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

End mills are one of the most crucial cutting tools in CNC milling operations, widely employed in various fields such as mold manufacturing, component machining, aerospace, and automotive manufacturing. They are key to achieving efficient and high-precision processing.

?Names of the Various Parts of an End Mill

Names of the various parts of an end mill:

How to Choose the Perfect End Mill: Master Machining with These Pro Tips! 2 How to Choose the Perfect End Mill: Master Machining with These Pro Tips! 3 How to Choose the Perfect End Mill: Master Machining with These Pro Tips! 4

Structural Types of End Mills

Classified by the Number of Cutting Edges:

The cylindrical surface and end face of an end mill usually have cutting edges distributed on them, which can engage in cutting simultaneously or individually. Based on the number of blades, end mills can be categorized into double-edge, triple-edge, quadruple-edge, and multi-edge types.

How to Choose the Perfect End Mill: Master Machining with These Pro Tips! 5

How to Choose the Perfect End Mill: Master Machining with These Pro Tips! 6

The fewer the number of blades, the larger the chip flute, but the worse the rigidity.

Comparison of the advantages and disadvantages of end mills with different numbers of blades:

How to Choose the Perfect End Mill: Master Machining with These Pro Tips! 7

According to the type of bottom end tooth shape

How to Choose the Perfect End Mill: Master Machining with These Pro Tips! 8

According to the shape of the cutting edge

General-purpose end mill

How to Choose the Perfect End Mill: Master Machining with These Pro Tips! 9

Widely used, applicable to slot machining, side machining, and step surface machining, etc. In addition, it can be used in all situations of rough machining, semi-finishing, and finishing.

Tapered end millHow to Choose the Perfect End Mill: Master Machining with These Pro Tips! 10

Used for conical surface machining after general cutting, such as mold draft angle machining and concave portion machining, etc.

Gear-type end mill

How to Choose the Perfect End Mill: Master Machining with These Pro Tips! 11

The cutting edge is wavy, producing fine chips, with low cutting force, suitable for rough machining, not suitable for finish machining.

Forming end mill

Milling cutter for machining external R shapes
Milling cutter for machining external R shapes

A forming blade is a cutting edge that is shaped to match the contours of the workpiece being machined. Special shapes typically need to be custom-made based on the product’s shape and dimensions.

According to the blade arrangement of end mills

Indexable spiral fluted end mill
Indexable spiral fluted end mill

 

Indexable spiral cutting edge end mill
Indexable spiral cutting edge end mill

 

By tool material

End mills can be classified by material into: high-speed steel, solid carbide, carbide with coating, CNB, PCD, etc.

?

Key Points for Selecting End Mills

When using an end mill, multiple factors need to be considered to ensure machining efficiency, precision, and tool life. Here are some key considerations:

① Material of the workpiece: Different materials (such as steel, cast iron, aluminum alloy, plastic, composite materials, etc.) require tools with different characteristics. For example, when machining aluminum alloy, a specialized aluminum end mill can be chosen, which typically has good chip evacuation and heat resistance; when machining high-hardness materials, a carbide tool with a high-wear-resistant coating should be selected.

② Machining form and precision requirements: Choose the shape and number of cutting edges based on the shape of the machining surface (plane, slot, contour, etc.) and the required surface roughness. For instance, a ball nose end mill is suitable for complex surface machining, while a flat or rounded end mill is suitable for plane and edge machining. For high-precision machining, choose an end mill with higher arc precision.

③ Helix angle of the end mill: The helix angle affects cutting efficiency and tool life. When machining materials with poor thermal conductivity (such as stainless steel), a large helix angle can improve chip evacuation and heat dissipation, extending tool life. For thin-walled workpieces or machining with poor rigidity, a small helix angle can reduce cutting forces and avoid workpiece deformation.

End mills with different helix angles
End mills with different helix angles

How to Choose the Perfect End Mill: Master Machining with These Pro Tips! 12

 

 

④ Tool material and coating: Carbide is the most commonly used tool material. For different working conditions, selecting the appropriate carbide grade and coating (such as TiCN, TiAlN, etc.) can enhance tool performance. High-speed steel (HSS) is suitable for low-speed and low-hardness material machining, while carbide is more suitable for high-speed and high-hardness material machining.

