OEM-Replaceable Suspension Air Spring Enidine YI-1B5-500 Refer to Goodyear 1B5-500
Product Description
Industrial air spring shock absorbers are based on the principle of gas elasticity. Their operating principle consists of an air spring and an air compressor. When the spring is subjected to external impact or vibration, it compresses and absorbs the external force into the gas inside. This compressed gas generates a reaction force, thereby offsetting the vibration and noise caused by the external force. Once the system stabilizes, the gas returns to its original state, improving system stability and reliability.
Product Features
[1] Compressed Height | 50 mm |
[2] Extended Height | 100 mm |
[3] Design Height | 70 mm |
[4] Center to Center Distance | 44.5 mm |
[5] Cover Plate Diameter | 85 mm |
[6] Maximum Outer Diameter | 150 mm |
[7] Thread Type | M8 |
[8] Gas Hole Standard | ZG1/4'' |
Product Technical Datas
Load (kg) | Installation Height | Inflation Pressure | 0.2 MPa | 0.3 MPa | 0.4 MPa | 0.5 MPa | 0.6 MPa | 0.7 MPa | 0.8 MPa | Volume at 0.7MPa (dm3) |
50 | (mm) | 157 | 219 | 286 | 376 | 450 | 523 | 611 | 0.24 | |
60 | (mm) | 122 | 183 | 252 | 328 | 404 | 472 | 545 | 0.37 | |
70 | (mm) | 107 | 170 | 238 | 304 | 377 | 439 | 501 | 0.46 | |
90 | (mm) | 100 | 153 | 203 | 264 | 323 | 378 | 432 | 0.52 | |
100 | (mm) | 73 | 112 | 160 | 209 | 260 | 300 | 334 | 0.58 | |
Stiffness and Frequency at Design Height | Vertical Stiffness | (Kg/cm) | 60 | 89 | 119 | 148 | 181 | 189 | 208 | |
Natural Frequency | Hz | 1.23 | 1.19 | 1.17 | 1.15 | 1.14 | 1.08 | 1.06 | ||
cpm | 74 | 71 | 70 | 69 | 68 | 65 | 64 |
OEM Original Manufacturer
Enidine YI-1B5-500
Goodyear 1B5-500
Goodyear Rubber Bellows NO. 579-913-500
Air Lift 58218
Airkraft Style 1B120
Enidine YI-FS50-5-000
Firestone W02-358-5000
Firestone W01-358-7609
Firestone No. W01-358-7001
Numatics ASNS1111
Development Trends of Industrial Air Spring Shock Absorbers
1. High Performance
In the future, industrial air spring shock absorbers will place greater emphasis on performance, including improved shock absorption, enhanced durability, and system reliability. Furthermore, as demand for high efficiency, low energy consumption, and low carbon environmental protection increases, industrial air spring shock absorbers will place greater emphasis on energy conservation and emission reduction. Through technological innovation and optimized design, they will achieve reduced energy consumption and environmental pollution.
2. Intelligence
With the development of technologies such as artificial intelligence and the Internet of Things, industrial air spring shock absorbers will become increasingly intelligent. With built-in sensors and control systems, they can monitor the vibration status of the equipment in real time and automatically adjust the shock absorber air pressure accordingly, achieving more precise and efficient shock absorption. Furthermore, intelligent shock absorption systems can enable remote monitoring and intelligent diagnostics, providing more convenient and efficient equipment maintenance and troubleshooting.
3. Lightweight
In the future, industrial air spring shock absorbers will continue to become increasingly lightweight. With the advancement of lightweighting technology, shock absorber materials will become lighter and stronger, thereby achieving a lightweight shock absorption system. This will not only reduce equipment weight and energy consumption, but also improve its maneuverability and flexibility.
Product Images
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