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    • 2. 发明授权
    • Fiber optic weapon sight
    • 光纤武器瞄准镜
    • US09335118B1
    • 2016-05-10
    • US14592185
    • 2015-01-08
    • Jason Stewart Jackson
    • Jason Stewart Jackson
    • F41G1/00F41G1/34
    • F41G1/345
    • The embodiments of the disclosed invention relate to fiber optic weapon sights that use a reflector to direct ambient light to a fiber optic rod, and thus can provide weapon sights that are bright, or at least visible, in a variety of lighting condition. In one instance, the reflector can have a concave shape, such as a spherical or parabolic shape, that can focus ambient light on the fiber optic rod and thereby significantly increase the brightness of the weapon sight. The embodiments of the present invention can accordingly provide enhanced fiber optic front and/or rear sights for weapons including rifles, pistols, and shotguns.
    • 所公开的发明的实施例涉及使用反射器将环境光引导到光纤棒的光纤武器瞄准镜,并且因此可以在各种照明条件下提供亮度或至少可见的武器瞄准具。 在一种情况下,反射器可以具有凹入形状,例如球形或抛物线形状,其可以将环境光聚焦在光纤棒上,从而显着增加武器瞄准器的亮度。 因此,本发明的实施例可以提供用于包括步枪,手枪和猎枪的武器的增强的光纤前视和/或后视。
    • 3. 发明申请
    • Expanding projectile
    • 扩大射弹
    • US20080000378A1
    • 2008-01-03
    • US11480694
    • 2006-07-01
    • Jason Stewart Jackson
    • Jason Stewart Jackson
    • F42B10/00
    • F42B12/34
    • A projectile comprising a body having a channel, one or more recesses in the channel, a plunger in the channel, and a fluid in the channel is provided. When the projectile impacts a target, the plunger is driven down the channel, exerting a force on the fluid. The fluid, in turn, exerts fluidic pressure within the recesses, promoting rapid yet predictable expansion of the projectile. Another embodiment of the present invention provides a projectile utilizing a non-Newtonian fluid to optimize expansion of the projectile upon impacting a target.
    • 一种抛射体,包括具有通道的主体,通道中的一个或多个凹槽,通道中的柱塞,以及通道中的流体。 当弹丸撞击目标时,柱塞被驱动向下通道,对流体施加力。 流体又在凹槽内发挥流体压力,促进弹丸的快速但可预测的扩张。 本发明的另一个实施例提供一种利用非牛顿流体的弹丸,以在撞击目标时优化弹丸的扩张。
    • 4. 发明授权
    • Non-newtonian projectile
    • 非牛顿射弹
    • US08397641B1
    • 2013-03-19
    • US13158382
    • 2011-06-11
    • Jason Stewart Jackson
    • Jason Stewart Jackson
    • F42B30/02F42B12/74F42B12/34
    • F42B12/34F42B12/74
    • A projectile is provided comprising a body with a channel that contains a non-Newtonian fluid. In various embodiments a plunger is located in the channel, wherein the plunger transmits a force to the non-Newtonian fluid upon interacting with a target, causing the non-Newtonian fluid to exert a pressure in the channel, and wherein the viscosity of the non-Newtonian fluid changes upon interacting with the target. By way of non-limiting example, the non-Newtonian fluid of embodiments of the present invention can comprise a shear-thickening fluid that increases its viscosity with at least the rate of shear upon interacting with the target.
    • 提供一种抛射体,其包括具有包含非牛顿流体的通道的主体。 在各种实施例中,柱塞位于通道中,其中柱塞在与靶物相互作用时向非牛顿流体传递力,导致非牛顿流体在通道中施加压力,并且其中非 - - 与目标物相互作用时,牛顿流体发生变化。 作为非限制性实例,本发明实施方案的非牛顿流体可以包含剪切增稠流体,其在与目标物相互作用时至少以剪切速率增加其粘度。
    • 5. 发明授权
    • Poppet valve and engine using same
    • 提升阀和发动机使用相同
    • US07647902B1
    • 2010-01-19
    • US12146639
    • 2008-06-26
    • Jason Stewart Jackson
    • Jason Stewart Jackson
    • F01L1/28F02M35/10
    • F01L15/14F01L1/28Y02T10/146
    • One embodiment of the present invention provides a poppet valve offering an increased valve area, comprising an outer valve head having an outer valve port and an inner valve head having an inner valve port. The inner valve head is rotatable relative to the outer valve head to align the inner and outer valve ports, thereby increasing the effective valve area of the poppet valve. The path created by aligning the inner and outer valve ports can be designed to mix air flowing through the poppet valve. Another embodiment of the present invention provides a valve guide containing a poppet valve having a guide pin, wherein the guide pin rests within a groove in the valve guide. As the poppet valve moves through the valve guide, the groove controls movement of the guide pin and causes the poppet valve to rotate relative to the valve guide.
