色呦呦网址在线观看,久久久久久久久福利精品,国产欧美1区2区3区,国产日韩av一区二区在线

As one of the most important raw materials for the production of cemented carbide, the particle morphology, size, particle size distribution and impurity content of?wolfram?carbide (WC) powder will directly affect the quality and application of cemented carbide. WC powder can be divided into ultra coarse tungsten carbide, micron tungsten carbide, sub micron tungsten carbide, sub nano tungsten carbide and nano tungsten carbide according to the particle size. In terms of application, submicron tungsten carbide powder is mainly used to produce cemented carbide, superhard cutting tools, jet engine parts and kiln structural parts.

What is submicron tungsten carbide? 1

Properties of submicron tungsten carbide powder

From the definition, tungsten carbide is a compound composed of transition metal tungsten and non-metallic carbon. Its chemical formula is WC and its molecular weight is 195.85.

From the physical and chemical properties, WC looks like a black granular powder with a melting point of about 2870 ℃ and a boiling point of about 6000 ℃. It is insoluble in water, hydrochloric acid and sulfuric acid, but easily soluble in the mixed acid of nitric acid and hydrofluoric acid. It has the characteristics of similar hardness to diamond, good conductivity and thermal conductivity, low coefficient of thermal expansion, high modulus of elasticity and compressive strength.

It is worth mentioning that the particle size of submicron WC powder is between micron and submicron, i.e. 100nm to 1.0 μ M, so it is not as easy to agglomerate as sub nano WC in a certain environment, that is, it has better dispersion performance. At the same time, it does not need to have a long milling time like micro WC, which is more conducive to the preparation of sub microcrystalline cemented carbide. However, it is not suitable for 3D printing technology because the particles are too large and the products produced are relatively rough.

O que é carboneto de tungstênio submicron? 2

Preparation of submicron tungsten carbide powder

The smaller the particle size of WC powder, the shorter the sintering time required in the material preparation process, and the lower the temperature required for densification. For example, nano WC powder begins to densify at 500 ° C, while sub micron WC powder begins to densify at 1200 ° C. Therefore, the preparation of WC powder with particle size less than 100nm can lay a good foundation for its subsequent sintering process.

In recent years, the main methods for preparing ultrafine or nano WC powders are: mechanical alloying, direct reduction carbonization, sol gel method, vapor phase carbonization, fixed bed chemical vapor phase method, plasma method, etc.

1 mechanical alloying method

Liu Lin et al. Adopted the mechanical alloying method, first mixed the W powder and C powder according to the atomic ratio of 1:1, put them into the steel pipe and introduced argon, then selected the 12mm diameter WC grinding ball, adopted the ball material ratio of 18:1, and finally carried out high-energy ball milling on the planetary ball mill. Through this method, WC powder with an average grain size of 7.2nm was obtained. Maxueming et al. Used mechanical alloying technology to reduce the particle size to about 75 μ M of W powder and C powder were mixed according to the atomic ratio of 1:1, and the selected ball material ratio was 30:1. The WC powder with an average grain size of 11.3nm was obtained by ball milling on qm-1f planetary high energy ball mill for 100h.

2 direct reduction carbonization

The reduction carbonization methods for preparing ultrafine WC powder can be divided into two categories: (1) two-step reduction carbonization: the first step is to decompose and reduce the precursor containing w to prepare W powder; The second step is to mix W powder with the substance containing C and heat it to high temperature, then carbonize it through chemical reaction to produce WC powder. In this method, W powder and C powder were mixed and reacted at high temperature (1400-1600 ℃) to form WC powder. (2) The one-step reduction carbonization method is the direct reduction carbonization method: the precursor containing W is mixed with the substance containing C, and then directly reduced and carbonized at high temperature to form WC powder. This method can not only improve the production efficiency of WC powder, but also obtain more uniform distribution of WC powder and finer grains.

Some experts obtained WC powder with grain size of 15-30nm by direct reduction carbonization. The preparation method is as follows: with WO3 and C as raw materials, the mixture of WO3 and C is first wet ground, in which the atomic ratio of C to W is greater than 1, then the wet ground slurry is spray dried, and then the intermediate product of WC powder and excess C is prepared by reducing carbonization at high temperature (1000-1100 ℃) with N2 as the protective gas, and finally the carbon content is adjusted to (6.13 ± 0.05)%.

