麻豆123_99爱在线视频_蜜桃视频在线免费观看_两个奶被揉到高潮视频_久操视频在线看_亚洲精品影片

設為首頁 | 加入收藏
13585522224

產品分類

您的位置:首頁 > 產品展示 > 鋁合金 > AA2090,AA2190銅鋯鋰鋁合金化學成分鋁鋰合金力學性能
AA2090,AA2190銅鋯鋰鋁合金化學成分鋁鋰合金力學性能 AA2090,AA2190銅鋯鋰鋁合金化學成分鋁鋰合金力學性能 AA2090,AA2190銅鋯鋰鋁合金化學成分鋁鋰合金力學性能

AA2090,AA2190銅鋯鋰鋁合金化學成分鋁鋰合金力學性能

Some of the most important commercial alloys in this class include 2090, 2091, 8090, and Weldalite 049 that were introduced in the 1980s. The table below shows the chemical composition of these alloys.

Aluminum-lithium alloys (AL-Li) were developed primarily as direct replacements for existing aluminum alloys to reduce the weight of aircraft and aerospace structures. It has been realized that the most efficient way of doing this is to develop low density materials, since weight reduction through reduced component size often leads to low stiffness parts and reduced fatigue life. Typical components that benefit from low density alloys include structural members in airframes, aerospace vehicle skins, and liquid oxygen and hydrogen fuel tanks in spacecraft.

Aluminum producers began major development of aluminum-lithium alloys in the 1970s with the objective of introducing light weight, high stiffness aluminum alloys that could be fabricated on existing equipment and components could be handled and assembled using established techniques. Some of the most important commercial alloys in this class include 2090, 2091, 8090, and Weldalite 049 that were introduced in the 1980s. The table below shows the chemical composition of these alloys.

Composition of aluminum-lithium alloys (wt. %)

Alloy???? Cu?? Li?? Zr?? Others
2090????? 2.7? 2.2? 0.12??? -
2091????? 2.1? 2.0? 0.1???? -
8090????? 1.3? 2.45 0.12? 0.95 Mg
Weldalite 5.4? 1.3? 0.14? 0.4 Ag
049?????????????????????? 0.4 Mg
?

Pros and Cons

The advantages of Al-Li alloys over conventional aluminum alloys include relatively low densities, high elastic modulus, excellent fatigue and cryogenic strength and toughness properties, and superior fatigue crack growth resistance. The last property is a key factor for damage-tolerant aircraft design. However, it has been discovered that the high resistance to fatigue crack growth is due to a jagged crack path through the material that produces a large amount of roughness-induced crack closure under tension dominated loading. Crack closure is a phenomenon first documented in the 1970s that reduces the severity of the stress intensity at the crack tip under an externally applied load. It is therefore beneficial, provided it can be counted on to exist. Unfortunately, loading conditions that contain compression or compressive overloads, that flatten the crack surfaces, reduce or eliminate crack closure and cause crack growth rates to accelerate significantly.

Another disadvantage of these alloys is that in the strongest (desirable) heat treated conditions, the mechanical properties are often highly anisotropic. There exists, for example, significantly depressed ductility and fracture toughness in the short transverse direction. Another drawback is a very high crack growth rate for microstructurally short cracks which potentially allows for fast crack initiation. This could mean relatively early cracking in high stress regions such as rivet holes.

Current Usage

Aluminum-lithium alloys have not yet received the widespread usage and acceptance hoped y the commercial producers. However, some aluminum-lithium alloys have been utilized on recent commercial jetliner airframes and the material is used significantly in the EH101 helicopter. In addition, several AL-LI alloys are :under consideration” for a wide variety of developmental and experimental aircraft and space vehicles. The cost of Al-Li alloys is typically three to five times that of the conventional aluminum alloys they are intended to replace. This is due partly to the relatively high cost of Lithium and also to high processing and handling costs for the material.

?
Metallurgy and Properties

????? The lithium content of wrought Al-Li alloys cannot exceed the solubility limit of 4.2% Li in aluminum. In practice, the Li content is generally less (except in certain powder-metallurgy materials discussed later.) Lithium is the lightest metallic element. It has an atomic mass of about7 g/mol, a solid density of0.534 g/cm3at 20oC, a BCC crystal structure and a melting temperature of 181oC. Elemental aluminum has a FCC crystal structure and a solid density of2.7 g/cm3 at 20oC. Each 1% of lithium reduces the density of an AL-Li alloy by about 3% and increases the stiffness by about 5%.

????? High strength AL-Li alloys are obtained by precipitation heat treatments similar to those used for conventional al-alloys, with some variations. Many of the AL-Li alloys achieve peak strength only if cold-work (stretching) is performed prior to the precipitation, or age-hardening, treatment. Furthermore, ancillary key alloy elements, such as zirconium (Zr) are added to control the grain microstructure during heat treatment. The mechanical properties of some near-peak aged hardened (-T8x) AL-Li alloys are given in the table below.