    • 本发明的一个实施例提供一种提供增加的阀面积的提升阀,包括具有外阀口的外阀头和具有内阀口的内阀头。 内阀头可相对于外阀头旋转,以使内外阀门对准,从而增加提升阀的有效阀面积。 通过对准内阀和外阀口产生的路径可以设计成混合通过提升阀流动的空气。 本发明的另一个实施例提供一种阀引导件,其包含具有引导销的提升阀,其中引导销位于阀引导件的凹槽内。 当提升阀通过阀导向件移动时,凹槽控制导销的运动,并使提升阀相对于阀导向件旋转。
    • 6. 发明授权
    • Poppet valve and engine using same
    • 提升阀和发动机使用相同
    • US07398748B1
    • 2008-07-15
    • US11941923
    • 2007-11-16
    • Jason Stewart Jackson
    • Jason Stewart Jackson
    • F01L1/28F02N3/00
    • F01L15/14F01L1/28Y02T10/146
    • One embodiment of the present invention provides a poppet valve offering an increased valve area, comprising an outer valve head having an outer valve port and an inner valve head having an inner valve port. The inner valve head is rotatable relative to the outer valve head to align the inner and outer valve ports, thereby increasing the effective valve area of the poppet valve. The path created by aligning the inner and outer valve ports can be designed to mix air flowing through the poppet valve. Another embodiment of the present invention provides a valve guide containing a poppet valve having a guide pin, wherein the guide pin rests within a groove in the valve guide. As the poppet valve moves through the valve guide, the groove controls movement of the guide pin and causes the poppet valve to rotate relative to the valve guide.
    • 本发明的一个实施例提供一种提供增加的阀面积的提升阀,包括具有外阀口的外阀头和具有内阀口的内阀头。 内阀头可相对于外阀头旋转,以使内外阀门对准,从而增加提升阀的有效阀面积。 通过对准内阀和外阀口产生的路径可以设计成混合通过提升阀流动的空气。 本发明的另一个实施例提供一种阀引导件,其包含具有引导销的提升阀,其中引导销位于阀引导件的凹槽内。 当提升阀通过阀导向件移动时,凹槽控制导销的运动,并使提升阀相对于阀导向件旋转。
    • 8. 发明授权
    • Non-newtonian projectile
    • 非牛顿射弹
    • US07966937B1
    • 2011-06-28
    • US12348189
    • 2009-01-02
    • Jason Stewart Jackson
    • Jason Stewart Jackson
    • F42B30/02F42B12/74F42B12/34
    • F42B12/34F42B12/74
    • A projectile is provided comprising a body with a channel that contains a non-Newtonian fluid. In various embodiments a plunger is located in the channel, wherein the plunger transmits a force to the non-Newtonian fluid upon interacting with a target, causing the non-Newtonian fluid to exert a pressure in the channel, and wherein the viscosity of the non-Newtonian fluid changes upon interacting with the target. By way of non-limiting example, the non-Newtonian fluid of embodiments of the present invention can comprise a shear-thickening fluid that increases its viscosity with at least the rate of shear upon interacting with the target.
    • 提供一种抛射体,其包括具有包含非牛顿流体的通道的主体。 在各种实施例中,柱塞位于通道中,其中柱塞在与靶物相互作用时向非牛顿流体传递力,导致非牛顿流体在通道中施加压力,并且其中非 - - 与目标物相互作用时,牛顿流体发生变化。 作为非限制性实例,本发明实施方案的非牛顿流体可以包含剪切增稠流体,其在与目标物相互作用时至少以剪切速率增加其粘度。
    • 10. 发明授权
    • Fiber optic weapon sight
    • 光纤武器瞄准镜
    • US09587910B1
    • 2017-03-07
    • US15149235
    • 2016-05-09
    • Jason Stewart Jackson
    • Jason Stewart Jackson
    • F41G1/00F41G1/01F41G1/02F41G1/10
    • F41G1/01F41G1/02F41G1/10F41G1/345
    • The embodiments of the disclosed invention relate to fiber optic weapon sights that use a reflector to direct ambient light to a fiber optic rod and thus provide weapon sights that are bright in any lighting condition. In one instance, the reflector can have a concave shape, such as a spherical or parabolic shape, that can focus ambient light on the fiber optic rod and thereby significantly increase the brightness of the weapon sight. The embodiments of the present invention can accordingly provide enhanced fiber optic front and/or rear sights for weapons including rifles, pistols, and shotguns.
    • 所公开的发明的实施例涉及使用反射器将环境光引导到光纤棒的光纤武器瞄准镜,并且因此提供在任何照明条件下都是亮的武器瞄准具。 在一种情况下,反射器可以具有凹入形状,例如球形或抛物线形状,其可以将环境光聚焦在光纤棒上,从而显着增加武器瞄准器的亮度。 因此,本发明的实施例可以提供用于包括步枪,手枪和猎枪的武器的增强的光纤前视和/或后视。