Regenerative gas turbine cycle
    1.
    发明授权
    Regenerative gas turbine cycle 失效
    再生燃气轮机循环

    公开(公告)号:US4653268A

    公开(公告)日:1987-03-31

    申请号:US741729

    申请日:1985-06-06

    IPC分类号: F01K21/04 F02C7/143 F02C3/30

    摘要: In a regenerative gas turbine cycle in which heat recovery is carried out by multi-phase and multi-component mixture of compressed air/liquid phase water/steam (hereinafter referred to as MPC mixture), said mixture being obtained by injection of liquid phase water (hereinafter referred to simply as water) into a part of or the whole of compressed gas using air or air based gas (hereinafter referred to as air) as a combustion supporting/working medium gas; the improvement comprising(a) intercooling of said compressor, and/or(b) precooling of the compressed air for producing the MPC mixtureby a part of the MPC mixture.

    摘要翻译: 在通过压缩空气/液相水/蒸汽的多相和多组分混合物(以下称为MPC混合物)进行热回收的再生燃气轮机循环中,所述混合物通过注入液相水 (以下简称为水)成为使用空气或空气的气体(以下称为空气)作为燃烧支撑/作业介质气体的压缩气体的一部分或全部; 所述改进包括(a)所述压缩机的中间冷却和/或(b)用于由MPC混合物的一部分产生MPC混合物的压缩空气的预冷却。

    Regenerative gas turbine cycle
    2.
    发明授权
    Regenerative gas turbine cycle 失效
    再生燃气轮机循环

    公开(公告)号:US4610137A

    公开(公告)日:1986-09-09

    申请号:US744238

    申请日:1985-06-13

    摘要: A regenerative gas turbine cycle wherein heat recovery is carried out by a mixture of air/steam which is obtained by contact between water and compressed air, the compressed air being compressed by a compressor for compressing gas using air or air based gas as a combustion supporting/working medium gas. The cycle includes the improvement whereby mixture of air/steam and liquid phase cooled water is obtained through contact between the compressed air and heated water which is used as heat recovering medium; the cooled water being used as heat recovering medium not only for heat recovery of turbine exhaust gas but also, for(a) intercooling of the compressor, and/or(b) precooling of compressed air for the contact operation.Water corresponding to the amount of water which contacts the compressed air and is lost by evaporation is added to the liquid phase water for contact or heat recovery as it is or after use as a heat recovering medium.

    Regenerative gas turbine cycle
    3.
    发明授权
    Regenerative gas turbine cycle 失效
    再生燃气轮机循环

    公开(公告)号:US4537023A

    公开(公告)日:1985-08-27

    申请号:US448322

    申请日:1982-12-09

    摘要: In a regenerative gas turbine cycle in which heat recovery is carried out by a mixture of air/steam which is obtained by contact between water and a part of or the whole of compressed air, said compressed air being compressed by a compressor for compressing gas using air or air based gas as a combustion supporting/working medium gas; the improvement comprising: the mixture of air/steam and liquid phase cooled water being obtained through the contact between the compressed air and heated water which is used as heat recovering medium; said cooled water being used as heat recovering medium not only for heat recovery of turbine exhaust gas but also, for(a) intercooling of the compressor, and/or(b) precooling of compressed air for the contact operation;supplying water corresponding to the amount of water which contacts the compressed air and is lost by evaporation to the liquid phase water for contact or heat recovery as it is or after using as a heat recovering medium.

    摘要翻译: 在通过水与一部分或全部压缩空气接触获得的空气/蒸汽的混合物进行热回收的再生式燃气轮机循环中,所述压缩空气被压缩机压缩,用于压缩气体,使用 空气或空气基气体作为燃烧支持/工作介质气体; 该改进包括:通过压缩空气和用作热回收介质的加热水之间的接触获得空气/蒸汽和液相冷却水的混合物; 所述冷却水不仅用于热回收涡轮废气,而且还用于(a)压缩机的中间冷却和/或(b)用于接触操作的压缩空气的预冷却; 将与压缩空气接触的水量相应地蒸发的水相当于作为热回收介质的使用时或作为热回收介质使用后,向蒸发的液相水供给接触或热回收。

    Tray for semiconductor integrated circuit devices
    4.
    发明授权
    Tray for semiconductor integrated circuit devices 有权
    半导体集成电路器件托盘

    公开(公告)号:US06202883B1

    公开(公告)日:2001-03-20

    申请号:US09238613

    申请日:1999-01-28

    IPC分类号: B65D136

    摘要: A tray for semiconductor integrated circuit devices, including a plurality of first partition walls extending in a first direction, a plurality of second partition walls extending in a second direction at right angles with the first direction, and circumferential frame portions connecting end portions of the first and second partition walls. The regions surrounded by the first partition walls and the second partition walls constitute seating portions for seating semiconductor integrated circuit devices. The first partition walls are disposed such that one first partition wall is disposed between two rows of the seating portions which are adjacent to each other in the second direction. The second partition walls are disposed such that two second partition walls are disposed between two rows of the seating portions which are adjacent to each other in the first direction, and opening portions are formed between the two second partition walls.

