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    • 21. 发明授权
    • Method of cleaning a CVD device
    • 清洗CVD装置的方法
    • US08105440B2
    • 2012-01-31
    • US12118284
    • 2008-05-09
    • Hiroshi Nogami
    • Hiroshi Nogami
    • B08B7/04B08B7/00
    • H01J37/32862C23C16/4405Y10S134/902Y10S438/905
    • A CVD vacuum vessel including an electrically conductive partition plate which divides the interior of the vacuum vessel into a plasma generating space and a film-deposition processing space, and an electrically conductive spiral shield. The electrically conductive partition plate has a plurality of through-holes connecting the plasma generating space to the film-deposition processing space and a heater for heating the electrically conductive partition plate. The partitioning plate is mounted to the vacuum vessel by means of a mounting screw such that electrical contact between the partitioning plate and the vacuum vessel is achieved through said spiral shield.
    • 一种CVD真空容器,其包括将真空容器的内部分成等离子体产生空间和膜沉积处理空间的导电隔板以及导电螺旋屏蔽。 导电隔板具有将等离子体产生空间连接到成膜处理空间的多个通孔和用于加热导电隔板的加热器。 分隔板通过安装螺钉安装到真空容器上,使得分隔板和真空容器之间的电接触通过所述螺旋屏蔽件实现。
    • 22. 发明授权
    • Process for producing stainless steel pipe
    • 不锈钢管生产工艺
    • US08047039B2
    • 2011-11-01
    • US12247923
    • 2008-10-08
    • Yasuyoshi HidakaSatoshi MatsumotoToshihide OnoKouji NakaikeSumio IidaHiroshi Nogami
    • Yasuyoshi HidakaSatoshi MatsumotoToshihide OnoKouji NakaikeSumio IidaHiroshi Nogami
    • B21B17/10B21D37/16
    • B21B23/00B21B3/02B21B17/10B21B17/14B21B19/04B21B25/04B21B45/004C21D1/76C21D1/767C21D3/04C21D8/10C21D9/08C22C38/02C22C38/44C22C38/58
    • A process for stainless-steel pipe production which comprises piercing rolling a raw material stainless steel containing, by mass, Cr: 10-30%, to give a hollow shell, elongating rolling the hollow shell using a mandrel bar, together with a graphite-free lubricant, to give a finishing rolling blank pipe and heating the blank pipe in a reheating furnace and subjecting the same to finishing rolling by sizing rolling to produce a hot-finished pipe, and then subjecting this pipe as a mother pipe to cold working to produce a stainless-steel pipe. In the reheating furnace, the finishing rolling blank pipe is heated to 1000° C. or more and subjected to heating in which an oxidizing gas is blown into the pipe inside, whereby a stainless-steel pipe which is inhibited from forming a carburized layer in the pipe inner surface can be produced. When the finishing rolling by sizing rolling to give a cold working mother pipe is carried out by stretch reducer rolling at 860-1050° C., an annealing heat treatment of the mother pipe for cold working can be omitted. Thus, a stainless-steel pipe having excellent surface quality can be efficiently produced.
    • 一种不锈钢管制造方法,其特征在于,将包含Cr:10〜30%的原料不锈钢进行穿孔轧制,得到中空壳,使用芯棒将中空壳拉伸,并与石墨 无需润滑剂,得到精轧坯管,再加热炉内的坯管加热,通过定径轧制进行精轧,制成热轧管,然后将该管作为母管进行冷加工 生产不锈钢管。 在再热炉中,将精轧坯管加热至1000℃以上,进行向内部吹入氧化气体的加热,由此抑制渗碳层形成的不锈钢管 可以制造管内表面。 当通过在860-1050℃下的拉伸减速机轧制进行通过定径轧制得到冷加工母管的精轧时,可以省略用于冷加工的母管的退火热处理。 因此,可以有效地制造具有优异表面质量的不锈钢管。