1. 郑州工程技术学院
扫 描 看 全 文
王凤梅, 高飞, 邬向伟, 等. 层厚对不同形状的SLA零件性能的影响[J]. 机械强度, 2022,44(3):758-762.
WANG FengMei, GAO Fei, WU XiangWei, et al. EFFECT OF LAYER THICKNESS ON PROPERTIES OF SLA PARTS WITH DIFFERENT SHAPES[J]. 2022,44(3):758-762.
王凤梅, 高飞, 邬向伟, 等. 层厚对不同形状的SLA零件性能的影响[J]. 机械强度, 2022,44(3):758-762. DOI: 10.16579/j.issn.1001.9669.2022.03.036.
WANG FengMei, GAO Fei, WU XiangWei, et al. EFFECT OF LAYER THICKNESS ON PROPERTIES OF SLA PARTS WITH DIFFERENT SHAPES[J]. 2022,44(3):758-762. DOI: 10.16579/j.issn.1001.9669.2022.03.036.
采用Somoss Imagine 8000光敏树脂,利用光固化立体成型技术制备带有平面、桥架、圆孔、螺母等多种形状的测试件,研究了不同层厚下不同形状的表面精度、尺寸精度、拉伸性能和打印耗时。结果表明,测试件在层厚为0.06 mm时,表面精度最差,层厚为0.08 mm时,表面精度最好。测试件上支撑面的尺寸精度随层厚的增加呈减小趋势,层厚过小,出现“Z”轴盈余现象,导致高度方向的尺寸精度增大;而层厚对水平方向的尺寸精度影响不大。测试件上桥架、细缝间隙、壁厚和螺母在层厚为0.06 mm时的尺寸精度均最差;在层厚为0.1 mm和0.08 mm时的尺寸精度均较好。层厚从0.08 mm增至0.1 mm时,抗拉强度由48.98 MPa降至46.62 MPa,降低了4.8%;断后伸长率由2.4%降至1.6%,均小于5%,说明适当的减小层厚可提高材料的强度。层厚与打印时间呈反比关系,当层厚由0.06 mm增大到0.1 mm时,打印时间缩短了67%,提高了打印效率。
Somoss Imagine 8000 photosensitive resin was used to prepare test parts with various shapes, such as plane, bridge, round hole, nut, etc., by stereo lithography appearance. The surface accuracy, dimensional accuracy, tensile properties and printing time of different shapes under different layer thickness were studied. The results show that the surface accuracy of the test piece is the worst when the thickness is 0.06 mm, and the best when the thickness is 0.08 mm. The dimensional accuracy of the upper support surface of the test piece decreases with the increase of the thickness of the layer. If the thickness is too small, the “Z” axis surplus phenomenon appears, which leads to the increase of the dimensional accuracy in the height direction. However, the thickness of the layer has little effect on the dimensional accuracy in horizontal direction. The dimensional accuracy of the bridge, the fine gap, the wall thickness and the nut were the worst when the layer thickness was 0.06 mm.The dimensional accuracy is better when the layer thickness is 0.1 mm and 0.08 mm.When the thickness increases from 0.08 mm to 0.1 mm, the tensile strength decreases from 48.98 MPa to 46.62 MPa, which decreases by 4.8%.Elongation decreases from 2.4% to 1.6%, all less than 5%, indicating that the strength of the material can be improved by appropriately reducing the thickness of the layer. The layer thickness is inversely proportional to the printing time. When the layer thickness increases from 0.06 mm to 0.1 mm, the printing time is shortened by 67% and the printing efficiency is improved.
光固化尺寸精度表面精度拉伸性能
Stereo lithographyDimensional accuracySurface accuracyTensile strength
0
浏览量
26
下载量
0
CSCD
关联资源
相关文章
相关作者
相关机构