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

Aluminum alloy is a general term for alloys with aluminum as the base. The main alloying elements include Cu, Si, Mg, and Sn, while secondary elements may include nickel, titanium, chromium, lithium, and others. Aluminum alloys have low density, good plasticity for shaping and processing into various forms. They exhibit excellent electrical conductivity, thermal conductivity, and corrosion resistance. Alloys formed by adding specific elements not only maintain the lightweight properties of pure aluminum but also possess higher strength.

aluminum alloy

Classification of aluminum alloy
Aluminum alloys can be classified into deformed aluminum alloys and cast aluminum alloys based on their processing methods.

Ligas de alumínio deformadas: As ligas de alumínio deformadas podem ser ainda categorizadas em ligas n?o tratáveis termicamente e ligas tratáveis termicamente, ambas apresentando resistência e dureza moderadas. O desafio na usinagem está na sua alta plasticidade, resultando na forma??o de arestas posti?as durante o corte, dificultando o alcance de um desempenho satisfatório. As propriedades mecanicas podem ser melhoradas através do tratamento térmico, mas o fortalecimento é obtido principalmente através da deforma??o por trabalho a frio. Esta categoria inclui alumínio de alta pureza, alumínio industrial de alta pureza, alumínio industrial puro e alumínio resistente à corros?o.

Cast Aluminum Alloys: Cast aluminum alloys have low ductility, with elongation typically below 4%, making them unsuitable for pressure processing and mostly suitable for cutting operations. Silicon-aluminum alloys demonstrate good casting properties and excellent mechanical performance, making them the most widely used cast aluminum alloys. The machinability of silicon-aluminum alloys is influenced by the silicon content, with higher content leading to more severe tool wear and poorer machining performance. Mechanical properties of cast aluminum alloys can be enhanced through heat treatment methods such as quenching and aging. This category includes hard aluminum, forged aluminum, superhard aluminum, and special aluminum alloys.

How to Machine the Aluminum Alloy? 2

Processing defects of aluminum alloy material

Insufficient Rigidity

Due to the strong toughness and resistance to bending of aluminum alloys, it also implies that aluminum alloys lack rigidity. In the machining of thin-walled aluminum alloy components, excessive machining pressure can lead to component deformation. During the cutting process, issues such as stretching, breaking, and surface squeezing may occur, causing displacement and resulting in irreversible situations for thin-walled aluminum alloy components.

Susceptible to Thermal Deformation

Compared to steel, the coefficient of expansion for aluminum alloys is typically 2.4 times that of steel. Therefore, significant heat energy is generated during the machining process, leading to thermal deformation issues in aluminum alloys.

Insufficient Hardness of Aluminum Alloy

During mechanical machining, scratching issues often arise, leading to a lack of glossiness on the surface of thin-walled aluminum alloy components, which does not meet machining standards. Besides daily operational issues, this problem is mainly attributed to the insufficient hardness of aluminum alloy materials.

Thin Surface

The most prominent feature of thin-walled aluminum alloy components is their extremely thin surface. If CNC machine operators use numerical control machine tools for operations, the inherent elasticity of thin plates, coupled with the interaction of forces during cutting, can cause vibration issues on the cutting surface. This, in turn, makes it challenging to effectively control the thickness and dimensions of the cutting surface, thereby increasing the surface roughness of thin-walled aluminum alloy components.

Como usinar a liga de alumínio? 3

Processing methods?of aluminum alloy

Hot Working

Hot working refers to the plastic forming process completed above the recrystallization temperature when feeding aluminum alloy ingots. During hot working, the ingot’s plasticity is high, and the deformation resistance is low, allowing the production of larger products with smaller equipment capabilities.

Cold Working

Cold working refers to the plastic forming process completed below the temperature that induces recovery and recrystallization. The essence of cold working is a combination of cold working and intermediate annealing processes. Cold working can produce final products with smooth surfaces, precise dimensions, good structural properties, and the ability to meet various performance requirements.

Warm Working

Warm working is a plastic forming process that falls between cold and hot working. The primary purpose of warm working is to reduce the deformation resistance of the metal and enhance its plasticity.

 

Selection method of cutting aluminum alloy cutting tool

Due to the extremely sharp cutting edges and grooves of solid carbide tools, they exert low cutting forces in precision machining of aluminum alloys. They offer advantages such as large chip space and smooth chip evacuation. Consequently, solid carbide tools have gradually replaced traditional high-speed steel tools.

