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    • 92. 发明授权
    • Radially oriented motor for a fluid balance ring
    • 用于流体平衡环的径向定向电动机
    • US5913951A
    • 1999-06-22
    • US992587
    • 1997-12-17
    • Joel L. HerrTroy A. JohnsonJohn E. Thomas
    • Joel L. HerrTroy A. JohnsonJohn E. Thomas
    • D06F37/22
    • D06F37/225Y10T74/2109
    • A radially mounted motor is provided in a closed system fluid balance ring for high rotational speed washing machines. The motor is mounted at an orientation of 90.degree. relative to the rotational axis of the washing machine spinner. Such an orientation prevents adverse effects on the motor contacts from centrifugal forces generated by the rotating spinner. A 90.degree. orientation also eliminates deflection of the motor shaft and excessive friction on the motor bearings. The angular orientation of the motor assures proper functioning of the closed system fluid balance ring of the washing machine. The balance system also includes a valve to control movement of fluid within the ring. The valve is mounted at an angle with respect to a tangent of the spinner so as to prevent detrimental effects from the centrifugal forces of the rotating spinner.
    • 径向安装的电动机设置在用于高转速洗衣机的封闭系统流体平衡环中。 电动机相对于洗衣机旋转器的旋转轴线以90度的方向安装。 这种方向防止由旋转旋转器产生的离心力对马达触点的不利影响。 90°方向也消除了电机轴的偏转和电机轴承上的过度摩擦。 电机的角度方向确保洗衣机的封闭系统流体平衡环的正常功能。 平衡系统还包括用于控制环内​​的流体运动的阀。 阀相对于旋转器的切线以一定角度安装,以防止旋转旋转器的离心力的不利影响。
    • 95. 发明授权
    • Intermediate thickness and multiple furnace process line
    • 中间厚度和多炉工艺线
    • US5511303A
    • 1996-04-30
    • US371408
    • 1995-01-11
    • George W. TippinsJohn E. Thomas
    • George W. TippinsJohn E. Thomas
    • B21B1/34B21B1/46B21B45/00B21B1/00B21B13/22
    • B21B1/466B21B45/00B21B1/34Y10S29/005Y10T29/49991Y10T29/5184
    • A method and apparatus of making coiled plate, sheet in coiled form or discrete plate. The apparatus includes a continuous strip caster forming a strand of intermediate thickness; a shear for cutting the strand into a slab of desired length; a slab table including a slab takeoff operable transverse of the conveyor table; a slab collection and storage area adjacent to the slab conveyor table adapted to receive slabs from the slab takeoff; one or two reheat furnaces having an entry inline with both the slab conveyor table and the slab collection and storage area for receiving slabs from either; a feed and run back table at the exit of one reheat furnace; a single or twin stand hot reversing mill for reducing the slab to a coiling thickness in a number of flat passes; and a pair of coiler furnaces located on opposite sides of the hot reversing mill.
    • 制造盘绕板,片状或分立板的方法和装置。 该装置包括形成中间厚度的股线的连续带状连铸机; 用于将线切割成所需长度的板坯的剪切; 一个平板台,包括可在输送台上横向工作的板坯起飞; 与板坯输送台相邻的板坯收集和存储区,适于从板坯起飞接收板坯; 一个或两个再热炉与板式输送机台板和板坯收集和存储区域进行直线接合,用于从两者接收板坯; 一个再热炉出口处的进料和回流台; 单台或双机架热转炉,用于在多个平通道中将板坯减少到卷绕厚度; 以及位于热反转轧机相对两侧的一对卷取机炉。
    • 97. 发明授权
    • Solution proportioner and dispensing system
    • 溶液配比剂和分配系统
    • US5259557A
    • 1993-11-09
    • US32838
    • 1993-03-10
    • John R. SpriggsJames D. DeckerJames L. CopelandJohn E. Thomas
    • John R. SpriggsJames D. DeckerJames L. CopelandJohn E. Thomas
    • B67D7/42B67D7/74B05B7/24
    • B67D7/423B67D7/74
    • A system for proportioning and dispensing concentrated liquid products is disclosed. The components of the system's first embodiment are mounted upon a cart (12). A concentrate solution tube (14) is interconnected to a dilution assembly (61) containing an aspirator (26). A water supply assembly (69), containing a valve (75) and backflow preventer (74), is connected to the aspirator assembly (26) when dilution of the concentrated product (13) is desired. A discharge tube (68) carries the diluted product from the aspirator assembly (26) to a container (60). The system's second embodiment has a spray gun assembly (150) containing an aspirator (167), a valve (166), and preferably though not necessarily, a backflow preventer (165). The concentrate pickup tube (114) attaches to the spray gun assembly (150) with a releasable connector (170). The spray gun assembly has a rigid delivery tube (153) for dispensing to large containers (160), and a nozzle tip (180) for attachment to an inlet port (119) of a jug (111). Also disclosed is a method for dispensing and handling solutions.
