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ZL109/Q235液-固复合工艺及其界面组织性能 被引量:4

Behavior of Compound Interface of ZL109/Q235 by Liquid-Solid Bonding Process
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摘要 研究了碳钢表面处理和预热温度对ZL109与Q235液-固复合界面组织和性能的影响。结果表明,对Q235钢基底进行表面处理可以有效地改善ZL109铝合金在Q235钢基底表面的润湿性;镀Ni-Cu复合镀层可以很明显地改善铝钢液-固结合中的润湿性并防止二次氧化的产生。通过该工艺复合的Q235/ZL109复合界面为冶金结合,界面组织为FeAl3、Fe2Al5金属间化合物,并能将复合界面结合层厚度控制在15~28μm之间,显著提高复合界面的剪切强度。 Effects of carbon steel surface treatment and pre-heating temperature on solid-liquid compound interface structure and performance of the Q235 / ZL109 were investigated. The results show that the surface wettability of ZL109/Q235 can be effectively improved by the surface treatment on the Q235 steel substrate. The Ni-Cu plating surface treatment can significantly improve the wettability of the bi-metallic samples and prevent from the secondary oxidation. The compound interface of the Q235 (700 ℃)/ZL109 (730 ℃) exhibits metallurgical bonding, which is composed of FeAl3, Fe2Al5 intermetallic compounds ,and the thickness of bonding layer can be controlled in range of 15 μm to 28 μm, significantly improving the shear strength of compound interface.
出处 《特种铸造及有色合金》 CAS CSCD 北大核心 2013年第7期665-668,共4页 Special Casting & Nonferrous Alloys
关键词 Q235碳钢 ZL109铝合金 液-固相复合 界面组织 Q235 Steel ZL109 Aluminum Alloy Liquid-Solid Compound Interface Microstructure
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