99久热国产精品视频尤物,久久亚洲精品高潮综合色a片 ,久久伊人热热精品中文字幕,国产精品久久久久久超碰

Home > Product > Car brake pads >

Automotive Brake Pads

  • Automotive Brake Pads

Detailed Introduction


  


Automotive Brake Pads(Brake Linings)-Technical Overview

Automotive brake pads,also known as brake linings,refer to the friction materials fixed against rotating brake drums or discs.The friction linings/shoes generate braking force through applied pressure,converting kinetic energy into heat to decelerate the vehicle.

1.Structural Composition

Brake pads typically consist of:

Backing Plate(Steel):

Rust-proof coated(process monitored by SMT-4 thermal profilers for quality control)

Provides structural support

Insulation Layer:

Heat-resistant material to prevent thermal transfer to brake fluid

Friction Block:

Composite friction material+adhesives

Directly contacts rotor/drum(7-12mm initial thickness;2-3mm wear limit)

Wears progressively–lower-cost pads degrade faster

Critical Sub-Components:

Component Functionality

Friction Material Generates friction(μ=0.35-0.45)

Shims Dampens NVH(in premium variants)

Wear Sensors Triggers replacement alerts(luxury cars)

2.Working Principle

Braking relies on friction conversion:

Kinetic energy→Thermal energy via pad-rotor friction

Secondary friction:Tires vs.road surface

System Requirements:

Stable&controllable braking force

Efficient hydraulic transmission

Heat dissipation to prevent:

Fluid vaporization

Brake fade(≥15%μreduction=failure)

3.Drum vs.Disc Brake Comparison

Disc Brakes Drum Brakes

Superior heat dissipation Cost-effective

Consistent performance Prone to heat accumulation

60-70%market dominance Mostly rear-wheel applications

4.Maintenance Protocol

Replacement Intervals:

Normal use:30,000-50,000 km

Aggressive driving:15,000-20,000 km

Failure Precursors:

Screeching(wear indicator contact)

Pedal pulsation(disc warping)

Excessive brake dust

Warning:Metal-to-metal contact from worn pads causes irreversible rotor damage.

Key Technical Terms

Fade Resistance:Ability to maintainμat high temps(ISO 26867)

Bedding-In:Initial 300km wear-in period for optimal surface mating

Coefficient of Friction(μ):0.35-0.45(SAE J2522 certified)

This translation maintains OEM-level technical precision while optimizing for readability in English automotive documentation.For specific material certifications(e.g.,ECE R90),additional compliance data can be appended.



Contact Us
  • Tel: +86-0317-8196155
  • E-mail: 2461087283@qq.com
  • Add: Botou Industrial Zone, Hebei Province, China
Follow Us
亚洲狠狠成人网| 亚洲另类春色校园小说| 亚洲区综合区小说区激情区| 97成人精品国语自产拍| 少妇伦子伦精品无吗| 亚洲a∨大乳天堂在线| 国产偷久久久精品专区| 久久99久久99精品中文字幕| 一区二区三区中文字幕| 337p日本欧洲亚洲高清鲁鲁 | 亚洲人av高清无码| 亚洲卡1卡2卡3精品| 久久不见久久见免费影院www日本| 国产精品中文久久久久久久| а√天堂资源中文在线官网| 19禁无遮挡啪啪无码网站| 成熟丰满熟妇高潮xxxxx| 网友自拍露脸国语对白| 护士脱了内裤让我爽了一夜视频| 97免费人妻无码视频| 人妻av无码系列专区移动可看| 免费?无码?国产?尺度粉嫩AV | 欧美综合自拍亚洲综合区| 欧美亚洲日韩国产综合电影| 亚洲国产另类久久久精品小说| 尤物亚洲国产亚综合在线区 | 大陆国语对白国产av片| av网站免费线看精品| 人人做人人妻人人精| 亚在线观看免费视频入口| 亚洲久热中文字幕在线| 免费一区二区无码东京热| 少妇愉情理伦片高潮日本| 国产99re热这里只有精品| JUL-632无码中文字幕| 国产69精品久久久久乱码免费| 欧美亚洲日韩国产综合电影| 国产高清乱码又大又圆| av无码电影在线看免费| 久久人搡人人玩人妻精品首页| 亚洲精品无码成人a片|