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Product Description
A wire rope isolator is a very high performance shock absorber and vibration isolator that can used in endless applications.
Wire rope isolators are very useful vibration dampers because they maintain excellent vibration isolation performance under maximum shock in severe environmental conditions such as chemical pollution or extreme temperatures.
Product Size Chart
Product number | High(mm) | Width(mm) | Product weight(kg) | Installation method | Hole size(mm) | Thread size(mm) | Counterbore taper | |
JGX-286-8-X-16860-A-S | 216 | ± 6.35 | 248 | 27.2 | A, B, C, D, E, S | Ø19.8 + 0.13- 0.38 | M18X2.5 | 90° |
Press Fit Test Data Sheet
Curve number | Product number | Static load(N) | Maximum deformation (mm) | Vibration stiffness Kv kN/m | Impact stiffness Ks kN/m |
1 | JGX-286-8-X-16860-A-S | 17610 | 96.5 | 2236 | 758 |
45° Inclined Press Fitting Load Test Data Sheet
Curve number | Product number | Static load(N) | Maximum deformation (mm) | Vibration stiffness Kv kN/m | Impact stiffness Ks kN/m |
1 | JGX-286-8-X-16860-A-S | 12410 | 137.2 | 1256 | 378 |
Shear Rolling Load Test Data Sheet
Curve number | Product number | Static load(N) | Maximum deformation (mm) | Vibration stiffness Kv kN/m | Impact stiffness Ks kN/m |
1 | JGX-286-8-X-16860-A-S | 4640 | 101.6 | 468 | 468 |
Wire rope vibration isolators have the following advantages:
1: With nonlinear stiffness
2: All-round shock absorption
3: The resonant frequency is low, and the low-frequency shock absorption effect is good
4: Corrosion resistance, high and low temperature resistance, can continue to work in harsh environments
5: Easy installation, maintenance-free, long service life
Product structure diagram
Guide for installation of wire rope isolator
1. Before installation, please carefully check whether the mounting hole matches the mounting hole of the vibration isolator, such as whether the thread is the same, etc.
2, the installation hole is clean, there is no burr, rust, damage and other defects.
3. Since the vibration isolator is an elastic component, it needs a little movable space when working. Before installation, please carefully check whether there is any equipment affecting installation in the installation part and whether the movable space of the vibration isolator is enough. Please check whether the vibration isolator is in good condition and has no defects before installation.
4. Prepare a suitable screwdriver and crowbar.
5, first install the isolator to heavy equipment or fixed equipment, installation screws do not need to tighten, so that the isolator can be slightly active.
6. Install the connecting device on the other side of the vibration isolator. If the mounting hole is slightly misaligned, you can move the vibration isolator or use a crowbar to align the mounting hole of the vibration isolator with the mounting hole of the equipment, and then screw the fixing screw.
7. After fixing the device position, tighten all the fixing screws.
More Information on Wire Rope Isolators
A wire rope isolator is a very high performance shock absorber and vibration isolator that can used in endless applications. Wire rope isolators are very useful vibration dampers because they maintain excellent vibration isolation performance under maximum shock in severe environmental conditions such as chemical pollution or extreme temperatures. They have a long life span and can adapt to elastic displacement in all dimensions, allowing multi-directional vibration isolation and they can be installed in many different ways.
There is elastic support for heavy duty machinery such as generators and vibration isolation for delicate applications such as precision instruments, transportation of missiles and satellites, processors, communication units, protection for navigation and launching systems as well as large scale construction. The working temperature for wire rope isolators is -75°C-+175°C, up to +370°C and each wire rope isolator comes with softened non-linear stiffness. The maximum dynamic displacement is over 70 percent of the space the mount takes up, the dynamic stiffness decreases when the displacement increases.