Yu Yueqiang, Jiang Minzheng, Wang Suling, Guo Yanling, Jiang Ting, Zeng Weiliang, Zhuang Yu
College of Mechanical Science and Engineering, Northeast Petroleum University, Daqing 163318, China.
College of Mechanical and Electrical Engineering, Northeast Forestry University, Harbin 150040, China.
Materials (Basel). 2021 Jan 18;14(2):448. doi: 10.3390/ma14020448.
The agricultural and forestry waste walnut shell and copolyester hot-melt adhesives (Co-PES) powder were selected as feedstock. A kind of low-cost, low-power consumption, and environmentally friendly walnut shell/Co-PES powder composites (WSPC) was used for selective laser sintering (SLS). Though analyzing the size and morphology of walnut shell particle (≤550 μm) as well as performing an analysis of surface roughness, density, and mechanical test of WSPC parts with different particle sizes, results showed that the optimal mechanical performance (tensile strength of 2.011 MPa, bending strength of 3.5 MPa, impact strength of 0.718 KJ/m) as walnut shell powder particle size was 80 to 120 μm. When walnut shell powder particle diameter was 120 to 180 μm, the minimum value of surface roughness of WSPC parts was 15.711 μm and density was approximately the maximum (0.926 g/cm).
选用农林废弃物核桃壳和共聚酯热熔胶(Co-PES)粉末作为原料。一种低成本、低功耗且环保的核桃壳/Co-PES粉末复合材料(WSPC)被用于选择性激光烧结(SLS)。通过分析核桃壳颗粒(≤550μm)的尺寸和形态,并对不同粒径的WSPC零件进行表面粗糙度、密度和力学性能测试,结果表明,当核桃壳粉末粒径为80至120μm时,其力学性能最佳(拉伸强度为2.011MPa,弯曲强度为3.5MPa,冲击强度为0.718kJ/m)。当核桃壳粉末粒径为120至180μm时,WSPC零件的表面粗糙度最小值为15.711μm,密度约为最大值(0.926g/cm)。