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    • 5. 发明授权
    • Method for cleaning vulcanization mold
    • 硫化模具清洗方法
    • US5855728A
    • 1999-01-05
    • US802429
    • 1997-02-18
    • Shinji SaitohShingo OhnoNobuko KatoKazuo NaitoYasuhiro Horiike
    • Shinji SaitohShingo OhnoNobuko KatoKazuo NaitoYasuhiro Horiike
    • B08B7/00B29C33/72B44C1/22
    • B29C33/72B08B7/0035B29D2030/0663B29L2030/00
    • A cleaning method for realizing uniform ashing of residues at a high efficiency by uniformly injecting neutral active species directly toward the surfaces of vulcanization residues left on a vulcanization mold is described. The method includes setting a ring-shaped cavity in face-to-face reaction with the inner surfaces of a ring-shaped vulcanization mold in a vacuum treating vessel, transmitting a microwave in the cavity, and emitting the microwave via a number of coupling slots formed in the outer side of the cavity toward the inner surfaces of the vulcanization mold whereupon a reaction gas is injected in the space of the treating vessel between the inner surfaces of the vulcanization mold and the cavity, so that a plasma including a major proportion of neutral active species generated from the reaction gas and the emitted microwave, and the elastomer residue is ashed by means of at least one gas selected from the plasma gas and a neutral active species-containing gas. A microwave generator useful for the method is also described.
    • 描述了通过将中性活性物质直接向残留在硫化模具上的硫化残余物的表面均匀注入来实现高效残余物均匀灰化的清洁方法。 该方法包括在真空处理容器中将环状空腔与环形硫化模具的内表面进行面对面反应,在空腔中传输微波,并通过多个耦合槽发射微波 在空腔的外侧朝向硫化模的内表面形成,从而在硫化模具的内表面和空腔之间的处理容器的空间中注入反应气体,使得包含主要部分的等离子体 由反应气体和发射的微波产生的中性活性物质,并且弹性体残余物通过选自等离子体气体和含中性活性物质的气体中的至少一种气体进行灰化。 还描述了对该方法有用的微波发生器。
    • 8. 发明授权
    • Apparatus for testing water hammer strength of glass bottle
    • 玻璃瓶水锤强度试验装置
    • US09021858B2
    • 2015-05-05
    • US13576766
    • 2010-03-04
    • Yuuichi OhyaShinji SaitohJohshiroh YamaguchiYosuke Ueda
    • Yuuichi OhyaShinji SaitohJohshiroh YamaguchiYosuke Ueda
    • G01N3/303G01N33/00
    • G01N3/303G01N2033/0081
    • An object is to prevent a bottle from being inclined when a weight is dropped, and to prevent cushion members from moving due to the impact applied when the bottle is inclined, thereby enabling efficient and correct measurement of the water hammer strength. An apparatus for testing the water hammer strength includes holding element that holds bottle filled with content and sealed with a cap at a position above the center of gravity thereof so as to suspend the bottle in the air, and the holding element is placed on cushion members placed on a fixing stage. A weight is then dropped onto the cap to measure the water hammer strength. The cushion members are compressed and deformed in advance using a compression element for forcing the holding element downward to solve the above-described problems.
    • 目的是防止瓶子在重量下降时倾斜,并且当瓶子倾斜时由于施加的冲击而防止缓冲构件移动,从而能够有效和正确地测量水锤强度。 用于测试水锤强度的装置包括:保持装满内容物的瓶子的保持元件,并在其重心上方的位置上用盖子密封,以将瓶子悬挂在空气中,并且将保持元件放置在缓冲构件 放在固定台上。 然后将重物落在盖上以测量水锤强度。 缓冲构件使用用于迫使保持元件向下的压缩元件来预先压缩和变形以解决上述问题。
    • 10. 发明授权
    • Method and apparatus for testing water hammer strength of glass bottle
    • 玻璃瓶水锤强度试验方法及装置
    • US08402810B2
    • 2013-03-26
    • US12591481
    • 2009-11-20
    • Shinji SaitohYuuichi Ohya
    • Shinji SaitohYuuichi Ohya
    • G01N3/00
    • G01N3/303G01N2033/0081
    • The present invention provides a method for testing the water hammer strength of a glass bottle. The method includes the steps of providing a holding device on a fixing stage with a cushion material therebetween, holding the bottle filled with a content and fitted with a cap with the holding device at a position above the center of gravity thereof and suspending the bottle in the air, and dropping a weight directly or indirectly onto the cap to apply an impact to the bottle. The weight is repeatedly dropped while gradually increasing a drop energy thereof. The water hammer strength of the bottle is tested based on the drop energy of the weight at the time when the bottle is damaged.
    • 本发明提供了一种用于测试玻璃瓶的水锤强度的方法。 该方法包括以下步骤:在固定台上设置夹持装置,在其间具有衬垫材料,将瓶子装满内容物,并将具有保持装置的帽装配在其重心上方的位置并将瓶子悬挂在 空气,并将重量直接或间接地放在盖上以对瓶子施加冲击。 重量下降,同时逐渐增加其下落能量。 瓶子的水锤强度根据瓶子损坏时重量的下降能力进行测试。