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

Low-pressure hot isostatic pressing (HIP) is a new sintering process developed in Western developed countries in the 1980s, which combines vacuum sintering and hot isostatic pressing in a single device to complete the process in one step. We have utilized low-pressure hot isostatic pressing technology to manufacture recycled mining carbide, which effectively improves the mechanical and physical properties of the alloys, resulting in a virtually pore-free microstructure and excellent rock drilling performance on-site.

Hot Isostatic Pressing

Experimental Method

Recycled WC powder with a Fisher particle size of 3.00~10.00 μm and normal WC powder with a Fisher particle size of 10.00~18.00 μm were mixed with Co powder or Ni powder with a loose packing density of 0.5~0.7g/cm3 to prepare mixtures of grades YJ1, YJ2, N309, etc. The mixtures were shaped, degummed, and then sintered in a domestically produced horizontal vacuum furnace and a low-pressure hot isostatic pressing furnace manufactured by a German specialized equipment company. The low-pressure hot isostatic pressing process is as follows: loading → vacuum pumping → heating → maintaining sintering temperature → charging argon and pressurizing → maintaining pressure and temperature → cooling and depressurizing → unloading. Electron microscopy was used for metallographic analysis, and the linear shrinkage and shrinkage rate of the samples during the sintering process were measured by the low-pressure hot isostatic pressing sintering furnace to analyze the densification process. The test alloys were made into D43×22 straight horseshoe bits for calibration tests in mining operations.

Experimental Results

Comparison of Properties

Between Low-Pressure Hot Isostatic Pressing Treatment of Recycled Material and Vacuum Sintering Treatment of Normal Material. The two types of tungsten carbide powders, recycled and normal, were processed using the same manufacturing process, undergoing vacuum sintering and low-pressure hot isostatic pressing treatment, respectively. The results are listed in Table 1.

What's Low-Pressure Hot Isostatic Pressing of Recycled Mining Carbide? 2

As can be seen from Table 1, the porosity of the alloy treated with low-pressure hot isostatic pressing using recycled WC powder is even lower than that of the normal alloy, and its performance has been significantly improved, with an increase in the transverse rupture strength value; moreover, the elimination of type B pores ranging from 10 to 25 μm indicates the intrinsic relationship between the reduction in porosity and the increase in transverse rupture strength, while also confirming the capability of low-pressure hot isostatic pressing sintering to eliminate pores in recycled alloys.

Low-Pressure Hot Isostatic Pressing Alloy Linear Shrinkage Test

The linear shrinkage and shrinkage rate of the samples during the sintering process in the low-pressure hot isostatic pressing furnace were measured as shown in the attached figure. The alloy undergoes two stages: vacuum sintering and hot isostatic pressing. The macroscopic pores are eliminated during the vacuum sintering stage, and the microscopic pores are eliminated during the hot isostatic pressing stage to achieve the final densification level.

Comparison of On-site Rock Drilling Effects

The two types of tungsten carbide?powders, recycled and normal, were made into alloys of grades YJ1, YJ2, N309, etc., and calibration tests were conducted at the Taolin Lead-Zinc Mine. The results are listed in Table 2.

What's Low-Pressure Hot Isostatic Pressing of Recycled Mining Carbide? 3

The rock drilling calibration indicates that high-quality mining carbide?can be produced from recycled WC powder through low-pressure hot isostatic pressing treatment, and their performance is comparable to that of mining carbide?made from normal tungsten carbide.

What's Low-Pressure Hot Isostatic Pressing of Recycled Mining Carbide? 4

Result Analysis

Process Characteristics of Low-Pressure Hot Isostatic Pressing for Eliminating Pores in Recycled carbide

The densification of carbide?primarily occurs during sintering, where the plastic flow of the binder phase and the rearrangement of WC grains are driven by surface tension. However, under atmospheric or vacuum sintering, a certain amount of porosity always remains after shrinkage densification is complete; this is because when pores are sealed, the stress inside the pores reaches equilibrium with the surface tension of the pores. Additionally, due to the mixed composition of recycled materials and the presence of more harmful impurities, large pores and voids are easily formed during vacuum sintering, leading to issues such as low alloy density, low fracture strength, significant hardness variations, and severe contamination of the alloy. Applying a certain pressure can promote further flow of the binder phase and rearrangement of WC grains, thereby greatly reducing or even completely eliminating these pores or voids.

Study on the Densification Mechanism of Low-Pressure Hot Isostatic Pressing

The change curve of the linear shrinkage rate of recycled carbide?samples during low-pressure hot isostatic pressing sintering is shown in the attached figure. There are three peaks on the shrinkage rate curve: Peak A appears at a sintering temperature of 1200°C, which is solid-phase sintering. Due to the low yield point of the binder phase, plastic flow occurs under a small external force. The flow of the binder metal changes the contact situation between powder particles, causing the carbide?particles to move and come closer together. Peak B appears during the liquid-phase sintering process at 1340°C, where WC particle rearrangement, solution precipitation, and skeleton formation result in significant shrinkage of the sintered body, and macroscopic pores are eliminated during the vacuum sintering process of low-pressure hot isostatic pressing. Peak C appears at the beginning of the pressurization stage, where the rise in pressure eliminates the micro-pores in the product. However, with the extension of the pressure maintenance time, no new shrinkage peak appears in the product.

 

結(jié)論

(1) The physical and mechanical properties of the recycled alloy treated by low-pressure hot isostatic pressing are superior to those of alloys manufactured by conventional processes, with a significant reduction in porosity and the elimination of type B pores.

