AbstractIncremental Sheet-Bulk Metal Forming offers an innovative and flexible approach for the manufacturing of'/> Improvement strategies for the formfilling in incremental gear forming processes
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Improvement strategies for the formfilling in incremental gear forming processes

机译:增量齿轮成形过程中填筑的改进策略

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AbstractIncremental Sheet-Bulk Metal Forming offers an innovative and flexible approach for the manufacturing of gears. An insufficient formfilling of the generated gearing, especially of the first tooth formed, is observed. Aiming for a formfilling improvement of the first tooth element, three influencing factors were investigated. First, the prevailing friction is analyzed and a possibility for its adjustment is offered by a tailored adaption of the tool surface topographies. These were manufactured by micromilling, EDM and polishing processes and partially covered by CrAlN PVD-coatings. Based on ring-compression tests, which were performed to determine the resulting friction conditions, the analyzed topographies were transferred onto real tool surfaces and used in the incremental gear forming process. Second, the influence on the formfilling of the blank cutting process and the resulting sheet edge properties were investigated. The third aspect to enhance the formfilling of the gear elements was the modification of the process strategy of the incremental forming process. Due to different conditions for the initial and the following indentations, a preforming operation was investigated in order to realize a similar material flow for all indentations. With the combination of the best parameters regarding the tool surface, the blank cutting process and the forming strategy, an improvement of the formfilling of the first formed gear element by up to 33% and for the following gears by up to 13% was achieved.]]>
机译:<![cdata [ <标题>抽象 ara>增量板散装金属成型提供了一种创新和灵活的制造方法齿轮。观察到所产生的传动装置的不足,尤其是形成的第一牙齿的不足。针对第一齿元素的填充改善,研究了三种影响因素。首先,分析了普遍的摩擦,通过对工具表面拓展的定制适应来提供调整的可能性。这些由微米,EDM和抛光过程制造,并由CRALN PVD涂层部分覆盖。基于进行的环形压缩试验,进行以确定所得到的摩擦条件,将分析的拓扑片转移到真正的工具表面上并用于增量齿轮形成过程。其次,研究了对空白切削过程的填充物的影响和所得纸张边缘性质的影响。增强齿轮元件的形成的第三方面是改变增量形成过程的过程策略。由于初始和以下凹口的不同条件,研究了预成型操作,以实现所有凹口的类似材料流。通过关于工具表面的最佳参数的组合,坯料切削过程和成形策略,实现了第一所形成的齿轮元件的完善高达33%并为以下齿轮的改善达到高达13%。 ]]]>

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