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Dongguan Minz Rubber & Plastics Co., Ltd.
Add.: No.4, New Industrial Road, Shipai Tangwei, shipai town, Dongguan City
Tel: +86-0769-8665 2688
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Contact: Miss Li +86-136 6988 8704
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What is the working principle of the hydraulic cylinder combination seal ring?
Release time:
2019-06-12 12:30
Source:
Hydraulic cylinder combinationSealing ringHow does it work?
Glea ring and Stern seal are combined seals. When used in a hydraulic cylinder, their radial fit is an interference fit. The O-ring seal is compressed to produce deformation. This deformation will produce a higher initial loan on the seal contact surface. Stress relief ensures the sealing performance under no pressure, and also compensates for the wear of the sliding ring seal.
When the hydraulic cylinder is working, as the system pressure increases, the pressure liquid enters the hydraulic cylinder. The O-shaped rubber sealing ring is squeezed out of one side of the sealing groove under the extrusion of the pressure liquid, and elastic deformation occurs due to compression. The rubber sealing ring squeezes the sliding ring sealing ring through the elastic force generated by elastic deformation, so that the sliding ring sealing is tightly attached to the sealing surface, forming additional contact stress. This contact stress increases with the increase of the liquid pressure, and together with the initial contact stress to produce a sealing effect, so as to achieve a better sealing effect.

Glaus ring is a two-way seal. Glaus ring (as piston seal) is used for holes commonly used in production design. The two sides of Glaus ring slip ring seal have inclined angles. After pressure is established, the sealing ring presses against one side of the groove, causing the sealing ring to slightly tilt and rotate. In this way, the larger torque point can be converted to the position on the high pressure side of the sealing ring edge to realize good sealing.
The stem seal is a one-way acting seal that acts as a seal for the piston rod. When the hydraulic cylinder is working, the pressure liquid acts on one side of the seal. The specially shaped sealing edge has a steep contact pressure gradient on the high pressure side, while a relatively gentle contact pressure gradient is generated on the low pressure side, thus ensuring that the oil film attached to the cold rod during the return stroke of the piston rod smoothly returns to the high pressure chamber, which prevents leakage caused by the trace oil layer brought out of the high pressure chamber when the piston rod extends, this return delivery feature also avoids the intermediate pressure that typically accompanies series seal arrangements.
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