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Effects of moisture and temperature ageing on reliability of interfacial adhesion with black copper oxide substrate

机译:湿气和温度老化对黑色氧化铜基材界面粘合可靠性的影响

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The reliability of adhesion performance of bare Cu,as-deposited and surface-hardened black oxide coatings on Cu substrates was studied.The interfacial adhesion with a polyimide adhesive tape and an epoxy moulding compound was measured using the button shear and tape peel tests after hygrothermal ageing in an autoclave,high temperature ageing and thermal cycles.Moisture adsorption and desorption studies at different aging times suggested that the black oxide coating was effective in reducing the moisture adsorption.The bond strengths for all substrates remained almost unchanged after thermal ageing at 150deg C for 8 h.Thermal cycling between - 50deg C and 150deg C for 500 cycles reduced by about 20% the button shear strength of the as-deposited black oxide substrate,but it did change much the bonding performance of the bare Cu substrate.Hygrothermal ageing at 121 deg C/100% RH in an autoclave was most detrimental to adhesion performance because of the combined effect of elevated temperature and high humidity.The reduction in button shear strength after the initial ageing for 48 h was 50-67%,depending on the type of coating.In all accelerated ageing tests,the residual interfacial bond strengths were consistently much higher for the black-oxide-coated substrates than the bare Cu surface,confirming a higher reliability of black oxide coating.Fracture surfaces analysis of tape-peeled bare copper substrates after 500 cycles of thermal loading revealed a transition in failure mechanism from interfacial to cohesive failure.In contrast,the failure mechanism remained unchanged for black-oxide-coated substrates.The observations made from the button shear and tape peel tests were generally different because of the different fracture modes involved.
机译:研究了裸露的铜,沉积的和表面硬化的黑色氧化物涂层在铜基体上的附着性能的可靠性。湿热后,通过纽扣剪切和胶带剥离试验测量了聚酰亚胺胶带和环氧模塑化合物的界面粘合性高压釜中的老化,高温老化和热循环。在不同老化时间的水分吸附和解吸研究表明,黑色氧化物涂层可有效减少水分吸附.150°C的温度热老化后,所有基材的粘结强度几乎保持不变在50摄氏度至150摄氏度之间的500次热循环中,沉积的黑色氧化物基底的纽扣剪切强度降低了约20%,但确实改变了裸露的铜基底的粘结性能。在高压灭菌器中,在121摄氏度/ 100%相对湿度下,由于高温的共同作用,其对粘附性能的损害最大。根据涂层类型的不同,初始时效48小时后纽扣剪切强度的降低幅度为50-67%。在所有加速时效测试中,黑色表面的残余界面粘结强度始终更高。氧化覆膜的基材比裸露的铜表面要好,这证明了黑色氧化覆膜的可靠性更高。对带剥离的裸铜基板进行500次热负荷循环后的断裂表面分析表明,破坏机理从界面破坏过渡到内聚破坏。纽扣剪切和胶带剥离试验的观察结果通常不同,这是由于涉及的断裂方式不同而导致的。

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