纯正美语,请高手翻译The Secret behind Nitro Iridium's Iridium Patent!Nitro Plug electrodes conventionally have used nickel and platinum. These were not pure metals, but alloys containing other metals. Depending on the composition of the al
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纯正美语,请高手翻译The Secret behind Nitro Iridium's Iridium Patent!Nitro Plug electrodes conventionally have used nickel and platinum. These were not pure metals, but alloys containing other metals. Depending on the composition of the al
纯正美语,请高手翻译
The Secret behind Nitro Iridium's Iridium Patent!Nitro
Plug electrodes conventionally have used nickel and platinum. These were not pure metals, but alloys containing other metals. Depending on the composition of the alloy, the matrix material's properties can be maximized. Using the same approach, iridium is alloyed with rhodium. The rhodium layer covers the iridium, improving the properties of the iridium. This iridium/rhodium technology was recognized by the Patent Offices of Japan and the UK, and in January 1999, a patent was granted in each respective country. (Patent Number - Japan: 2877035, UK: 2302367). Because Nitro Iridium had this patented technology, Nitro Iridium was able to make dia. of the iridium down to 0.4mm. The most important things for plug performance are ignitability and sparkability. To make the electrode as fine as possible is the goal of spark plug manufacturers worldwide, and Nitro Iridium has taken the lead, succeeding the commercializing the 0.4mm dia. center electrode plug.
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Super Pure iridium Electrode
By harnessing the 4400+ degree melting point of Iridium, Nitro Iridium is able to reduce the surface area of the center electrode - the critical component of a spark plug. Unlike typical platinum plugs that use a 1.1mm diameter center electrode, Nitro Iridium Power plugs have the world's smallest center electrode measuring 0.4mm in diameter. This results in reduced voltage requirements while firing performance is greatly improved. The small diameter electrode allows electrical energy from the ignition system to be concentrated for a precise, high power spark. In a standard plug, electrical energy is spread across the width of the plug, reducing the spark's intensity. In Short You make more power efficiently.
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Iridium -Ir: (Latin - Iris "rainbow") Atomic number 77
Discovered in 1803 by Smithson Tennant in London U.K., Iridium is a very hard, silvery white metal. It is one of the rarest metals on Earth, and is classified as part of the platinum metal family. It is derived as a by-product of Nickel refining. It has a highest resistance to corrosion and attack from chemicals such as acid, and has extremely high melting point of 4429 degrees. It's second only to Osmium as the hardest element in the world, which gives it the property of super strength. It is typically used as hardening agent for platinum, and can be mixed with other elements to make super alloys. Iridium also has a lower electrical resistance than platinum which makes it an even better material to use for electrical contacts such as in spark plugs.
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纯正美语,请高手翻译The Secret behind Nitro Iridium's Iridium Patent!Nitro Plug electrodes conventionally have used nickel and platinum. These were not pure metals, but alloys containing other metals. Depending on the composition of the al
秘密在硝基铱的铱Patent!Nitro 之后
插座电极常规地使用了镍和白金.这些是没有纯净的金属,而是合金包含其它金属.根据合金的构成,矩阵材料的物产可能最大化.使用同样方法,铱被熔合与铑.铑层数包括铱,改进铱的物产.这iridium/rhodium 技术由日本和英国专利局认可了,并且于1999 年1月,专利被授予了在各个各自国家.(专利数字- 日本:2877035,英国:2302367).由于硝基铱有这给予专利的技术,硝基铱能做dia.铱下来对最重要的事为插座表现是ignitability 和sparkability 的0.4mm..制造电极一样优良象可能的火花塞制造商的目标全世界,和硝基铱领先了,成功商业化0.4mm dia.中心电极插座.
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超级纯净的铱电极
由利用4400+ 程度熔点铱,硝基铱能减少中心电极- 火花塞的重要组分的表面.不同于使用一个1.1mm 直径中心电极的典型的白金插座,硝基铱电源插头有世界的最小的中心电极测量0.4mm 直径.这导致被减少的电压要求当射击的表现很大地被改进.小直径电极允许电能从内燃机发火装置被集中为精确,大功率火花.在一个标准插座,电能被传播横跨插座的宽度,减少火花的强度.简而言之您高效率地做更多力量.
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铱- Ir:(拉丁语- 使"彩虹现虹彩") 原子数77
发现由Smithson Tennant 在伦敦英国,1803 年铱是一种非常坚硬,银色白色金属.它是最罕见的金属的当中一个在地球上,和被分类作为白金金属家庭一部分.它被获得作为镍精炼副产物.它有对腐蚀和攻击的最高的抵抗来自化学制品譬如酸,和有极端高熔点4429 度.它其次是只对锇作为最坚硬的元素在世界上,给它超级力量物产.它典型地被使用作为硬化代理为白金,和可能被混合以其它元素做超级合金.铱比牌子它更好的材料使用为电子联络譬如在火花塞里的白金并且有更低的电子抵抗.
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