Mechanical properties of typical near-peak aged AL-Li alloys

Alloy? Density?? Ductility? Elastic? Tensile?? Longitudinal??? Melting
????? (g/cm3)???? ( El % )? Modulus? Strength?????? Klc?????? Temperature
???????????????????????????? (GPa)???? (MPa)???? (MPa m1/2)????? (oC)
2090?? 2.59??????? 3-6??????? 76?????? 500?????????? 44???????? 580-660
2091?? 2.58???????? 6???????? 75?????? 550????????? >130??????? 560-670
8090?? 2.55??????? 4-5??????? 77?????? 480?????????? 75???????? 600-655

????? Alloy 2090 was developed as a replacement for 7075-T6, offering 8% lower density and 10% higher stiffness than the conventional alloy that is used heavily in aircraft structures. The 2090 alloy also offers superior corrosion resistance in salt-spray (marine) environment than 7075-T6.

????? Alloy 2091 was developed as a replacement for conventional aluminum alloy 2024-T3, offering 8% lower density and 7% higher modulus as well as superior damage tolerance.

????? Alloy 8090 was developed as a replacement for some of the most long serving of the commercial aluminum alloys, namely 2014 and 2024. Alloy 8090 has 10% lower density and 11% higher modulus than these conventional counterparts, and 8090 exhibits superior mechanical properties at cryogenic temperatures.

????? The alloy that is marketed under the trade name Weldalite 049, as its name suggest, is a weldable Al-Li alloy designed to replace 2219 and2014 inspacecraft launch systems. The density of Weldalite 049 is2.7 g/cm3 (about the same as its conventional counterparts), it has about 5% higher modulus than 2024, and tensile strengths of forged parts in excess of 700 MPa have been reported.

????? The success of failure of the current applications of these advanced alloys will likely determine their engineering significance in the long-term.

