移动端

  • 题王微信公众号

    题王微信公众号

    微信搜“题王网”真题密题、最新资讯、考试攻略、轻松拿下考试

问答题

Passage 2
New-age Transport  Computerized design, advanced materials and new technologies are being used to produce machines of a type never seen before.
  It looks as if it came straight from the set of Star Wars. It has four-wheel drive and rises above rocky surfaces. It lowers and raises its nose when going up and down hills. And when it comes to a river, it turns amphibious: two hydrojets power it along by blasting water under its body. There is room for two passengers and a driver, who sit inside a glass bubble operating electronic, aircraft-type controls. A vehicle so daring on land and water needs windscreen wipers-but it doesn’t have any. Water molecules are disintegrated on the screen’s surface by ultrasonic sensors.
  This unusual vehicle is the Racoon. It is an invention not of Hollywood but of Renault, a rather conservative French state-owned carmaker, better known for its family hatchbacks. Renault built the Racoon to explore new freedoms for designers and engineers created by advances in materials and manufacturing processes. Renault is thinking about startlingly different cars; other producers have radical new ideas for trains, boats and aeroplanes.
  The first of the new freedoms is in design. Powerful computer-aided design (CAD) systems can replace with a click of a computer mouse hours of laborious work done on thousands of drawing boards. So new products, no matter how complicated, can be developed much faster. For the first time, Boeing will not have to build a giant replica of its new airliner, the 777, to make sure all the bits fit together. Its CAD system will take care of that.
  But Renault is taking CAD further. It claims the Racoon is the world’s first vehicle to be designed within the digitized world of virtual reality. Complex programmes were used to simulate the vehicle and the terrain that it was expected to cross. This allowed a team led by Patrick Le Quement, Renault’s industrial-design director, to “drive” it long before a prototype existed.
  Renault is not alone in thinking that virtual reality will transform automotive design. In Detroit, Ford is also investigating its potential. Jack Telnac, the firm’s head of design, would like designers in different parts of the world to work more closely together, linked by computers. They would do more than style cars. Virtual reality will allow engineers to peer inside the working parts of a vehicle. Designers will watch bearings move, oil flow, gears mesh and hydraulics pump. As these techniques catch on, even stranger vehicles are likely to come along.
  Transforming these creations from virtual reality to actual reality will also become easier, especially with advances in materials. Firms that once bashed everything out of steel now find that new alloys or composite materials (which can be made from mixtures of plastic, resin, ceramics and metals, reinforced with fibres such as glass or carbon) are changing the rules of manufacturing. At the same time, old materials keep getting better, as their producers try to secure their place in the factory of the future. This competition is increasing the pace of development of all materials.
  One company in this field is Scaled Composites. It was started in 1982 by Burt Rutan, an aviator who has devised many unusual aircraft. His company develops and tests prototypes that have ranged from business aircraft to air racers. It has also worked on composite sails for the America’s Cup yacht race and on General Motors’ Ultralite, a 100-miles-per-gallon experimental family car built from carbon fibre.
  Again, the Racoon reflects this race between the old and the new. It uses conventional steel and what Renault describes as a new “high-limit elastic steel” in its chassis. This steel is 30% lighter than the usual kind. The Racoon also has parts made from composites. Renault plans to replace the petrol engine with a small gas turbine, which could be made from heat-resisting ceramics, and use it to run a generator that would provide power for electric motors at each wheel.
  With composites it is possible to build many different parts into a single component. Fiat, Italy’s biggest car maker, has worked out that it could reduce the number of components needed in one of its car bodies from 150 to 16 by using a composite shell rather than one made of steel. Aircraft and cars may increasingly be assembled as if they were plastic kits.
  Advances in engine technology also make cars lighter. The Ultralite, which Scaled Composites helped to design for General Motors, uses a two-stroke engine in a “power pod” at the rear of the vehicle. The engine has been developed from an East German design and weighs 40% less than a conventional engine but produces as much power. It is expected to run cleanly enough to qualify as an ultra-low emissions vehicle under California’s tough new rules.
  Look at the following design features and list of companies.
  Match each design feature with the correct company, A-E.
  Write the correct letter A-E in boxes 1-6 on your answer sheet.
  NB You may use any letter more than once.
  1. a power pod
  2. electronic controls
  3. a composite body
  4. elastic steel
  5. aircraft prototypes
  6. ultrasonic sensors

发布日期:2022-07-08

Passage 2New-age Transport  Computerized design, a...

