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3D 프린터로 제작되는 사각평판에서 핀홀과 내부 격자 구조에 따른 응력집중계수의 변화에 관한 연구

원문정보

A Study on the Change in Stress Concentration Factors according to Pinholes and Infilled Lattice Structure in a Square Plate Produced with a 3D Printer

김창규, 구학근

피인용수 : 0(자료제공 : 네이버학술정보)

초록

영어

In this study, when manufacturing a rectangular plate with a pinhole, the following conclusions were obtained as a result of analyzing the shape characteristics of the unit cell that fills the interior of the plate and the effect of changes in the size of the pinhole on the stress concentration coefficient. 1. The stress value generated in the case of the completely empty model was 13.9 MPa, which is an 18.8% increase in stress compared to the stress value 11.7 MPa generated in the fully filled model. However, since the weight of the empty model is 43.6% lower than that of the filled model, it is believed to be very advantageous in terms of cost. 2. The stress concentration coefficient value is lowest for the solid model and highest for the hollow model at the same d/H value. In other words, you can see that the values ​​are changing within the boxes of the solid model and hollow model. However, the grid matching model is closest to the solid model and the filling rate is as low as 33.4-9.1%, showing the most stable strength when filling empty space.

목차

Abstract
1. 서론
2. 모 델링 및 해석 방법
2.1 해석 모 델
2.2 하중 및 경계 조건
3. 해석 파라에타
3.1 중실 및 중공 구조
3.2 사각형 격자 충진 구조
3.3 다각형 격자 충전 구조
4. 해석 결과 분석
4.1. 중실 및 중공 구조
4.2. 사각형 격자 충진 구조
4.3. 다각형 격자 충진
4.4. 통합분석
6. 결론
References

저자정보

  • 김창규 Chang-Gyu Kim. Member, is PhD student department of mechanical system engineering, TongMyong University.
  • 구학근 Hak-Keun Ku. Member, professor is department of mechanical system engineering, graduate school, TongMyong University in Busan

참고문헌

자료제공 : 네이버학술정보

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