Nano tungsten carbide powder was obtained by embedding direct reduction carbonization method. Reduction and combination reactions are carried out in A12O3 embedding device, which can provide reducing atmosphere at high temperature, so as to avoid oxidation of WC. The raw materials WO3 and C were pretreated by high-energy ball milling, and then the synthesis reaction was carried out at 1300 ℃ for 3 hours. Finally, the reaction products were pretreated by high-energy ball milling, and WC powder with grain size of 26nm was prepared after ball milling for 40H.

3 sol gel method

Nano tungsten carbide powder is prepared by sol gel / in-situ carbonization method. The preparation steps are as follows: first, hydrogen peroxide (mass fraction of H202 is 30%) is added to W powder (200 mesh), and glacial acetic acid and absolute ethanol are used as stabilizers to prepare yellow tungsten sol. The excess water is removed by evaporation, and then absolute ethanol dissolved in phenolic resin is added. After ultrasonic mixing, the sol containing w source and C source is obtained, After aging, gel was obtained. Finally, WC powder with grain size of 10.2nm was prepared by carbonization at 900 ℃ with H2 and Ar as shielding gas.

4 gas phase carbonization

The nano tungsten carbide powder was obtained by the gas phase carbonization method in Japan. He used WCl6 as the w source and CH4 as the gas phase C source to prepare the WC powder with the grain size of 20-30nm by chemical reaction at high temperature (1300-1400 ℃), and discussed in detail the grain size relationship between the reactant product system and the reaction temperature. The Tokyo tungsten company of Japan has applied for a patent for the preparation of ultra-fine WC powder by direct carbonization with WO3 as the w source and CO as the carbonization gas. The particle size and C content of the prepared WC powder can be controlled.

5 fixed bed chemical vapor method

WC powder of about 15nm was successfully prepared by fixed bed chemical vapor phase method. With nano WO3 as w source and acetylene as C source, the preparation steps are as follows: put the nano WO3 into a quartz reaction boat, and then put the boat into a high-temperature stainless steel tubular reactor; After vacuumizing, H2 is introduced. After holding at 660 ℃ for 1.5h, the nano WO3 powder is completely reduced to nano á -w powder. Then, the flow of H2 is reduced and acetylene is introduced. After holding at 800 ℃ for 4h, the nano á -w powder is transformed into WC powder.

6 plasma method

There is another common method to prepare ultra-fine / nano WC powder: plasma method, which uses the plasma as the heat source, and its temperature can reach 4000 ~ 5000 ℃. Under such high temperature, the powder raw materials will decompose and react to produce the required products. This method generally uses WO3, WC or w as the w source and CH4 as the C source. After the reaction, it mainly produces β- The research of WC or W2C, Japan’s Kuriyama, etc. shows that when the molar ratio of CH4 to WC is greater than 15, β- The mass fraction of WC is 90%-95% and the particle size of the powder is about 10nm. TEM observation β- The grain size of WC is 5-20nm, which has good fractional property.

Deixe uma resposta

O seu endere?o de e-mail n?o será publicado. Campos obrigatórios s?o marcados com *

