首先宝马在这次车展上推出了i3这款电池动力轿车,它使用了铝合金框架和碳纤维车身,重量只相当于一台普通宝马3系轿车的80%。
For starters, it unveiled the i3, a battery-powered car with a carbon fiber body affixed to an aluminum frame that weighs just 80% as much as a typical 3-series.
同时对偶接了LY 12CZ铝合金的炭纤维环氧复合材料也进行了腐蚀浸泡对比试验。
The corrosion behavior of GECM coupled with the LY12CZ aluminum alloy was also observed in immersion test.
机身部分用铝合金和白色竹纤维构成,超质感和前卫。
Part white with aluminium alloy and fuselage Bamboo fibre, simple sense and halfback.
根据合金凝固过程中的守恒定律和传输原理,建立了纤维增强二元铝合金的凝固模型。
The solidification model of fiber reinforced binary aluminum alloy was established according to the conservation law and the transfer principle of alloy solidification.
XEBEC纤维油石刷在处理铝合金材料上有优异的表现。
XEBEC Cutting Fiber shows superior grinding performance in wet processing of aluminium alloys.
本文初步探索了几种纤维增强铝合金胶接层板的成型工艺,并评定了这些层板的力学性能和抗分层性能。
In this paper, the manufacture process, the mechanical and delamination properties of several kinds of fiber reinforced aluminium laminates have been studied.
复合装甲由铝合金、纤维复合材料及工程陶瓷组合而成,具有良好的综合性能,但难以加工。
The compound armor is composed with the aluminum alloy, the fiber composite materials and the engineering ceramics. It has good capability but is difficult to process.
研究了玻璃纤维增强环氧圆柱管作为缓冲装置的撞击吸能特性,并与铝合金圆柱管的吸能特性进行比较。
The crashworthiness of grass fiber reinforced epoxy tubes as collision bumper is studied and a comparison of absorption property with aluminum alloy tubes is made.
本文所研究的陶瓷复合装甲由铝合金、玻璃纤维增强复合材料(玻璃钢)、抗弹陶瓷三种材料复合而成。
The ceramic composite armor related to this thesis is composed of aluminum alloy, glass fiber reinforced composite and engineering ceramics.
碳素纤维和铝合金混合球拍,是球拍威力和易挥性的良好结合。
The combination of aluminum and graphite in this racquet offers a nice combination of power and ease of swing.
用热型连铸工艺实现了铝合金包铸光学纤维。
The Ohno Continuous Casting technique has been successfully applied to the cast in process of optical fibres to a al Mg alloy wire.
利用挤压铸造制备了纤维增强铝合金复合材料,研究了复合材料的界面偏析。
Fiber reinforced aluminum alloy composites are manufactured by squeeze casting. Segregation at interface of the composites is studied.
电容器用3003铝合金箔材的冷变形程度对电容器的比电容值影响很大,而冷变形程度的大小在组织检验中可通过箔材的变形纤维粗细表现出来。
The cold deformation degree of 3003 aluminium alloy foils used for the capacitor has a big effect on the specific electric-capacity of the capacitor.
用挤压铸造法制备了氧化铝短纤维增强铝合金内燃机活塞。
Al2O3 short fiber reinforced aluminum matrix composites for high performance piston was prepared by squeezing casting.
通过对铝合金、结构钢等金属接触腐蚀表面的EDS成分分析和SEM微观形貌分析,探讨金属材料与玄武岩微纤维隔热材料接触腐蚀的原因。
Based on EDS and SEM analysis of metal corrosion surface, the course of contact corrosion between aluminum alloy, structural steel and basaltic microfiber heat-resistant materials were proposed.
日前,福州大学成功研制出铝合金陶瓷纤维复合材料。
A few days ago, the Fuzhou University developed aluminum alloy ceramic fiber composite materials.
材质:铝合金框,玻璃纤维网,优质塑料配件。
Materials: Aluminum frame, glass fiber mesh, high quality plastic accessory.
无需底涂或活化剂可直接粘合至各类不同表面如:不锈钢,铁,铝合金,铅,碳纤维,玻璃钢制品,PVC等几乎任何材质。
Generally No primer or Activators required for all kinds of bonding to substrates like stainless steel, steel, aluminium, lead, carbon fiber, fiberglass, glass, PVC etc.
用于切削加工淬火合金钢、高温不锈钢、铸钢、聚脂纤维板、铝合金等。
It can also be used in cutting process, quenching alloy steel, high temperature stainless, cast steel and polyester fibreboard.
碳纤维缠绕气瓶采用优质高效的碳纤维丝,高强度的铝合金内胆,运用一流的设备及先进的全缠绕技术加工而成。
Adopting top-quality carbon fiber and high-strength aluminum alloy liner, this product is made by the application of topping equipment and advanced fully wrapping technology.
碳纤维缠绕气瓶采用优质高效的碳纤维丝,高强度的铝合金内胆,运用一流的设备及先进的全缠绕技术加工而成。
Adopting top-quality carbon fiber and high-strength aluminum alloy liner, this product is made by the application of topping equipment adn advanced fully-wrapping technology.
车身由高硬度碳纤维打造,外加铝合金强化,两者均是重量极轻、价值极高的材料。
The body structure is built using stiff carbon fiber and strengthened with aluminum alloy. Both of them are light-weight materials of high costs.
车身由高硬度碳纤维打造,外加铝合金强化,两者均是重量极轻、价值极高的材料。
The body structure is built using stiff carbon fiber and strengthened with aluminum alloy. Both of them are light-weight materials of high costs.
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