在拉巴锻造厂采用集成IT技术对微合金钢进行处理

F. Tancsics
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引用次数: 1

摘要

在21世纪典型的锻造工业中,经济生产要求对越来越大规模的集成、复杂产品进行环保制造。要解决的困难需要有效的研究、技术开发和成本分析。最常见的是,成本分析要求关注锻造的能源需求,工具成本和原材料使用效率。在环境友好型技术解决方案的基础上保持和提高竞争力是21世纪锻造行业面临的最重要挑战之一。本案例介绍了RABA锻造厂开发的行星载体的最佳产量处理技术。基础技术的发展需要综合应用CAD(计算机辅助设计)- CAE(计算机辅助工程)和使用热像仪的测试方法。IT(信息技术)系统的集成创造了一种新的设计方法,即使在设计阶段也可以相对精确地确定BY处理产品的冷却技术。适当的微合金化基础材料和冷却技术使其可以省去调质热处理,采用节能锻造工艺。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
‘By’ Treating of Micro-Alloyed Steels Supported by Integrated ‘IT’ Technology in the Forging Factory of Raba
In the forging industry typical in the 21st century, economical production requires environment-friendly manufacturing of integrated and complicated products of larger and larger masses. Difficulties to be solved require effective researches, technological developments and cost analyses. Most frequently, cost analyses call the attention to energy demand of forging, to tool costs and to the efficiency of raw material usage. Preservation and enhancement of competitiveness based on environment-friendly technological solutions are one of the most important challenges for the forging industry in the 21st century. Our case study presents BY (The Best Yield) treatment technology of a planetary carrier developed in the RABA forging plant. Development of the basic technology required integrated application of CAD (Computer Aided Design) – CAE (Computer Aided Engineering) and a test method using thermographic camera. Integration of IT (Information Technology) systems created a new design method, which enables relatively precise determination of cooling technology for BY treated products even in the design stage. The properly micro-alloyed basic material and cooling technology made it possible to omit the quench and temper heat treatment and to adopt an energy-saving forging process.
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