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In addition, its thermal conductivity is a little better, and it can play a protective role, but in fact, it does not have a great impact with or without it.
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The temperature control switch of the electric kettle, if you install the doula sticker, it must be different, it has a Geler heat transfer effect.
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What is the difference between heating rice cakes with temperature control switches and not heating rice cakes? The difference between them is that they act as a conductive heat, so the heat conduction of the rice cake will be relatively fast and it is not easy to accumulate heat.
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If the temperature control switch of the electric kettle is pressed and a heat pipe, it is even more thermally conductive, and it will get better.
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Something similar to an electric switch at home.
I don't remember the scientific name, we usually call it thermal relay, thermal relay.
When the temperature reaches a certain height, the power will be automatically turned off, and it will automatically change to power-on mode for about 5 minutes (depending on the electrical appliance).
If you haven't boiled the water, it will lose power, and it is suspected that the heat storage is broken.
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Of course, there are many differences, and if he doesn't add it well, the water temperature will come up slowly.
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The electric kettle is not heated, first check whether the power supply voltage of the electric kettle and the switch are normal.
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In this regard, their application principles are different, and relatively speaking, the power is also different, and the overall usage and functionality are completely different.
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If the strong man who turns on the switch is not heated when it is hot at home, it will be better to turn it into a better effect and accept it better.
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For adding or not adding thermal paste? The main role is the temperature transmitted to our thermostats. There will be a large deviation.
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The sensitivity and reliability of the temperature switch action are different.
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Hello, it may be that the launcher is different. You can choose according to your actual situation.
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Sometimes you still ask how much, right? If it can be formed, the temperature must be relatively high.
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The installation of the temperature control switch of the electric kettle plus the three high heat conduction is very different from the high heating height.
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There is a fundamental difference between installing a temperature control switch that heats up the rice cake and doesn't heat it to the rice cake.
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If the central control switch of the electric kettle is heated and it does not heat, it may be that the switch settings inside are different.
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1. Different properties: Thermally conductive adhesive is a one-component, thermally conductive, room-temperature curing silicone adhesive sealant. Thermal paste is a type of material used to fill the gap between the CPU and the heat sink.
2. Different thermal conductivity: the thermal conductivity of thermal conductive silicon film and thermal paste can reach up to 12W for thermal conductive silicone film and 5W for thermal paste.
3. Different insulation: due to the poor insulation of thermal paste with metal powder, the thermal conductive silicon film has good insulation performance, and the electrical insulation index of 1mm thick H48-6G thermal conductive silicon film is above 13000V.
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Thermal adhesive is sticky, it will be cured after sticking, and it also has the effect of thermal conductivity, thermal paste is not sticky, simple thermal conductivity, if the requirements for heat dissipation are relatively high, it is recommended to use thermal paste, our company does LED, both materials are used, the same brand of hy is used, and the cost performance is quite high.
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Excuse me, after the thermal conductive glue is pasted, is it not fixed with screws?
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Thermal adhesive is sticky, it will be cured after sticking, and it also has the effect of thermal conductivity, thermal paste is not sticky, simple thermal conductivity, if the requirements for heat dissipation are relatively high, it is recommended to use thermal paste, our company does LED, both materials are used, the same brand of hy is used, and the cost performance is quite high.
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Thermally conductive silicone, also known as thermally conductive RTV adhesive, can be cured at room temperature and has certain bonding properties. Thermally conductive silicone is a type of silicone rubber, which belongs to one-component liquid rubber that is vulcanized at room temperature. Once exposed to air, the silane monomer in it will condense to form a network structure, the system is cross-linked, can not be melted and dissolved, elastic, into a rubber state, and at the same time glue the object.
And once cured, it is difficult to separate the bonded objects. Thermal grease is a kind of thermal conductive medium, which is an ester polymer composite material synthesized by a special process based on organic silicon (polysiloxane polymer) and various auxiliary materials. It is a white or gray thermally conductive insulating viscous object, which has a certain viscosity and no obvious graininess.
It is non-toxic, odorless and non-corrosive, with stable chemical and physical properties and excellent thermal conductivity, electrical insulation, high temperature resistance, aging resistance and waterproof characteristics. In general, thermal grease is insoluble in water, not easily oxidized, and has certain lubricity and electrical insulation. The similarity between the two is that both have thermal conductivity and insulation, and both are thermal interface materials.
