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    • 8. 发明申请
    • DEHYDRATED, PULP-BASED PROJECTILE
    • 脱水,基于PULP的项目
    • US20110244996A1
    • 2011-10-06
    • US12899442
    • 2010-10-06
    • Gabriel CarlsonHanjin ParkMichael Bernstein
    • Gabriel CarlsonHanjin ParkMichael Bernstein
    • F42B6/00B29C41/14F42B12/72
    • F42B12/74F42B6/00F42B6/10
    • A dehydrated, pulp-based projectile is described. The projectile is pulp material that is molded and dehydrated into a projectile shape to form the dehydrated, pulp-based projectile. In operation, the pulp-based projectile can be positioned within the bullet chamber (e.g., gun clip) of a toy gun and then rehydrated. For example, the toy gun or bullet chamber can be dipped in water, which would cause the projectile to absorb the water and soften. An advantage to being pulp based is that the projectile is more solid than foam and, as such, generally shoots straighter and further than foam However, when rehydrated, the projectile has the propensity to stick to its target as it becomes pliable and sticky through rehydration.
    • 描述了脱水的纸浆抛射体。 抛射体是纸浆材料,其被模制和脱水成抛射体形状以形成脱水的纸浆基抛射体。 在操作中,基于纸浆的抛射体可以位于玩具枪的子弹室(例如枪夹)内,然后再水化。 例如,玩具枪或子弹室可以浸入水中,这将导致射弹吸收水分并软化。 以纸浆为基础的优点是抛射体比泡沫更坚固,因此通常比泡沫更直接地射出。然而,当再水化时,抛射体具有粘附到其目标上的倾向,因为它变得柔软并且通过再水化粘附 。
    • 9. 发明授权
    • Method for manufacture of a multi-part projectile for gun ammunition and product produced thereby
    • 制造用于枪弹的多部件弹药和由此生产的产品的方法
    • US07000524B2
    • 2006-02-21
    • US10672513
    • 2003-09-26
    • Harold F. Beal
    • Harold F. Beal
    • F42B12/72
    • F42B12/745F42B12/74Y10T29/49
    • A method for the manufacture of a projectile for small-bore weapons ammunition comprising the steps of producing a compact from a mixture of a heavy metal powder and a light metal powder at room temperature, and without further treatment of the compact, introducing the compact into a metal jacket, including pressing the compact into the jacket with a pressure sufficient to ensure substantially complete filling of a selected portion of the jacket by the compact. The compacts fill less that the entire volume of the jacket, leaving a portion of the jacket void of the compact. Prior to the pressing of the compact into the jacket, a disc having an outer diameter substantially equal to the internal diameter of said jacket adjacent the open end thereof is introduced into the jacket. Thereafter, that portion of the jacket adjacent its open end is infolded toward the longitudinal centerline of the jacket to at least substantially close the open end of the jacket.A unique projectile and a round of ammunition formed with the projectile are disclosed.
    • 一种用于制造小口径武器弹药弹丸的方法,包括以下步骤:在室温下由重金属粉末和轻金属粉末的混合物制备压块,并且不进一步处理压块,将压块引入 一种金属护套,包括将压块压入夹套中,其压力足以确保紧凑件基本上完全填充套件的选定部分。 紧凑型体积较少地填满了护套的整个体积,使得护套的一部分没有紧凑件。 在将压制体压入夹套之前,将外径基本上等于所述护套的与其开口端相邻的内径的盘引入夹套中。 此后,护套的与其开口端相邻的部分朝着护套的纵向中心线折叠,至少基本上封闭护套的开口端。
    • 10. 发明授权
    • Projectile and method for producing it
    • 弹丸及其制造方法
    • US6119600A
    • 2000-09-19
    • US5850
    • 1998-01-12
    • Jakob Burri
    • Jakob Burri
    • F42B12/06B29C45/14F42B10/16F42B12/72F42B12/78F42B14/06
    • F42B12/78
    • By means of this method it is possible to produce projectiles with single- or multi-element projectile bodies of different shapes and sizes simply and in a time-saving way. The jacket (1) of the projectile consists of a projectile tip (3), which is fixedly connected with a projectile casing (2) and has a centering device (5, 9) in its interior, in which the projectile body (6) is guided and maintained. The projectile body (6) is essentially cylindrical or has a diameter which increases toward the rear. The back of the projectile casing (2) is closed by means of a sealing body (15), which partially extends around the projectile body (6). In the course of producing the projectile, the projectile tip (3) is injection-molded to the projectile casing (2) in a first step, and in a second step the projectile body (6) is pushed into the centering device (5, 9). In a third step the sealing body (15) is injected into the projectile casing (2), after which the projectile body (6) is completely enclosed in the injected material at the front at a shoulder (11), laterally, and at the rear.
    • 通过这种方法,可以简单地并且以节省时间的方式来生产具有不同形状和尺寸的单元件或多元件射弹体的抛射体。 射弹的护套(1)由射弹头(3)组成,弹头(3)与射弹套管(2)固定连接,其内部具有定心装置(5,9),射弹体(6) 被引导和维护。 射弹体(6)基本上是圆柱形的或具有朝向后方增加的直径。 射弹壳体(2)的后部通过密封体(15)封闭,该密封体部分地围绕射弹体(6)延伸。 在弹丸生产过程中,射弹头(3)在第一步注射成型到射弹套管(2),第二步将射弹体(6)推入定心装置(5, 9)。 在第三步骤中,将密封体(15)注射到射弹壳体(2)中,之后射弹体(6)在肩部(11)的前部完全封闭在注射材料中,横向和 后。