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Colloidal processing, tape casting and sintering of PLZT for development of piezoceramic/polymer interlayered composites.

机译:PLZT的胶体加工,胶带铸造和烧结,用于开发压电陶瓷/聚合物夹层复合材料。

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Piezoceramic/polymer composites possess many advantages as compared to single-phase piezoceramics. One typical form of the composites is the interlayered structure, where the main requirement is to obtain thin, flat and dense ceramic sheets. Tape casting is a reliable process for producing such high-quality sheets. The colloidal processing of tape casting slurries is a critical step to achieve uniform ceramic bodies. Lanthanum-modified lead zirconate titanate (PLZT) was selected for making piezoceramic sheets due to its superior piezoelectric properties.; The quality of green tapes depends mainly on the solvents and organic additives of tape casting slurries. The effects of xylenes/ethanol solvent mixtures on non-aqueous slurries were first investigated. Well-dispersed colloidal suspensions were obtained in xylenes-rich solvents with a minimum amount of menhaden fish oil as a dispersant. Adsorption of dispersant and PLZT solids content of unfired tapes are strongly affected by the solvent(s) utilized. Furthermore, when selecting solvent mixtures, one needs to consider other additives, such as binder that can affect the viscosity of slurries.; Aqueous tape casting was performed using a polyelectrolyte dispersant, poly(vinyl alcohol) (PVA) binders and various plasticizers. Zeta potential, conductivity and viscosity of PLZT suspensions containing dispersant were characterized. The effects of plasticizers and binders on properties of unfired tapes were also investigated. The tapes made from low molecular weight plasticizers showed higher plasticity. Glycerol was shown to be the most effective plasticizer for PVA. Strong hydrogen bonding in high hydrolysis PVA led to high strength and high bulk density of green tapes, but also caused deformation of the tapes after drying.; There are many challenges for sintering PLZT tapes due to volatilization of PbO component at high temperatures and fragility of thin tapes. By using the proper setter powders and the sandwich method, flat and crack-free PLZT tapes can be sintered with low PbO loss. It was found that both sintering time and PbO loss affected the fracture mode and electrical properties of PLZT materials. "Buffer sheets" containing low solids loading of setter powders were also developed for mass production of PLZT tapes.
机译:与单相压电陶瓷相比,压电陶瓷/聚合物复合材料具有许多优势。复合材料的一种典型形式是夹层结构,其中主要要求是获得薄,平和致密的陶瓷片。胶带铸造是生产这种高质量板材的可靠方法。带式铸造浆料的胶体加工是获得均匀陶瓷体的关键步骤。镧改性的锆钛酸铅钛酸盐(PLZT)因其优越的压电性能而被选作压电陶瓷板。生带的质量主要取决于带铸浆的溶剂和有机添加剂。首先研究了二甲苯/乙醇溶剂混合物对非水浆料的影响。在富含二甲苯的溶剂中获得了分散良好的胶体悬浮液,其中使用了少量的鲱鱼油作为分散剂。未烧制带的分散剂的吸附和PLZT固体含量受所用溶剂的强烈影响。此外,在选择溶剂混合物时,需要考虑其他添加剂,例如会影响浆液粘度的粘合剂。使用聚电解质分散剂,聚乙烯醇(PVA)粘合剂和各种增塑剂进行水带流延。表征了含有分散剂的PLZT悬浮液的ζ电势,电导率和粘度。还研究了增塑剂和粘合剂对未烧制胶带性能的影响。由低分子量增塑剂制成的胶带显示出较高的可塑性。甘油被证明是PVA最有效的增塑剂。高度水解的PVA中强的氢键结合导致生胶带的高强度和高堆积密度,但也导致胶带在干燥后变形。由于高温下PbO组分的挥发和薄带的脆性,烧结PLZT带存在许多挑战。通过使用合适的镶嵌粉和夹心法,可以烧结低PbO损耗的平整无裂纹的PLZT带。发现烧结时间和PbO损失都影响PLZT材料的断裂模式和电性能。还开发了含有低固体含量的镶嵌粉的“缓冲纸”,以批量生产PLZT胶带。

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