Prediction of tensile strength of 3D printed part using response surface methodology

被引:7
|
作者
Soni, Abhishek [1 ]
Kumar, Shailendra [1 ]
Singh, Bhagat [1 ]
机构
[1] Jaypee Univ Engn & Technol, Dept Mech Engn, AB Rd, Raghogarh, Guna, India
关键词
Rapid prototyping; Additive manufacturing; 3D printing; RSM; ANOVA; OPTIMIZATION;
D O I
10.1007/s40430-018-1486-9
中图分类号
TH [机械、仪表工业];
学科分类号
0802 ;
摘要
In the recent past, rapid prototyping, especially powder-based inkjet 3D printing technology, has been most popular for complex and customised production. 3D printing also referred to as additive manufacturing involves a successive layering process through part fabrication. In this study, the effects of 3D printing parameters such as part orientation and layer thickness on tensile strength of fabricated part have been ascertained experimentally. Part orientation in XY, XZ and YZ planes has been considered for experimentation. Moreover, computer-aided design model has been used to fabricate a 3D prototype. Furthermore, a set of 27 experimental runs have been performed using Box-Behnken design of experiment. These experimental observations have been used to develop mathematical models for the tensile strength of fabricated part considering response surface methodology. Analysis of variance has been performed in order to check the statistical significance of control parameters. It has been deduced that on increasing the layer thickness, tensile strength of the fabricated part reduces.
引用
收藏
页数:11
相关论文
共 50 条
  • [21] An Approach to Mathematical Modelling of Tensile Strength of 3D Printed ABS Specimens
    Prasad, Kaushik, V
    Adarsha, H.
    Deepak, J.
    Swamy, Ranganatha M. K.
    [J]. JOURNAL OF POLYMER & COMPOSITES, 2021, 9 (02) : 1 - 10
  • [22] Effect of infill on tensile and flexural strength of 3D printed PLA parts
    Khan, S. F.
    Zakaria, H.
    Chong, Y. L.
    Saad, M. A. M.
    Basaruddin, K.
    [J]. INTERNATIONAL CONFERENCE ON ADVANCED MANUFACTURING AND INDUSTRY APPLICATIONS, 2018, 429
  • [23] Tensile strength of 3D printed materials: Review and reassessment of test parameters
    Floor, Jim
    van Deursen, Bas
    Tempelman, Erik
    [J]. MATERIALS TESTING, 2018, 60 (7-8) : 679 - 686
  • [24] Prediction and Compensation of Color Deviation by Response Surface Methodology for PolyJet 3D Printing
    Wei, Xingjian
    Bhardwaj, Abhinav
    Zeng, Li
    Pei, Zhijian
    [J]. JOURNAL OF MANUFACTURING AND MATERIALS PROCESSING, 2021, 5 (04):
  • [25] Prediction of interfacial tensile bond strength in 3D printed concrete based on a closed-form fracture model
    Lan, Tian
    Yang, Shutong
    Wang, Mingxin
    Xu, Mingqi
    Cheng, Shidong
    Chen, Zhengyuan
    [J]. JOURNAL OF BUILDING ENGINEERING, 2023, 70
  • [26] Evaluation of tensile strength of 3D printed objects with FDM process on RepRap platform
    Kung, Chieh
    Kuan, Hsu-Chiang
    Kuan, Chen-Feng
    [J]. PROCEEDINGS OF THE 2018 1ST IEEE INTERNATIONAL CONFERENCE ON KNOWLEDGE INNOVATION AND INVENTION (ICKII 2018), 2018, : 369 - 372
  • [27] Tensile Strength Analysis of the Ring-Shape 3D Printed Polymer Parts
    Hrituc, Adelina
    Slatineanu, Laurentiu
    Ripanu, M.
    Mihalache, Andrei
    Nagit, Gheorghe
    Dodun, Oana
    [J]. MACROMOLECULAR SYMPOSIA, 2022, 404 (01)
  • [28] Evaluation of Tensile Strength and Repeatability of 3D Printed Carbon Fiber Materials and Processes
    Batley, Abigail
    Glithro, Richard
    Dyer, Bryce
    Sewell, Philip
    [J]. 3D PRINTING AND ADDITIVE MANUFACTURING, 2023,
  • [29] Effect of fiber reinforcement on the open hole tensile strength of 3D printed composites
    Prajapati, Ashish R.
    Dave, Harshit K.
    Raval, Harit K.
    [J]. MATERIALS TODAY-PROCEEDINGS, 2021, 46 : 8629 - 8633
  • [30] Experimental study on mechanical properties of FDM 3D printed polylactic acid fabricated parts using response surface methodology
    Patil, Shashwath
    Sathish, T.
    Makki, Emad
    Giri, Jayant
    [J]. AIP ADVANCES, 2024, 14 (03)