Machine Vises & Workholding Clamps | Precision - cnc workholding clamps
A metal may be a chemical element such as iron; an alloy such as stainless steel; or a molecular compound such as polymeric sulfur nitride.
Compression is the amount of compression desired for the O-Ring, typically specified by the O-Ring manufacturer or based on application requirements.
The O-Ring groove is typically a circular or rectangular indentation in the surface of the component. It is designed to match the shape and dimensions of the O-Ring, ensuring a proper fit and seal. The groove geometry and dimensions are crucial in providing optimal sealing performance and preventing leakage.
Static seals exist where there is no relative motion between the mating surfaces being sealed. CS Cross Section | DC Diametral Clearance | BR Backup Rings Measurements in inches.
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Gap is the gap between the top surface of the groove and the adjacent component or mating surface, typically specified by the O-Ring manufacturer or based on application requirements.
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The groove dimensions include the width, depth, and sometimes the diameter, which are specific to the O-Ring size and cross-section diameter. The dimensions of the groove are calculated based on factors such as the O-Ring's cross-section diameter, desired compression percentage, and clearance requirements.
The O-Ring is placed within the groove, and when the mating surfaces come together, the O-Ring is compressed between them, forming a seal. The compression of the O-Ring creates a deformation that fills any gaps and provides a tight seal against fluid or gas pressure.
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Since we don't have the Compression value specified, we'll assume a typical value of 0.04 inches (4% compression) for this calculation. You can adjust this value based on your specific requirements or consult the O-ring manufacturer for recommended compression percentages.
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It's important to note that these formulas provide a general guideline, but specific applications may have additional considerations or variations based on factors such as O-Ring material, groove geometry, pressure, temperature, and other environmental conditions. It is recommended to consult O-Ring manufacturers or industry standards for more precise guidelines and specifications tailored to your specific application.
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Therefore, the groove width for an O-Ring with an inside diameter of 0.424 inches and a cross-section diameter of 0.103 inches, assuming a compression of 4%, is approximately 0.183 inches.
An O-Ring groove refers to a specifically designed groove or channel in a mating surface or component that accommodates an O-Ring. The purpose of the O-ring groove is to securely position and retain the O-Ring in place, allowing it to effectively seal a joint or connection.
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Dynamic seals exist where there is relative motion between the mating surfaces being sealed. CS Cross Section | DC Diametral Clearance | BR Backup Rings Measurements in inches.
Static seals exist where there is no relative motion between the mating surfaces being sealed. CS Cross Section | DC Diametral Clearance | BR Backup Rings Measurements in inches.
It's important to note that O-Ring groove design also takes into account factors such as surface finish, corner radii, and chamfers to ensure proper O-Ring installation and performance. The groove design should follow industry standards or guidelines provided by O-Ring manufacturers to achieve effective sealing in different applications.