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81.
公开(公告)号:US08061274B1
公开(公告)日:2011-11-22
申请号:US12359659
申请日:2009-01-26
Applicant: John Hayes , Daniel Smith
Inventor: John Hayes , Daniel Smith
CPC classification number: F42B12/34 , F42B33/001
Abstract: A less than lethal projectile and method of producing the same comprising of a sealed filled polymeric pouch containing a shot within. The sealed filled polymeric pouch is formed in a form, fill, and seal machine. An automatic loading ammunition machine is fed empty shell casings; the ammunition machine automatically loads the empty shell casing with pre-determined quantities of wad, primer, and gun powder, and subsequently moves the sealed filled polymeric pouch into a projectile compartment of the empty shell casing producing a fully-loaded shell casing to be loaded into a barrel of an ammunition. The polymeric pouch is capable of being inserted into various shell casings depending on the intended use thus allowing for officers and soldiers to select from an array of munitions when confronted with a situation where less than lethal means are required.
Abstract translation: 一种不太致命的射弹及其制造方法,包括一个密封的填充聚合物袋,其中包含一个镜头。 密封填充的聚合物袋形成为形式,填充和密封机器。 自动加载弹药机为空壳壳; 弹药机自动加载空壳体,预先确定的量,底漆和喷枪粉末,然后将密封的填充聚合物袋移动到空壳壳体的抛射室中,从而产生一个满载的壳体 进入一桶弹药。 根据预期用途,聚合物袋能够插入各种壳体中,从而允许军官和士兵在面对需要少于致命手段的情况下从一系列弹药中进行选择。
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82.
公开(公告)号:US07969706B2
公开(公告)日:2011-06-28
申请号:US12573277
申请日:2009-10-05
Applicant: Russell J. Heeter , Jeffrey D. Morgan , Kevin D. Pate , John R. Porter , Darrin M. Hansen , Steven C. Steckmyer , Thu A. Nguyen , Dale B. Winter , Daniel Smith , Harry E. Townsend
Inventor: Russell J. Heeter , Jeffrey D. Morgan , Kevin D. Pate , John R. Porter , Darrin M. Hansen , Steven C. Steckmyer , Thu A. Nguyen , Dale B. Winter , Daniel Smith , Harry E. Townsend
IPC: H02H1/00
CPC classification number: B64D45/02 , B64D37/32 , Y02T50/44 , Y10T29/49622
Abstract: A lightning-protected conductive composite fuel tank includes a conductive material arrayed on an outer surface to at least partially cover a fastener centerline. Through holes extend along the fastener centerline through the conductive material and the underlying fuel tank shell. These through holes are countersunk into the fuel tank shell to a depth such that a fastener in a through hole will avoid electrical continuity or communication with the conductive material on the fuel tank outer surface. The gap in the countersunk through holes, between the fastener heads and the coextensive outer surface of the fuel tank, is filled with a dielectric or nonconductive material.
Abstract translation: 雷电保护的导电复合燃料箱包括排列在外表面上以至少部分地覆盖紧固件中心线的导电材料。 通孔通过导电材料和下面的燃料箱壳沿着紧固件中心线延伸。 这些通孔被沉入燃料箱壳体中以使得贯通孔中的紧固件将避免与燃料箱外表面上的导电材料的电连接或连通的深度。 在紧固件头部和燃料箱的共同延伸的外表面之间的沉孔通孔中的间隙填充有电介质或非导电材料。
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公开(公告)号:US20110049169A1
公开(公告)日:2011-03-03
申请号:US12446495
申请日:2007-08-31
Applicant: Robert Rosnak , Son Luong , Daniel Nelson , Michael Cassiano Pereira , Troy Shubert , Daniel Smith
Inventor: Robert Rosnak , Son Luong , Daniel Nelson , Michael Cassiano Pereira , Troy Shubert , Daniel Smith
CPC classification number: A47G19/2266 , A47G21/18 , B65D47/06 , B65D51/1672 , B65D81/3841 , B65D2547/066
Abstract: A vented closure is provided for use on a liquid container. The body of the closure (16) includes a dispensing port and a vent (28) extending therethrough with the vent adjacent the dispensing port (26). The tube (32) extends through the dispensing port (26) and has a flange (38) extending laterally therefrom, engaging the outer surface (20) of the closure body. A flexible seal (40) member is positioned on the tube (32), spaced from the inner surface (28) and having a frusto-conical shape where the inner end (40a) of the member is formed at the tube (32). The outer end (40b) is spaced away from the tube (32) and engages the inner surface (28) of the closure body (16), forming a hollow area (41) between the member (40) and the tube (32). The flexible seal member (40) is movable radially away from the tube (32) and away from the inner surface (28) to the inflow of air through the vent and over the flexible seal member (40).