    摘要翻译: 一种用于半导体集成电路器件的托盘,包括沿第一方向延伸的多个第一分隔壁,沿与第一方向成直角的第二方向延伸的多个第二分隔壁,以及连接第一方向的端部的圆周框架部分 和第二分隔壁。 由第一分隔壁和第二分隔壁包围的区域构成用于放置半导体集成电路器件的安置部分。 第一分隔壁被布置成使得一个第一分隔壁设置在第二方向上彼此相邻的两排座部之间。 第二分隔壁被布置成使得两个第二分隔壁设置在沿着第一方向彼此相邻的两排座位部之间,并且开口部分形成在两个第二间隔壁之间。

    One-piece molded chasis having openings and rib minimizing deformation
during cooling
    5.
    发明授权
    One-piece molded chasis having openings and rib minimizing deformation during cooling 失效
    具有开口和肋的一体式模制凹槽使冷却过程中的变形最小化

    公开(公告)号:US5846633A

    公开(公告)日:1998-12-08

    申请号:US697163

    申请日:1996-08-20

    摘要: A chassis is formed of a one-piece thermoplastic or thermosetting resin body. A bottom member extends in a bottom plane, and has at least three side members extending in respective planes. Junction portions join the bottom member and the side members. Ribs are intermittently molded as one piece to bottom member and to side member and extend from the bottom plane from the bottom member through the junction portion to the side plane of the side member. An opening portion helps to prevent angular deformation of the resin body between the bottom member and the side member from a desired angle between the bottom plane and the side plane when the one-piece body is molded by minimizing differences in the cooling rate at different parts adjacent to the junction portion in the one-piece body. The opening portion is located between the ribs at least adjacent to and along the junction portion. The opening portion has a length along the junction portion that is at least five/ten the length of the junction portion.

    摘要翻译: 底盘由一体式热塑性或热固性树脂体形成。 底部构件在底部平面中延伸,并且具有在相应平面中延伸的至少三个侧构件。 接合部分连接底部构件和侧部构件。 肋被间歇地模制成一体到底部构件和侧部构件,并且从底部构件通过接合部分延伸到侧部构件的侧面。 当通过最小化不同部件的冷却速度的差异来模制一体式主体时,开口部分有助于防止底部构件和侧部构件之间的树脂体在底面和侧面之间的期望角度的角度变形 邻接在一体式的接合部分。 开口部分位于肋之间,至少邻近并沿着连接部分。 开口部分具有沿着连接部分的长度为接合部分的长度的至少五/十的长度。

    Optimization of overmolding method for three-dimensional hollow molded
article
    7.
    发明授权
    Optimization of overmolding method for three-dimensional hollow molded article 失效
    三维中空成型制品的包覆成型方法优化

    公开(公告)号:US5942169A

    公开(公告)日:1999-08-24

    申请号:US561835

    申请日:1995-11-27

    IPC分类号: B29C45/14 B29C45/76

    摘要: A method of over-molding used to produce a three-dimensional hollow molded article employs a core made of resin having a hollow portion. The core is placed in a cavity of a mold. Molten resin is injected into a space formed by the core and a cavity wall of the mold through a resin injection portion. In this way at least part of the outer surface of the core is covered with resin. Deformation of the core due to the pressure of the resin during injection is prevented in one of a number of different ways. The over-molding method is optimized by calculating a temperature distribution and a pressure distribution of the molten resin in the step of injecting the molten resin into the space by numerical analysis. The displacement distribution and for the stress distribution of the core caused by pressure applied to the core by flow of the molten resin is calculated by a numerical analysis on the basis of the calculated temperature distribution and pressure distribution. The form of the hollow molded article, the form of the core, the form of the mold, and the molding conditions can thereby be optimized on the basis of at least one of the calculated displacement distribution and the stress distribution so as to minimize deformation of the core.

    摘要翻译: 用于制造三维中空成型制品的过度成型的方法采用由具有中空部分的树脂制成的芯。 将芯放置在模具的空腔中。 熔融树脂通过树脂注射部分注入到由模芯形成的空间和模具的空腔壁中。 以这种方式,芯的外表面的至少一部分被树脂覆盖。 通过多种不同的方式防止由于注射期间树脂的压力导致的芯的变形。 通过计算熔融树脂在通过数值分析将熔融树脂注入空间的步骤中的熔融树脂的温度分布和压力分布来优化过模制方法。 通过基于计算的温度分布和压力分布的数值分析计算由熔融树脂流动施加到芯上的压力引起的芯的位移分布和应力分布。 因此,可以基于所计算的位移分布和应力分布中的至少一个来优化中空成型制品的形式,芯的形式,模具的形状和成型条件,以最小化变形 核心。