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钼合金的发展现状及展望

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在室温下,纯钼单质具有脆性高和冷脆转变温度低等特点,这导致了其在加工与应用方面存在极大的限制.为了突破这种限制,通过掺杂等手段衍生出各种钼合金,在高温(高达1 900℃)环境下具有出色的强度和机械稳定性.因此,在高温合金、电子、化工等领域的应用越来越广泛.文章对钼合金近年的发展现状进行了深入分析并对未来进行了展望.随着钼合金的迅速发展,新材料的开发能够满足各种行业的需求.并且,中国已成为世界上钼合金的主要生产国和消费国,未来钼合金的发展会继续推进.以市场需求为导向,环保为侧重点,节能降耗为目标,提高产品品质为宗旨,技术创新为驱动,全面发展.
Development Status and Prospects of Molybdenum Alloys
Pure molybdenum has the characteristics of high brittleness and low ductile-to-brittle transition temperature at room temperature,which limits its processing and application.To overcome these limitations,various molybdenum alloys have been derived through doping and other methods,which exhibit excellent strength and mechanical stability under high-temperature conditions(up to 1 900℃).Therefore,molybdenum alloys are increasingly used in fields such as high-temperature alloys,electronics,and chemical engineering.This paper provides an in-depth analysis of the recent development status of molybdenum alloys and looks forward to their future prospects.With the rapid development of molybdenum alloys,the development of new materials can meet the needs of various industries.Additionally,China has become a major producer and consumer of molybdenum alloys in the world,and the development of molybdenum alloys will continue to advance in the future.Guided by market demand,focusing on environmental protection,aiming at energy conservation and emission reduction,improving product quality as the purpose,and driven by technological innovation,striving for comprehensive development.

molybdenum alloymolybdenum dopingdevelopment status

崔超鹏、李强、范梦宇、张琦、叶子、郭梦祥、田振飞

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淮北师范大学物理与电子信息学院,安徽 淮北 235000

安徽省陶铝新材料产业共性技术研究中心,安徽 淮北 235000

钼合金 钼掺杂 发展现状

安徽省高等学校协同创新项目省级"六卓越一拔尖"项目(2022)淮北师范大学"四新"研究与实践项目淮北师范大学研究生教育教学改革研究项目淮北师范大学研究生教育教学研究项目淮北师范大学本科教育教学改革研究项目安徽省高等学校自然科学研究重点项目安徽省大学生创新创业训练计划淮北师范大学校级实验室开放基金

GXXT-2022-0862022zybj0862023sxyj0012023jgxm0112021zlgc0152023jxyj0232023AH050320S2023103730882023syskf021

2024

化工管理
中国化工企业管理协会

化工管理

影响因子:0.336
ISSN:1008-4800
年,卷(期):2024.(14)
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