Durable Mining Card Dampers and Bushings for Extreme Environments

Product Details
Customization: Available
After-sales Service: Issue 100% Recall
Warranty: 180 Sky
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Year of Establishment
2019-12-04
Registered Capital
147802.18 USD
  • Durable Mining Card Dampers and Bushings for Extreme Environments
  • Durable Mining Card Dampers and Bushings for Extreme Environments
  • Durable Mining Card Dampers and Bushings for Extreme Environments
  • Durable Mining Card Dampers and Bushings for Extreme Environments
  • Durable Mining Card Dampers and Bushings for Extreme Environments
  • Durable Mining Card Dampers and Bushings for Extreme Environments
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Basic Info.

Material
Rubber Steel
Certification
ISO10012, ISO/TS16949, ISO9001
Car Make
Volkswagen, WuLing, Benz, BMW, Hyundai, Honda, Toyota, Jeep, Nissan, Ford, Buick, Chery, Chevrolet, Cadillac, Geely, Roewe, Audi, Peugeot, Lexus, Volvo, Mazda, Kia
Position
Chassis System
OEM
Yes
Type
Chassis System
Transport Package
Packaging Bag; Cardboard Box
Trademark
Anran
Origin
China Hebei
HS Code
8708809000
Production Capacity
500000pieces/Yaer

Product Description


The robust absorber is an innovative piece of equipment designed to transform mechanical vibration kinetic energy efficiently into heat energy. This energy is subsequently absorbed by the superior high elastic deformation properties inherent in the quality rubber material.
Its pivotal core functions include:
Energy Dissipation: By expertly utilizing viscous shear and elastic hysteresis effects, it adeptly consumes vibration energy.
Momentum Isolation: Ingeniously blocking the vibration transmission path, it significantly diminishes the risk of system resonance.
Buffer Protection: It effectively absorbs shock loads, considerably extending the service life of the equipment.
Zhongmu Rubber is passionately committed to both developing existing products and innovating new ones, thereby offering customers top-notch, high-performance isolation solutions.

1.Construct Type Comparison: A typical comparison of varied construct types to ascertain optimal performance.
structured type structure characteristics Dynamic performance parameters application scenarios
Solid compression type Single rubber column (no reinforced layer) Scirrhosity ShoreA70-90 Low-frequency and large-amplitude industrial equipment
Fiber enhancement type Rubber matrix + aramid fiber woven mesh shear modulus15MPa Earthquake absorption of high-speed rail transit
Metal nested type Aluminum alloy shell + rubber lining radial rigidity 500N/mm Generator set vibration isolation
Multi-layer compound NBR base layer + EPDM damping layer + silicone surface layer thermal adaptability -50~+200ºC Semiconductor equipment precision vibration isolation

2.Classical Structure and Classification: An exploration of classical structures along with their detailed classification.
structure type operational principle typical parameter application scenarios
Compressed shock absorber The rubber column is deformed by the axial compression Scirrhosity60-90 ShoreA,compression ratio30% Car suspension, machine tool shock absorption
Cut-type shock absorber Rubber sheets produce shear deformation under shear sheets shear modulus10MPa,thickness2-5mm Electronic equipment, building vibration isolation
Compound shock absorber Rubber + spring / hydraulic pressure works together Nonlinear stiffness characteristics, with adjustable damping Heavy machinery, high-speed rail track
Damage liner Thin-walled rubber sleeve covers the rotating shaft radial rigidity 50-500N/mm,friction(al) coefficient 0.1-0.3 Rotary shaft frame vibration control

3.Material Type Selection System: A comprehensive system for selecting the most suitable material types.
Rubber type dynamic modulus (MPa) temperature range(-40ºC~+150ºC) oil resistivity (70#) Typical application
NBR 2-5 -40ºC~+120ºC Volume change rate<10% Automobile shock absorber, hydraulic cylinder bushing
EPDM 3-8 -50ºC~+180ºC Volume change rate<5% Building vibration isolation cushion, wind power sealing
SBR 2-4 -20ºC~+100ºC Volume change rate<15% Industrial floor damping pad
IIR 1-3 -40ºC~+80ºC Volume change<8% Precision instrument vibration absorber

