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

When a user has the option between a replaceable insert end mill and a solid carbide end mill (hereafter referred to as “solid carbide end mill”), they typically ask a fundamental question: which tool offers better performance? In which machining fields does each tool have more advantages? Rather than being a question of which is superior, it is more about which is better suited to specific applications. Understanding the distinct performance characteristics of each type of tool and how to use them effectively to achieve good machining results is essential.

Generally, compared to traditional insert end mills, solid carbide end mills offer significantly higher machining precision. This fact holds true specifically for the performance of the tool during cutting operations. Although both types of tools may have the same dimensional precision grade, the rigidity of solid carbide material is much higher than that of a steel tool holder with insert blades. This means that solid carbide end bit mills are less likely to undergo deflection or deformation under cutting forces, leading to higher machining precision.

The 3 Elements You Should Take into Consideration when You Select End Mills 2

Base Material of Solid Carbide Molinos de extremo

The machining performance of solid carbide end mills largely depends on the type of carbide base material used. The base material is crucial because it must support the cutting edges of the tool, endure significant cutting forces, and prevent any form of tool damage.

To ensure that end mills have sufficient toughness and provide good dynamic resistance, solid carbide end mills typically use micro-grain carbide as the base material (see Figure 2). This base material offers higher hardness and better edge sharpness while maintaining good toughness. However, compared to conventional grain-sized carbide, micro-grain carbide has relatively poorer thermal conductivity (its ability to dissipate heat from the cutting area). This means that heat generated during cutting tends to remain on the tool surface. Therefore, the cutting edges of solid carbide end mills must be able to withstand this cutting heat and manage the contact arc length, which is an important consideration when selecting solid carbide end mills.

The 3 Elements You Should Take into Consideration when You Select End Mills 3

Coating and Cutting Edge Preparation of Solid Carbide End Mills

To enhance tool wear resistance and isolate the cutting zone, which generates heat, from the tool base (since heat accumulation in the base material can shorten tool life), solid carbide end mills are typically coated. Additionally, because the cutting edges of solid carbide end bit mills are quite sharp, appropriate adhesion between the tool base and the coating is also crucial (see Figure 3). This is especially important for smaller diameter solid carbide end mills, where the sharpness of the cutting edges is a key factor in the tool’s machining performance.

The 3 Elements You Should Take into Consideration when You Select End Mills 4

The Ideal Cutting Edge for Solid Carbide End Mills

The ideal cutting edge of a solid carbide end mill should have as high a hardness as possible while minimizing the risk of chipping. This goal can be partially achieved through proper cutting edge preparation. Generally, different solid carbide end mills may employ various cutting edge preparation methods, edge geometries, and sharpness levels depending on the required machining quality and tool life.

 

The cutting edge is the intersection line between the tool’s rake face and flank face. By grinding these faces, a sharp cutting edge can be obtained. However, if a PVD coating is deposited directly on a sharp cutting edge, it can create high internal stresses within the coating. These high internal stresses can cause the coating to crack and peel off during cutting, thereby shortening the tool’s life. The quality and effectiveness of the coating depend on its ability to withstand and/or reduce the wear rate during cutting. To ensure that the coating adheres more firmly to the cutting edge and to prevent edge damage, it is necessary to perform edge reinforcement (or blunting) treatment (see Figure 4). In other words, to ensure machining stability and achieve coating functionality, a certain degree of edge sharpness must be sacrificed, which in turn extends tool life.

The 3 Elements You Should Take into Consideration when You Select End Mills 5

It can even be said that the importance of cutting edge preparation for solid carbide end bit mills outweighs that of base material type and coating technology. Logically, this has a significant impact on the regrinding of solid carbide end mills. After regrinding, if the cutting edge is not re-blunted to restore its initial condition, the full potential of the tool repair cannot be realized. Therefore, considering the high initial cost of solid carbide end mills, it is crucial for the original tool manufacturer or its qualified service centers to handle tool regrinding services.

