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Optimization of the toolpath strategy for the master ceramic jewelry mold pattern using the Rhinoceros software and Retrovit CNC machine
Stefanus W. Ratnanta (a), P.W. Anggoro (a)*, P.K. Fergiawan (b), J. Jamari (b)- A.P. Bayuseno (b)

(a) Department of Industrial Engineering, Faculty of Industrial Technology, University of Atma Jaya Yogyakarta, Jl. Babarsari 44, Yogyakarta 55281, Indonesia.

(b) Department of Mechanical Engineering, University of Diponegoro, Jl. Prof. Soedarto, SH., Tembalang, Semarang 50275, Indonesia.


Abstract

1. Introduction: Jewelry ceramic is a jewelry type product. Creative ceramic jewelry designs with distinctive textures, precision, detail and can be mass-produced can be produced through the collaboration of modern advanced manufacturing technology based on Computer-Aided Manufacturing (CAM) and CNC machines. This pendant mold pattern using Rhinoceros software and CNC machine retrovit.

2. Purpose: This paper demonstrates the optimization of toolpath strategy machining of jewelry liontin with batik texturing in a CNC retrovit machine on a small enterprise industry that can be obtained.

3. Method: Manufacturing product, optimization toolpath strategy machining on Rhinoceros CAM, CNC retrovit machine, some parameter cutting machining used in this paper to obtained the ceramic mold of jewelry.

4. Main Finding: Four types of pendant designs with Indonesian batik textures from Zbrush are set as 3D CAD models. The optimization of manufacturing CAM was carried out using Rhinoceros software. The pendant manufacturing process using CNC machine with china ash bone. The results of this product were used as a ceramic mold.

5. Implication: The output of this research has significant implications for researchers and the manufacturing industry in the field of ceramic design - manufacturing - fabrication even though Digital Marketing. This research also has implications for the use of modern computer-aided reverse engineering systems.

Keywords: Jewelry ceramic- CAM, CNC machine retrovit- pendant design

Topic: Engineering

Plain Format | Corresponding Author (Stefanus Widi Ratnanta)

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