<script> var _hmt = _hmt || []; (function() { var hm = document.createElement("script"); hm.src = "https://hm.baidu.com/hm.js?2632353fc1e8e1de5091a3e7301dfade"; var s = document.getElementsByTagName("script")[0]; s.parentNode.insertBefore(hm, s); })(); </script>

兔兔精品国产乱码久久久久_波多野结衣的AV一区二区三区_99永久AⅤ免费视频_免费观看欧美成人_成人国产一区二区三区_91rb成人

2020 官網升級中!現在您訪問官網的瀏覽器設備分辨率寬度低于1280px
請使用高分辨率寬度訪問。

General classification of thermal spraying powders

release time: 2024-05-06views: 819

Self melting alloy powder

Self fluxing alloy powder refers to an alloy material in which the powder does not require additional additives during the remelting process and has the functions of self deoxidation and slagging. It can infiltrate the surface of the workpiece and be deposited. This type of material generally includes iron-based, nickel based, and cobalt based alloys, which contain a certain amount of boron and silicon elements.

Metals, alloys, and their composite powders

There are many types of alloy powders, and based on material classification, they can be divided into the following types:

Nickel based alloy powder: Nickel based alloy is the most diverse type of alloy powder. Widely used include:

Ni Cr alloy is widely used as an antioxidant coating at high temperatures;

Ni Cr Fe alloy, can be turned and used for spray repair;

Ni Cu alloy has excellent resistance to seawater corrosion;

Ni-Cr-W alloy can be used for friction wear resistance and high-temperature adhesive wear resistance under oil-free conditions.

Ni-Cr-Al-Y alloy can prepare dense, high bonding strength, chemically stable coatings, high temperature resistance and oxidation resistance, and has developed into multiple series of MCrAlY materials.

Cobalt based alloy powder:

Co Cr Mo Ni Fe alloy has good high-temperature strength, good thermal stability, and resistance to various forms of wear;

Co-Cr-W-C alloy, high hardness, good red hardness, and erosion resistance;

The performance of Co Cr Al Y alloy is similar to that of Ni Cr Al Y alloy, but it is used at higher temperatures.

Copper based alloy powder: used as a surface coating for soft supports; Tin bronze powder, used as an anti friction coating. Phosphorus bronze powder, used as a wear reducing and wear-resistant coating.

Iron based alloy powder: Cr13 series stainless steel powder; Austenitic stainless steel powder containing molybdenum; And high chromium iron alloy powder and high carbon iron alloy powder used as additives for high hardness components.

Other alloy powders: aluminum silicon alloy powders with various ratios, tin based babbitt alloy powders, etc.

Metal composite powder refers to a powder material made by combining two or more different metal materials using non-alloying methods (such as mechanical bonding or chemical bonding). Mainly nickel aluminum composite powder and nickel chromium aluminum composite powder. There are various types of aluminum content in nickel aluminum composite powder, including 5%, 10%, and 20%. It is generally believed that during spraying, nickel and aluminum will undergo an aluminothermic reaction, releasing a large amount of heat to supplement and heat the material, thereby achieving excellent bonding performance; Nickel chromium aluminum composite powder is a composite powder of nickel chromium alloy and aluminum. During spraying, its heat release is more severe and intense than nickel aluminum powder, resulting in better bonding performance and better resistance to high-temperature oxidation.

Ceramics, metal ceramics and their composite powders

Ceramic materials refer to a collective term for metal oxides, carbides, nitrides, borides, and silicides. Ceramic materials have stable chemical properties and high melting points.

The commonly used oxide ceramics include alumina (Al2O3), zirconia (ZrO2), chromium oxide (Cr2O3), titanium oxide (TiO2), and their composites.

Aluminum oxide used for spraying is generally stable α The coating has high temperature resistance, good electrical insulation performance, high hardness, and low friction coefficient. It can be used as wear-resistant coating, electrical insulation coating, and thermal insulation coating.

Titanium oxide has several phase structures, and small changes in composition (deoxygenation) can cause significant changes in appearance, color, and properties. The titanium oxide coating is hard and dense. Adding a certain amount of titanium oxide (ranging from 3% to 50%) to alumina improves the toughness and density of the coating. This material, also known as alumina titanium, has superior fiber wear resistance in its coating.