The 3 Elements You Should Take into Consideration when You Select End Mills 6

Machining Strategies for Solid Carbide End Mills

Solid carbide end mills can be categorized into several major types based on their size and geometry, and further subdivided into many specialized subcategories according to different machining ranges. In various tool application areas, design features such as flute geometry, cutting edge angles, rake and relief angles, and helix angles play crucial roles in differentiating among the types of solid carbide end bit mills. This classification guides the selection of both end mills and machining strategies.

So, which machining strategy is the best choice? This depends on the overall machining goals: is your primary aim to maximize productivity and part output, or to minimize tool costs and simplify tool types? Additionally, it also depends on the workpiece and various related factors: is the tool used for slotting, side milling, or a combination of both?

A final consideration is constraints, such as: what is the potential machining capability of the machine tool? How rigid is the workpiece clamping? These factors might become limiting constraints, preventing the use of more advanced machining strategies or more efficient specialized solid carbide end mills.

The correct choice of solid carbide end bit mill depends on multiple factors, with the most important being the adoption of the correct machining strategy. In practice, many constraints cannot be changed: the machining machine, CAM system, and the material, size, tolerance, and shape of the workpiece are fixed constants. However, within the existing machining system framework, machining results can still be influenced by formulating the right machining strategy and using various methods, and by optimizing cutting conditions through adjustments to feed rate, cutting speed, and cutting depth according to the overall machining goals.

Based on the selected focus and technical strategy, appropriate solid carbide end mills can be chosen. There are two obvious ways to select tools:

  1. Performance-Based Selection:Choose specialized end mills with specific applications (such as side milling, slotting, or 3D profiling) to achieve optimal performance.
  2. Versatility-Based Selection:Choose general-purpose end bit mills with a wider range of applications but fewer types.

Regardless of the selection method, users need to further narrow down the options within the available varieties and specifications of solid carbide end mills.

The 3 Elements You Should Take into Consideration when You Select End Mills 7

 

Resumen

The material, size, tolerance, and shape of the machined parts are given constants. However, within the existing machining system framework, machining results can still be influenced by formulating the correct machining strategy and employing various methods. Additionally, cutting conditions can be optimized by adjusting feed rate, cutting speed, and cutting depth according to the overall machining goals.

Based on the chosen focus and technical strategy, appropriate solid carbide end mills can be selected. There are two clear approaches to tool selection:

  1. Performance-Based Selection:Choose specialized end mills designed for specific applications (such as side milling, slotting, or 3D profiling) to achieve the best performance.
  2. Versatility-Based Selection:Choose general-purpose end mills that, while fewer in types, offer a wider range of applications.

Regardless of the selection method, users need to further narrow down the choices within the available varieties and specifications of solid carbide end mills.

septiembre 17, 2024

Carbide is an incredible material

Deja una respuesta

Tu dirección de correo electrónico no será publicada. Los campos obligatorios están marcados con *

