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Volume 23 (2024)
Volume 23, Issue 2
Pg 101 - 131 (December 2024)
Volume 23, Issue 1
Pg 1 - 100 (June 2024)
Volume 22 (2023)
Volume 22, Issue 2
Pg 85 - 140 (July-Dec 2023)
Volume 22, Issue 1
Pg 1 - 83 (June 2023)
Volume 21 (2022)
Volume 21,
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Volume 20, Issue 2
Pg 73 - 111 (December 2021)
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Pg 1 - 71 (June 2021)
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Volume 19, Issue 2
Pg 53 - 98 (December 2020)
Volume 19, Issue 1
Pg 1 - 52 (June 2020)
Volume 18 (2019)
Volume 18, Issue 2
Pg 55 - 89 (December 2019)
Volume 18, Issue 1
Pg 1 - 53 (June 2019)
Volume 17 (2018)
Volume 17, Issue 2
Pg 79 - 110 (August 2018)
Volume 17 (2018)
Volume 17, Issue 2
Pg 79 - 110 (December 2018)
Volume 17, Issue 1
Pg 1 - 77 (June 2018)
Volume 16 (2017)
Volume 16, Issue 3
Pg 53 - 98 (December 2017)
Volume 16, Issue 1 - 2
Pg 1 - 52 (August 2017)
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Volume 15, Issue 4
Pg 189 - 261 (October 2016)
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Pg 93 - 187 (July 2016)
Volume 15, Issue 1
Pg 1 - 92 (January 2016)
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Pg 79 - 150 (October 2015)
Volume 14, Issue 1
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Volume 11, Issue 2
Pg 73 - 164 (April 2014)
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Pg 1 - 71 (January 2014)
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Volume 10, Issue 2
Pg 67 - 118 (October 2013)
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Pg 1 - 65 (July 2013)
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Pg 77 - 150 (April 2013)
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Pg 1 - 76 (January 2013)
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Pg 75 - 169 (October 2012)
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Pg 1 - 74 (July 2012)
Volume 7 (2012)
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Pg 71 - 146 (April 2012)
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Volume 6, Issue 2
Pg 83 - 155 (October 2011)
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Pg 1 - 82 (July 2011)
Volume 5 (2011)
Volume 5, Issue 2
Pg 77 - 149 (April 2011)
Volume 5, Issue 1
Pg 1 - 75 (January 2011)
Volume 4 (2010)
Volume 4, Issue 2
Pg 81 - 165 (October 2010)
Volume 4, Issue 1
Pg 1 - 80 (July 2010)
Volume 3 (2010)
Volume 3, Issue 2
Pg 107 - 199 (April 2010)
Volume 3, Issue 1
Pg 1 - 106 (January 2010)
Volume 2 (2009)
Volume 2, Issue 2
Pg 109 - 218 (October 2009)
Volume 2, Issue 1
Pg 1 - 108 (July 2009)
Volume 1 (2009)
Volume 1, Issue 2
Pg 105 - 211 (April 2009)
Volume 1, Issue 1
Pg 1 - 103 (January 2009)
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Computer Science and Artificial Intelligence
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Notice:
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International Journal of Materials Engineering and Technology
International Journal of Materials Engineering and Technology
Volume 5, Issue 1, Pages 41 - 59 (January 2011)
COMPREHENSIVE ANALYSIS OF COMPOSITION OF FRICTIONAL BRAKE LINER FOR HEAVY COMMERCIAL VEHICLE [A REVIEW]
P. K. Pandey, M. K. Pandey and V. K. Tripathi
Abstract:
In this paper, we present a survey of commercial brake composition and additives, and to indicate their, typical properties and functions, especially as regards their use in heavy trucks. Most truck pad and shoe materials described here were designed to wear against cast iron. This paper does not address issues associated with the fabrication and manufacturing of brake materials. Since there are literally thousands of brake material additives, and their combinations are nearly limitless, it is impractical to list them all here. Rather an attempt has been made to capture the primary constituents and their functions. Brake pad and shoe additives serve a variety of functions. Even a difference of a percent or two of additive concentration can affect performance, so composition control is important.
Keywords and phrases:
binder, reinforcement, friction modifier, filler, abrasive, matrix.
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P-ISSN: 0975-0444
E-ISSN: 2584-0339
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