欧美人妻精品一区二区三区99,中文字幕日韩精品内射,精品国产综合成人亚洲区,久久香蕉国产线熟妇人妻

礦用硬質(zhì)合金需要在高功率沖擊條件下快速鉆進(jìn),同時(shí)盡量減少磨損,并承受長(zhǎng)時(shí)間沖擊而不斷裂。換句話說(shuō),礦用硬質(zhì)合金必須具有良好的耐磨性和足夠的韌性,這在國(guó)內(nèi)外都是一個(gè)長(zhǎng)期存在的難題。

Generally speaking, improving the wear resistance of carbide?leads to a decrease in carbide?toughness, and increasing the toughness of carbides results in decreased wear resistance. Wear resistance and toughness are a contradictory unity. How to resolve this contradiction has become a major challenge in today’s carbide?production. Through test, we have found that adding trace rare earth elements to mining?carbide?can effectively address this issue.

What Impact will Have on the Performance of?Mining Carbide by Adding Rare Earth Elements 2

The factors influencing the impact of rare earth elements on mining?carbide

We selected our factory’s mining?carbide?MTY25 and added a mixture of rare earth elements before wet grinding to prepare a blend called MTY25R. Both of these were high-temperature sintered to create experimental materials for performance testing.

What Impact will Have on the Performance of?Mining Carbide by Adding Rare Earth Elements 3

From Table 1, it can be seen that the addition of rare earth elements has increased the flexural strength and impact toughness values of the mining carbide, with minimal impact on hardness, density, and magnetic properties. This indicates that the inclusion of rare earth elements enhances the plastic deformation capability of the bonding phase and its bond strength with the hard phase at the interface.

What Impact will Have on the Performance of?Mining Carbide by Adding Rare Earth Elements 4

The addition of rare earth elements to the carbide?can enrich the carbide?with impurity elements, improve the distribution of interface impurities, purify grain boundaries, strengthen the bonding phase, and alter the composition of the Co phase. We believe that apart from strengthening the Co matrix of the bonding phase, rare earth elements primarily inhibit the phase transformation of Co.

We subjected MTY25R and MTY25 mining?carbide?to an electrolytic dissolution method, selectively dissolving the surface layer of WC, leaving the Co phase for quantitative X-ray analysis. We found that the addition of rare earth elements increases the content of ductile α-Co in the carbide?from around 60% to over 90%, significantly enhancing the plasticity of the Co phase. Consequently, this improvement results in higher flexural strength and impact toughness for the carbide.

 

The experimental data’s validation?for the results

To understand the differences in performance between carbides with and without rare earth element additions during actual usage, we conducted the following two steps:

1Dynamic thermal simulation tests were conducted to simulate the changes in carbide?performance under operating conditions and to determine the influence of rare earth elements on the carbide’s performance.

2Field trials were carried out at mining production sites to assess the carbide’s service life. We conducted high-temperature dynamic thermal simulation tests at Central South University in China (as shown in Table 2).

What Impact will Have on the Performance of?Mining Carbide by Adding Rare Earth Elements 5

 

The test results indicate that adding rare earth elements to the carbide?reduces the carbide’s thermal strength while increasing its thermal plasticity and high-temperature toughness (represented by the total area under the stress-strain curve). This effect is similar to the increase in Co content. carbides containing rare earth elements exhibit excellent thermal plasticity and toughness, allowing them to better accommodate the complex thermal stress plastic deformation differences in high-temperature environments. Therefore, carbides with rare earth element additions can improve their performance in use, enhance wear resistance, and extend their service life.

What Impact will Have on the Performance of?Mining Carbide by Adding Rare Earth Elements 6

The results in Table 3 demonstrate that the MTY25R carbide?with added rare earth elements shows an improvement in both service life and wear resistance compared to the MTY25 carbide?without rare earth elements. Particularly, in the test conducted at the Lugu Iron Mine, the MTY25R carbide?exhibited excellent performance.

The Lugu Iron Mine is one of the locations in China known for having the hardest rocks. Typically, drilling bits with carbide?insert thicknesses of 16mm are used for ore extraction in this region, while the carbide?inserts we used in our test were 10mm thick. However, during the entire experiment, no instances of carbide?fracture were observed with the rare earth element-added carbide?inserts. The service life of these inserts was also significantly extended compared to the inserts without rare earth elements. This strongly supports the conclusion that the addition of rare earth elements can indeed enhance the carbide’s flexural strength and impact toughness, improving its performance in real-world applications.

 

添加稀土元素對(duì)開(kāi)采硬質(zhì)合金的性能有何影響 7

結(jié)論

1Adding a certain amount and form of rare earth elements to mining?carbides can enhance the carbide’s flexural strength and impact toughness, thus improving wear resistance and extending the carbide’s service life.

2The addition of rare earth elements has a similar effect to increasing the Co content in the carbide, enhancing its thermal plasticity and toughness.

 

發(fā)表評(píng)論

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

日韩欧美一区二区三区在线视频| 精品一二三四区中文字幕| 中文字幕一区二区日韩精品蜜臂| 精品精品国产一区二区性色av| 欧美男女舔逼舔鸡巴视频| 无码人妻免费一区二区三区| 中文字幕av一区二区三区哈| 我和两个老师的浮乱生活| 加勒比在线不卡一区二区观看| 久久丁香花五月天色婷婷| 免看一级a一片成人欧美| 精品少妇一区二区三区中文字幕| 欧美大胆a级视频 一本| 日本亚欧乱色视频69室| 美女被插b在线观看| 爆乳喷奶水无码正在播放| 蜜臀AV无码国产精品尤物| 亚洲av午夜一区二区| 熟妇女人妻丰满中文字幕| 香蕉国产精品偷在线| 女人的骚逼免费视频| 欧美精品一区二区三区四区五区| 非洲人粗大长硬配种视频| 阴茎大头插少妇蜜穴视频| 美女裸胸屁股视频| 亚洲欧美日韩清纯唯美第一区| 无码视频在线观看| 被公侵犯中文字幕在线观看| 欧美伦禁片在线播放| 农村胖肥胖女人操逼视频| 把韩国美女操出水| 欧美精品性做久久久久久| 神马我不卡手机在线观看| 区国产精品搜索视频| 国产一区二区三区三级88| 一区二区国产精品免费视频| 国产精品999午夜激情| 国产老妇伦国产熟女91| 少妇毛片一区二区三区免费视频| 日韩视频在线网页| 制服丝袜国产在线第一页|