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| 国产免费不卡一区二区-亚洲中文日韩一区二区三区-狂干亚洲老熟女性视频-亚洲精品午夜福利久久| 亚洲91精品麻豆国产系列在线-丝袜美腿诱惑一区二区视频-日本人妻中文一区二区-男女无遮挡啪啪啪国产| 日本精品视频免费在线-国产精品自在在线影院-日韩午夜一区二区三区-国产精品中文第一字幕| 99精品一区二区成人精品-激情自拍视频在线观看-久久热这里只有精品视频-伊人色综合九久久天天蜜桃| 久久精品蜜桃一区二区三区-久久99亚洲精品久久-激情文化变态另类快播-国产成人免费永久在线平台| 日韩午夜精品免费视频-真实国产精品自拍视频-91麻豆精产国品一二区灌醉-一本色道久久综合亚洲精品东京热| 亚洲国产成人不卡高清麻豆-精品国产精品三级在线专区-亚洲欧美国产日韩一区-亚洲高清日本一区二区| 日韩精品成人一区二区三区-亚洲综合中文字幕第一页-久久伊人亚洲中文字幕-花季传媒视频无限制观看| 亚洲一区二区欧美日韩-亚洲精品四虎在线观看-国产夫妻在线视频播放-激情人妻中文字幕中字福利在线| 亚洲中文字幕中出在线-美女口爆吞精在线播放-亚洲欧美清纯唯美另类-国产一区二区三区免费观看不卡| 日韩毛片精品一区二区-无套内谢少妇高潮毛片些-国产精品午夜激情视频-亚洲天码一区二区三区| 黄色大片一级在线观看-蜜臀91精品国产高清在线-色综合久久鬼色综合久久-九九热精品视频在线免费看| 中出少妇中文字幕一区二区三区-九九久久精品国产亚洲-美女免费是黄的一区二区av-日本在线视频观看91| 综合久久少妇中文字幕-亚洲中文波霸中文字幕-免费在线看的av网站-久久狠狠爱亚洲综合影院| 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| 日本av自拍偷拍视频-日韩精品人妻一区二区三区-看片福利国产午夜三级看片-在线观看视频最新信息好幫手| 日韩中文字幕乱码久久-日本一本无道码日韩精品-久久最黄性生活又爽又黄特级片-亚洲av香蕉精品一区二区三区| 国产一区二区三区四区在线播放-国语精品国内自产视频-可以免费看黄的网久久-久久久亚洲av三吉彩花| av资源视频在线观看-最新福利一区二区三区-极品白嫩粉嫩美女国产-久久精品国产亚洲av麻豆软| 日韩毛片精品毛片一区到三区-四虎国产精品久久免费观看-国产网站在线观看91-亚洲熟妇av不卡一区二区三区| 日韩熟女av在线观看-中文字幕人妻丝祙乱一区三区-亚洲国产精品第一区二区三区-欧美制服丝袜一区二区三区| 国产精品国产一区日韩一区-老色99久久九九爱精品-国产亚洲精品福利一区-亚洲av乱码av一区二区三区| 97视频资源在线观看-国产av天堂久久精品-亚洲av一二三四区又爽又色又爽-悠悠色网视频在线精品| 少妇裸淫交视频免费看-欧美日韩中文字幕第一页-91精品看黄网站在线观看-国产精品一区二区三区色噜噜| 国产激情在线观看视频-久久久精品国产视频在线-亚洲国产成人精品在线-亚洲乱码国产乱码精品视频| 亚州国产精品一区二区-尤物在线观看视频免费-国产91久久精品视频-一色桃子中出欲求不满人妻| 在线观看日韩不卡视频-深夜福利成人羞羞免费视频-日韩欧美精品综合另类-黄色特级一级片中文字幕| 蜜臀av午夜在线观看-亚洲欧美日韩成人综合在线-国产黄色一级性生活片-亚洲av高清一区二区三区麻豆| 成熟女人毛茸茸的免费视频-91麻豆精品国产自产在线游戏-国产男女猛烈无遮挡免费视频-一级黄片国产精品久久| 四虎成人免费永久视频-婷婷激情五月天久久综合-亚洲欧美自拍偷拍丝袜-日韩精品午夜视频一区二区三区| 人妻日韩人妻中文字幕-日韩情色中文字幕在线-日韩av大全在线观看-日韩少妇高潮视频免费看| 国产成人午夜精品久久-91久久精品一区二区喷水喷白浆-中文字幕日本人妻99-美女人妻少妇一区二区三区| 午夜福利国产在线播放-中文字幕日产乱码久久正宗-亚洲精品成人久久69-99精品国产免费久久| 中文字幕亚洲天堂第一页-国产午夜福利在线视频-亚洲精品中文字幕女同-亚日韩精品一区二区三区| 日本人妻中文字幕有码视频-男女啪啪视频免费观看一区-青青草原综合在线视频-极品人妻少妇精品一区二区| 偷拍日韩女生厕所尿尿-水蜜桃一区二区三区四区-亚洲成人色黄网站久久-久久久国产综合午夜精品| 欧美av黄片在线观看-黄片国产一级片在线观看-国产精品黄色精品黄色大片-一区二区三区国产日本欧美| 正在播放后入极品美少妇-亚洲一区二区三区自拍麻豆-国产亚洲精品成人久久-av老司机亚洲精品久久| 青青草原av青青草原-美日韩精品一区二区三区-中文字幕日本乱码在线-久久热久久热在线视频| 亚洲av日韩av天堂影片精品-熟妇人妻丰满少妇中文-国产精品日本一区二区三区-国产精品熟女乱色一区二区|