Digital Modeling of Cone-generated Enveloping Torus Worm

The meshing performance of enveloping tours worm drive requires the envelope lines to be matched strictly in accordance with the established relationship, the accuracy of tooth profile will directly affect its application performance. Aiming at the complicate meshing surface representation issue of...

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Main Authors: Zhi Liu, Hong Lu, Xin Kuang, Liang Xia
Format: Article
Language:zho
Published: Editorial Office of Journal of Mechanical Transmission 2020-10-01
Series:Jixie chuandong
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Online Access:http://www.jxcd.net.cn/thesisDetails#10.16578/j.issn.1004.2539.2020.10.009
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author Zhi Liu
Hong Lu
Xin Kuang
Liang Xia
author_facet Zhi Liu
Hong Lu
Xin Kuang
Liang Xia
author_sort Zhi Liu
collection DOAJ
description The meshing performance of enveloping tours worm drive requires the envelope lines to be matched strictly in accordance with the established relationship, the accuracy of tooth profile will directly affect its application performance. Aiming at the complicate meshing surface representation issue of cone-generated enveloping torus worm, the digital modeling method of this worm is proposed. The modeling frame is established firstly, and the meshing equations of the working tooth profile in different coordinate systems for the worm are deduced by applying differential geometry, kinematics, envelope theory and space coordinate transformation method, and the digital models of the working tooth profile of the worm are established, simultaneously, the generatrices equation of bottom and addendum surface are worked out. In addition, the constraint conditions of the worm digital models are constructed according to the enveloping process and boundary conditions of tooth profile. The solving algorithm for the complex nonlinear mathematical models is also designed based on the forming principle of the envelope surface, the instantaneous contact line and all meshing point cloud for the tooth profile are calculated, the distribution of contact line of worm tooth profile is also given. The digital solid model of worm is obtained by using curve and surface fitting technology based on the point cloud of worm tooth profile. The modeling experiment demonstrate that the digital model of worm is accurate, the designed solving algorithm of the model is effective as well as convergence, the worm tooth profile is of high precision, and the error of the worm tooth profile is at the level of 10<sup>-9</sup>. The research results can lay an accurate model foundation for precision digital manufacturing of cone-generated envelope torus worm and corresponding cone-generated double-envelope worm gear hob.
format Article
id doaj-art-67cfe6e325774cddbed53026b9728ca7
institution Kabale University
issn 1004-2539
language zho
publishDate 2020-10-01
publisher Editorial Office of Journal of Mechanical Transmission
record_format Article
series Jixie chuandong
spelling doaj-art-67cfe6e325774cddbed53026b9728ca72025-01-10T14:55:15ZzhoEditorial Office of Journal of Mechanical TransmissionJixie chuandong1004-25392020-10-0144606729791335Digital Modeling of Cone-generated Enveloping Torus WormZhi LiuHong LuXin KuangLiang XiaThe meshing performance of enveloping tours worm drive requires the envelope lines to be matched strictly in accordance with the established relationship, the accuracy of tooth profile will directly affect its application performance. Aiming at the complicate meshing surface representation issue of cone-generated enveloping torus worm, the digital modeling method of this worm is proposed. The modeling frame is established firstly, and the meshing equations of the working tooth profile in different coordinate systems for the worm are deduced by applying differential geometry, kinematics, envelope theory and space coordinate transformation method, and the digital models of the working tooth profile of the worm are established, simultaneously, the generatrices equation of bottom and addendum surface are worked out. In addition, the constraint conditions of the worm digital models are constructed according to the enveloping process and boundary conditions of tooth profile. The solving algorithm for the complex nonlinear mathematical models is also designed based on the forming principle of the envelope surface, the instantaneous contact line and all meshing point cloud for the tooth profile are calculated, the distribution of contact line of worm tooth profile is also given. The digital solid model of worm is obtained by using curve and surface fitting technology based on the point cloud of worm tooth profile. The modeling experiment demonstrate that the digital model of worm is accurate, the designed solving algorithm of the model is effective as well as convergence, the worm tooth profile is of high precision, and the error of the worm tooth profile is at the level of 10<sup>-9</sup>. The research results can lay an accurate model foundation for precision digital manufacturing of cone-generated envelope torus worm and corresponding cone-generated double-envelope worm gear hob.http://www.jxcd.net.cn/thesisDetails#10.16578/j.issn.1004.2539.2020.10.009Cone-generated torus wormMeshing surfaceDigital modelAlgorithm
spellingShingle Zhi Liu
Hong Lu
Xin Kuang
Liang Xia
Digital Modeling of Cone-generated Enveloping Torus Worm
Jixie chuandong
Cone-generated torus worm
Meshing surface
Digital model
Algorithm
title Digital Modeling of Cone-generated Enveloping Torus Worm
title_full Digital Modeling of Cone-generated Enveloping Torus Worm
title_fullStr Digital Modeling of Cone-generated Enveloping Torus Worm
title_full_unstemmed Digital Modeling of Cone-generated Enveloping Torus Worm
title_short Digital Modeling of Cone-generated Enveloping Torus Worm
title_sort digital modeling of cone generated enveloping torus worm
topic Cone-generated torus worm
Meshing surface
Digital model
Algorithm
url http://www.jxcd.net.cn/thesisDetails#10.16578/j.issn.1004.2539.2020.10.009
work_keys_str_mv AT zhiliu digitalmodelingofconegeneratedenvelopingtorusworm
AT honglu digitalmodelingofconegeneratedenvelopingtorusworm
AT xinkuang digitalmodelingofconegeneratedenvelopingtorusworm
AT liangxia digitalmodelingofconegeneratedenvelopingtorusworm