Corrosion resistant heat exchanger and strengthening technology thereof
A heat exchanger, corrosion-resistant technology, applied in anti-corrosion coatings, coatings, epoxy resin coatings, etc., can solve problems such as poor performance of condensers, achieve the effects of reducing viscosity, improving durability, and preventing flocculation
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Embodiment 1
[0036] This embodiment provides a corrosion-resistant heat exchanger, which mainly includes a shell and heat exchange tubes arranged in the shell. The shell includes the following components by mass percentage:
[0037] C: 0.1%, Mn: 0.5%, Ni: 0.5%, Cr: 2%, Nb: 0.4%, Si: 0.1%, Fe: 0.2%, Mg: 1.5%, Cu≤0.2%, s≤0.015%, p≤0.025%, Mo: 0.3%, Ti: 0.3%, B: 0.02%, v: 0.0018%, compound rare earth: 0.2%, rare earth element: 0.2%, the balance is Al;
[0038]The composite rare earth includes the following components by weight percentage: praseodymium: 15%, holmium: 5%, gadolinium: 8%, yttrium: 8%, and the rest is lanthanum. The sum of the above composite rare earth components is 100%.
[0039] The strengthening process of the above-mentioned corrosion-resistant heat exchanger involves spraying a layer of anti-corrosion layer on the outside of the shell, which specifically includes the following steps:
[0040] (1) Slightly roughen the surface of the shell with fine sandpaper, then carry out...
Embodiment 2
[0047] This embodiment provides a corrosion-resistant heat exchanger, which mainly includes a shell and heat exchange tubes arranged in the shell. The shell includes the following components by mass percentage:
[0048] C: 0.3%, Mn: 0.8%, Ni: 0.7%, Cr: 4%, Nb: 0.6%, Si: 0.3%, Fe: 0.5%, Mg: 2.0%, Cu≤0.2%, s≤0.015%, p≤0.025%, Mo: 0.5%, Ti: 0.5%, B: 0.03%, v: 0.0022%, compound rare earth: 0.3%, rare earth element: 0.4%, the balance is Al;
[0049] The composite rare earth includes the following components by weight percentage: praseodymium: 18%, holmium: 8%, gadolinium: 10%, yttrium: 10%, and the rest is lanthanum. The sum of the above composite rare earth components is 100%.
[0050] The strengthening process of the above-mentioned corrosion-resistant heat exchanger involves spraying a layer of anti-corrosion layer on the outside of the shell, which specifically includes the following steps:
[0051] (1) Slightly roughen the surface of the shell with fine sandpaper, then carry ...
Embodiment 3
[0058] This embodiment provides a corrosion-resistant heat exchanger, which mainly includes a shell and heat exchange tubes arranged in the shell. The shell includes the following components by mass percentage:
[0059] C: 0.2%, Mn: 0.7%, Ni: 0.6%, Cr: 3, Nb: 0.5%, Si: 0.2%, Fe: 0.4%, Mg: 1.8%, Cu≤0.2%, s≤0.015%, p ≤0.025%, Mo: 0.4%, Ti: 0.4%, B: 0.04%, v: 0.0019%, compound rare earth: 0.1%, rare earth element: 0.3%, the balance is Al;
[0060] The composite rare earth includes the following components by weight percentage: praseodymium: 17%, holmium: 7%, gadolinium: 9%, yttrium: 9%, and the rest is lanthanum. The sum of the above composite rare earth components is 100%.
[0061] The strengthening process of the above-mentioned corrosion-resistant heat exchanger involves spraying a layer of anti-corrosion layer on the outside of the shell, which specifically includes the following steps:
[0062] (1) Slightly roughen the surface of the shell with fine sandpaper, then carry ou...
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