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Mechanical isotropy and postcure shrinkage of polydimethylsiloxane printed with digital light processing

机译:用数字光加工印刷的聚二甲基硅氧烷的机械各向同性和后胶质收缩

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Purpose This paper aims to investigate the printability of photocurable PDMS with digital light processing (DLP) in terms of dimensional accuracy, mechanical properties, isotropy and postcure shrinkage. Design/methodology/approach The photocurable PDMS was made from methacrylated PDMS-macromer and 2,4,6-Trimethylbenzoyldi-Phenylphosphinate (TPO-L) photoinitiator. The PDMS was printed using different orientations, sizes and post-exposure conditions and then evaluated by tensile test and microscope to determine the printability. Findings Printed parts show good accuracy and low shrinkage, but high directionality in modulus, ductility and strength. The dimensional error is less than 2% and the shrinkage rates are less than 0.52%. In contrast, the modulus varies between 0.87 and 0.96 MPa depending on print orientation, elongation varies from 34.7% to 66.4% and strength varies from 0.23 to 0.49 MPa. Originality/value This study quantitatively characterizes the printability of photo curable PDMS with DLP, which has not been reported elsewhere. This paper also discusses the challenges of PDMS printing for future advancement.
机译:目的本文旨在研究光固化PDMS在尺寸精度,机械性能,各向同性和后灌注收缩方面具有数字光处理(DLP)的可印刷性。设计/方法/方法通过甲基丙烯酸甲酸PDMS-MACROMER和2,4,6-三甲基Benzoydi-苯基膦酸酯(TPO-L)光引发剂进行光固化性PDM。使用不同的取向,尺寸和暴露后条件印刷PDM,然后通过拉伸试验和显微镜评估以确定可印刷性。调查结果印刷部件显示出良好的精度和低收缩,但模量,延展性和强度的高方向性。尺寸误差小于2%,收缩速率小于0.52%。相反,根据印刷取向,模量在0.87和0.96MPa之间变化,伸长率从34.7%变化至66.4%,强度从0.23到0.49MPa变化。本研究的原始性/值定量表征光可固化PDMS的可印刷性与DLP尚未在其他地方报告。本文还探讨了PDMS印刷促进进步的挑战。

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