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Analysis of mechanical properties of LTCC substrates

机译:LTCC基材的机械性能分析

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In this paper we describe the most commonly used methods for analysis the mechanical properties of 3 types LTCC substrates (DuPont 951, DuPont 9K7, MuRata) based on three- and four-point bending as well as Dynamic Mechanical Analysis (DMA). The results of analysis show that the four-point bend test indicates a distribution of stress in the substrate with more accuracy and points to the tendency of the fracture-toughness state in the material. The three-point bend test achieves higher flexural strength of tested substrates. The re-firing process applied to the LTCC type 951 increases the flexural strength by 10 %. Extension of the duration of the firing process from 4 h to 26.5 h causes increasing the flexural strength by 100 %. This work proves that the Murata has the best homogeneity and the LTCC type 9K7 has the greatest predisposition to brittle fracture at a distance of lower supports of 32 mm. The sintering process' conditions of the ceramics have the significant influence to the shrinkage of the all tested ceramics' types. DMA analyses of the ceramics within the elasticity range confirm the described behavior of fracture-toughness state realized by classic test methods.
机译:在本文中,我们描述了基于三点和四点弯曲以及动态力学分析(DMA)分析3种类型LTCC基板(杜邦951,杜邦9K7,MuRata)的机械性能的最常用方法。分析结果表明,四点弯曲试验表明基体中应力的分布更加准确,并指出了材料中断裂韧性状态的趋势。三点弯曲测试可实现被测基材更高的抗弯强度。应用于LTCC 951型的再烧制过程使抗弯强度提高了10%。焙烧过程的持续时间从4小时延长到26.5小时,使抗弯强度提高了100%。这项工作证明Murata具有最佳的均质性,而LTCC 9K7型在32 mm下支撑距离处最易发生脆性断裂。陶瓷的烧结工艺条件对所有测试陶瓷类型的收缩率都有重要影响。陶瓷在弹性范围内的DMA分析证实了经典测试方法所描述的断裂韧性状态的行为。

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