4.International Standard and Test Range: Adherence to international standards and specified test ranges.
criterion test project technical requirement
ISO 9001 quality management system Whole-process traceability
GB/T 10179 Experimental method of rubber shock absorber The deformation was <20% after 10 ^ 6 cycles
ASTM D3452 Schematic drawing test Rehome rate is> 70%
IEC 60068-2-6 Environmental experiments -40ºC ~ + 85ºC cycle aging

5.Failure Mode and Structural Improvements: Analysis of failure modes with strategies for structural enhancements.
failure mode analysis of causes Improve the plan
surface checking UV aging (> 2000h exposure) Add UV absorber (carbon black N330)
The central hole collapsed Localized overload (> 150% rated load) Set the safety factor (≥2.5)
Damage recession Liquid erosion (ASTM D471 test) HNBR oil resistant rubber
Install stress cracking Taper fitting (H7 / p6) Add flexible spacer (Shaw 30-50A)

6.Typical Application Scenarios and Product Types: Insight into various application scenarios and corresponding product types.
device type Application site vibration performance Type of shock absorber Type of shock absorber
excavator Rotary turning platform and walking mechanism Low-frequency (2-10Hz) axial vibration Compressed shock absorber Hardness of Shore A 70-90, compression rate of 30%
crane Hanging arm, balance beam Intermediate frequency (10-50Hz) torsional vibration Cut-type shock absorber Shear modulus of 15MPa, 5-8mm in thickness
loader Hanging arm, balance beam High-frequency (50-200Hz) random vibration Compound shock absorber Rubber + metal skeleton, with a damping ratio of ζ =0.8-0.9
road roller Shbrator, self-walking wheel Impact load (5-10ms pulse) hydraulic buffer Ababsorbed energy 200 kJ with response time <50ms
shield tunneling machine Spindle drive, pipe segment assembly machine Multi-axial synchronous vibration (axial + radial) 3 D shock absorption module Flexible connection design, torsional torque 500 N·m

7.Manufacturing Process Flow: A detailed overview of the entire manufacturing process flow.
1.Material Premixing: A crucial initial stage ensuring perfect material coordination and preparation.
Hot Feeding System: Maintains precise temperature control ± 1°C to ensure consistent material uniformity.
Fiber Dispersion: Achieves an impressive 95% dispersion detected meticulously by a laser particle size analyzer.
2.Molding Process: A critical phase where precision and accuracy determine product quality.
Compression Molding: Employing a mold temperature set at 60°C, pressure at 15MPa, with a precise pressure holding time of 30 minutes.
Injection Molding: Utilization of screw speeds ranging from 50 to 100 rpm, and careful control of injection temperatures from 80 to 120°C.
Vacuum Vulcanization: Conducted under a pressure of 0.95MPa, at a temperature of 150°C, for a duration of 60 minutes to ensure durability.
3.Reprocessing: Final refinement stages enhancing overall performance and product finish.
Surface Treatment: Application of a spray polyurethane anti-fouling coating at a precise 0.2mm thickness for optimal surface protection.
Performance Optimization: Leverages microwave vulcanization for a remarkable 40% efficiency improvement, maintaining a temperature variance of ± 2°C.

Durable Mining Card Dampers and Bushings for Extreme EnvironmentsDurable Mining Card Dampers and Bushings for Extreme Environments
Durable Mining Card Dampers and Bushings for Extreme EnvironmentsDurable Mining Card Dampers and Bushings for Extreme EnvironmentsDurable Mining Card Dampers and Bushings for Extreme EnvironmentsDurable Mining Card Dampers and Bushings for Extreme EnvironmentsDurable Mining Card Dampers and Bushings for Extreme EnvironmentsDurable Mining Card Dampers and Bushings for Extreme EnvironmentsDurable Mining Card Dampers and Bushings for Extreme Environments

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