The chromium oxide coating has excellent resistance to hard surface wear and abrasive wear at 550 ℃. Another advantage of chromium oxide coating is its good self matching performance, which can match well with the grinding pair during sliding friction.

Zirconia has a high melting point and low thermal conductivity, making it an excellent high-temperature insulation material. ZrO2 undergoes phase transformation and volume changes at a certain temperature. When used as a thermal barrier coating, the material needs to be stabilized (commonly Y2O3). Y2O3+ZrO2 is an ideal thermal barrier coating material and has been widely used.

Commonly used carbide ceramics include tungsten carbide (WC), chromium carbide (Cr3C2), molybdenum carbide, etc.

Tungsten carbide is a hard material that is prone to phase transformation at high temperatures, greatly reducing its hardness. Due to the excellent high-temperature performance of cobalt metal, its melt has excellent wetting ability towards WC. Therefore, cobalt tungsten carbide has become the most ideal sprayed tungsten carbide material. Chromium carbide has good resistance to high-temperature oxidation and high-temperature wear resistance. It is often mixed with nickel chromium alloy to improve the cohesive strength of the coating. To improve the wettability of chromium carbide, it can be first coated or composite with nickel or cobalt, and then mixed with Ni Cr.

Ceramic composite powder and metal ceramic composite powder

Ceramic composite powder. Composite of two or more ceramic materials in a certain proportion to obtain better thermal sprayed ceramic materials. The composite method can be agglomeration sintering or melting fragmentation. Aluminum oxide titanium oxide series; Zirconia yttrium oxide, zirconia magnesium oxide, zirconia calcium oxide materials; And chromium oxide silicon oxide titanium oxide materials.

Metal ceramic composite powder. This material has both the toughness of metallic materials and the high hardness and chemical stability of ceramic materials. Their composite methods include mixing, agglomeration, agglomeration sintering, etc. Tungsten carbide cobalt series and chromium carbide nickel chromium series are the two most widely used metal ceramic materials. In recent years, new metal ceramic materials have been continuously launched, which have better strength, higher deposition efficiency, denser coatings, and greater wear resistance: powders such as WC-10Ni, WC Co Cr, and WC CrC Ni obtained by agglomeration and sintering methods.

Prev: Current research status of laser cladding materials

Next: No more, Back to List
Share on
Back to List

CONTACT US

Committed to becoming a leader in China's high-performance functional materials technology
CONTACT US
主站蜘蛛池模板: 欧美一区二区三区高清视频 | 护士脱了内裤让我爽了一夜视频 | 裸体美女扒尿口喷白浆 | 看全色黄大色黄女片爽在线看 | 中文字幕人妻无码一夲道 | 午夜i视频 | 超碰在线天天 | ww3344国产精品四虎 | 国产精品人成 | 精品一区二区三区四区av | 4kmoms丰满hdfilm| 久久久精品人妻一区二区三区 | 一级毛片免费 | 99福利在线观看 | 国产干b视频 | 好硬好湿好大再深一点动态图 | 免费在线h| 成人a视频片在线观看免费 伊人第一页 | 亚洲Aⅴ无码专区在线观看春色 | 午夜精品久久久久久久白皮肤 | 国产精品久久久久久无毒不卡 | 最新小四郎av网站在线观看 | 亚洲国产精品成人精品无码区在线 | 国产亚洲综合专区在线在线观看 | 亚洲精选一区二区 | 国产精品夜夜春夜夜爽久久小 | 国产日韓无码一区二区三区久久区 | 99久久精品免费一区 | 小婕子伦流澡到高潮视频 | 久久久这里有精品999 | 法国啄木乌AV片在线播放 | 久久久精品久久日韩一区 | 日本午夜影院 | 国产一级淫片91aaa激情 | 国产99999 | 中文字幕第13页 | 久久久久毛片 | 在线午夜影院 | 成人在线免费观看91 | 国产亚洲中字幕欧 | 亚洲国产精品国语在线 |