(2) The recycled alloy treated by low-pressure hot isostatic pressing does not fall short of normal alloys in on-site rock drilling tests, and its wear resistance is even improved.

(3) The mechanism by which low-pressure hot isostatic pressing improves the performance of the alloy is mainly the elimination of large-sized pores and the reduction in porosity.

發(fā)表評(píng)論

電子郵件地址不會(huì)被公開。 必填項(xiàng)已用*標(biāo)注

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| 99久久国产自偷自自偷蜜月-日韩熟女激情中文字幕-亚洲狼人社区av在线观看-四虎成人精品国产永久| 国产韩国精品一区二区三区-久久精品人妻一区二区三区av-黄片视频在线观看欧美-国产成人自拍在线视频| 亚洲最大的偷拍视频网站-国产三级精品三级男人的天堂-国产成人免费精彩视频-一区二区精品日韩国产精品| 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| 国产传媒高清视频在线-日韩人妻少妇av在线-日本久久精品高清视频-丰满肥臀大屁股熟妇激情| 国产自拍成人激情视频-欧美大香蕉在线视频观看-精品人妻一区二区三区麻豆91-经典三级一区二区三区| 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| 色人阁免费在线视频观看-中文字幕中文字幕日韩一区-91麻豆成人精品国产-亚洲精品成人剧情在线观看| 亚洲人妻av在线播放-日韩午夜短视频在线观看-91精品久久午夜中文字幕-亚洲熟伦熟女新五十熟妇| 黄色av日韩在线观看-偷拍自拍在线免费视频-色偷偷偷亚洲综合网另类-国产成人免费综合视频| 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| 人妻体内射精一区二区三区小视频-国产精品久久久久人人爽-日韩三级黄色一区二区三区-亚洲伊人色综合网收藏| 日本一区二区三区四区高清-91久久香蕉国产熟女-久久精品99国产日本精品-国产粉嫩一区二区三区在线观看| 成人精品一区二区三区久久-中文字幕乱码亚洲无线三区-亚洲精品亚洲人成人网-中文字幕五月久久婷热| 精品人妻一区二区三区免费-亚洲国产精品久久一区二区-国内久久偷拍视频免费-蜜桃视频在线观看网址| 精品视频人妻少妇一区二区三区-人妻中文字幕一二三区-日本老熟妇成熟老妇人-东京热国产精品二区三区| 日韩av免费在线网站-在线一区二区三区视频免费观看-日韩一本不卡一区二区三区-国产成人国产在线播放| 亚洲一区二区三区视频观看-日韩精品一二三四区视频-亚洲码与欧洲码区别入口-日韩精品大片一区二区三区| 国产做国产爱免费视频-男人免费视频一区二区在线播放-精品一区二区三区蜜桃麻豆-成年人免费看国产视频| 少妇人妻偷人偷人精品-国产精品黄色在线播放-亚洲熟伦熟女新五十路熟妇亚洲-国产综合91精品百人斩| 日日夜夜久久国产精品-国产男女无遮挡猛烈免费观看-在线观看热久精品视频-国产香蕉视频在线内射| 亚洲黄色美女视频大全-成上人色爱av综合网-亚洲一区二区三区激情在线观看-久久91精品国产一区二区| 熟女国产精品一区二区三-一区二区三区av这些免费观看-精品国产一区二区二三区在线观看-国产精品一品二区三区日韩| 亚洲av成人午夜福利-青青草华人在线视频观看-久久99国产亚洲高清-中文字幕一区二区三区乱码人妻| 国产女主播在线播放福利-日韩中文字幕综合第二页-av男人的天堂免费观看-国产乱码免费一区二区三区不卡| 国产精品亚洲精品日韩精品-狠狠爱婷婷网五月天久久-国产精品激情成色在人-国产农村妇女精品三级一区二区| 狠狠久久五月综合色和啪-日韩精品欧美一区二区三区软件-亚洲女同精品一区二区久久-国产传媒在线视频免费观看| 国产一级亚洲一级一区-国产精品一亚洲av日韩av-日韩高清有码中文字幕-久久国产精品免费一区二区三区| 日韩成av在线免费观看-中文字幕亚洲第一精品-亚洲欧美日韩国产在线-国产精品国精品国产免费| 亚洲不卡福利在线视频-亚洲一级特大黄色小视频-日本久久一级二级三级-国产精品剧情av在线观看| 激情综合亚洲欧美调教-亚洲综合日韩精品国产-国产成人亚洲精品av大片-久草青青亚洲毛片在线视频| 亚洲a级一区二区三区-人妻中文字幕精品在线-日韩精品中文字幕人妻系列-香蕉久久最新精品视频| 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| 国产精品18禁免费无摭挡-国产精品久久久看三级-国产亚洲精品熟女国产成人-国产亚洲精品不卡中文| 亚洲黄片免费观看高清-精品国产中文字幕av-60分钟三级全黄50岁-国产精品东北重口变态| 国内精品欧美久久精品-国产极品尤物美在线观看-日本经典视频一区二区三区在线-国模91九色精品二三四| 亚洲综合中文在线视频-在线视频福利精品91-久一在线免费播放视频-精品手机亚洲一区二区三区| 国产精品久久久久久野战-人妻少妇中文字幕在线一区-国产自拍日韩在线视频-少妇宅女午夜福利院免费| 国产精品人人爱一区二区白浆-中文字幕一区二区三区人妻精品-91人妻在线欧美精品不卡-好吊视频一区二区三区在线| 日韩中文有码字幕在线观看-黑人国产一区二区三区-久久国产精品久久精品-国产激情在线一区二区三区|