首页> 外文会议>Symposium for passive electronic components >The Benefits of Polyalkylene Carbonate Binders (QPAC~?) for Low Temperature Glass Frit or Powdered Glass in Low Temperature Processed Thick Film Applications
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The Benefits of Polyalkylene Carbonate Binders (QPAC~?) for Low Temperature Glass Frit or Powdered Glass in Low Temperature Processed Thick Film Applications

机译:低温加工厚膜应用中的低温玻璃玻璃料(QPAC〜2)的聚亚烷基碳酸酯粘合剂(QPAC〜2)的益处

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QPAC? 40 Poly(Propylene Carbonate), or PPC is an exceptional binder for use in low temperature firing thick film pastes because it decomposes at low temperatures leaving minimal residue after debind. The binder's low decomposition temperature allows for binder thermolysis at temperatures well below the sintering temperature of glass and metal powders that are used in ultra-low firing thick film applications. The potential for dramatically reduced levels of remnant carbon after thermal processing enables improvement in the mechanical, optical and electronic properties of a fired thick film device. Additionally, it is proposed that the use of clean burnout QPAC? binders will enable increased utilization of thermal processing equipment and will result in a reduction in periodic maintenance for removal of binder tars and the like from manufacturing thermal processing equipment, both which will reduce manufacturing costs and associated per device costs. In this paper glass pastes using QPAC? PPC carbonate binders were studied. Thermal analyses of the rate of debinding of thick film glass pastes made with ultra-low firing (420 °C) glass were performed and compared with analogous thick film pastes made with other common thick film binders as well as a commercially available ultra-low fire thick film paste. Rheological properties of the constituent binder vehicles as well as the respective thick film pastes were also evaluated and compared. The resulting fired thick film samples were also visually inspected and the QPAC? fired thick films most closely resembled the color of the fired neat glass powder, while the fired thick films made from other common thick film binders were much darker, indicating high levels of remnant carbon and possibly chemical reduction of the ultra-low firing glass. These obvious advantages can be applied to numerous low fire thick film applications including glass packaging, solder glass, sealing glasses, phosphors, dopants, and other solar cell device and display sealing applications.
机译:QPAC? 40聚(碳酸亚丙酯),或PPC是用于低温烧制厚膜浆料的特殊粘合剂,因为它在低温下分解留下最小的残留物。粘合剂的低分解温度允许在低于玻璃和金属粉末的烧结温度下粘合剂热解,用于超低烧制厚膜应用。热处理后显着降低的残余碳水平的可能性能够改善燃烧厚膜装置的机械,光学和电子性质。另外,建议使用清洁倦怠qpac?粘合剂将使热处理设备的利用率提高,并将降低周期性维护,以从制造热处理设备中除去粘合剂焦油等,这将降低制造成本和每个设备成本相关联。在本文使用QPAC的纸玻璃浆料中?研究了PPC碳酸酯粘合剂。进行了用超低烧制(420℃)玻璃制成的厚膜玻璃浆料的脱脂速率的热分析,并与与其他常见的厚膜粘合剂制成的类似厚膜浆料以及商业上可获得的超低火相比厚膜膏。还评估组成粘合剂车辆的流变性能以及各自的厚膜浆料。还在视觉检查所得烧制的厚膜样品和QPAC?烧制的厚膜最近类似于燃烧整洁的玻璃粉末的颜色,而来自其他常见的厚膜粘合剂制成的烧制薄膜较暗,表明高水平的残余碳和可能的超低烧制玻璃化学降低。这些明显的优点可以应用于许多低火厚膜应用,包括玻璃包装,焊料玻璃,密封眼镜,磷光体,掺杂剂和其他太阳能电池装置以及显示密封应用。

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