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TiB2基陶瓷/42CrMo合金钢梯度纳米结构复合材料力学性能与损伤失效机制研究
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军械工程学院科研部,军械工程学院,军械工程学院,军械工程学院,军械工程学院

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国家自然科学基金资助(项目号51072229)


Mechanical Properties, Mechanism of Damage and Failure of Nano-structured Graded Composite of TiB2-based Ceramic and 42CrMo Alloy Steel
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Science research department, Ordnance Engineering College,Ordnance Engineering College,Ordnance Engineering College,Ordnance Engineering College,Ordnance Engineering College

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    摘要:

    通过离心反应熔铸工艺制备出TiB2/42CrMo层状复合材料,经力学性能测试,该复合材料弯曲强度、断裂韧性与层间剪切强度分别达到1250 ± 35 MPa、75 ± 12 MPa·m1/2与450 ± 20 MPa,因此可以认为正是由于该层状复合材料层间原位生成陶瓷/铁基合金梯度纳米结构复合界面,形成合金/陶瓷相界尺度呈空间连续梯度变化的结构演化,不仅使该材料具有类似金属的典型塑性变形特征,而且又使得该层状复合材料在三点弯曲与短梁层间剪切测试过程中均表现出明显的失效延迟行为。

    Abstract:

    By taking centrifugal reactive casting processing to prepare the TiB2/42CrMo laminated composites, flexural strength, fracture toughness and interlaminar shear strength of the laminated composite measured 1250 ± 35 MPa, 75 ± 12 MPa·m1/2 and 450 ± 20 MPa respectively. Because the microstructure with the nano-structured gradient directly developed in the ceramic/steel interlaminar region, the ceramic/alloy phase-boundary size with continuous gradient was spatially formed from the ceramic to the steel. As a result, the laminated composite not only had the plastic deformation capacity similar to the metal, but more importantly also exhibited strong mechanical behaviors of failure delay in both load-displacement curves during 3-point bending test and short-beam interlaminar-shearing test.

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宋义刚,路晓波,刘宏波,刘 锋,赵忠民. TiB2基陶瓷/42CrMo合金钢梯度纳米结构复合材料力学性能与损伤失效机制研究[J].稀有金属材料与工程,2018,47(S1):127~131.[Song Yigang, Lu Xiaobo, Liu Hongbo, Liu feng, Zhao Zhongmin. Mechanical Properties, Mechanism of Damage and Failure of Nano-structured Graded Composite of TiB2-based Ceramic and 42CrMo Alloy Steel[J]. Rare Metal Materials and Engineering,2018,47(S1):127~131.]
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  • 收稿日期:2017-06-04
  • 最后修改日期:2018-02-11
  • 录用日期:2018-02-12
  • 在线发布日期: 2018-10-22
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