UGC Approved Journal no 63975(19)
New UGC Peer-Reviewed Rules

ISSN: 2349-5162 | ESTD Year : 2014
Volume 12 | Issue 10 | October 2025

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Published in:

Volume 10 Issue 5
May-2023
eISSN: 2349-5162

UGC and ISSN approved 7.95 impact factor UGC Approved Journal no 63975

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Published Paper ID:
JETIR2305574


Registration ID:
514093

Page Number

f495-f501

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Title

Design Manufacturing and Analysis of Human Organ Hip Implant Using Biodegradable Material Using 3D printer Technique

Abstract

In this project work, with the advances in digital computer systems and application software for design and development using 3D printing technique is very challenges in biomedical applications. Over the past 30 years, additive manufacturing (AM) has developed rapidly and has demonstrated great potential in biomedical applications. additive manufacturing is a material it may be metal or polymer -oriented manufacturing technology, since the solidification mechanism, architecture resolution, post-treatment process, and functional application are based on the materials to be printed. Here 3D printing technique is an additive manufacturing procedure an extensive variety of structures and complex geometries from 3D information or model data. The procedure comprises of printing successive layers of material that are famed each other. 3D printing is an additive manufacturing technology that creates a wide range of structures and complex geometries using 3D data or model data. The method entails printing successive layers of material that are distinguished from one another. This approach is based on fusion deposition (FDM). In this work, 3D printing is used to create complex geometries with ease using PLA. Static stress analysis is also done out using finite element analysis. However, the use of 3D printable materials in the manufacturing of bio-implants is still limited. This paper examines 3D AM materials for bioimplants. With the advancement of multi-material printing technology, it is now possible to print on a variety of different materials. 3D AM materials will be used to construct bio-implants and soft/rigid hybrid biological structures. In most cases, the preparatory technology is employed to create pure plastic. The carbon fiber is reinforced into a polymer resin to make a composite material, which is then extruded into 3D printing filaments. The material is subsequently turned into ASTM standard specimens with the help of 3D printing. The printer is then put through a static stress study for human hip implants using ANSYS.

Key Words

Hip Replacement, CAD software, PLA material, Biomedical implants, 3D Printer, FEA Model

Cite This Article

"Design Manufacturing and Analysis of Human Organ Hip Implant Using Biodegradable Material Using 3D printer Technique", International Journal of Emerging Technologies and Innovative Research (www.jetir.org), ISSN:2349-5162, Vol.10, Issue 5, page no.f495-f501, May-2023, Available :http://www.jetir.org/papers/JETIR2305574.pdf

ISSN


2349-5162 | Impact Factor 7.95 Calculate by Google Scholar

An International Scholarly Open Access Journal, Peer-Reviewed, Refereed Journal Impact Factor 7.95 Calculate by Google Scholar and Semantic Scholar | AI-Powered Research Tool, Multidisciplinary, Monthly, Multilanguage Journal Indexing in All Major Database & Metadata, Citation Generator

Cite This Article

"Design Manufacturing and Analysis of Human Organ Hip Implant Using Biodegradable Material Using 3D printer Technique", International Journal of Emerging Technologies and Innovative Research (www.jetir.org | UGC and issn Approved), ISSN:2349-5162, Vol.10, Issue 5, page no. ppf495-f501, May-2023, Available at : http://www.jetir.org/papers/JETIR2305574.pdf

Publication Details

Published Paper ID: JETIR2305574
Registration ID: 514093
Published In: Volume 10 | Issue 5 | Year May-2023
DOI (Digital Object Identifier):
Page No: f495-f501
Country: Bengaluru, karnataka, India .
Area: Engineering
ISSN Number: 2349-5162
Publisher: IJ Publication


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