首页> 外文会议>International Conference on Processing amp; Manufacturing of Advanced Materials; 20060704-08; Vancouver(CA) >A NOVEL FORMING PROCESS OF COPPER CLADDING ALUMINUM COMPOSITE MATERIALS WITH CORE-FILLING CONTINUOUS CASTING
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A NOVEL FORMING PROCESS OF COPPER CLADDING ALUMINUM COMPOSITE MATERIALS WITH CORE-FILLING CONTINUOUS CASTING

机译:连续填充铜包铝复合材料的新成形工艺

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摘要

To simplify forming process of cladding materials with high performance, such as copper cladding aluminum composite materials, and to improve the interface quality of cladding materials, a novel forming process called Core-Filling continuous Casting (CFC) for bimetal composite materials is proposed. A conceptual equipment is developed, and the forming of composite bars of copper cladding aluminum is investigated. The basic technique theory of CFC, the reaction and bonded state of interface and the interfacial bonding strength of the cladding materials, as well as the influences of technological parameters are analyzed. The composite bars of copper cladding aluminum with 24mm in diameter of core material and 8mm in thickness of cladding layer are successfully fabricated. The results show that: (ⅰ) the proposed CFC process is feasible in principle; (ⅱ) the composite bars of copper cladding aluminum having metallurgical bonding interfaces can be fabricated by CFC process under the conditions of liquid copper temperature of 1250~1300℃, liquid aluminum temperature of about 700℃ and drawing velocity of 12~24mm/min; (ⅲ) the copper layer thickness distribution is uniform both in the directions of portrait and circumference and (iv) the interfacial bonding strength is higher than that of core aluminum.
机译:为了简化高性能覆层材料(例如覆铜铝复合材料)的成型过程,并提高覆层材料的界面质量,提出了一种新型的双金属复合材料成型工艺,称为芯填充连续铸造(CFC)。开发了一种概念设备,并研究了覆铜铝复合棒的成型。分析了CFC的基本技术原理,界面的反应和结合状态,熔覆材料的界面结合强度以及工艺参数的影响。成功地制造了芯材直径为24mm,包层厚度为8mm的覆铜铝复合棒。结果表明:(ⅰ)拟议的氟氯化碳工艺原则上是可行的; (ⅱ)具有液态结合温度的液态铜温度为1250〜1300℃,液态铝温度为700℃左右,拉拔速度为12〜24mm / min的条件下,可以采用CFC工艺制备具有冶金结合界面的覆铜铝复合棒; (ⅲ)铜层厚度分布在纵向和圆周方向上均一,并且(iv)界面结合强度高于芯铝。

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