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

WC-Co carbide end mills are commonly used for titanium alloy milling. The material characteristics of the tools directly affect the tool life and milling efficiency. Extending the tool life of titanium alloy processing and improving the processing efficiency have always been hot topics in the industry.

In this study, two different high-temperature performance matrix body?materials were prepared by adding trace amounts of TaC (NbC) carbide to the carbide?matrix body. The high-temperature hardness and high-temperature fracture toughness of the two carbides were tested using a high-temperature Vickers hardness tester. Whole carbide?end mills?with the same geometric parameters were prepared based on the two matrix body?materials, and titanium alloy TC4 milling?tests were carried out. By analyzing the tool life and wear patterns, the impact of TaC (NbC) on the wear performance of carbide?milling?tools in high-speed milling was studied.

 

Experimental conditions and testing methods

Two different WC-Co-based carbide?materials with different compositions, named A and B, were prepared for the experiment. Trace amounts of TaC (NbC) carbide were added to material A, with a mass fraction of less than 0.1%. The compositions of the two carbides are shown in Table 1.

What are the 3 Points of Influence?will TaC (NbC) Have on the Wear of Carbide?End Mills? 2

The high-temperature hardness and high-temperature fracture toughness of materials A and B at different temperatures are shown in Figures 2 and 3, respectively.

What are the 3 Points of Influence?will TaC (NbC) Have on the Wear of Carbide?End Mills? 3

What are the 3 Points of Influence?will TaC (NbC) Have on the Wear of Carbide?End Mills? 4

Based on the two carbide?materials A and B, four-flute flat end mills?A and B with the same geometric parameters were prepared accordingly. The specifications and parameters of the tools are shown in Table 2.

What are the 3 Points of Influence?will TaC (NbC) Have on the Wear of Carbide?End Mills? 5

The workpiece material for the milling?test is annealed titanium alloy TC4, with a material hardness of 28.2 HRC. The milling?test was performed on a Mazak Nexus 430A-II vertical machining center, and the machining parameters are shown in Table 3.

What are the 3 Points of Influence?will TaC (NbC) Have on the Wear of Carbide?End Mills? 6

Experimental results and discussion

Under the same milling?conditions, the flank wear curves of end mills?A and B in the machining of titanium alloy TC4 are shown in Figure 4. Figure 5 shows the flank wear morphologies of the two end mills.

What are the 3 Points of Influence?will TaC (NbC) Have on the Wear of Carbide?End Mills? 7

end mills wear

What are the 3 Points of Influence?will TaC (NbC) Have on the Wear of Carbide?End Mills? 8
Fig.5 wear morphology figures of two tools

 

From Figures 4 and 5, it can be seen that when the milling?distance is less than 60m, both types of carbide?end mills?are in the normal wear stage, and the amount of wear on the tool’s back surface increases slowly. This stage is mainly in the early stage of milling, where the tool coating has good wear resistance and insulation, which effectively protects the tool matrix body?during this stage.

However, due to the very high milling?temperature of titanium alloy, as milling?continues, the coating on the tool edge is worn off, exposing the tool matrix body. The tool edge directly bears severe thermal and mechanical shock. As the matrix body?of end mills?A is added with trace alloy carbide TaC (NbC), its high-temperature hardness and high-temperature fracture toughness are higher than that of end mills?B. Therefore, end mills?A has more advantages than end mills?B in terms of the amount of wear on the back surface of the tool.

 

Analysis of end mills failure

After milling?200m using vertical milling cutters A and B, the worn positions of the tool tips were analyzed using a scanning electron microscope. The tip wear morphologies of the two vertical milling cutters are shown in Figure 6.

Quels sont les 3 points d'influence du TaC (NbC) sur l'usure des fraises en carbure?? 9

From Figure 6, it can be seen that the addition of trace amounts of alloy carbide TaC(NbC) in vertical milling cutter A has improved the high-temperature fracture toughness of the WC-Co carbide, suppressed the formation and propagation of cracks within the tool matrix body, and extended the tool life. On the other hand, the high-temperature fracture toughness of vertical milling cutter B is lower than that of A, and when the milling?edge is subjected to severe thermal shock and mechanical loads, cracks are easily formed and continuously expanded, causing the tool matrix body?material at the milling?edge to break and ultimately resulting in tool failure.

