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厚膜电路用抗温冲钯银电极浆料研究 被引量:3
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作者 陆冬梅 王大林 +2 位作者 孙社稷 王要东 赵科良 《电子元件与材料》 CAS CSCD 北大核心 2014年第5期24-28,共5页
介绍了一种新型厚膜电路用抗温冲钯银电极浆料。该浆料是将优选的不同形貌及粒度分布的超细银粉、超细钯粉、无铅玻璃粉、改性添加剂和有机载体按一定比例配制而成的,通过丝网印刷和烘干烧结,在质量分数96%的Al2O3基板上形成电极层。检... 介绍了一种新型厚膜电路用抗温冲钯银电极浆料。该浆料是将优选的不同形貌及粒度分布的超细银粉、超细钯粉、无铅玻璃粉、改性添加剂和有机载体按一定比例配制而成的,通过丝网印刷和烘干烧结,在质量分数96%的Al2O3基板上形成电极层。检测结果表明,在–60^+125℃,温冲100次,该电极层不开裂、不脱落,电极层附着力在40 N以上,满足了厚膜产品的需要,同时,该浆料有较好的工艺适应性。 展开更多
关键词 厚膜电路 抗温冲 电极浆料 银钯粉 无铅玻璃 附着力
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Low-carbon advanced nanostructured steels:Microstructure, mechanical properties, and applications 被引量:1
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作者 Haojie Kong Zengbao Jiao +1 位作者 Jian Lu Chain Tsuan Liu 《Science China Materials》 SCIE EI CAS CSCD 2021年第7期1580-1597,共18页
Low-carbon advanced nanostructured steels have been developed for various structural engineering applications, including bridges, automobiles, and other strength-critical applications such as the reactor pressure vess... Low-carbon advanced nanostructured steels have been developed for various structural engineering applications, including bridges, automobiles, and other strength-critical applications such as the reactor pressure vessels in nuclear power stations. The mechanical performances and applications of these steels are strongly dependent on their microstructural features. By controlling the size,number density, distribution, and types of precipitates, it is possible to produce nanostructured steels with a tensile strength reaching as high as 2 GPa while keeping a decent tensile elongation above 10% and a reduction of area as high as 40%. Besides, through a careful control of strength contributions from multiple strengthening mechanisms, the nanostructured steels with superior strengths and low-temperature impact toughness can be obtained by avoiding the temper embrittlement regime. With appropriate Mn additions, these nanostructured steels can achieve a triple enhancement in ductility(total tensile elongation, TE of ~30%) at no expense of strengths(yield strength, YS of ~1100 to 1300 MPa, ultimate tensile strength, UTS of ~1300 to 1400 MPa). More importantly, these steels demonstrate good fabricability and weldability. In this paper, the microstructure-property relationships of these advanced nanostructured steels are comprehensively reviewed. In addition, the current limitations and future development of these nanostructured steels are carefully discussed and outlined. 展开更多
关键词 heterogeneous nano-precipitates strength-ductility paradox EMBRITTLEMENT dislocation interactions
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