KUŹMICKI, Krzyztof ;ADAMCZAK, Stanisław ;GAJUR, Marek . A mathematical model of the dimensional chain for a generation 2 wheel hub unit. Articles in Press, [S.l.], v. 0, n.0, p. , september 2024. ISSN 0039-2480. Available at: <https://www.sv-jme.eu/sl/article/a-mathematical-model-of-the-dimensional-chain-for-a-generation-2-wheel-hub-unit/>. Date accessed: 21 nov. 2024. doi:http://dx.doi.org/.
Kuźmicki, K., Adamczak, S., & Gajur, M. (0). A mathematical model of the dimensional chain for a generation 2 wheel hub unit. Articles in Press, 0(0), . doi:http://dx.doi.org/
@article{., author = {Krzyztof Kuźmicki and Stanisław Adamczak and Marek Gajur}, title = {A mathematical model of the dimensional chain for a generation 2 wheel hub unit}, journal = {Articles in Press}, volume = {0}, number = {0}, year = {0}, keywords = {rolling-element bearings, dimensional chain, tolerance formula, axial clearance, wheel hub unit; }, abstract = {This article overviews wheel hub design solutions and proposes a mathematical model of the dimensional chain and a tolerance formula for calculating axial clearance for a generation 2 wheel hub assembly with ball bearings. An analysis of the dimensional chain was carried out and a tolerance equation was synthesised using three methods for partial interchangeability. The possibility of manufacturing the hub bearing using selection compensation was proposed. The considerations made provide an alternative to the current method of process design based on numerous trials and considerable cost.}, issn = {0039-2480}, pages = {}, doi = {}, url = {https://www.sv-jme.eu/sl/article/a-mathematical-model-of-the-dimensional-chain-for-a-generation-2-wheel-hub-unit/} }
Kuźmicki, K.,Adamczak, S.,Gajur, M. 0 September 0. A mathematical model of the dimensional chain for a generation 2 wheel hub unit. Articles in Press. [Online] 0:0
%A Kuźmicki, Krzyztof %A Adamczak, Stanisław %A Gajur, Marek %D 0 %T A mathematical model of the dimensional chain for a generation 2 wheel hub unit %B 0 %9 rolling-element bearings, dimensional chain, tolerance formula, axial clearance, wheel hub unit; %! A mathematical model of the dimensional chain for a generation 2 wheel hub unit %K rolling-element bearings, dimensional chain, tolerance formula, axial clearance, wheel hub unit; %X This article overviews wheel hub design solutions and proposes a mathematical model of the dimensional chain and a tolerance formula for calculating axial clearance for a generation 2 wheel hub assembly with ball bearings. An analysis of the dimensional chain was carried out and a tolerance equation was synthesised using three methods for partial interchangeability. The possibility of manufacturing the hub bearing using selection compensation was proposed. The considerations made provide an alternative to the current method of process design based on numerous trials and considerable cost. %U https://www.sv-jme.eu/sl/article/a-mathematical-model-of-the-dimensional-chain-for-a-generation-2-wheel-hub-unit/ %0 Journal Article %R %& %P 1 %J Articles in Press %V 0 %N 0 %@ 0039-2480 %8 2024-09-26 %7 2024-09-26
Kuźmicki, Krzyztof, Stanisław Adamczak, & Marek Gajur. "A mathematical model of the dimensional chain for a generation 2 wheel hub unit." Articles in Press [Online], 0.0 (0): . Web. 21 Nov. 2024
TY - JOUR AU - Kuźmicki, Krzyztof AU - Adamczak, Stanisław AU - Gajur, Marek PY - 0 TI - A mathematical model of the dimensional chain for a generation 2 wheel hub unit JF - Articles in Press DO - KW - rolling-element bearings, dimensional chain, tolerance formula, axial clearance, wheel hub unit; N2 - This article overviews wheel hub design solutions and proposes a mathematical model of the dimensional chain and a tolerance formula for calculating axial clearance for a generation 2 wheel hub assembly with ball bearings. An analysis of the dimensional chain was carried out and a tolerance equation was synthesised using three methods for partial interchangeability. The possibility of manufacturing the hub bearing using selection compensation was proposed. The considerations made provide an alternative to the current method of process design based on numerous trials and considerable cost. UR - https://www.sv-jme.eu/sl/article/a-mathematical-model-of-the-dimensional-chain-for-a-generation-2-wheel-hub-unit/
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TY - JOUR AU - Kuźmicki, Krzyztof AU - Adamczak, Stanisław AU - Gajur, Marek PY - 2024/09/26 TI - A mathematical model of the dimensional chain for a generation 2 wheel hub unit JF - Articles in Press; Vol 0, No 0 (0): Articles in Press DO - KW - rolling-element bearings, dimensional chain, tolerance formula, axial clearance, wheel hub unit, N2 - This article overviews wheel hub design solutions and proposes a mathematical model of the dimensional chain and a tolerance formula for calculating axial clearance for a generation 2 wheel hub assembly with ball bearings. An analysis of the dimensional chain was carried out and a tolerance equation was synthesised using three methods for partial interchangeability. The possibility of manufacturing the hub bearing using selection compensation was proposed. The considerations made provide an alternative to the current method of process design based on numerous trials and considerable cost. UR - https://www.sv-jme.eu/sl/article/a-mathematical-model-of-the-dimensional-chain-for-a-generation-2-wheel-hub-unit/
Kuźmicki, Krzyztof, Adamczak, Stanisław, AND Gajur, Marek. "A mathematical model of the dimensional chain for a generation 2 wheel hub unit" Articles in Press [Online], Volume 0 Number 0 (26 September 2024)
Articles in Press
This article overviews wheel hub design solutions and proposes a mathematical model of the dimensional chain and a tolerance formula for calculating axial clearance for a generation 2 wheel hub assembly with ball bearings. An analysis of the dimensional chain was carried out and a tolerance equation was synthesised using three methods for partial interchangeability. The possibility of manufacturing the hub bearing using selection compensation was proposed. The considerations made provide an alternative to the current method of process design based on numerous trials and considerable cost.