2022
DOI: 10.1299/jamdsm.2022jamdsm0011
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Research on equaling design and machining method of roughing allowances of a dual-cone enveloping toroidal worm

Abstract: method and high-efficiency machining method for the consistency rough machining allowance of the toroidal worm are not perfect, which is not conducive to improving the grinding efficiency and quality of the toroidal worm. Aiming at the design and processing of the toroidal worm roughing allowance, this paper studies the design method of the toroidal worm roughing allowance surface, and proposes a machining method of the allowance surface used in an ordinary CNC lathe. First, according to the forming principle … Show more

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“…In order to improve the precision of blade machining, worldwide scholars have carried out a lot of research on blade CNC machining (Kumanotani et al, 2021;Soori and Asmael, 2023;Peng et al, 2021;Liu, 2016;Xu et al, 2021;Rui et al, 2022;). In the aspect of influence of blade cutting parameters on machining deformation, Gorka proposed a time-domain model for predicting static and dynamic milling of cutters and established a model for the influence of tool geometry and directional inclination on milling force and vibration, which accurately detects milling chatter and deformation during inclined machining of impellers (Gorka, 2019).…”
Section: Introductionmentioning
confidence: 99%
“…In order to improve the precision of blade machining, worldwide scholars have carried out a lot of research on blade CNC machining (Kumanotani et al, 2021;Soori and Asmael, 2023;Peng et al, 2021;Liu, 2016;Xu et al, 2021;Rui et al, 2022;). In the aspect of influence of blade cutting parameters on machining deformation, Gorka proposed a time-domain model for predicting static and dynamic milling of cutters and established a model for the influence of tool geometry and directional inclination on milling force and vibration, which accurately detects milling chatter and deformation during inclined machining of impellers (Gorka, 2019).…”
Section: Introductionmentioning
confidence: 99%