亚洲午夜福利在线看片-草草影院在线观看国产-中文字幕在线国产有码-精品99成人午夜在线| 国产福利一区在线观看蜜臀av-最新天堂中文在线官网-成人精品天堂一区二区三区-国产精品久久久久久久人貌| 九九热在线视频精品一-国产乱码精品一区二区蜜臀-乱妇乱熟女妇熟女网站视频-国产精品午夜视频在线| 国产白浆一区二区在线观看-青草衣衣精品国色天香亚洲av-欧美午夜福利性色视频-成人亚洲一区二区三区在线观看| 亚洲av成人精品爽爽-国产麻豆91在线播放-国产精品久久精品久久精品-蜜臀久久综合一本av| 国产最新av一区二区-国产精品自产av一区二区三区-国产精品国产三级国产有无不卡-成人偷拍自拍在线观看| 亚洲天堂av资源在线-四虎永久免费在线观看国产-久久这里只有精品人妻-欧美黄色三级经典精品| 色男人天堂综合久久av-蜜桃精品一区二区三区蜜桃臀-国产粉嫩高中生第一次不戴套-成人激情自拍视频在线观看| 婷婷激情五月天第四色-岛国片av在线免费观看-久久综合久久一区二区-91青青草原免费观看| 国产深夜视频在线观看-丰满人妻熟妇乱又乱精品-青草视频在线观看资源-奇米网东京热日本人妻| 成人av亚洲男人色丁香-色丁香婷婷综合缴情综-国产男女视频免费观看-日韩有码中文字幕一区八戒| 亚洲乱码日产精品一二三-日韩中文字幕综合在线-日韩欧美一级黄色录像-午夜福利在线视频观看| 毛片内射免费夫妻内射-蜜臀av人妻中文字幕-插胃管的注意事项及护理要点-青青草视频精品在线播放| 国产精品一二三四区无线乱码-精品亚洲国产成人精品-国产精品蜜桃一区二区三区-黄片av在线免费播放| 尤物视频在线观看网址-欧美午夜精品久久福利-久久这里只有精品视频5-国产精品成人综合色区| 久久网站黄色一级视频-精品极品三级久久久久电-国产精品天堂蜜av在线播放-国产传媒免费在线观看| 国产一区二区在线中文字幕-欧洲中文字幕国产精品-国产精品蜜臀av免费观看四虎-国产一级特黄99久久| 悠悠成人资源亚洲一区二区-国产成人综合亚洲国产-青青草在线公开免费视频-91精品日本在线视频| 精品国产高清一区二区广区-午夜少妇激情视频网站-亚洲av日韩精品一区在线-青草亚洲免费在线观看| 开心五月激情五月综合-国产88精品久久久久久-乱人伦精品视频在线观看-秘社一区二区三区一午夜日本| 亚洲天堂男人的天堂在线-亚洲激情欧美日韩在线-国产av剧情精品老熟女-色老头与人妻中文字幕视频| 亚洲天堂av资源在线-四虎永久免费在线观看国产-久久这里只有精品人妻-欧美黄色三级经典精品| 女人毛茸茸的外阴视频-成人激情午夜福利视频-国产精品性色一区二区三区-国产中文字幕欧美激情| 国产欧美日韩激情免费-日韩av不卡免费观看-一本色道久久88综合亚洲精品-av天堂有色在线观看| 深夜福利在线观看日韩-国产成人夜色高潮在线观看-熟女人妻少妇精品视频-97在线观看完整免费| 九九热久久这里有精品视频-2020亚洲欧美日韩在线-国产精品久久无遮挡影片-亚洲国产高清在线不卡| 熟妇女人妻丰满少妇中文-最新国产成人在线网站-亚洲性日韩精品一区二区三区-亚洲免费熟女做爰视频| 日本大黄高清不卡视频在线-亚洲色图视频在线观看免费-国内精品自拍视频在线观看-av免费在线观看看看| 亚洲av无一区二区三区久久-色琪琪久久综合网天天-国产一区二区视频在线播放-大象焦伊人久久综合网| 日本老熟妇在线视频网-精品人妻在线一区二区三区视频-91亚洲国产成人精品福利-青青草免费手机直播视频| 国产av一区二区三区在线-亚洲国产欧洲在线观看-跪求能看的国产熟女av网-国内色精品视频在线网址| 日韩亚洲一区二区在线观看-欧美色一区二区三区在线-日韩av黄片在线观看-深夜成人福利在线观看| 国产av一区二区三区在线-亚洲国产欧洲在线观看-跪求能看的国产熟女av网-国内色精品视频在线网址| 国产精品爽爽va在线观看-亚洲av永久一区二区三区综合-成人av免费大片黄在线观看-一本一道久久a久久综合精品| 国产人妖直男在线视频-午夜福利视频合集91-亚洲五月自拍欧美第一页-国产主播免费在线一区二区| 亚洲不卡av影院在线-久久精品伊人久久精品-亚洲国产日韩欧美三级-久久亚洲中文字幕精品二区| 国产成人综合激情婷婷-亚洲国产综合在线观看不卡-色综网久久天天综合狼人-亚洲av高清在线不卡| 福利午夜视频在线观看-亚洲国产精品久久av麻豆-人妻被中出忍不住呻吟-国产极品尤物在线精品福利一区| 亚洲av一区二区三区av-国产av一区二区三区香蕉-久久超碰免费欧美人妻-九一精品人妻一区二区三区| 青青草原精品在线观看-日本久久精品狼人狠狠操-欧美深夜福利视频网站-麻豆密入视频在线观看| 日产中文字幕在线精品一区-日韩黄色特级片一区二区三区-8x8x精品国产自在现线拍-内射爆操视频在线观看|