Study of Forming Performance and Characterization of DLP 3D Printed Parts

Author:

Jiang Ting12ORCID,Yan Bo1,Jiang Minzheng12,Xu Buguang3,Gao Sheng12,Xu Yi3,Yu Yueqiang14ORCID,Ma Tingang1,Qin Tao1

Affiliation:

1. College of Mechanical Science and Engineering, Northeast Petroleum University, Daqing 163318, China

2. Key Laboratory of Petroleum Mechanical Engineering of Heilongjiang Province, Daqing 163318, China

3. Ningbo Runyes Medical Instrument Co., Ltd., Ningbo 315300, China

4. Research and Development Center of 3D Printing Material and Technology, Northeast Forestry University, Harbin 150040, China

Abstract

In order to explore the effect of printing parameter configurations on the forming performance of Digital Light Processing (DLP) 3D printed samples, printing experiments were carried out on the enhanced adhesion and efficient demolding of DLP 3D printing devices. The molding accuracy and mechanical properties of the printed samples with different thickness configurations were tested. The test results show that when the layer thickness increases from 0.02 mm to 0.22 mm, the dimensional accuracy in the X and Y directions increases first and then decreases, while the dimensional accuracy in the Z direction decreases, and the dimensional accuracy is the highest when the layer thickness is 0.1 mm. The mechanical properties of the samples decline with an increasing layer thickness of the samples. The mechanical properties of the 0.08 mm layer thickness are the best, and the tensile, bending, and impact properties are 22.86 Mpa, 48.4 Mpa, and 35.467 KJ/m2, respectively. Under the condition of ensuring molding accuracy, the optimal layer thickness of the printing device is determined to be 0.1 mm. The analysis of the section morphology of samples with different thicknesses illustrates that the fracture of the sample is a river-like brittle fracture, and there are no defects such as pores in the section of samples.

Funder

Joint Scientific and Technological Innovation Project of Hainan Province

Guiding Innovation Fund Project of Northeast Petroleum University

Teaching Reform in Higher Education of Heilongjiang Province

Key Subject of Education Planning in Heilongjiang Province

Daqing City guiding science and technology project

Scientific Research Start-up Fund Project of Northeast Petroleum University

National Key R&D Program of China

Publisher

MDPI AG

Subject

General Materials Science

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