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The liquid cooled heatsink has a very good effect on the heat dissipation of high-power devices, so many users will choose the heat dissipation scheme of the liquid cooled heatsink. The production process of the liquid cooling plates is more complicated than that of the general air cooled heat sink, and the liquid cooling heat dissipation requires higher reliability on the process, so only the strong technical precipitation manufacturers can provide reliable technical support. LORI heat sink has been providing customers with high quality liquid cooled heatsink and liquid cooling solution for many years.
Pressured tube technology is the most used liquid cooling heat sink production custom process, generally speaking, is aluminum base buried copper tube, the aluminum base with CNC machining milling groove, and then using a press will have been bent shape of copper tube pressed to aluminum base, brazing welding, and then after processing into water cooling plate. Buried tube type liquid cooling plate generally has three forms: one is shallow buried tube liquid cooling plate; Second, deep buried tube liquid cooling plate; Three is the welding pipe technology; Four is the double-sided clamp tube technology liquid cooling plate.The three forms of technology are not different, the processing difficulty is the same. Some liquid cooling principles originally designed for high-power switching devices can also be used for reference in power battery cooling systems.
Because of the particularity of the customer's products, sometimes the customer has some special requirements on the surface of the aluminum heat sink. For example, extruded aluminum heat sink, its surface corrosion resistance is not very strong, so sometimes the need for anodizing (blackening) for surface treatment to increase the corrosion resistance, wear resistance and appearance of the beauty of the aluminum.
The main process of anodized aluminum heat sink anodized process is as follows:
Surface pretreatment: clean the profile surface with chemical or physical methods, exposing the pure matrix, in order to obtain a complete, dense artificial oxide film. A mirror or matte surface can also be obtained mechanically.
Anodizing: for the profile pretreated on the surface, under certain technological conditions, anodizing occurs on the surface of the matrix, resulting in a dense, porous and adsorptive layer of AL203.
Seal the pores: seal the pores of the porous oxide film after anodizing , so that the anti-pollution, anti-corrosion and anti-wear properties of the oxide film are enhanced.Oxidation film is colorless transparent, the use of the strong adsorbability of the oxidation film before sealing the hole, adsorption deposit some metal salt in the film hole, can make the aluminum profile appearance appears ecru (silver-white) many other colors, such as: black, bronze, gold and stainless steel color.
I always assumed that all aluminum heat sinks, with all of those fins, were either extruded or cast. And while both of those are common production methods, I just stumbled across this crazy-looking alternative method-skived fin
Customized skived fin heat sink is accepted:
Raw materials: aluminum, copper, brass, stainless steel, steel, iron, alloy
Finish: polishing, anodize, vacuum plating,sanding powder coating, silver plating
Machinery equipment: Skivied machine, CNC milling, turning machine, general milling, turning machine, grinding machine.
Skived fin heat sink factory Quality control: inspected by ISO 9001:2015
Small orders are accepted
Customized logo: accepted
Changing on material, mold, shape: accepted
Develop on artwork and sketch: accepted
Packing: accepted
Sample: accepted
We are skived fin heat sink manufacturer, we can provide you china copper skived fin heat sink and customized aluminum skived fin heat sink.
Bonded fin heat sink is a kind of high power electronic heat sink made of base and finr through mechanical processing. Can be customized according to user requirements, to meet a variety of different cooling needs.
1. Bonded fin heat sink before the mold test, should first adjust the extrusion center, extrusion shaft, spindle and mold seat outlet in a Central Line.
2. During the mold test and normal production process, the heating temperature of aluminum rod should be between 480-520℃.
3. Bonded fin heat sink mold in the mold test or production process, if found blocking, tooth deviation, fast and slow deviation is too big phenomenon to stop immediately, and in the way of point back, try to avoid the scrap of the mold, reduce the loss.
4. In the straightening process, to carefully detect before and after the change of bonded fin heat sink, operating specifications, moderate force, strict guarantee product quality.
5. The operator shall set the scale reasonably according to the requirements of the production plan. When sawing, the feeding speed of sawtooth shall not be too fast to avoid damaging the end.
6. Finished products in the basket to be standardized, including the pad to be placed reasonably, to avoid damage to the profile.
Copper absorbs heat faster than aluminum, and copper loses heat faster than aluminum. So the copper heat sink base is equipped with the fan of high rotating speed, big air volume commonly, increase the heat dissipation capacity of copper base. The heat sink manufacturer also borrowed this idea to launch plug copper, set copper heat sink, reason is to use copper to take away heat quickly, send out quickly through aluminous qualitative fin next
After all, what is the scientific basis for the statement that copper absorbs heat faster than aluminum, and copper loses heat faster than aluminum? Perhaps you can clearly say a few, today small make up to tell you the basic principle of this phenomenon.
Thermal conductivity K (W/m2K)
Silver 429
Copper 401
Gold 317
Aluminum 237
The popular definition of heat transfer coefficient is "heat per unit area per unit time at unit temperature difference", the unit is J/m2ks, or W/m2k, where J is the unit joule of heat, m2 is the unit square meter of area, K is the unit kelvin of temperature, can also be replaced by C on the Celsius scale, s is the unit second of time. From above the heat conduction coefficient of copper is about 1.69 times that of aluminium, because this uses copper and aluminium to make the heat sink of same sectional area, inside unit time pure copper can take away more heat than pure aluminium, "copper absorbs heat faster than aluminium", the preceding half sentence has been proved.
Material specific heat capacity J/kgK
Aluminum 0.9
Silver 0.24
Copper 0.39
Copper loses heat as fast as aluminum, which is true. Proving this leads to another important thermodynamic parameter: specific heat. Anyone who has studied high school physics knows that specific heat is defined as "the amount of heat required to raise the temperature of a substance by one degree per unit mass," in units of J/kgK. You can also see from the table above that the specific heat capacity of copper is smaller than that of aluminum. Copper should lose less heat than aluminum if it loses 1 degree of temperature. In this way, copper should lose heat faster than aluminum. However, you may not have noticed that the density of copper is 8.9kg/m3, while that of aluminum is only 2.7kg/m3, which is nearly 3.3 times that of aluminum. Therefore, if you make a heat sink of the same volume, the mass of copper is nearly 3.3 times larger than that of aluminum, and the heat capacity of pure copper is still nearly half that of pure aluminum.The larger the heat capacity, the slower the heat dissipation.Through the explanation of the above theory, we have also found out the reason why "copper loses heat faster than aluminum".
We fundamentally understand that "copper absorbs heat faster than aluminum, copper does not dissipate heat as fast as aluminum". When choosing heat sink later, can apply this theory, if choose pure copper heatsink, should choose to equip with rotating speed taller, the fan product with larger air volume, avoid copper heat to send out not, generation dissipates heat bottleneck.