Mold surface strengthening technology: plasma chemical heat treatment

Plasma chemical heat treatment

The fastest growing, most widely used plasma heat treatment method is plasma chemical heat treatment. Compared with conventional chemical heat treatment, plasma chemical heat treatment has the characteristics of high quality, high efficiency, low consumption, clean and pollution-free. However, when this technique is used for large-sized small molds and other small parts (such as bolts, nuts, chains, etc.), it is troublesome to install the furnace, and the quality of the layer is difficult to control. Moreover, when mixing workpieces of different shapes and sizes in the same furnace, it is difficult to uniformly control the temperature of the workpiece.

1.1 ion carburizing

Ion carburization, also known as glow carburizing [l0-11]. Carburizing is a heat treatment in which a low-carbon steel or a low-carbon alloy steel parent material which is inexpensive, has good formability and ductility is heated in a carbon-based atmosphere, and the activated carbon is infiltrated into the base material to form a tough, wear-resistant surface. method. Ion carburizing is based on the fact that activated carbon is obtained by hydrogenation of a hydrocarbon gas in a vacuum plasma zone by DC glow discharge. The principle is similar to that of ion nitriding.

In China, the ion carburizing process has been successfully applied to molds in the automotive, aerospace and nuclear industries. The key to ion carburizing technology is the quality control of the layer and equipment design. When ion carburizing, the predetermined carbon content of the surface of the mold workpiece can be controlled by adjusting the carbon flux and the carburizing time. Carbon flux is a function of gas composition, gas pressure, gas flow rate, ion current density, and carburization temperature. In industrial production, when ion carburizing, the mathematical model of diffusion and transmission of carbon can be utilized, and the process control of the whole process is performed by the microcomputer through the current density sensor, thereby obtaining a predetermined surface carbon content, carbon distribution and depth of the layer. However, ion carburizing temperature is high (850 ~ 980 ℃), requires a large power supply, glow discharge phenomena into prone to arc discharge, so that the process is unstable, the device is more complex. At present, the gas carburizing and vacuum carburizing processes commonly used in industrial molds are mature and the quality is stable, which can better meet the needs of industrial molds. Compared with traditional carburizing, ion carburizing has the following advantages: high carburizing efficiency, good surface quality, uniform distribution of permeation layer, small deformation, small environmental pollution, easy process automation, deep hole blind hole treatment, etc. . In the mold industry, ion carburizing technology is widely used in die and plastic molds. At present, more than 80% of the surface hardening is carburized. Therefore, ion carburizing has broad prospects for development.

1.2 ion nitriding

Ion nitriding is currently the most widely used and most mature ion heat treatment process in industry [1-3]. The process easily obtains a pure diffusion layer, a single phase, a compound layer, etc. by adjusting process parameters such as voltage, current, furnace gas pressure, temperature, time, and working gas composition. The key to ion nitriding technology is how to select the process parameters according to its characteristics, combined with the relevant mold service conditions, and then obtain the optimal permeable layer.

1.3 ionic carbon-nitrogen osmosis

Ion carburizing and nitrogen technology relies on the decomposition of the active components of the furnace gas C3H8 and NH3 on the steel surface, and the precipitated active atoms C and N are absorbed by the surface and diffused into the matrix [2,4], which is also called ion soft nitrogen. It is developed from salt bath and gas soft nitriding. The operation method of ion carburizing nitrogen is basically the same as that of ion nitriding, but the working gas composition is different, and the cooling method can be performed by oil quenching or high pressure gas quenching in addition to slow cooling under vacuum conditions. The ionic carbon-nitrogen co-infiltration time is short, the benefit is high, and a thick compound layer can be obtained, which has excellent wear resistance, anti-gluing and anti-fatigue properties. Compared with the traditional process, the ionic carbon-nitrogen co-infiltration technology applied to the mold not only has the advantages of good quality of the layer and easy control of the phase composition, but also high efficiency, cleanliness and energy saving. The process has strong market competitiveness.

Industrial Strip Lights Led Driver

Industrial Strip Lights Led Driver


12V led driver , 24v led driver, led power driver, Specifically for Industrial strip light, Isolated driver, easy to install, high security, constant Voltage power based. Are generally aluminum materials, long type driver.We have skilled engineers to answer all your questions and enquiries and provide all-round solutions basis on your project(s) and provide technical supporting.


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Parameter:

Input voltage: 100-277vac / 100-347V
output voltage: 25-40vdc / 12Vdc / 24vdc
current: 100mA-8000mA.
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Industrial Strip Lights Led Driver-HR100W0212V2

led Industristal strips lights driver


FAQ:
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Answer: We are a factory.
Question 2: Payment term?
Answer: 30% TT deposit + 70% TT before shipment,50% TT deposit + 50% LC balance, Flexible payment
can be negotiated.
Question 3: What's the main business of Fahold?
Answer: Fahold focused on LED controllers and dimmers from 2010. We have 28 engineers who dedicated themselves to researching and developing LED controlling and dimming system.
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