Aluminum alloy is easily machinable, allowing for higher cutting speeds suitable for high-speed machining. However, due to the low melting point of aluminum alloy, its plasticity increases with temperature. Under high-temperature and high-pressure conditions, significant frictional forces occur at the cutting interface, making it prone to tool adhesion. This is especially true for annealed aluminum alloys, which make it challenging to achieve a small surface roughness.

To obtain a smooth workpiece surface, a combination of rough and finish cutting is often employed. This is because various qualified workpiece blanks tend to have some oxide layers, causing considerable wear on the cutting tools. If the final cutting operation uses polished sharp tools for fine cutting, the above requirements can be met.

When selecting suitable tool materials for aluminum-silicon alloys, the silicon content guides the choice. For silicon content below 12%, tungsten steel tools in the ISO K10-K20 range can be used. If the silicon content exceeds 12%, diamond tools are preferred. Alumina ceramic tools are not suitable for aluminum alloy processing. During cutting, the oxidized aluminum chips can chemically bond with the ceramic tool, causing adhesion and chip lumps, leading to increased friction resistance and accelerated wear. Once chip lumps form, they replace the cutting edge during machining. In ultra-precision machining, the sharpness of the tool edge loses its significance. Additionally, the bottom of the chip lump is relatively stable, while the top is unstable and prone to breakage. After breaking, part of it is expelled with the chips, while the remaining part stays on the machined surface, making it rough. The protruding part of the chip lump beyond the tool edge also directly contributes to roughening the machined surface, and the friction between the chip lump and the already machined surface further increases surface roughness.

Deixe uma resposta

O seu endere?o de e-mail n?o será publicado. Campos obrigatórios s?o marcados com *

久久精品亚洲无中文东京热-日本妹子内谢视频一区| 日韩国产一区二区三区在线-精品日韩人妻少妇av| 黄片免费观看视频下载-国产丝袜诱惑在线视频| 99久热精品免费观看四虎-亚洲天堂精品视频在线| 亚洲女人黄色录像一区-日韩av电影在线免费看| 一区二区三区国产高清mm-美女张开腿让帅哥桶爽| 在线成色中文综合网站-国产二区精品视频在线观看| 99精品只有久久精品免费-蜜臀一区二区三区精品久久久| 精品老熟妇一区二区三区-日韩丰满一区二区三区| 亚洲另类熟女国产精品-懂色一区二区三区在线播放| 日韩精品中文在线观看一区-亚洲bt欧美bt精品| 免费看黄色污污的网站-欧美一区二区三区爽爽| 国产欧美日本不卡精美视频-日本后入视频在线观看| 日韩精品中文在线观看一区-亚洲bt欧美bt精品| 亚洲综合av一区二区三区-高潮又爽又黄无遮挡激情视频| 99在线观看精品视频免费-国产极品一区二区三区四区| 亚洲国产视频不卡一区-激情欧美视频一区二区| 日韩国产一区二区三区在线-精品日韩人妻少妇av| 亚洲产国偷v产偷v自拍性色av-亚洲欧美日韩国产三区| 国产黄片在现免费观看-色老板最新在线播放一区二区三区| 性色国产成人久久久精品二区三区-偷窥中国美女洗澡视频| av中文字幕男人天堂-懂色av一区二区三区在线观看| 看肥婆女人黄色儿逼视频-秋霞电影一区二区三区四区| 成人av一区二区蜜桃-亚洲色图激情人妻欧美| 亚洲黄片三级三级三级-国产成人一区二区在线视频| 黄片黄片在线免费观看-激情综合网激情五月俺也去| 欧美日韩亚洲1区2区-黄污视频在线观看不卡| 午夜福利卫生纸福利院-一区二区三区久久亚洲| 黄色91av免费在线观看-欧美黄片一级在线观看| 免费av一区在线观看-国产精品视频高潮流白浆视频免费| 中文字幕日韩精品不卡一区二区-成人av在线观看一区二区| 中文字幕日韩精品不卡在线一区-国产tv日韩在线观看视频| 久久夜色精品亚洲噜国产av-大香蕉伊人猫咪在线观看| 日本高清二区视频久二区-大香蕉在线视频大香蕉在线视频| 日韩精品一区二区三区十八-日韩人妻少妇一区二区三区| 白嫩美女娇喘呻吟高潮-久久一区二区三区日产精品| 国产人妻人伦精品日本-国产98超碰人人做人人爱| 国产精品久久99精品毛片-国产四季高清一区二区三区| 久久网址一区二区精品视频-日产国产欧美视频一区精品| 国产精品中出久久久蜜臀-久久久中国精品视频久久久| 乱入一二三免费在线观看-久久精品亚洲精品国产色婷婷|