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Improvement of surface quality of aluminum product in cold extrusion by using reuse tool with groove array formed on tool surface

机译:用重复使用工具在工具表面上形成槽阵列的冷挤压铝产品表面质量

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Surface smoothness of aluminum product was investigated with regard to viscosity range of naphthenic mineral oil N1 (VG10), N2 (VG22) and N3 (VG460) by carrying out cold extrusion tests using the plane strain extrusion apparatus constructed with the taper die, plane plate tool and container. The plane plate tools without or with the fine groove arrays scraped on the tool surface were prepared for the present investigation. Fine smooth surface of the products could not be obtained in case of N1 and N3 in extrusion tests. While, surface roughness of the product was fine in 0.04μmRa in case of N2 and tool surface roughness 0.05 μmRa. Cross sectional profile of the groove of groove array was self-reformed at the first time extrusion process using different lubricants. Then, extrusion tests for achieving smoother surface of the product were carried out by using reuse tool with the selected groove array and lubricants, N1 and N3. Surface smoothness of the product could be improved by using the reuse tool with the self-reformed groove array having selected cross sectional groove profile and at lubrication condition using N1 or N3. It was found that combination of the cross sectional profile of the groove of groove array and viscosity of lubricant could control the thickness of oil film and contribute to achieve smoother surface of the extruded products.
机译:铝产品的表面光滑度通过使用与所述锥形模头,平面板构成的平面应变挤出装置进行冷挤压试验关于环烷矿物油N1(VG10),N2(VG22)和N3(VG460)的粘度范围进行了研究工具和容器。不具有或具有刮下在工具表面上的微细槽阵列平面板工具被用于本研究制备的。细产品的表面光滑不能在挤出测试中N1和N3的情况下获得。同时,该产品的表面粗糙度为精细在0.04μmRa在N2和工具表面粗糙度0.05μmRa的情况下。在使用不同的润滑剂第一次挤压过程槽阵列的槽的横截面轮廓被自我改造。然后,为了实现产品的更光滑的表面挤压试验通过使用重用工具与所选择的槽列和润滑剂,N1和N3进行。该产品的表面光滑度可以通过使用与自重整槽列的重复使用工具具有选定的横截面凹槽轮廓并且使用N1或N3润滑条件得到改善。已发现润滑剂可以控制油膜的厚度的槽列和粘度的槽的横截面轮廓的该组合,并有助于实现挤出产品的光滑的表面。

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