HEAT TRANSIENT TRANSFER ANALYSIS OF BRAKE DISC /PAD SYSTEM

Braking is mainly controlled by the engine. Friction between a pair of pads and a rotating disc converts the kinetic energy of the vehicle into heat. High temperatures can be reached in the system which can be detrimental for both, components and passenger safety. Numerical techniques help simulate...

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Main Authors: Thuppal Vedanta, Srivatsan, Kora, Naga Vamsi Krishna
Format: Others
Language:English
Published: Blekinge Tekniska Högskola, Institutionen för maskinteknik 2016
Subjects:
Online Access:http://urn.kb.se/resolve?urn=urn:nbn:se:bth-13461
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spelling ndltd-UPSALLA1-oai-DiVA.org-bth-134612016-12-15T05:13:08ZHEAT TRANSIENT TRANSFER ANALYSIS OF BRAKE DISC /PAD SYSTEMengThuppal Vedanta, SrivatsanKora, Naga Vamsi KrishnaBlekinge Tekniska Högskola, Institutionen för maskinteknikBlekinge Tekniska Högskola, Institutionen för maskinteknik2016Brake discBrake dimensioningHeat transient analysisFinite ElementCalibrationBraking is mainly controlled by the engine. Friction between a pair of pads and a rotating disc converts the kinetic energy of the vehicle into heat. High temperatures can be reached in the system which can be detrimental for both, components and passenger safety. Numerical techniques help simulate load cases and compute the temperatures field in brake disc and brake pads. The present work implements a Finite Element (FE) toolbox in Matlab/Simulink able to simulate different braking manoeuvres used for brake dimensioning mainly in the early phase of car development process. The brake pad/disc geometry is considered as an axisymmetric body assuming negligible temperature gradient along the circumference of the disc. Calibration using three control factors namely: heat coefficient during braking , acceleration  and emissivity  for the implemented thermal model is performed using experimental investigation at Volvo Car Corporation (VCC) for three specific severe load cases. The thermal model is extended to measure brake fluid temperatures to ensure no vaporisation occurs. Simulation results of the brake disc and brake pad show good correlation with the experimental tests. A sensitivity analysis with the control factors showed convective coefficient during acceleration  the most sensitive, with temperature change of around 16%. Student thesisinfo:eu-repo/semantics/bachelorThesistexthttp://urn.kb.se/resolve?urn=urn:nbn:se:bth-13461application/pdfinfo:eu-repo/semantics/openAccess
collection NDLTD
language English
format Others
sources NDLTD
topic Brake disc
Brake dimensioning
Heat transient analysis
Finite Element
Calibration
spellingShingle Brake disc
Brake dimensioning
Heat transient analysis
Finite Element
Calibration
Thuppal Vedanta, Srivatsan
Kora, Naga Vamsi Krishna
HEAT TRANSIENT TRANSFER ANALYSIS OF BRAKE DISC /PAD SYSTEM
description Braking is mainly controlled by the engine. Friction between a pair of pads and a rotating disc converts the kinetic energy of the vehicle into heat. High temperatures can be reached in the system which can be detrimental for both, components and passenger safety. Numerical techniques help simulate load cases and compute the temperatures field in brake disc and brake pads. The present work implements a Finite Element (FE) toolbox in Matlab/Simulink able to simulate different braking manoeuvres used for brake dimensioning mainly in the early phase of car development process. The brake pad/disc geometry is considered as an axisymmetric body assuming negligible temperature gradient along the circumference of the disc. Calibration using three control factors namely: heat coefficient during braking , acceleration  and emissivity  for the implemented thermal model is performed using experimental investigation at Volvo Car Corporation (VCC) for three specific severe load cases. The thermal model is extended to measure brake fluid temperatures to ensure no vaporisation occurs. Simulation results of the brake disc and brake pad show good correlation with the experimental tests. A sensitivity analysis with the control factors showed convective coefficient during acceleration  the most sensitive, with temperature change of around 16%.
author Thuppal Vedanta, Srivatsan
Kora, Naga Vamsi Krishna
author_facet Thuppal Vedanta, Srivatsan
Kora, Naga Vamsi Krishna
author_sort Thuppal Vedanta, Srivatsan
title HEAT TRANSIENT TRANSFER ANALYSIS OF BRAKE DISC /PAD SYSTEM
title_short HEAT TRANSIENT TRANSFER ANALYSIS OF BRAKE DISC /PAD SYSTEM
title_full HEAT TRANSIENT TRANSFER ANALYSIS OF BRAKE DISC /PAD SYSTEM
title_fullStr HEAT TRANSIENT TRANSFER ANALYSIS OF BRAKE DISC /PAD SYSTEM
title_full_unstemmed HEAT TRANSIENT TRANSFER ANALYSIS OF BRAKE DISC /PAD SYSTEM
title_sort heat transient transfer analysis of brake disc /pad system
publisher Blekinge Tekniska Högskola, Institutionen för maskinteknik
publishDate 2016
url http://urn.kb.se/resolve?urn=urn:nbn:se:bth-13461
work_keys_str_mv AT thuppalvedantasrivatsan heattransienttransferanalysisofbrakediscpadsystem
AT koranagavamsikrishna heattransienttransferanalysisofbrakediscpadsystem
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