Abstract translation: 提供了一个用于液体容器的通风盖。 封闭件(16)的主体包括分配端口和通过其邻近分配端口(26)延伸穿过的通气孔(28)。 管(32)延伸穿过分配端口(26)并且具有与封闭体的外表面(20)接合的凸缘(38)。 柔性密封件(40)构件定位在管(32)上,与内表面(28)间隔开并且具有截头圆锥形状,其中构件的内端(40a)形成在管(32)处。 外端(40b)与管(32)间隔开并与封闭体(16)的内表面(28)接合,形成在构件(40)和管(32)之间的中空区域(41) 。 柔性密封构件(40)可径向远离管(32)移动并且远离内表面(28)移动到空气通过通风口并在柔性密封构件(40)上方流入。
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公开(公告)号:US20090298034A1
公开(公告)日:2009-12-03
申请号:US12131980
申请日:2008-06-03
Applicant: David Parry , Daniel Parry , Daniel Pipito , Brian Letizia , Morris Ravich , Daniel Smith
Inventor: David Parry , Daniel Parry , Daniel Pipito , Brian Letizia , Morris Ravich , Daniel Smith
IPC: G09B23/34
Abstract: A wearable wound simulant including a skin replica having the appearance of a particular region of the human body, examples including but not limited to a leg, arm, torso, or stomach, and a wound disposed along the skin replica is described. The skin replica includes a plurality of bendable layers arranged to replicate the visual and tactile properties of human tissues and at least one tear resistant layer comprised of a fabric material disposed between two bendable layers. The tear resistant layers are less stretchable than the bendable layers so as to prevent the bendable layers from stretching beyond their failure threshold. Design elements of the present invention facilitate the visual, tactile, and functional aspects of a battlefield wound so as to allow for the diagnosis of injuries associated therewith. Furthermore, the present invention allows for the insertion of a needle or the like, the probing and/or packing of wounds, the compression of vascular simulants to stop or limit blood loss, and the replacement of dislodged organs.
Abstract translation: 描述了包括具有人体特定区域的外观的皮肤复制品的可穿戴伤口模拟物,包括但不限于腿,臂,躯干或胃的实例以及沿着皮肤复制品布置的伤口。 皮肤复制品包括多个可弯曲的层,其布置成复制人体组织的视觉和触觉特性以及由布置在两个可弯曲层之间的织物材料构成的至少一个抗撕裂层。 抗撕裂层比可弯曲层具有更小的拉伸性,从而防止可弯曲层伸展超过它们的破坏阈值。 本发明的设计元件有助于战场伤口的视觉,触觉和功能方面,从而允许诊断与之相关的伤害。 此外,本发明允许插入针或类似物,伤口的探测和/或包装,血管模拟物的压缩以停止或限制失血,以及更换移位的器官。
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公开(公告)号:US07524127B2
公开(公告)日:2009-04-28
申请号:US11301337
申请日:2005-12-12
Applicant: Aidan Petrie , Daniel Nelsen , Daniel Smith , Michael C. Pereira , Kenneth Zins
Inventor: Aidan Petrie , Daniel Nelsen , Daniel Smith , Michael C. Pereira , Kenneth Zins
CPC classification number: B42F13/26
Abstract: A binder mechanism includes a rotatable support having ring segments that can be locked in a closed configuration. The binder mechanism includes a horizontal and/or a flush mounted push button that opens and/or unlocks the rotatable support. The push button acts on a ramped slider that causes the rotatable support to rotate open. An over-center arrangement aids in maintaining the binder mechanism closed or opened.
Abstract translation: 装订机构包括具有环形段的可旋转支撑件,该环形段可被锁定在关闭构造中。 装订机构包括打开和/或解锁可旋转支撑件的水平和/或平齐安装的按钮。 按钮作用在斜坡滑块上,导致可旋转的支撑件旋转打开。 超中心布置有助于保持装订机构关闭或打开。
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公开(公告)号:US07474968B2
公开(公告)日:2009-01-06
申请号:US11479092
申请日:2006-06-30
Applicant: Junhua Ding , Kaveh Zarkar , Ali Shajii , Daniel Smith
Inventor: Junhua Ding , Kaveh Zarkar , Ali Shajii , Daniel Smith
CPC classification number: G01F25/0038 , G01F25/0053
Abstract: A flow verifier for verifying measurement by a fluid delivery device under test (DUT) includes a chamber configured to receive a flow of the fluid from the DUT, at least one temperature sensor to provide gas temperature in the chamber, at least one pressure transducer to provide gas pressure in the chamber, and a critical flow nozzle located upstream of the chamber along a flow path of the fluid from the DUT to the chamber. The critical flow nozzle and the flow verification process are configured to maintain the flow rate of the fluid through the nozzle at the critical flow condition such that the flow rate through the nozzle is substantially constant and substantially insensitive to any variation in pressure within the chamber downstream of the nozzle. Therefore, the varying chamber pressure during the flow verification period has substantially no impact on the downstream pressure of the DUT, and the external volume between the flow verifier and the DUT is substantially irrelevant to the flow verification calculation.
