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EFFECT OF SILICEOUS MONEL VKM1 CRYSTALLIZATION CONDITIONS ON EXTRUDED SEMI-FINISHED PRODUCT STRUCTURE

机译:硅质硅钢VKM1结晶条件对挤出半成品结构的影响

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摘要

The effect of crystallization conditions (during casting in a copper chill mold, cast iron mold, and with ingot preparation by high-gradient directional crystallization) of high-strength deformable wear- and corrosion-resistant alloy based on nickel-copper grade VKM1 (NMKZhMts-30-4-2-1 -VI) on grain size in final semifinished product is studied, i.e., extruded bar with an identical heat treatment regime. It is shown that ingot casting in a cast iron mold provides preparation of a dense original ingot with coarse eutectic fragment precipitates that do not dissolve entirely on heating for extrusion, they initiate development of a considerable amount of slip planes during extrusion, and on quenching delay grain growth. This provides formation of a more fine-grained structure compared with metal cast in a copper chill mold and that obtained by high-gradient directional crystallization.
机译:基于镍铜级VKM1(NMKZhMts)的高强度可变形耐磨耐腐蚀合金的结晶条件(在铜冷模,铸铁模中铸造以及通过高梯度定向结晶制备铸锭期间)的影响研究了最终半成品的晶粒尺寸(-30-4-2-1 -VI),即具有相同热处理方案的挤压棒材。结果表明,铸铁模具中的铸锭提供了致密的原始铸锭的制备,该铸锭具有粗糙的共晶碎片沉淀物,这些沉淀物在加热挤压时不会完全溶解,在挤压过程中以及在淬火延迟时会引发大量滑移面的发展。谷物生长。与在铜冷却模具中铸造的金属以及通过高梯度定向结晶获得的金属相比,这提供了更细粒度的结构的形成。

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