题王网让考试变得更简单

扫码关注题王,更多免费功能准备上线!

此试题出现在

国外英语考试

雅思(IELTS)

去刷题
热门试题热门资讯 相关试题

闭路粉磨系统中()与()之比称为选粉效率(η)。

手和眼协调发育顺序特征有哪些?

在进行方案比选时,可将差额投资内部收益率与投资者的最低可接受收益率( MARR)或基准收益率ic,进行比较,当ΔIRR≥MARR或ic时。时,以投资小的方案为优选方案。(  )

上行开采的技术条件和判定方法()、()、().

晚期胃癌血道播散最常见的部位是(  )。

挑选有经验、有见识的人员或新产品开发的主管人员凭自己的工作经验,对每个设想进行区别,称为(  )。

子宫内膜良性侵入子宫肌层称为()

负有赡养义务的人虐待老人的,都是犯罪吗?

髋关节全关节结核合并冷脓肿形成,诊断确定后最好应(  )。

风和公司与日丽公司签订一个供货合同,约定由日丽公司在1个月内向风和公司提供一级钢材100吨,价值130万元,双方约定如果日丽公司不能按期供货的,每逾期1天须向风和公司支付总货款的0.1%作为违约金。由于组织货源的原因,日丽公司在2个月后才向风和公司交付了100吨钢材,风和公司验货时发现不是一级钢材,而是二级钢材,就以对方违约为由拒绝付款,要求日丽公司支付1个月的违约金39000元,并且要求日丽公司重新提供100吨一级钢材。但是日丽公司称逾期供货不是自已的过错,而是国家的产业政策调整导致,不应该支付违约金,而且所提供的钢材是经过质量检验机构检验合格的产品,风和公司不应当小题大做,现在钢材供应比较紧张,根本不可能重新提供钢材。风和公司坚持让日丽公司应当支付违约金和按照合同约定的质量标准履行合同。双方为此发生争议,风和公司起诉至法院,要求日丽公司支付违约金并重新履行合同。日丽公司在答辩状中称,逾期供货不是自己的本意,也不是自己所能控制得了的,不应当支付违约金,即使支付违约金,也不应当支付39000元之多,这个请求不公平。 如果本案双方当事人在合同中约定了合同发生纠纷后的管辖法院,风和公司与日丽公司签订一个供货合同,约定由日丽公司在1个月内向风和公司提供一级钢材100吨,价值130万元,双方约定如果日丽公司不能按期供货的,每逾期1天须向风和公司支付总货款的0.1%作为违约金。由于组织货源的原因,日丽公司在2个月后才向风和公司交付了100吨钢材,风和公司验货时发现不是一级钢材,而是二级钢材,就以对方违约为由拒绝付款,要求日丽公司支付1个月的违约金39000元,并且要求日丽公司重新提供100吨一级钢材。但是日丽公司称逾期供货不是自已的过错,而是国家的产业政策调整导致,不应该支付违约金,而且所提供的钢材是经过质量检验机构检验合格的产品,风和公司不应当小题大做,现在钢材供应比较紧张,根本不可能重新提供钢材。风和公司坚持让日丽公司应当支付违约金和按照合同约定的质量标准履行合同。双方为此发生争议,风和公司起诉至法院,要求日丽公司支付违约金并重新履行合同。日丽公司在答辩状中称,逾期供货不是自己的本意,也不是自己所能控制得了的,不应当支付违约金,即使支付违约金,也不应当支付39000元之多,这个请求不公平。若风和公司与日丽公司约定,日丽公司负责货物的运输,则下列有关该批钢材的风险转移的说法正确的有()。