation in a synchronized segmentally interchanging pulley transmission system

机译:同步皮带轮互换系统中的关键皮带轮节段特征,节段堆叠配置以及凸轮和滚轮设计与驱动

摘要

A key pulley segment in a synchronized, segmentally interchanging pulley transmission system is either first or last in a pulley segment set to engage an endless member. The first or last key segment teeth to engage or disengage, respectively, are shortened or completely trimmed, and the adjacent pulley segment to the key segment is elongated such that the inward portion of the tooth profile extends toward the key segment. Shortened tooth or teeth and an elongated adjacent segment together allow for many pulley segments to be designed as key segments. Completely trimmed teeth may be engineered to create a supporting surface for the endless member on the key segment. The elongated adjacent segment may have an extending portion which slidably mates with the supporting surface of the key segment, thereby receiving radial support therefrom. Multiple pulley segments from different pulley segment sets may be connected or constructed to move together in a unified stack, and may be staggered such that any one segment may be in an engaging position with the endless member when the unified stack is moved along the axis of rotation. Unified stacks may have guiding rails on both inner and outer radial surfaces, and the pulley assembly may have mating features that receive such guiding rails. Any number of the pulley segments in a unified stack may be key pulley segments. Pulley segments of a stack may be vertically separated into one or more unified stacks. Unified stacks may be moved by way of a cam or roller cam system, where each unified stack has a slidably or ratably attached roller and roller-arm. Chassis-mounted cams engage the rollers outside of the contact zone, rollers and roller-arms are moved into and out of engagement with the cams, and individual segments of a unified stack are moved into or out of engagement. Rollers may be actuated into and out of engagement by electromagnets, fixably mounted in an array. Rollers may discretely engage with multiple cams, by way of several electromagnet-arrays, and thereby complete several stack axial motions. Electromagnets in an array may be selectively energized to move selected rollers to an active position in order to effect key pulley segment engagement, stack axial movement and transition.
机译:在同步的,分段地互换的皮带轮传动系统中的关键皮带轮段位于设置成与环形构件接合的皮带轮段中的第一个或最后一个。分别要接合或脱开的第一或最后一个键段齿被缩短或完全修整,并且与键段相邻的滑轮段被拉长,使得齿形的向内部分朝键段延伸。一个或多个缩短的齿和一个延长的相邻段一起允许将许多滑轮段设计为关键段。可以将经过完全修整的牙齿设计成在键段上为环形构件创建支撑表面。细长的相邻节段可具有延伸部分,该延伸部分与键节段的支撑表面可滑动地配合,从而从其接收径向支撑。来自不同皮带轮节组的多个皮带轮节可以连接或构造成在统一的堆叠中一起移动,并且可以错开,使得当统一的堆叠沿容器的轴线移动时,任何一个区段可以与环形构件处于接合位置。回转。统一的堆叠可以在内径向表面和外径向表面上都具有导轨,并且滑轮组件可以具有容纳这种导轨的配合特征。统一堆栈中的任意数量的滑轮段可以是关键滑轮段。堆叠的皮带轮段可垂直分离成一个或多个统一的堆叠。可以通过凸轮或滚子凸轮系统来移动统一的堆叠,其中每个统一的堆叠具有可滑动地或可随意附接的辊和辊臂。安装在机架上的凸轮在接触区域之外与滚子啮合,滚子和滚子臂与凸轮啮合或脱离啮合,而统一堆叠的各个部分则进入或脱离啮合。可以通过固定安装在阵列中的电磁体来驱动滚子进入和脱离接合状态。辊可以通过多个电磁阵列离散地与多个凸轮接合,从而完成多个堆叠轴向运动。阵列中的电磁体可以被选择性地通电以将选定的辊移动到活动位置,以实现键滑轮段的接合,堆叠轴向运动和过渡。

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