The difference between the two is: thermally conductive silica gel: viscous (it is difficult to remove once it is glued, so most of the time it is used in occasions that only need one-time bonding), translucent, dissolved at high temperature (viscous liquid), solidified (exposed) at low temperature, cannot be melted and dissolved, and is elastic.
Thermal grease (thermal paste): adsorption, non-viscous, paste-like semi-liquid, non-volatile, non-curing (no thickening at low temperature, no thinning at high temperature).
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The temperature switch may not be installed properly, you need to re-disassemble it, apply a thin layer of thermal grease to the temperature switch, and then install it to try.
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Hello landlord, glpoly thermal management solution experts around you will answer for you:
Personally, I think that what is the difference between thermal paste and thermal conductive silicone gasket and its application field need to be analyzed for different products from the aspects of thermal conductivity, product structure, product performance, safety requirements, etc., and the conclusion is completely different, so today I will explain in detail from the different considerations of thermal conductivity, product application, and cost of the two.
If we only look at the thermal conductivity of the product, of course, thermal paste is better, because we all know that thermal paste is a paste-like liquid, and we only need to lightly apply a thin layer of thermal paste, so the thermal resistance is very low. In addition, the wetting properties of the thermal paste can squeeze air away very well. Improve its own thermal conductivity.
On the contrary, it is more difficult to achieve this low thermal resistance effect with thermally conductive silicone gaskets. Generally speaking, the limit of thermal conductive silicone gasket can only be in thickness, but considering the mechanical properties of such a thin gasket, glass fiber support is often added to thin products, which is bound to increase thermal resistance, so from the perspective of product heat dissipation and thermal conductivity, thermal paste is obviously better than thermal conductive silicone gasket.
So if we only talk about the ease of operation of thermally conductive materials, it is the thermal conductive silicone gasket that has the advantage. Because the thermal paste itself is more difficult to apply evenly. And the size of viscosity directly affects operability; Prolonged use of thermal paste will cause oil seepage and contaminate the device, which may cause short circuit failure and dry cracking.
However, the thermally conductive silicone gasket can be made into an irregular sheet according to the various structural requirements of the product, and it is relatively uniform. Stick it on and you're ready to go. And it also has a certain strength and elasticity.
**In terms of thermal paste, compared with thermal conductive silicone gasket (it is more advantageous, but due to the complexity of thermal paste in production and operation and the corresponding flame retardant certification of the product, it is not easy to operate, so these aspects should become one of the factors we consider when choosing thermal conductive materials.
Thermal pastes are now widely used in electronics, appliances, and device-free heat dissipation, filling, or coating to derive the heat generated by components. For example, CPU and heat sink gap filling, high-power transistors, thyristor components, filling of gaps between diodes and substrates (aluminum, copper), between video amplifier tubes and heat sinks, semiconductor refrigeration, etc. Reduce the operating temperature of the heating element.
According to the characteristics of different application products, thermal conductive silicone gaskets are divided into ordinary thermally conductive silicone gaskets, strong viscosity thermally conductive silicone sheets, back silicone cloth thermally conductive silica gel sheets, and glass fiber thermally conductive silica gel sheets in the middle. It is widely used in LED industry, power supply industry, communication industry, automotive electronics industry, PDP LED TV application, home appliance industry and so on.
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Your understanding is a bit problematic, the gasket between the power device and the heat sink is for insulation, and it needs to be coated with thermal grease.
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First, the gap that is filled first determines whether to use silicone or silicone grease. The gap filled by silica gel is generally about 100 m filled with silica grease. In other words, silicone grease will have a lower thermal resistance than silicone.
Second, the reliability of thermal conductive silica gel will be better than silicone grease, most of the silicone grease will dry and pulverize in about 3 years, resulting in thermal conductivity failure. Therefore, if the service life is relatively long, it may need to be reworked to repaint the silicone grease.
These are the two main differences, depending on your choice of use case.
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There is a difference between the two bai, after du
It does not have adhesive properties
zhi1) Thermally conductive silica gel is a thermally conductive compound with high DAO end, as well as A.
It does not solidify and does not conduct electricity, which can avoid risks such as short circuits in circuits; Its high adhesion performance and superior thermal conductivity are currently the best thermal conductivity solution for CPUs, GPUs and heatsinks when they come into contact.
