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Characteristics of the getter materials used in High Intensity Discharge Lamps

机译:高强度放电灯中使用的吸气剂材料的特点

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In the field of discharge lamps many efforts are focused on improving qualities and performances of the devices. It is well known that gaseous impurities, possibly present inside the burner and inside the outer bulb of High Intensity Discharge (HID) lamps, are one of the main causes of the deterioration of their performances. Usually getter materials are adopted to absorb the gaseous impurities that may be generated by the residues of lamp fabrication process or that are released during lamp operation. These can be efficiently removed by means of a simple getter component, so as to create and maintain the very clean atmosphere necessary to assure high quality characteristics of the lamp for all its life. Getters are used in HID lamps with outer bulbs both under vacuum and with nitrogen atmosphere; in this second type of lamps it is necessary that the getter works properly without being affected by, or interfering with, the jacket filling gas. The getter material must be able to sorb various gaseous species generated inside the lamp envelope, such as hydrogen, water vapour, carbon monoxide and hydrocarbons. In this paper we will present and discuss properties and sorption characteristics of the main getter materials adopted in HID lamps, such as the Zr-Al, Zr-Fe and Zr-Co-Rare Earths alloys. The sorption performances of the materials were measured in experimental systems simulating possible lamp conditions. Experiments were carried out to study the ability of the materials to capture hydrogen that is the most deleterious gaseous contaminant in discharge lamps. Moreover, in order to understand the complex sorption mechanisms that take place on the getters when different gaseous impurities are coexisting inside the lamps, specific tests were performed to determine the simultaneous sorption of different gas species, such as sorption of hydrogen and nitrogen, hydrogen and carbon monoxide, hydrogen and carbon dioxide.
机译:在放电灯领域,许多努力集中在改善器件的品质和性能上。众所周知,气体杂质可能存在于燃烧器内部和高强度放电(HID)灯的外灯泡内部,是它们性能劣化的主要原因之一。通常采用吸气材料来吸收可通过灯制造过程的残留物产生的气态杂质,或者在灯操作期间释放。这些可以通过简单的吸气器组件有效地去除这些,以便为其所有生命中的所有生命设定为确保灯的高质量特性所需的非常干净的大气层。 Getters用于HID灯,在真空和氮气氛下,具有外灯泡和氮气氛;在这种第二种类型的灯中,吸气剂必须正常工作而不会受到夹套填充气体的影响或干扰。吸气剂材料必须能够吸附在灯外壳内产生的各种气态物种,例如氢气,水蒸气,一氧化碳和烃。在本文中,我们将展示和讨论HID灯采用的主要吸气剂材料的性质和吸附特性,例如ZR-Al,Zr-Fe和Zr-Co-稀土合金。在模拟可能的灯条件的实验系统中测量了材料的吸附性能。进行实验以研究材料捕获氢气的能力,该氢是放电灯中最有害的气态污染物。此外,为了了解在灯内部共存时在吸气器上发生的复杂吸附机制,进行特异性测试以确定不同气体物种的同时吸附,例如氢气和氮气,氢气和氮气的吸附一氧化碳,氢气和二氧化碳。

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