⑤ Tool structure: Solid, brazed, and indexable tools each have their advantages. Solid tools have good rigidity and are suitable for precision machining; brazed and indexable tools are convenient for blade replacement and are suitable for mass production.

⑥ Number of flutes and shank structure: The number of flutes affects the tool rigidity and chip flute size. When the workpiece rigidity is low, it is advisable to choose a tool with fewer flutes to improve chip evacuation; the shank design (standard, long neck, tapered neck) needs to be selected based on the machining depth and workpiece shape. Tapered neck end mills provide better rigidity and machining accuracy.

Long Neck Tapered End Mill
Long Neck Tapered End Mill

 

⑦ Tool length: Under the condition of meeting the machining requirements, choose the shortest tool length as much as possible to increase stability, reduce vibration, and thereby improve the quality of machining.

⑧ Cost-effectiveness: Consider the tool cost and machining efficiency comprehensively and choose a cost-effective solution.

In summary, the selection of end mills is a process of comprehensive consideration, involving workpiece material, machining requirements, tool performance, cost-effectiveness, and other aspects. Correct selection can greatly improve machining efficiency, reduce costs, and ensure machining quality.

 

 

Leave a Reply

Your email address will not be published. Required fields are marked *

兰西县| 伊人色啪啪天天综合婷婷-九九视频国产亚洲高清视频-麻豆精品一区二区三区蜜臀-国产精品久久久久久性色| 秦安县| 日韩一区二区三区四区av-日本男女啪啪视频全集-日韩精品熟女少妇中文字幕-我要看特黄特黄的亚洲黄片| 弥勒县| 荆州市| 股票国产成人精品一区二区久久-久久综合成人精品亚洲另类欧美-亚洲激情中文字幕av在线-亚洲av永久精品电影| 双柏县| 精品久久久人妻中文免费-综合激情久久狠狠伊人五月-av在线男人的免费天堂-中文字幕av一区人妻少妇| 安图县| 精品国产av一区二区三区天-欧美精品国产欧美精品-全国最大成人在线视频免费-国产精品久久av一区二区三区| 红安县| 新余市| 台州市| 德化县| 亚洲色图偷拍自拍欧美-亚洲中文字幕一区二区免费-av成人免费福利视频-国产精品国产三级国产| 国产av熟女一区二区三区四区-尤物国产精品福利在线网-91亚洲国产成人久久精品-97色伦在线视频播放| 乳山市| 亚洲一级一片内射在线播放-精品人妻中文字幕一区二区三区-精品国产最大网站麻豆-嫩草伊人久久精品少妇蜜桃av| 游戏| 国产三级东北老熟女高潮对泊-丰满熟妇大肉唇张开囗交图片-亚洲国产精品韩国日本欧美-阿拉善玉石哪种色最好| 三门峡市| 临汾市| 娱乐| 玛曲县| av天堂中文在线观看免费-18以下禁止观看的黄-男人的天堂日韩爱爱免费-日韩精品一区二区亚洲牛牛| 吴堡县| 熟女人妻一区二区在线观看-国产欧美激情视频在线观看-最新亚洲av网址在线观看-毛片在线观看免费日韩| 亚洲制服丝袜欧美另类-日韩女优在线一区二区三区-国产伦久视频免费观看视频-少妇挑战三个黑人还被内射| 庄浪县| 华蓥市| 午夜夫妻福利视频免费在线-精品人妻一区二区三区人妻斩-日本一道本大香蕉综合-免费在线观看的黄片视频在线观看| 盐亭县| 国产精品六九久久久不卡-伊人色综合久久综合桃花网-国产乱欲伦视频免费观看视频-国产猎奇激情视频在线观看| 国产亚洲性色av大片久久香蕉-91亚洲精品国产自在现线-国产在线精品免费播放-日韩中文字幕国产精品| 平远县| 成人国产精品户外在线野战-欧美精品色一区二区三区色-熟女熟妇少妇妇女乱熟-亚洲三级中文字幕在线观看| 富宁县| 亚洲国产精品亚洲精品播放-亚洲自拍另类欧美综合-国产av丝袜一区二区三区-欧美日韩色图免费观看| 东山县| 精品国产av一区二区三区天-欧美精品国产欧美精品-全国最大成人在线视频免费-国产精品久久av一区二区三区|