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Computerized Simulation of Interference in Thread Milling of Non-Symmetric Thread Profiles

Communication avec acte
Auteur
ccFROMENTIN, Guillaume
127742 Laboratoire Bourguignon des Matériaux et Procédés [LABOMAP]
264230 Laboratory for Machine Tools and Production Engineering (WZL)
DOEBBELER, Benjamin
LUNG, Dieter

URI
http://hdl.handle.net/10985/9562
DOI
10.1016/j.procir.2015.03.018
Date
2015

Résumé

Thread milling is a machining technique which is becoming widely used in specific contexts such as large diameter threading. Furthermore, compared to tapping, it is fully adapted to produce internal threads in difficult-to-cut materials, because the tool can be easily removed if a breakage occurs. For thread milling, as well as for form milling, groove and worm machining, geometrical considerations are critical aspects to succeed surface machining with the required accuracy. Interference phenomena may appear and appropriate cutter profiles and tool trajectories have to be defined to generate the desired shape. The proposed study is focusing on the threading of non-symmetric profile. A geometrical model computing the envelope profiles and using full parametrical definitions of the tool and thread is proposed. Its exploitation allows an analysis to explain and to quantify the influencing parameters on overcut. Then, an iterative method based on a direct approach, is proposed to define the tool design allowing to machine non-symmetric threads with good accuracy.

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  • Laboratoire des Matériaux et Procédés (LaBoMaP)

Documents liés

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    Article dans une revue avec comité de lecture
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    Largely applied to internal threading of extruded tubes, cold form tapping is now becoming a promising process for internal threading of holes in non ferrous and ferrous solid components, more particularly for mass production ...
  • Traceability and quality assessment of Douglas fir (Pseudotsuga menziesii (Mirb.) Franco) logs: the TreeTrace_Douglas database 
    Article dans une revue avec comité de lecture
    ccLONGUETAUD, Fleur; ccPOT, Guillaume; MOTHE, Frédéric; BARTHELEMY, Alexis; DECELLE, Rémi; ccDELCONTE, Florian; GE, Xihe; GUILLAUME, Grégoire; MANCINI, Théo; RAVOAJANAHARY, Tojo; BUTAUD, Jean-Claude; ccCOLLET, Robert; DEBLED-RENNESSON, Isabelle; ccMARCON, Bertrand; NGO, Phuc; ROUX, Benjamin; ccVIGUIER, Joffrey (Springer Science and Business Media LLC, 2022-11-28)
    The TreeTrace_Douglas database includes images and measurements at several stages of the processing of Douglas fir logs, from sawmill logyard to machine grading and destructive testing of boards, and is suitable for research ...
  • Lithographically Defined Cross-Linkable Top Coats for Nanomanufacturing with High-χ Block Copolymers 
    Article dans une revue avec comité de lecture
    CHEVALIER, Xavier; GOMES CORREIA, Cindy; POUND-LANA, Gwenaelle; BÉZARD, Philippe; SÉRÉGÉ, Matthieu; PETIT-ETIENNE, Camille; GAY, Guillaume; CUNGE, Gilles; CABANNES-BOUÉ, Benjamin; NICOLET, Célia; NAVARRO, Christophe; CAYREFOURCQ, Ian; MÜLLER, Marcus; HADZIIOANNOU, Georges; ILIOPOULOS, Ilias; FLEURY, Guillaume; ZELSMANN, Marc (American Chemical Society (ACS), 2021)
    The directed self-assembly (DSA) of block copolymers (BCPs) is a powerful method for the manufacture of high-resolution features. Critical issues remain to be addressed for successful implementation of DSA, such as dewetting ...
  • Cutting edge preparation effect on tool wear during AISI 4140 face milling 
    Article dans une revue avec comité de lecture
    DENGUIR, Lamice; BESNARD, Aurélien; FROMENTIN, Guillaume; POULACHON, Gérard; ZHU, Xiaowen (Taylor & Francis, 2014)
    One of the criteria mastering the choice of a cutting tool is its wear resistance. In this paper, tool life is treated: on one hand, the study aims to classify the performances of the edge preparations in terms of ...
  • Geometrical analysis of thread milling – Part 2:Calculation of uncut chip thickness 
    Article dans une revue avec comité de lecture
    ccFROMENTIN, Guillaume; ccPOULACHON, Gerard (Springer Verlag, 2010)
    Thread milling offers interesting possibilities for machining internal or external threads. This machining technique uses a mill with a triangular profile for metric threads and a helical interpolation strategy. Thus, the ...

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