Abstract:
A rubber fragmentation grenade has a body containing an explosive charge, a fuse assembly connected to the body, an elastomeric outer layer at least partly encompassing the body, and the outer layer being scored to provide a plurality of segments. The segments may be rectangular. Each segment may have a thickness, and may have a width greater than the thickness. The thickness may be at least one-third of the width. The body may include a cylindrical portion, and the outer layer may be a cylindrical sleeve encompassing the cylindrical portion. The segments may include a ring of segments. Each ring may include six segments. The explosive charge may be an elongated shape defining a charge axis and having opposed ends, the elastomeric outer layer being a cylindrical form being concentric with the charge. The elastomeric outer layer may extend beyond the ends of the charge.
Abstract:
A rubber fragmentation grenade has a body containing an explosive charge, a fuse assembly connected to the body, an elastomeric outer layer at least partly encompassing the body, and the outer layer being scored to provide a plurality of segments. The segments may be rectangular. Each segment may have a thickness, and may have a width greater than the thickness. The thickness may be at least one-third of the width. The body may include a cylindrical portion, and the outer layer may be a cylindrical sleeve encompassing the cylindrical portion. The segments may include a ring of segments. Each ring may include six segments. The explosive charge may be an elongated shape defining a charge axis and having opposed ends, the elastomeric outer layer being a cylindrical form being concentric with the charge. The elastomeric outer layer may extend beyond the ends of the charge.
Abstract:
A grenade fuze assembly includes a fuze body and a striker lever fixed to the fuze body with a pull pin. A circular pull ring is attached to the pull pin. A detent device is disposed on a top portion of the fuze body and a top portion of the striker lever. The detent device includes four sides with a boss formed on an exterior of one of the four sides. The boss includes a curved slot for receiving and holding the pull ring. A pair of opposed locking tabs on opposite interior sides of the detent device engage the top portion of the fuze body. The detent device secures the pull ring to prevent accidental removal of the pull pin when the grenade is dropped and to prevent undesired noise cause by movement of the pull pin and pull ring.
Abstract:
A re-locking device for a rocker arm detonator (1) of an armament, such as a hand grenade, irritation body etc., is formed by a security mechanism (3), which facilitates a repeat locking after activation of the armament. The re-locking device includes at least one profile part (4, 4′), which is pivotably arranged and able to engage with the armament by means of an expedient (9), especially with the ignition head (5, 5′) and the rocker arm (2).
Abstract:
A grenade having control means for arming the grenade in response to a predetermined free flight thereof and for firing an armed grenade in response to interruption of said free flight of the grenade, said control means having a safety time factor for preventing arming of the grenade in response to short periods of free flight. Means can also be provided for preventing unintentional operation of the grenade.
Abstract:
A safety fuze for use in military and commercial applications, includes a fuze body that is attached to a trigger mechanism, an energetic train contained within the fuze body, and a non-energetic fuze delay mixture that is formed in a rod form so that it can dropped inside the fuze body, without modification to the other components of the safety fuze. Preferably, the non-energetic fuze delay mixture is made of foamed celluloid.
Abstract:
The present invention relates to a hand grenade comprising a main body (10), an actuator (14) releasably fixed to the main body (10), an actuator-ejection mechanism, and a charge to be released, which includes an automatic-identification device (34) embedded in the actuator. The invention further relates to a grenade actuator of the EOT-type (Espoleta de Ogiva de Tempo, time fuse point), which comprises an automatic-identification device (34) embedded therein. The present invention can also materialize in the form of a method of manufacturing a handgrenade actuator, according to which it is provided a housing for an automatic-identification device in the actuator body. Indeed, the method of manufacturing the actuator further includes providing said housing with a cylindrical shape and then inserting an equally cylindrical automatic-identification device into said housing.
Abstract translation:本发明涉及一种手榴弹,包括主体(10),可释放地固定到主体(10)的致动器(14),致动器弹出机构和要释放的电荷,其包括自动识别 装置(34)嵌入致动器。 本发明还涉及EOT型(Espoleta de Ogiva de Tempo,时间熔丝点)的手榴弹致动器,其包括嵌入其中的自动识别装置(34)。 本发明还可以以制造手榴弹致动器的方法的形式实现,根据该方法,其设置有用于致动器主体中的自动识别装置的壳体。 实际上,制造致动器的方法还包括为所述壳体提供圆柱形形状,然后将同等圆柱形的自动识别装置插入所述壳体。
Abstract:
The invention relates to an airburst hand grenade. Existing constructions of fragmentation grenades all have one basic shortcoming; the active fragments are very unlikely to find the target owing to the fact that detonation takes place with the hand grenade lying on the ground, whereby the effect does not occur. The invention solves the above problem by a hand grenade being caused to jump 1-2 m above the ground before detonating. This means that the fragments will be spread essentially horizontally and at an angle (v) to the ground and consequently attack the target from above, which results in a many times larger target surface and the capability of spreading fragments behind a shelter. The hand grenade comprises a mechanism (1), a detonator (2), a warhead (14) and support legs (9) for raising the hand grenade from a horizontal position to an upright position. The detonator (2) comprises a delay unit (3), an upper charge (4) which can release the support legs (9) by removing a locking cover (8), a jump charge (5) which can throw the warhead (14) above the ground, and an explosive cartridge (6) which can initiate a main charge (13).