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    • 1. 发明授权
    • Flexible fitting for heat exchanging garments
    • 热交换服装的柔性配件
    • US09399149B2
    • 2016-07-26
    • US12910821
    • 2010-10-24
    • Joseph L. Rose
    • Joseph L. Rose
    • F16L41/03A62B17/00F28D1/047F28F21/06A41D13/005
    • A62B17/005A41D13/005F28D1/0475F28F21/062
    • A fitting for a fluid-circulating heat exchanging garment includes a cylindrical tube of flexible PVC extending from and integrally formed with a fluid-conducting chamber, the tube having a length, a distal portion with an inner diameter adapted to receive and closely fit a tubing end of a flexible PVC tubing, and a proximal portion with an inner diameter substantially equal to an inner diameter of the flexible PVC tubing, the cylindrical tube having a plurality of spaced apart radially-extending ribs extending the length of the tube and continuing to an outer surface of the fluid-conduction chamber. A manifold for heat exchanging garments has a central fluid-conducting chamber with a plurality of fittings extending therefrom and an inlet/outlet for connection to flexible tubing connected to a fluid circulating system.
    • 用于流体循环热交换衣服的配件包括从导流室延伸并与流体传导室一体形成的柔性PVC的圆柱形管,该管具有一定长度,远端部分具有内径,该内径适于容纳和紧密地配合管 柔性PVC管的端部和具有基本上等于柔性PVC管的内径的内径的近端部分,所述圆柱形管具有延伸管的长度的多个间隔开的径向延伸的肋,并且延伸到 流体传导室的外表面。 用于热交换衣服的歧管具有中心导流室,其具有从其延伸的多个配件以及用于连接到连接到流体循环系统的挠性管的入口/出口。
    • 3. 发明申请
    • SYSTEMS AND METHODS FOR THE INSPECTION OF STRUCTURES HAVING UNKNOWN PROPERTIES
    • 检查具有未知特性的结构的系统和方法
    • US20100217544A1
    • 2010-08-26
    • US12708183
    • 2010-02-18
    • Fei YANJoseph L. ROSE
    • Fei YANJoseph L. ROSE
    • G01N29/04
    • G01N29/07G01N29/2456G01N29/341G01N29/346G01N2291/011G01N2291/0289G01N2291/104
    • An inspection method includes driving a plurality of spaced apart transmitting transducer elements with a respective time delay and a respective frequency such that each of the transmitting transducer elements transmits an ultrasonic guided wave through a transmission medium defined by a material having at least one unknown physical property. The ultrasonic guided waves are received at a receiving transducer element disposed at a distance from the transmitting transducer elements. A respective time delay and a respective frequency for each of the transmitting transducer elements is determined that provides a maximum amplitude in a signal received at the receiving transducer element. The plurality of transmitting transducer elements are activated in accordance with the determined time delays and frequencies to transmit inspection signals through the transmission medium. A location of a defect in the material is determined based on velocities of the inspection signals received at the receiving transducer element.
    • 一种检查方法包括以相应的时间延迟和相应的频率驱动多个间隔开的发射换能器元件,使得每个发射换能器元件通过传导介质传输超声波导波,该传输介质由具有至少一个未知物理性质的材料 。 超声波引导波被接收在距发射换能器元件一定距离处的接收换能器元件处。 确定每个发射换能器元件的相应时间延迟和相应频率,其在接收换能器元件处接收的信号中提供最大幅度。 多个发送换能器元件根据确定的时间延迟和频率被激活,以通过传输介质传输检查信号。 基于在接收换能器元件处接收的检查信号的速度来确定材料中缺陷的位置。
    • 8. 发明申请
    • METHOD AND DEVICE FOR MAKING A HEAT EXCHANGING GARMENT
    • 制造热交换装置的方法和装置
    • US20110120624A1
    • 2011-05-26
    • US12951641
    • 2010-11-22
    • Joseph L. Rose
    • Joseph L. Rose
    • B32B7/08B29C65/70
    • A62B17/003A41D13/002B29C2071/022F28F9/0275F28F9/26F28F21/062
    • A method is provided for making a fluid-circulating heat exchanging garment, the method including providing a fabric panel for assembly of the heat exchanging garment, defining a tubing layout on the fabric panel with straight portions and bend portions defined in a flexible tubing. The straight portions of the tubing are affixed to the fabric panel and a mold is inserted into the inner radius of each bend portion. The mold has a shape corresponding to each bend portion and a channel having a radius adapted to closely fit over the tubing. The fabric panel and tubing are heated to an annealing temperature of the tubing. After cooling the fabric panel, the molds are removed, leaving the tubing reshaped at the bend portions to a desired radius.
    • 提供了一种用于制造流体循环热交换衣服的方法,该方法包括提供用于组装热交换服装的织物面板,在织物面板上限定在柔性管中限定的直部分和弯曲部分的管布局。 管道的直线部分固定在织物面板上,并将模具插入每个弯曲部分的内半径。 模具具有对应于每个弯曲部分的形状和具有适于紧密配合在管道上的半径的通道。 将织物面板和管道加热至管道的退火温度。 在冷却织物面板之后,去除模具,使得管道在弯曲部分处重新形成所需的半径。
    • 10. 发明授权
    • Quick-disconnect latch for fluid conduits
    • 用于流体管道的快速断开闩锁
    • US07585001B2
    • 2009-09-08
    • US11369290
    • 2006-03-06
    • Joseph L. Rose
    • Joseph L. Rose
    • F16L39/00F16B21/00
    • F16L55/1015F16L37/086Y10T403/606
    • A quick disconnect latching device for use in a liquid conduit coupling has two halves: a pin half and a release half. The pin half includes a casing sleeve into which a latch pin is slidably retained. The latch pin is spring biased into a retracted position within the sleeve. Latch pin dogs are located at the ends of arms extending from the latch pin to interact with a catch within the release half. A hollow nose casing is tapered to cam the arms inward when a sufficient separating axial force is applied to one or both of the pin half and the release half, so that the latch pin dogs release the catch. The amount of force required to separate the latch halves can be adjusted by varying the spring bias using an adjustment screw.
    • 用于液体管道联接器的快速断开闭锁装置具有两半:销半部和释放半部。 销半部包括套筒套筒,闩锁销可滑动地保持在其中。 弹簧偏压到套筒内的缩回位置。 闩锁销位于从闩锁销延伸的臂的端部处,以与释放一半内的卡扣相互作用。 当将足够的分离轴向力施加到销半部和释放半部中的一个或两个上时,中空鼻套被锥形以将臂向内凸轮,使得闩锁销释放卡扣。 可以通过使用调节螺钉改变弹簧偏压来调节分离闩锁半部所需的力的量。