Investigation of Thrust Force, Torque and Chip Formation in Tapping Threading by Finite Element Method

Author:

DEMİREL Tuncer1ORCID,YAĞMUR Selçuk2ORCID,KAYIR Yunus3ORCID,KURT Abdullah3ORCID

Affiliation:

1. GAZİ ÜNİVERSİTESİ, FEN BİLİMLERİ ENSTİTÜSÜ

2. GAZİ ÜNİVERSİTESİ, TEKNOLOJİ FAKÜLTESİ

3. GAZI UNIVERSITY, FACULTY OF TECHNOLOGY

Abstract

Threading with taps is a method frequently used in machining. Since this process takes place in a closed area due to its nature, some difficulties are encountered. In this study, the results of a previous experimental work were compared with the results of a simulation program. In the experimental work, the tapping process were performed by using M10 taps with three different geometries for the drilled holes on AISI 1050 material. Tapping operations were carried out with uncoated and TiN coated HSS tools. For the simulatin program, the 3D CAD models of the tested taps were created by reverse engineering method and then imported into a simulation program, called Third Wave AdvantEdge program. The CAD models were evaluated by Third Wave AdvantEdge program based the finite element method. The thrust force, torque, chip formation occurring during the threading process were examined. It was concluded that the simulation and the experimental results were quite compatible.

Funder

Gazi üniversitesi Bilimsel Araştırma Projeleri Koordinasyon Birimi

Publisher

Politeknik Dergisi

Subject

Colloid and Surface Chemistry,Physical and Theoretical Chemistry

Reference30 articles.

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2. [2] Kayır Y., “Effect of drilled hole diameter on thrust forces and torques for thread tapping on AISI 1050 stell with taps”, Uludağ University Journal of the Faculty of Engineering, 15(1): 1-13, (2010).

3. [3] Gökçe H., Yavuz M.. “The effect of cutting speed in tapping process with commercial purity molybdenum material HSS Tap”, Gazi Journal of Engineering Sciences, 5(3):237-243, (2019).

4. [4] Uzun G., Korkut İ., “The effects of cutting conditions on the cutting torque and tool life in the tapping process for AISI 304 stainless steel”, Materiali in Tehnologije, 50 (2): 275-280, (2016).

5. [5] Uzun G., Korkut İ., “The effect of cryogenic treatment on tapping” Int J Adv Manuf Technol, 67: 857-864, (2013).

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