文章摘要
铸钢基体双金属梯度连接制备大型锻模的新方法研究进展
Research Progress in New Approach for the Manufacture of Large Forging Die by Gradient Bimetallic Connection on Cast Matrix
Received:June 29, 2014  Revised:September 01, 2014
DOI:10. 3969 /j. issn. 1674-6457. 2014. 05. 003
中文关键词: 大型锻模  铸钢基体  双金属
英文关键词: large-scale forging die  cast-steel matrix  bimetallic
基金项目:国 家自 然科学基金面上项目 (51275543) ; 中国 科技部重大专项项目 (2012ZX04010-081)
Author NameAffiliation
ZHOU Jie Chongqing University, Chongqing 400044, China 
ZENG Qiang Chongqing University, Chongqing 400044, China 
LUO Yan Chongqing University, Chongqing 400044, China 
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中文摘要:
      为解决大型模锻液压机( 8 万 t 压机) 锻模采用 传统制 造方法时, 遇到 的模块自 由锻难度大、锻透性差、热处理硬度低、制造成本高等问 题, 提出 了 铸钢基体双金属梯度连接制 备大型锻模的 新方法。 该方法可节省传统锻模制造方法中 自 由 锻工??粗加工工??锻后热处理工序及模具钢材料成本, 虽 然增加了 双金属梯度层连接材料及相应工序, 但仍然可以大幅降低锻模制 造成本, 成本可节约 20% ~ 40% , 制造周 期可缩短 30% ~ 40% , 模具寿命可提高 40% ~ 50% 。 铸钢基体双金属梯度连接制备大型锻模方法, 从根本上解决了 大型锻模的 制 造和成本难题, 是大型锻模制 造革命性的新方法, 具有广泛的应用 前景和重大的经济效℃。
英文摘要:
      To solve the problems of large-scale hydraulic press ( 80 000 t) forging die in traditional manufacturing such as difficulty in free forging, poor forging permeability, heat treatment hardness and high cost. Gradient manufacturing for large forging die was firstly proposed, which took special cast steel as the forging die matrix and a dual metal gradient layer was welded on the working area of the die cavity. Compared with the traditional forging die manufacturing method, this new method could save the procedures including free forging, rough machining and heat treatment, and reduce the cost of die steel materials, while increasing the double metal gradient layer material and the corresponding process, but it could still significantly reduce the cost of forging die manufacturing by 20% ~ 40% , shorten the manufacturing cycle by 30% ~ 40% , and improve the die life by 40% ~ 50% . The method of cast-steel forging die with bimetallic gradient layer fundamentally solved the difficulty in manufacturing and reduced the cost of large-scale forging die, it was thus a revolutionary method in large forging die manufacturing, which has broad application prospects and significant economic benefits.
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