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Author:

Han, Ling (Han, Ling.) | Huang, Li (Huang, Li.) | Zhang, Jinsheng (Zhang, Jinsheng.) | Lu, Yafei (Lu, Yafei.)

Indexed by:

EI Scopus SCIE

Abstract:

In order to prepare ceramic brake linings with higher friction performance and lower cost, combinatorial friction materials research was conducted. Raw materials used were screened by four criteria. Latin square coupled with Golden Section approach was utilized for experimental formulations design. Sensitivity series and comprehensive index of raw materials obtained from the relational grade analysis were used to rank the influence of each ingredient on friction performance. The evaluating merit of each formulation received from the fuzzy overall merits method was utilized to judge the best formulation. Both comprehensive index and evaluating merit are two novel parameters established and applied to the multi-objective optimization of friction material formulations. Optimization of ceramic friction formulations was implemented in three phases: (a) screen out the optimal one from the initial nine formulations in terms of their friction characteristics; (b) according to the comprehensive evaluation index, the volume fraction of the most advantageous ingredient for friction performance was increased and the most disadvantageous one was decreased correspondingly; and (c) the volume fraction of binder was varied and other ingredients' amounts were also changed proportionally. Eventually, the best one was obtained after performing 16 formulations. (c) 2006 Elsevier Ltd. All rights reserved.

Keyword:

aramid fibers friction/wear ceramics polymer matrix composites (PMC)

Author Community:

  • [ 1 ] Beijing Univ Technol, Key Lab Beijing City Preparat & Proc Novel Polyme, Beijing 100029, Peoples R China

Reprint Author's Address:

  • [Lu, Yafei]Beijing Univ Technol, Key Lab Beijing City Preparat & Proc Novel Polyme, Box 82, Beijing 100029, Peoples R China

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Source :

COMPOSITES SCIENCE AND TECHNOLOGY

ISSN: 0266-3538

Year: 2006

Issue: 15

Volume: 66

Page: 2895-2906

9 . 1 0 0

JCR@2022

ESI Discipline: MATERIALS SCIENCE;

JCR Journal Grade:1

Cited Count:

WoS CC Cited Count: 53

SCOPUS Cited Count: 65

ESI Highly Cited Papers on the List: 0 Unfold All

WanFang Cited Count:

Chinese Cited Count:

30 Days PV: 10

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