Geometric Measurements for Double-Enveloping Worms
碩士 === 國立中山大學 === 機械與機電工程學系研究所 === 92 === Double-enveloping reducer is widely used in the industry due to its high transmission torque and high accuracy. The screw theory and the rigid-body transformation method are introduced and applied in this thesis to the determination of the worm surface. The...
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ndltd-TW-092NSYS54901022015-10-13T13:08:02Z http://ndltd.ncl.edu.tw/handle/39090384373826218496 Geometric Measurements for Double-Enveloping Worms 內凹型蝸桿幾何量測 Teng-Fa Su 蘇登發 碩士 國立中山大學 機械與機電工程學系研究所 92 Double-enveloping reducer is widely used in the industry due to its high transmission torque and high accuracy. The screw theory and the rigid-body transformation method are introduced and applied in this thesis to the determination of the worm surface. The equation of the worm surface is derived by the two methods based on different geometries of cutting tools (conical cutter and fly cutter). According to the Standards of American Gear Manufacturers Association (AGMA6030 C-87), the size and the shape of the cutters can be determined to conform the worm offset surface. Moreover, a measuring system is set up with a CMM (coordinate measuring machine) to measure and record the center point of the touch probe when it contacts with the surface of the double-enveloping worm. Finally, comparisons of measured results with different theoretical worm offset surfaces obtained from two types of cutting tools are made in this study. Geometric errors of the measured worm offset surface shows that the worm used in this thesis was machined by cutters with a conical form. Der-Min Tsay 蔡得民 2004 學位論文 ; thesis 67 zh-TW |
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碩士 === 國立中山大學 === 機械與機電工程學系研究所 === 92 === Double-enveloping reducer is widely used in the industry due to its high transmission torque and high accuracy. The screw theory and the rigid-body transformation method are introduced and applied in this thesis to the determination of the worm surface. The equation of the worm surface is derived by the two methods based on different geometries of cutting tools (conical cutter and fly cutter).
According to the Standards of American Gear Manufacturers Association (AGMA6030 C-87), the size and the shape of the cutters can be determined to conform the worm offset surface. Moreover, a measuring system is set up with a CMM (coordinate measuring machine) to measure and record the center point of the touch probe when it contacts with the surface of the double-enveloping worm. Finally, comparisons of measured results with different theoretical worm offset surfaces obtained from two types of cutting tools are made in this study. Geometric errors of the measured worm offset surface shows that the worm used in this thesis was machined by cutters with a conical form.
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author2 |
Der-Min Tsay |
author_facet |
Der-Min Tsay Teng-Fa Su 蘇登發 |
author |
Teng-Fa Su 蘇登發 |
spellingShingle |
Teng-Fa Su 蘇登發 Geometric Measurements for Double-Enveloping Worms |
author_sort |
Teng-Fa Su |
title |
Geometric Measurements for Double-Enveloping Worms |
title_short |
Geometric Measurements for Double-Enveloping Worms |
title_full |
Geometric Measurements for Double-Enveloping Worms |
title_fullStr |
Geometric Measurements for Double-Enveloping Worms |
title_full_unstemmed |
Geometric Measurements for Double-Enveloping Worms |
title_sort |
geometric measurements for double-enveloping worms |
publishDate |
2004 |
url |
http://ndltd.ncl.edu.tw/handle/39090384373826218496 |
work_keys_str_mv |
AT tengfasu geometricmeasurementsfordoubleenvelopingworms AT sūdēngfā geometricmeasurementsfordoubleenvelopingworms AT tengfasu nèiāoxíngwōgǎnjǐhéliàngcè AT sūdēngfā nèiāoxíngwōgǎnjǐhéliàngcè |
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1717731785017655296 |