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The difference between a compression fitting, and a capillary fitting is: in Plumbing, are two types of fastening pipe together. Compression is the squeezing of a material around that of another material to secure a leak proof joint. A capillary fitting is a fitting usually involving a heat source as in copper pipe being soldered together. Soldering two pieces of pipe using a gas propane torch and a joiner which is simply another small piece of copper pipe that is made larger at both end to allow the pipes to enter each end of the joiner. After cleaning the ends and applying a flux to the ends you are ready to fasten the pipes together by just heating the joiner when the temperature is hot enough the solder will melt around the pipe. In a vertical position the top will solder easily, with gravity and heat. The bottom will use capillary action which is a sucking up of the solder due to the heat and flux.

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Q: What is the difference between a compression fitting and a capillary fitting?
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Flared fittings use a flare and a nipple for the sealing surface. The threads do not serve any purpose as to actually sealing anything. The threads merely hold the flare of the one fitting together tightly with the nipple of the other fitting to create a seal.


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This article is about the metal joining process. For the cooking technique, see braising. Brazing is a joining process whereby a filler metal or alloy is heated to melting temperature above 450 °C (842 °F) - or, by the traditional definition in the United States, above 800 °F (427 °C) - and distributed between two or more close-fitting parts by capillary action. At its liquid temperature, the molten filler metal and flux interacts with a thin layer of the base metal, cooling to form a strong, sealed joint. By definition the melting temperature of the braze alloy is lower (sometimes substantially) than the melting temperature of the materials being joined. The brazed joint becomes a sandwich of different layers, each metallurgically linked to the adjacent layers. Common brazements are about 1/3 as strong as the parent materials due either to the inherent lower yield strength of the braze alloy or to the low fracture toughness of intermetallic components. To create high-strength brazes, a brazement can be annealed to homogenize the grain structure and composition (by diffusion) with that of the parent material . * http://en.wikipedia.org/wiki/Brazing


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