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粉末冶金,顧名思義,是一種特殊的冶金技術(shù)。粉末冶金是制造高新技術(shù)材料的重要工藝,有時(shí)甚至是唯一的方法。自20世紀(jì)20年代燒結(jié)金屬含油軸承出現(xiàn)以來(lái),隨著汽車工業(yè)的發(fā)展,粉末冶金逐漸形成了用于制造機(jī)器、電器零件的精密、高效、低耗、節(jié)能、價(jià)格低廉的特種金屬成形技術(shù)。將材料制備與金屬成形技術(shù)相結(jié)合,已廣泛應(yīng)用于汽車、摩托車、家用電器、辦公機(jī)械、農(nóng)業(yè)機(jī)械和工程機(jī)械、電動(dòng)工具等領(lǐng)域,

Powder metallurgy materials are not only iron-based materials, but also main materials:

1. Cemented carbide:

Cemented carbide is a material made by powder metallurgy with one or several refractory carbide powders as the main component and cobalt powder as bonding. Common cemented carbides are divided into tungsten cobalt, tungsten cobalt titanium and tungsten titanium tantalum (niobium) according to their composition and performance characteristics. Cemented carbide has high hardness, high thermal hardness, good wear resistance and high compressive strength, but low flexural strength and poor toughness. Good corrosion resistance and oxidation resistance. The coefficient of linear expansion is small, but the thermal conductivity is poor.

2. Powder metallurgy antifriction materials:

Powder metallurgy can be divided into iron-based materials and copper-based materials according to the main added elements of the matrix. Iron based antifriction materials commonly used are iron graphite powder alloy and iron sulfur graphite powder alloy. The microstructure of the former is pearlite matrix + ferrite + cementite + graphite + pore; In addition to the same structure as the former, the latter also has sulfide, which can further improve the antifriction. Powder metallurgy antifriction materials are generally used to manufacture bearings with medium speed and light load, especially suitable for bearings that cannot be refueled frequently, such as bearings of textile machinery, film machinery, food machinery and household appliances. They are also used in automobiles, tractors and machine tool motors.

3. Powder metallurgy structural materials:

Powder metallurgy structural materials can be divided into iron-based and copper-based materials according to different base metals. Compared with iron-based structural materials, copper-based structural materials have low tensile strength, high plasticity and toughness, good conductivity, heat conduction and corrosion resistance. They can be used for various plating treatments. They are commonly used to manufacture instrument parts with small volume, complex shape, high dimensional accuracy and low stress, as well as electrical and mechanical product parts, such as small module gears, cams, fasteners, valves, pins Sets and other structural members.

4. Powder metallurgy friction materials:

Powder metallurgy friction materials are divided into iron-based and copper based materials according to different base metals, and dry and wet materials according to different working conditions. Wet materials are suitable for working in oil. Powder metallurgy friction materials are mainly used to make clutches and brakes on machine tools, tractors, automobiles, mining vehicles, construction machinery and aircraft.

The process is also very difficult. As the landlord said, you can do it by buying some better equipment. Of course, you don’t object. The products made with good equipment have good stability and high precision. Let me give you a few simple examples in terms of process difficulty

Is Powder Metallurgy a Complicate Process to Form a Work Piece 2spare parts

For example, the customer has air tightness requirements for this part. Through blackening, there will be no air leakage under a certain air pressure, but the customer will leak under the required air pressure. What should you do?

Is Powder Metallurgy a Complicate Process to Form a Work Piece 3

Sensor parts

For another example, this kind of sensor will be used by customers for welding, because it is made of powder metallurgy and there are voids in the metal, as shown in the figure

Is Powder Metallurgy a Complicate Process to Form a Work Piece 4

Gap between metals

Is Powder Metallurgy a Complicate Process to Form a Work Piece 5

The customer found bubbles in the welding process, resulting in poor welding. After metallographic analysis, the metallography did not meet the customer’s requirements. What should you do? There are also high frequencies such as lock pin holes

The requirements of each product are different, the process is different, and the difficulty of the product is also different. Each process may become a difficulty for some products.

Good equipment is important, but the rich experience of design workers is more important.

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