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Diffusion bonding of low carbon steel and pure zirconium with Cu-base amorphous interlayer

机译:低碳钢和纯锆与Cu基非晶层间的扩散键合

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摘要

A composite plate of low carbon steel and pure zirconium was fabricated by diffusion bonding with Cu-base amorphous interlayer at a temperature of 700 degrees C and pressure of 3 MPa. The effect of interlayer thickness on the microstructure and properties of the composite plate were investigated. The results show that all the samples produced with various interlayer thicknesses are composed of the reaction layer (RL) with a multilayer structure. Two dendritic structures are observed in the RL with 90 mu m thick interlayer. The maximum shear strength across the composite plate and the displacement is 88 MPa and 0.33 mm, respectively. The maximum bending strength and strain of the composite plate reaches 1079 MPa and 47.6%, respectively.
机译:通过在700℃的温度和3MPa的压力下,通过与Cu基非晶中间层的扩散键合来制造低碳钢和纯锆的复合板。 研究了层间厚度对复合板的微观结构和性质的影响。 结果表明,各种层间厚度产生的所有样品由具有多层结构的反应层(RL)组成。 在具有90μm厚的中间层的RL中观察到两个树突结构。 复合板的最大剪切强度和位移分别为88MPa和0.33mm。 复合板的最大弯曲强度和应变分别达到1079MPa和47.6%。

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