2) Thermal grease is commonly known as heat dissipation paste, which is made of silicone as the main raw material and materials with excellent heat resistance and thermal conductivity, which is used for the thermal conductivity and heat dissipation of electronic components such as power amplifiers, transistors, electron tubes, CPUs, etc., so as to ensure the stability of the electrical performance of electronic instruments and meters.
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Thermally conductive silica gel can be coagulated, while thermal grease is not coagulated.
Thermally conductive silicone has better adhesion, while thermally conductive silicone grease has no adhesion.
Normally, thermal grease can only be used for brushing, not too thick, and thermal conductive silicone can be used for bonding.
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If you are using a CPU, it is recommended that you use silicone grease, because the CPU only needs a thin layer to suffice, just apply it evenly! If you use it on the GPU of the graphics card, it is recommended that you use thermally conductive silicone!
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The two uses are not the same, silicone grease is an ointment
It is used to apply it to the contact surface of the chip and the heat sink to fill the gap between the two to achieve a better thermal conductivity effect, and the silicone is a rubber-like substance, which is also used to conduct heat, most of which are used in occasions that need to be insulated from the heat sink, with a certain thickness, and a real glue, which is used to stick the heat sink on the chip, like the heat sink on the memory chip, most of them use this kind of silicone, and it will solidify into a rubber shape after sticking it and it is not easy to remove.
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The thermal conductivity of thermal grease is better than that of thermal conductive silica gel (or thermal conductive adhesive pad, thermal conductive film) products, and such products are made of composite materials, and the thermal conductivity is lower than that of thermal grease under the influence of materials.
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Is it better to conduct thermally conductive copy silicone grease or to conduct thermally conductive silica gel? Recognize Suzhou Pindu Yang Thermal Conductive Material Technology Co., Ltd., Zhi Pinyang is a high-tech enterprise focusing on the development of DAO thermal conductive insulation material products. Provide accurate thermal conductivity products and innovative heat dissipation solutions for many electronic product R&D manufacturers, including R&D, production and sales services of thermal interface materials, thermal diffusion materials, ultra-thin thermal conductivity and other materials.
The concept of mastering the core technology has become the guiding direction of the company. The product has good insulation, thermal conductivity, anti-slip, wear resistance, high temperature resistance, flame retardant, prolongs the service life of the equipment, flame-resistant, environmental protection, excellent elasticity provides good cushioning, protects the equipment, and improves the stability of the equipment.
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To put it simply, it is the preparation of silica gel compound and silicone grease.
Distinguish. Silicone grease can also be called.
BAI thermal grease, thermal paste, etc., DU is more commonly seen, which is used between the display core of the CPU or independent graphics card, the northbridge chip of the motherboard (of course, the northbridge chip does not exist on the mainstream motherboard) and the contact surface of the heat sink to fill the gaps that are invisible to the naked eye, so that when the computer is running, the heat generated by these chips can be transferred to the heat sink more quickly and comprehensively, and then dissipated through air cooling or water cooling, thereby reducing the temperature of the chip. so that the computer can run normally. Silicone is a kind of gel, which is usually used to bond heat sinks to graphics card memory chips or memory chips; If silicone is used as silicone grease, not only the thermal conductivity is not ideal, but it is also difficult to separate the heat sink from the chip.
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It is silicone grease good.
DU silicone grease is divided into two types: ZHI thermal grease and lubricating silicone grease. It is generally applied to the CPU and heat sink.
Dedicated between. Let the CPU warm.
The genus is quickly transferred to the heatsink and then cooled by the fan.
Thermal grease: commonly known as heat dissipation paste, it is a paste made of special silicone oil as the base oil, new metal oxide as filler, with a variety of functional additives, and processed by a specific process. Colors have different appearances depending on the material.
It has good thermal conductivity, temperature resistance and insulation properties, and is an ideal dielectric material for heat-resistant devices, and its performance is stable, and it will not produce corrosive gas in use and will not affect the metal it comes into contact with. High-purity fillers and silicones guarantee smooth, homogeneous and high-temperature insulation. Coated on the assembly surface of power devices and heat sinks, it helps eliminate the air gap on the contact surface, increases heat flow, reduces thermal resistance, reduces the operating temperature of power devices, improves reliability and prolongs service life.
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