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Full-laser scribing method for flexible stainless steel substrate solar cell module

机译:柔性不锈钢基板太阳能电池模块的全激光划片方法

摘要

The invention relates a full-laser scribing method for a flexible stainless steel substrate solar cell module, comprising: preparing an insulating layer and a molybdenum layer on a stainless steel substrate in sequence; using a laser I to scribe the prepared insulating layer and molybdenum layer to form a first scribed line (P1); preparing the following film layers in sequence on the molybdenum layer in which P1 has been scribed: a CIGS layer, a cadmium sulfide layer and an intrinsic zinc oxide layer; using a laser II to make scribe and thus form a second scribed line (P2), wherein the second scribed line P2 is parallel with the first scribed line P1; and preparing an aluminum-doped zinc oxide layer on the intrinsic zinc oxide layer in which P2 has been scribed, and using a laser III to make scribe and thus form a third scribed line (P3), wherein the third scribed line P3 is parallel with the first scribed line P1. The invention may avoid disadvantages caused by the screen printing, such as large dead zone, expensive screen printing paste and frequent replacement of screens for screen printing, thereby improve efficiency and stability of the module and save cost and increase production efficiency.
机译:本发明涉及一种用于柔性不锈钢基板太阳能电池模块的全激光刻划方法,包括:在不锈钢基板上依次制备绝缘层和钼层;用激光I对准备好的绝缘层和钼层进行划线,形成第一划线(P 1 );在划有P 1 的钼层上依次制备以下膜层:CIGS层,硫化镉层和本征氧化锌层;使用激光II进行划线,从而形成第二划线(P 2 ),其中第二划线P 2 与第一划线P 1 ;然后在已刻有P 2 的本征氧化锌层上制备铝掺杂的氧化锌层,并使用激光III进行刻划,从而形成第三条划线(P 3 ),其中第三划线P 3 与第一划线P 1平行。由于存在较大的死区,需要昂贵的丝网印刷浆料和频繁更换丝网进行丝网印刷,从而提高了模块的效率和稳定性,节省了成本并提高了生产效率。

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