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Assessing Reliability of Cold Spray Sputter Targets in Photovoltaic Manufacturing

机译:评估光喷雾溅射靶在光伏制造中的可靠性

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Cold spray has been used to manufacture more than 800 Cu-In-Ga (CIG) sputter targets for deposition of high-efficiency photovoltaic thin films. It is a preferred technique since it enables high deposit purity and transfer of non-equilibrium alloy states to the target material. In this work, an integrated approach to reliability assessment of such targets with deposit weight in excess of 50 lb. is undertaken, involving thermal-mechanical characterization of the material in as-deposited condition, characterization of the interface adhesion on cylindrical substrate in as-deposited condition, and developing means to assess target integrity under thermal-mechanical loads during the physical vapor deposition (PVD) sputtering process. Mechanical characterization of cold spray deposited CIG alloy is accomplished through the use of indentation testing and adaptation of Brazilian disk test. A custom lever test was developed to characterize adhesion along the cylindrical interface between the CIG deposit and cylindrical substrate, overcoming limitations of current standards. A cohesive zone model for crack initiation and propagation at the deposit interface is developed and validated using the lever test and later used to simulate the potential catastrophic target failure in the PVD process. It is shown that this approach enables reliability assessment of sputter targets and improves robustness.
机译:冷喷雾已被用于制造超过800的Cu-In-Ga(CIG)溅射靶,以沉积高效光伏薄膜。它是一种优选的技术,因为它能够使非平衡合金状态的高沉积纯度和转移到目标材料。在这项工作中,对多余50磅的沉积物重量的可靠性评估的综合方法是涉及沉积条件下的材料热电机械表征,表征圆柱形基板上的界面粘附在物理气相沉积(PVD)溅射工艺期间,沉积条件,以及在热机械负载下评估目标完整性的开发装置。通过使用压痕测试和对巴西磁盘测试的调整来实现冷喷雾沉积CIG合金的机械表征。开发了一种自定义杠杆测试,以表征沿着CIG沉积物和圆柱形基板之间的圆柱界面的粘附,克服当前标准的限制。使用杠杆测试开发和验证了沉积接口裂纹启动和传播的粘性区域模型,后来用于模拟PVD过程中的潜在灾难性目标失败。结果表明,该方法能够对溅射靶点进行可靠性评估并提高鲁棒性。

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