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Experimental research of the frictional condition in the pipes extrusion process

机译:管道挤出过程中摩擦状况的实验研究

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The article demonstrated the results of an experimental study of the pipe extrusion process using the method of coordinate grids. The estimation of the influence of separate conditions of friction on the contact surfaces of the deformable material and the pressing tool on metal flow pattern. The calculation of the forming operation is made for extrusion process stages. It is shown that the deformation proceeds non-uniformly. At the same time, due to the creation of favorable conditions on the contact surfaces with the use of the lubricant, the deformable sample differs uniformly in the distribution of the coordinate grid along the wall thickness of the tube's sample. The boundary stagnation zones are identifying. It has been demonstrated that the front portion of the sample tubes is not fully worked through the wall thickness. While, the rear section is characterized by a dense grid structure. This in combination allows us to indirectly judge the possible anisotropy of the properties along the body of extruded pipes. It is proved that the using of lubricants on the contact surface: the press needle - inner surface of the sleeve will not have a significant effect on the extrusion force, and can be used mainly to ensure the durability of the press tool and to perform the quality characteristics of the inner surface of the extruded tubes. It was concluded that, first of all, the requirements for thermo-technical properties: heat capacity and thermal conductivity, and, secondarily, frictional, must be imposed on lubricants used for coating the inner surface of the sleeve and, accordingly, providing a separation layer between the press needle and the sleeve.
机译:本文展示了使用坐标网格的方法对管道挤出工艺进行实验研究的结果。摩擦摩擦的影响对可变形材料的接触表面的影响及压制工具对金属流动图案的影响。制造成形操作的计算用于挤出处理阶段。结果表明,变形不均匀。同时,由于在使用润滑剂的接触表面上产生有利条件,可变形样品均匀地不同于管样品的壁厚的坐标网格的分布。边界停滞区域正在识别。已经证明样品管的前部不完全通过壁厚进行完全工作。虽然,后部的特征在于致密的网格结构。这组合使我们能够间接地判断沿着挤出管体的性能的可能各向异性。事实证明,润滑剂对接触表面的使用:套筒的压力针内表面对挤出力没有显着影响,并且可以主要用于确保压力机的耐用性并执行挤出管内表面的质量特性。首先,首先,热能技术的要求:热容量和导热率,以及二次摩擦,必须施加对用于涂覆套筒内表面的润滑剂,并相应地提供分离压针和套筒之间的层。

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