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    • 3. 发明授权
    • Plastic blow molded freestanding container
    • 塑料吹塑独立容器
    • US07198163B2
    • 2007-04-03
    • US11123322
    • 2005-05-06
    • William C. YoungRichard C. DarrDale M. Behm
    • William C. YoungRichard C. DarrDale M. Behm
    • B65D1/02B65D1/42B65D23/00
    • B65D1/0284
    • A plastic blow molded container (10) is disclosed as including a freestanding base structure (20) that is constructed with a plurality of alternating hollow legs (22) and curved ribs (34), and a hub (41) from which the legs and ribs extend radially with a construction that provides good stability against tipping as well as the capability of withstanding internal pressure. The legs (22) have lower flat feet (24) with an outer diameter Df, and the hub (41) has a periphery connected to the feet and ribs with a height Hp such that the ratio of the diameter Df over the height Hp is in the range of about 25 to 90 to maintain strength without the hub engaging the supporting surface on which the feet rest. The construction disclosed of the legs (22), ribs (34) and hub (41, 41′ and 41″) enhances the capability of the base structure in providing good stability as well as the capability of withstanding internal pressure and stress cracking.
    • 公开了一种塑料吹塑容器(10),其包括由多个交替的空心腿(22)和弯曲肋(34)构成的独立的基座结构(20),以及轮毂(41) 肋条以提供良好的倾翻稳定性以及承受内部压力的能力的结构径向延伸。 腿部(22)具有具有外径D 的下平的平脚(24),并且轮毂(41)具有连接到脚的周边和高度为H < / SUB>,使得高度H P P的直径Dψ的比值在大约25至90的范围内,以保持强度而不使轮毂接合支撑表面 脚搁在其上 公开的腿部(22),肋(34)和轮毂(41,41'和41“)的结构增强了基础结构提供良好稳定性以及承受内部压力和应力开裂能力的能力。
    • 4. 发明授权
    • Plastic blow molded freestanding container
    • 塑料吹塑独立容器
    • US06659299B2
    • 2003-12-09
    • US09886644
    • 2001-06-21
    • William C. YoungRichard C. DarrDale H. Behm
    • William C. YoungRichard C. DarrDale H. Behm
    • B65D4534
    • B65D1/0284
    • A plastic blow molded container (10) is disclosed as including a freestanding base structure (20) that is constructed with a plurality of alternating hollow legs (22) and curved ribs (34), and a hub (41) from which the legs and ribs extend radially with a construction that provides good stability against tipping as well as the capability of withstanding internal pressure. Each rib (34) has an outer upper end (36) with a circumferential width Wu and an inner lower end (38) with a circumferential width Wl that is greater than the circumferential width Wu of the upper rib end so the lower rib end is capable of resisting stress cracking. An intermediate rib portion (40) of a curved shape tapers between the ends with an included angle B in the range of about 1° to 8° and preferably about 2°. The specific construction disclosed of the legs (22), ribs (34) and hub (41, 41′ and 41″) enhance the capability of the base structure in providing good stability as well as the capability of withstanding internal pressure and stress cracking.
    • 公开了一种塑料吹塑容器(10),其包括由多个交替的空心腿(22)和弯曲肋(34)构成的独立的基座结构(20),以及轮毂(41) 肋条以提供良好的倾翻稳定性以及承受内部压力的能力的结构径向延伸。 每个肋(34)具有周向宽度为Wu的外侧上端(36)和内侧下端(38),其周向宽度W1大于上部肋端部的周向宽度Wu,因此下部肋端部 能够抵抗应力开裂。 弯曲形状的中间肋部(40)在端部之间逐渐变细,夹角B在约1°至8°的范围内,优选约2°。 公开的腿部(22),肋(34)和轮毂(41,41'和41“)的具体结构增强了基础结构提供良好稳定性以及承受内部压力和应力开裂的能力的能力 。
    • 6. 发明授权
    • Plastic blow molded bottle having bellows supported dispensing spout
    • 具有波纹管的塑料吹塑瓶支持分配喷口
    • US5647516A
    • 1997-07-15
    • US507858
    • 1995-07-27
    • William C. YoungWilliam A. SlatRichard C. Darr
    • William C. YoungWilliam A. SlatRichard C. Darr
    • B65D1/02B65D25/46B67D3/00
    • B65D1/023B65D25/465
    • A plastic blow molded bottle (20a, 20b, 20c, 20d) has an upper dispensing end (32) including an upper wall (34) and a generally wedge-shaped bellows (36) that supports a dispensing spout (38) on the upper wall initially vertical for filling and shipping of the bottle. The dispensing spout (38) is tilted as the generally wedge-shaped bellows (36) contracts to allow more convenient dispensing. A frangible connection (40) that initially supports the dispensing spout (38) vertically is broken to allow the dispensing spout tilting for the dispensing. The frangible connection (40) includes a tab (48) having a reduced thickness portion (50) where it is broken, preferably at connection thereof to the upper wall (34) and the dispensing spout (38) such that the tab is removable from the bottle. An inclined wall portion provided by one inclined end (41) of a horizontally elongated gable shape of the upper wall (34) mounts the generally wedge-shaped bellows (36) to support the dispensing spout (38).