    • 公开了一种用于配比浓缩液体产品的系统。 系统第一实施例的部件安装在推车(12)上。 浓缩液溶液管(14)与含有抽吸器(26)的稀释组件(61)互连。 当需要浓缩产品(13)的稀释时,包含阀(75)和防逆流器(74)的供水组件(69)连接到抽吸器组件(26)。 放电管(68)将稀释的产品从吸气器组件(26)运送到容器(60)。 该系统的第二实施例具有一个喷枪组件(150),其包含抽吸器(167),一个阀(166),优选但不一定是防逆流器(165)。 浓缩物拾取管(114)用可释放的连接器(170)附接到喷枪组件(150)。 喷枪组件具有用于分配到大容器(160)的刚性输送管(153)和用于附接到壶(111)的入口端口(119)的喷嘴尖端(180)。 还公开了一种用于分配和处理解决方案的方法。
    • 98. 发明授权
    • Three stand mini mill method and apparatus
    • 三立式微型磨机的方法和装置
    • US4522050A
    • 1985-06-11
    • US458041
    • 1983-01-14
    • John E. Thomas
    • John E. Thomas
    • B21B1/34B21B35/08B21B1/06
    • B21B35/08B21B1/34
    • A mini hot strip mill comprises three close coupled mill stands including a first and second four high finishing mill and a two high roughing mill positioned therebetween. A first coiler furnace is positioned upstream and a second coiler furnace is positioned downstream of the mill. The mills may each be retained in their own mill housings or the finishing mills may be in separate housings and the roughing mill may be retained in supports connecting the finishing mill housings. The mills are closely spaced so that the finishing mills are maintained open while operating in a roughing mode so as to allow free passage of the slab being reduced and the roughing mill is maintained open while the two four high mills are operative in a finishing mode. Two motors connected through a gear box to said mill provide for independently driving the finishing mills in speed coordinated relationship and for jointly driving the roughing mill.
    • 微型热轧机包括三个紧密连接的轧机机架,其包括第一和第四高精轧机和位于它们之间的两个高精轧机。 第一卷取机炉位于上游,第二卷取机位于轧机的下游。 磨机可以分别保持在它们自己的磨床壳体中,或者精轧机可以在分开的壳体中,并且粗轧机可以保持在连接精轧机壳体的支撑件中。 研磨机间隔紧密,使得精轧机在粗加工模式下运行时保持打开状态,从而允许板坯的自由通过减少,并且粗轧机保持打开,而两个四个高磨机在精加工模式下操作。 通过齿轮箱连接到所述轧机的两个电动机提供以速度协调关系独立地驱动精轧机并联合驱动粗轧机。
    • 100. 发明授权
    • Apparatus for underwinding strip on a drum in a hot reversing mill
    • 用于在热反转轧机中在卷筒上卷绕条带的装置
    • US4455848A
    • 1984-06-26
    • US417423
    • 1982-09-13
    • George W. TippinsJohn E. ThomasRichard S. ConnollyCharles K. PineWayne G. Pottmeyer
    • George W. TippinsJohn E. ThomasRichard S. ConnollyCharles K. PineWayne G. Pottmeyer
    • B21C47/06B21B1/34B21C47/34B65H18/08C21D9/52C21D9/68B21B37/00B21B41/06
    • B21B1/34
    • A method of underwinding strip on a drum along the passline of a hot reversing mill comprises positioning the drum in a receiving mode, passing the strip through the mill at a given thread speed, detecting the presence of the strip at a given position in relation to the drum, activating the drum in an underwinding direction at a given time delay representative of a distance in which the strip is through the drum slot and internal of the drum, and speed matching the drum and the strip in an initial surface winding mode and a subsequent center driven tension mode. The apparatus includes a pair of drums, each positioned on an opposite side of the hot reversing mill, a pair of gates, each positioned along the table rolls to deflect the strip into the drum slots, a tilt table roll assembly on each side of the mill adapted to pivot into engagement with the drum downstream of the slot to retain the strip against a portion of the drum, a detector positioned between the drum and the mill to detect the presence of the strip, an activator for causing each drum to rotate in an underwinding direction when the strip enters the slot, and to speed match each drum to the strip, and a converting member for converting each drum from a surface winding mode to a center driven tension mode after a given number of wraps.
    • 沿着热反转轧机的通道在卷筒上卷绕带材的方法包括将滚筒定位在接收模式中,使滚筒以给定的螺纹速度通过轧机,检测相对于给定位置处的条带的存在 滚筒,在给定的时间延迟以给定的时间延迟来启动滚筒,该给定的时间延迟代表条带穿过滚筒槽和滚筒内部的距离,并且以初始的表面卷绕模式和滚筒和条带的速度匹配 随后的中心牵引张力模式。 该设备包括一对鼓,每个鼓定位在热反转轧机的相对侧上,一对门,每一个门沿台面辊定位,以将钢带偏转到滚筒槽中;倾斜台辊组件 铣刀适于在槽的下游枢转成与滚筒接合以将条保持抵靠滚筒的一部分,位于滚筒和磨机之间的检测器,以检测条带的存在,用于使每个滚筒旋转的致动器 当条带进入槽中时的下卷绕方向,并且将每个滚筒加速到条带上;以及转换构件,用于在给定数量的包装之后将每个滚筒从表面卷绕模式转换到中心驱动拉伸模式。