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Design of a Universal Mounting Fixture (UMF) for ROPS Using Finite Element Method

机译:使用有限元方法设计用于ROP的通用安装夹具(UMF)的设计

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A finite element model of Universal Mounting Fixture (UMF) was developed in CATIA_V5. This model consisted of a number of beam elements and nodes connected to the tractor frame. For the simulation, fasteners between the ROPS and tractor axle housing were designed. The finite element model was developed parametrically to accommodate a range of tractors and ROPS sizes. The parametric design permits changes in the model dimensions without varying the number of nodes or elements. It was important to note that this research examined trends for various scenarios for one base-fixture finite element model. The final design of fixture was developed and tested in accordance with IS 11821 (Part 2): 1992 [1]. With due consideration of part geometry, OCTREE Tetrahedron mesh was selected and parabolic displacement interpolation was used between the nodes and elements. After getting the satisfactory result of UMF, the fixture was fabricated and validated through static testing of ROPS. The sequences for the loadings were as follows: rear longitudinal, vertical crush, transverse, and second longitudinal. Each testing except vertical loading, were carried out until the fulfillment of energy criterion. The vertical loading test required maintaining of the load for a specific period of time. The axle housing and mounting fixture combinations must pass the static testing criteria as per standard for acceptability. The fixture design has been patented and being used in testing different types of tractor ROPS.
机译:CATIA_V5开发了通用安装夹具(UMF)的有限元模型。该模型包括多个光束元件和连接到拖拉机框架的节点。对于模拟,设计了ROPS和拖拉机轴外壳之间的紧固件。有限元模型是参数开发的,以适应一系列拖拉机和ROPS尺寸。参数化设计允许模型尺寸的变化,而不会改变节点或元素的数量。值得注意的是,这项研究检查了一个基本夹具有限元模型的各种场景的趋势。根据11821(第2部分):1992 [1]开发并测试夹具的最终设计。随着部分几何形状的适当考虑,选择了八面体网格,并且在节点和元件之间使用抛物线位移插值。在获得UMF的令人满意的结果之后,通过ROP的静态测试制造并验证夹具。负载序列如下:后纵向,垂直挤压,横向和第二纵向。进行除垂直装载外的每种测试,直到实现能量标准。垂直装载测试需要维持载荷的特定时间段。轴外壳和安装夹具组合必须根据可接受性标准通过静态测试标准。夹具设计已获得专利,并用于测试不同类型的拖拉机ROPS。

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