刘华博, 赵毅鑫, 姜耀东, 王振华. 3D打印石膏试件力学性质实验[J]. 力学与实践, 2017, 39(5): 455-459,471. DOI: 10.6052/1000-0879-17-157
引用本文: 刘华博, 赵毅鑫, 姜耀东, 王振华. 3D打印石膏试件力学性质实验[J]. 力学与实践, 2017, 39(5): 455-459,471. DOI: 10.6052/1000-0879-17-157
LIU Huabo, ZHAO Yixin, JIANG Yaodong, WANG Zhenhua. EXPERIMENTAL STUDY OF MECHANICAL PROPERTIES OF 3D PRINTING GYPSUM SPECIMENS[J]. MECHANICS IN ENGINEERING, 2017, 39(5): 455-459,471. DOI: 10.6052/1000-0879-17-157
Citation: LIU Huabo, ZHAO Yixin, JIANG Yaodong, WANG Zhenhua. EXPERIMENTAL STUDY OF MECHANICAL PROPERTIES OF 3D PRINTING GYPSUM SPECIMENS[J]. MECHANICS IN ENGINEERING, 2017, 39(5): 455-459,471. DOI: 10.6052/1000-0879-17-157

3D打印石膏试件力学性质实验

EXPERIMENTAL STUDY OF MECHANICAL PROPERTIES OF 3D PRINTING GYPSUM SPECIMENS

  • 摘要: 3D打印技术目前已广泛应用在医疗、航空、汽车、建筑等领域,文中做了3D打印技术在岩石力学领域的应用尝试.利用3D打印技术制作两种类型的石膏试件进行实验室单轴压缩试验.实验表明:3D打印技术可以快速、精确、灵活地制作出所需复杂尺寸的试件;打印石膏试件密度较低;3D打印石膏试件具有强度低和塑性强的特性;简单标准试件的力学性质具有可重复性,含裂纹试件力学性质差异较大;含裂纹试件的制作尚存在技术上的困难.

     

    Abstract: The 3D printing technology is widely used in medical, aerospace, automotive, construction and other fields. This paper applies a 3D printing technology to the field of rock mechanics experiment. With the 3D printing, two types of gypsum specimens are produced for the laboratory uniaxial compression test, and it is shown that the 3D printing technology can produce the required complex size of the specimens. The 3D printing gypsum specimens enjoy low strength and high plasticity. The mechanical properties of simple standard specimens are found to be reproducible but the mechanical properties of the complex specimens are not; and the production of the specimens with cracks still has technical difficulties.

     

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