    • 塑料吹塑瓶(20a,20b,20c,20d)具有上部分配端(32),上部分配端(32)包括上壁(34)和大致楔形的波纹管(36),其在上部支撑着分配出口(38) 墙壁最初垂直填充和运输瓶子。 当大致楔形波纹管(36)收缩时,分配喷口(38)倾斜,以允许更方便的分配。 最初支撑分配喷口(38)垂直的易碎连接(40)被破坏以允许分配喷口倾斜用于分配。 所述易碎连接件(40)包括具有减小的厚度部分(50)的突片(48),其中其被破坏,优选地在与所述上壁(34)和所述分配喷口(38)的连接处,使得所述突片可从 瓶子。 由上壁(34)的水平伸长的山形形状的一个倾斜端(41)提供的倾斜壁部分安装大致楔形的波纹管(36)以支撑分配喷口(38)。
    • 9. 发明授权
    • Motor vehicle
    • 摩托车
    • US4425979A
    • 1984-01-17
    • US332086
    • 1981-12-18
    • William C. Young
    • William C. Young
    • B60K5/04B60K17/04
    • B60K5/04
    • A motor vehicle is disclosed having a main frame with rear wheels in substantially fixed alignment supporting the main frame, a steerable frame provided at the forward end of the main frame including front wheels in fixed alignment with the steerable frame and a motor mounted on the steerable frame. The front wheels are separated from each other a distance smaller than the separation of the rear wheels. A pivot connects the steerable frame to the main frame, the lower end of the axis of the pivot being in front of the upper end of the axis such that any angular displacement of the steerable frame with respect to the main frame causes a lateral displacement of the ground-engaging portion of the front wheels. Exhaust gases are directed from the motor to the rear of the main frame through a pivotal connection between a manifold and tail pipe, the pivotal connection being in axial alignment with the steering axis of the steerable frame. Forward motion of the vehicle is provided by a belt-driven torque converter while reverse direction is provided by a pulley mounted on a pivotally supported arm which, when engaged, provides torque to the driven wheels greater than the torque provided by the forward-driving torque converter, hence causing the motor vehicle to move in a rearward direction.
    • 公开了一种机动车辆,其具有主框架,后框架基本上固定地对准支撑主框架,设置在主框架的前端的可操纵框架包括与可转向框架固定对准的前轮和安装在可转向的框架上的马达 帧。 前轮彼此分开,距离小于后轮的分离距离。 枢轴将可转向框架连接到主框架,枢轴的轴线的下端在轴的上端的前方,使得可转向框架相对于主框架的任何角位移导致横向位移 前轮的地面接合部分。 废气通过歧管和尾管之间的枢转连接从电动机引导到主框架的后部,该枢转连接件与可转向框架的转向轴线轴向对准。 车辆的前进运动由皮带驱动的变矩器提供,而反向方向由安装在枢转支撑臂上的皮带轮提供,该滑轮在接合时向从动轮提供大于由前进驱动扭矩提供的扭矩 转换器,从而使机动车辆向后移动。
    • 10. 发明授权
    • Optical fiber switch
    • 光纤开关
    • US4407562A
    • 1983-10-04
    • US432254
    • 1982-10-01
    • William C. Young
    • William C. Young
    • G02B6/35G02B6/36
    • G02B6/3508G02B6/355G02B6/3572G02B6/3582G02B6/3652G02B6/3676G02B6/3692
    • Switching between optical fibers is achieved through the use of a fixed (101) and a moveable (102) housing disposed within a slotted support member (103, 205). The fixed and moveable housings respectively contain first (104, 105) and second (108) sets of optical fibers. Each housing has two grooved (204) and parallel exterior surfaces. Both housings are disposed in substantial abutment to one another in the slotted support member with both sets of optical fibers parallel to one another. The sidewalls of the slot are grooved to be the mating opposite of the grooved housing surfaces. The first housing is fixedly positioned in the slot by the mutual engagement of the grooved exterior housing surfaces and the grooved sidewalls. Switching between optical fibers is accomplished by the translation of the moveable housing surfaces to either of two positions which axially aligns a predetermined number of optical fibers in the first and second sets. Each position of the moveable housing is precisely determined by the engagement of one grooved exterior housing surface and one grooved sidewall.
    • 通过使用设置在开槽支撑构件(103,205)内的固定(101)和可移动(102)壳体来实现光纤之间的切换。 固定和可移动的壳体分别包含第一(104,105)和第二(108)组光纤。 每个外壳有两个凹槽(204)和平行的外表面。 两个壳体在开槽的支撑构件中彼此大体上邻接地布置,两组光纤彼此平行。 槽的侧壁开槽成与槽形壳体表面相配合。 第一壳体通过开槽的外部壳体表面和带槽侧壁的相互接合而固定地定位在槽中。 光纤之间的切换是通过将可移动壳体表面平移到在第一和第二组中轴向对准预定数量的光纤的两个位置中的任一个来实现的。 可移动壳体的每个位置通过一个带槽的外部壳体表面和一个带槽的侧壁的接合而精确地确定。