Abstract translation: 用于验证被测流体输送装置(DUT)的测量的流量检验器包括:腔室,被配置为从DUT接收流体流;至少一个温度传感器,用于在腔室中提供气体温度;至少一个压力传感器, 在腔室中提供气体压力,以及临界流动喷嘴,其沿着流体从DUT到腔室的流动路径位于腔室的上游。 临界流喷嘴和流量验证过程被配置为保持流体通过喷嘴处于临界流动状态的流速,使得通过喷嘴的流速基本上恒定,并且对腔室下游的任何压力变化基本上不敏感 的喷嘴。 因此,流动验证期间的变化室压力对DUT的下游压力基本上没有影响,并且流体验证器和DUT之间的外部体积与流动验证计算基本上无关。
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公开(公告)号:US07463991B2
公开(公告)日:2008-12-09
申请号:US11367641
申请日:2006-03-03
Applicant: Ali Shajii , Daniel Smith
Inventor: Ali Shajii , Daniel Smith
CPC classification number: G01F25/0038 , G01F25/0053
Abstract: A flow verifier for verifying measurement of a flow rate of a fluid by a device includes a flow restrictor that renders the flow rate verification substantially insensitive to elements upstream of the flow restrictor. The flow verifier includes a vessel that receives a flow of the fluid from the device, and a pressure sensor that measures pressure of the fluid within the vessel. An outlet valve regulates flow of the fluid out of the vessel. The flow restrictor is located adjacent to and upstream of the vessel, along a flow path of the fluid. The flow restrictor restricts the flow of the fluid so as to induce a shock in the flow path of the fluid, and sustains the shock during a time period sufficient to render the flow rate verification substantially insensitive to the elements upstream of the flow restrictor.
Abstract translation: 用于验证由装置测量流体的流量的流量验证器包括流量限制器,其使流量验证对于限流器上游的元件基本上不敏感。 流量验证器包括容纳来自装置的流体流的容器以及测量容器内流体压力的压力传感器。 出口阀调节流体流出容器的流量。 流量限制器沿着流体的流动路径位于容器的旁边和上游。 限流器限制流体的流动,以便在流体的流动路径中引起冲击,并且在足以使流量验证对于限流器上游的元件基本上不敏感的时间段内维持冲击。
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公开(公告)号:USD580244S1
公开(公告)日:2008-11-11
申请号:US29305066
申请日:2008-03-13
Applicant: Daniel Smith
Designer: Daniel Smith
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公开(公告)号:US20080021545A1
公开(公告)日:2008-01-24
申请号:US10597899
申请日:2005-02-14
Applicant: Darrell Reneker , Daniel Smith , Woraphon Kataphinan
Inventor: Darrell Reneker , Daniel Smith , Woraphon Kataphinan
CPC classification number: A61F2/06 , A61F2/0063 , A61F2/82 , A61F2002/0086 , A61F2002/009 , A61L27/34 , A61L31/14 , A61L2400/12 , Y10T442/10
Abstract: The present invention relates to nanofibrous coatings on medical devices such a surgical mesh or stent, wherein the coating is mechanically attached to the device. The principal mechanism for attaching the coating is through causing the fibers to permeate and entangle with the substrate.
Abstract translation: 本发明涉及医疗装置如外科手术网或支架上的纳米纤维涂层,其中涂层机械地连接到装置上。 用于附着涂层的主要机理是通过使纤维渗透并与基底缠结。
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公开(公告)号:US20070106231A1
公开(公告)日:2007-05-10
申请号:US10580878
申请日:2004-11-23
Applicant: Jeremy Snow , F. Mark Ferguson , Daniel Smith , Roy Barros , Donald Solomon , David Thorne , Bradley Vanderstek
Inventor: Jeremy Snow , F. Mark Ferguson , Daniel Smith , Roy Barros , Donald Solomon , David Thorne , Bradley Vanderstek
IPC: A61M5/00
CPC classification number: A61M25/0618 , A61B2090/0801 , A61M5/158 , A61M5/3273 , A61M5/46 , A61M39/0208 , A61M2005/1581 , A61M2005/3247 , A61M2005/325
Abstract: A medical needle shield apparatus is provided that includes a needle hub (104 ) having an outer needle cannula (103) extending therefrom. An inner needle (106) is disposed for slidable movement with the outer needle cannula (103). At least one shield (101) is extensible from a retracted position to an extended position to enclose a distal end of the inner needle (101). The shield (101) includes a binding member (105) disposed within the shield (101) and defines binding surfaces (122) that form an aperture (138) configured for slidable receipt of the inner needle (106). The binding member (105) includes a binding member reset surface (107) aligned with a reset surface (108) for engagement therewith to allow reuse of a shielded needle apparatus.
Abstract translation: 提供了一种医疗针护罩装置,其包括具有从其延伸的外针套管(103)的针座(104)。 内针(106)设置成可与外针套管(103)一起滑动。 至少一个护罩(101)从缩回位置延伸到延伸位置以包围内针(101)的远端。 护罩(101)包括设置在护罩(101)内的装订构件(105),并且限定形成用于可滑动地接收内针(106)的孔(138)的装订表面(122)。 装订构件(105)包括与复位表面(108)对准的装订构件复位表面(107),用于与其配合以允许使用屏蔽针装置。
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