| An O-Ring Primer. | |
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In industries from aerosol to aerospace, O-rings are the most commonly used seals in the world. Why? Because they are effective, economical, and easy to use. Although O-ring sealing is a simple concept, there is a lot to consider as you design a seal for a specific application. This guide provides detailed information on the many factors that influence the design of an effective O-ring seal. Here’s a quick overview: BLOCKING
THE GAP A number of methods may be used to block the gap, including welding, brazing, soldering, or machining lapped fits. You might also simply squeeze a softer material between the two harder materials of the assembly. This last method describes the function of an O-ring. IN
THE GROOVE A seal is effected when an O-ring is squeezed between mating components, thereby creating zero clearance and preventing the escape of fluids through the clearance gap. Figure 2 shows rod and piston O-rings installed. As can be seen, the groove for a rod seal is machined into the housing, whereas the groove for a piston seal is machined into the piston itself. The versatility of O-rings allows them to function effectively in either configuration. SEALING
YOUR FATE In Figure 3, the O-ring has been installed but is not under pressure. In Figure 4, the O-ring is under just enough pressure to effect a seal. Figure 5 shows the seal under maximum pressure. The seal is extruding (extending) slightly into the clearance gap but is still functioning effectively. In Figure 6, the pressure has now exceeded the seal’s capabilities, forcing it to extrude severely. A leak path forms, and the seal fails. STAYING
IN SHAPE |
“The purpose of any seal is to block the clearance gap so that nothing passes through it.”
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