Conclusion

Under the same main elements, the carbide?material A with trace amounts of alloy carbide TaC(NbC) has higher high-temperature hardness and fracture toughness than the carbide?material B without adding trace amounts of alloy carbide TaC(NbC). At 800℃, the high-temperature hardness is increased by approximately 14.5%, and the high-temperature fracture toughness is increased by approximately 10.2%.

When milling?titanium alloy TC4 under the same conditions, the tool with added trace amounts of alloy carbide TaC(NbC) has better wear resistance. When the milling?distance is 200m, the amount of wear on the back surface of vertical milling cutter A is 0.076mm, while the amount of wear on the back surface of vertical milling cutter B is 0.13mm.

The high-temperature fracture toughness of the carbide?material A with TaC(NbC) added is better. Under the same milling?conditions, the milling?edge retention of vertical milling cutter A is better, and there are significantly fewer cracks in the worn failure area compared to vertical milling cutter B.

Laisser un commentaire

Votre adresse de messagerie ne sera pas publiée. Les champs obligatoires sont indiqués avec *

亚洲av乱码一区二区-九九免费在线观看视频| 一级特黄大片亚洲高清-国产精品视频伊人久久| 日韩精品人妻系列一区-亚洲女同性一区二区三区| 日韩精品一区二区三区十八-日韩人妻少妇一区二区三区| 在线免费观看黄片喷水-国产精品白丝网站在线观看| 日本中文字幕啊啊啊啊-久久精品伊人久久精品伊人| 国产日韩电影一区二区三区-美女露双奶头无遮挡物| 丝袜美腿人妻连续中出-在线观看日韩三级视频| 国产欧美日本一区二区-一区二区三区亚洲在线播放| 97香蕉久久国产在线观看-麻豆黄色广告免费看片| 99久久精品一区二区成人-麻豆国产av玩弄放荡人妇系列| 国产一区二区三区四区五区麻豆-欧美一级在线视频播放| 中文字幕社区电影成人-欧美精美视频一区二区三区| 亚洲精品蜜桃在线观看-国产欧美日韩在线观看精品观看| 国产剧情av中文字幕-五月婷婷在线手机视频| 在线视频成人一区二区-亚洲另类中文字幕在线| 国产在线观看高清精品-四季av一区二区三区中文字幕| 久久99热这里都是精品啊-国产成人亚洲精品无码aV| 免费午夜福利在线观看-黄色日本黄色日本韩国黄色| 欧美日本亚一级二级三区久久精品-日韩欧美一区二区久久婷婷| 久久网址一区二区精品视频-日产国产欧美视频一区精品| 欧美精品一区二区三区爽爽爽-日韩国产精品亚洲经典| 中文字幕精品一区二区日本99-青青国产成人久久91网| 免费午夜福利在线观看-黄色日本黄色日本韩国黄色| 国产精品一区二区欧美视频-国产一区二区三区天码| 国产一级片久久免费看同-麻豆精品尤物一区二区青青| 日韩亚洲欧美综合在线-成人在线网站在线观看| 欧美一区二区三区调教视频-三上悠亚国产精品一区二区三区| 国产精品熟女视频一区二区-国产日韩精品欧美一区喷水| 欧美看片一区二区三区-人妻无卡精品视频在线| 国产一区二区无套内射-国内精品久久久久久久齐pp| 亚洲国产精品日韩欧美-国产又粗又硬又大爽黄| 色婷婷六月婷婷一区二区-91草草国产欧美在线观看| 日本中文字幕永久在线人妻蜜臀-欧美一区二区的网站在线观看| 亚洲一区精品一区在线观看-日本久久久一区二区三区| 久久免费观看归女高潮特黄-黄色av一本二本在线观看| 久久久噜噜噜久久狠狠50岁-精品一区二区三区av| 欧美日韩国产综合四区-爆操极品尤物熟妇14p| 国产精品美女在线网址-久草免费福利在线观看视频| 一级小黄片在线免费看-亚洲欧美午夜情伊人888| 性激烈欧美三级在线播放-久久中文字幕人妻少妇|