以上資料由上海艾荔艾金屬材料有限公司提供,歡迎新老客戶來電洽購。

本文來自上海艾荔艾金屬材料有限公司http://www.jshcn.cn,轉載請注明出處。

主站蜘蛛池模板: 少妇被粗黑进进出出在线观看|日日摸夜夜爽无码|免费久久|日韩免费视频|热播短剧玫瑰冠冕免费观看|j=ap=anese精品少妇 | 亚洲综合另类小说色区色噜噜|国产奂费一级毛片|色七综合|草蹓视频在线观看|伊人欧美|精品成人一区二区三区免费视频 | 欧美丰满熟妇xxxx性大屁股|亚洲=aV无码国产精品草莓在线|91影视免费版|久久久久国精品产熟女久色|国产99久久久久久免费看|成年人黄色片视频 | 青青草青青操|www.jjzz日本|最近中文字幕完整视频高清|91影院在线观看视频|国产精品水嫩水嫩|男女夜色爽爽影院 | 黄色一级短视频|啊片在线观看|91精品xxxx瑜伽裤日本|成人免费观看cn|亚洲熟妇色自偷自拍另类|免费=a观看 | 亚洲国产精品一区在线观看不卡|久久精品视频免费在线观看|米奇777超碰欧美日韩亚洲|国产一区二区视频在线观看免费|玩弄美艳馊子高潮秀色可贪|日本做暖暖xo小视频 | 91视频网国产|粗大猛烈进出高潮视频|精品国产乱码久久久人妻|亚洲精品无码久久毛片波多野吉衣|成人久久免费视频|国产美女自拍 | 亚洲第一精品区|久久久WWW影院人成|mmmwww在线看片免费|日本在线资源|亚洲精品综合久久|毛片中文字幕 | 日本三不卡|17c在线观看|亚洲中文久久精品无码照片|午夜精品久久久久久久96蜜桃|四虎精品成人影院在线观看|国产卡一卡二卡三无线乱码新区 | 成本人片在线观看免费网站|成年人视频网站在线|夜趣福利视频|免费观看的=av在线播放|亚洲欧美偷国产日韩|四虎.com | 中文字幕高清在线观看|中文字幕一区二区三区门四区五区|中文字幕久久999及|国产亚洲日韩=aV在线播放不卡|精品国产免费看|亚洲tv在线 | 亚州一级|国产精品毛片视频|成人免费视频播放|综合免费视频|女人体1963|欧美人与动牲交视频在线观看 | 亚洲精品第一页|边吃吃奶边扎下面很紧爽|porno麻豆|五月天婷五月天综合网|国产精品理论在线无码|国产资源网站 | 国产精品一区二区三区不卡视频|精品国产人成在线|成人久久秘|少妇性l交大片7724com|九色自拍蝌蚪|欧美黄动漫 | 超碰人人草人人干|精品国产伦一区二区三区观看方式|无码中文字幕人妻在线一区二区三区|隔壁老王国产在线精品|在线欧美精品一区二区三区|91在线视频九色 | 偷看农村女人做爰毛片色|亚洲成人=av在线播放|国内视频一区|国产三级黄色|久久色亚洲|91精选国产 | 广东少妇大战黑人34厘米视频|日韩午夜在线|国产=aⅴ激情无码久久久无码|精品人妻无码一区二区三区色欲|日本阿v天堂|亚洲视频在线播放 | #NAME?|日韩三区在线观看|三级一区|绝顶潮喷绝叫在线观看|粉嫩欧美一区二区三区|国产成人=aV无码永久免费一线天 | ch=aopeng在线观看|成人综合区一区|#NAME?|无遮挡又色又刺激的女人视频|#NAME?|日韩精品乱码=av一区二区 | 555www色欧美视频|GOGOGO高清免费看韩国|性毛片|欧美日韩国产这里只有精品|尤物视频免费观看|中国少妇bbbbxxxx | 欧美人与禽猛交乱配|黑人添美女bbb添高潮了|91久久精品日日躁夜夜躁国产|99久久婷婷国产综合亚洲|久久影院视频免费|成人在线视屏 | 男同免费|久久久久久草莓香蕉步兵|亚洲女女女同性VIDEO|免费的=av不用播放器的|黄频网站在线观看|久久久88 | 国产精品久久久久久免费观看|黄色=a毛片|日韩欧美亚洲一区二区|日韩午夜免费视频|日本三级网站视频|欧美性生恔XXXXXDDDD | 亚洲国产精品v=a在线观看麻豆|成人羞羞无遮挡免费网站|久久人人看|久久综合网=av|一区二区三区久久|精品视频在线视频 | 国产亚洲精=a=a在线看|玖玖在线观看视频|国产免费内射又粗又爽密桃视频|久久99精品国产麻豆蜜芽|人妻无码一区二区视频|久久99精品久久水蜜桃 | 国产精品国产三级欧美二区|四虎影视在线免费观看|日日躁夜夜躁狠狠躁夜夜躁|日本高清中文字幕一区二区三区=a|日韩精品在在线一区二区中文|久久精品一区二区三区黑人印度 | 国产高清在线看|奶头好大揉着好爽视频|www超碰|女人天堂=av在线|久久久久久久久久一级|99国产精品粉嫩初高生在线播放 | 澳门成免费crm大全|日韩在线精品成人=aV|精品国产一区二区三区成人影院|日韩=av中文无码影院|久久最新金品视频免费播放|国产精品1卡2卡3卡4卡 | 性情中人中文网|欧美老熟妇XB水多毛多|欧美波霸影院|炼气练了三千年第四季在线观看|免费一区二区三区在在线视频|艾草在线精品视频免费观看 | 国产精品婷婷色综合www在线|丰满风流护士长BD=a片|国产精品福利片|农村人伦偷精品视频=a人人澡|久热免费在线视频|18禁美女黄网站色大片免费网站 | 啊啊啊好爽啊|日韩性活大片|亚洲=aV日韩=aV综合在线观看|野花社区WWW在线高清观看|亚洲最黄视频|最新黄色=av | 国产精拍|日日爱爱|少妇裸体淫交免费看片|色婷婷五月综合欧美图片|免费国产成人高清在线观看不卡|男人天堂导航 | 国产成人=av一区|日本大片免=a费观看视频老师|在线观看高清视频|一机毛片|久久九九兔免费精品6|久久爽精品区穿丝袜 | 青草国产精品久久久久久|公和我做好爽添厨房中文字幕|99re6这里有精品热视频|六月婷婷精品视频在线观看|女教师办公室被强在线播放|日韩一区二区三区不卡视频 | 精品国产乱码久久久久乱码|最新在线观看=av|久久亚洲国产精品五月天|337P日本欧洲亚洲大胆精筑|性动态图=aV无码专区|免费观看又色又爽又湿的视频 | 99自拍偷拍|国产中文久久|天堂精品一区二区三区|婷婷五月开心亚洲综合在线|国产黄色片一级|丝袜理论片在线观看 | 亚洲人成网站在e线播放|亚洲=aV一二三又爽又色又色|久久三级无码网站|国产黄色91|日本猛少妇|91视频在 | 97超碰成人在线|欧美精品一区二区久久婷婷|在线观看免费人成视频播放|久久福利=av|精品一区不卡|久久水蜜桃视频 | c=aopom成人免费公开视频|中文字幕欧美人妻精品一区|91九幺丨成人|日韩久久国产|三年片大全免费观看|久草在在线 | 亚洲啪啪|麻豆视传媒短视频免费官网|成人啪啪178|一区二区三区四区高清精品免费观看|日本一区二区三区免费看|久草视频免费播放 | #NAME?|天天澡天天弄天天摸|欧美日韩爱爱|亚洲欧美成=aⅴ人在线观看|久久青草伊人|日韩亚=av无码一区二区三区 |