Abstract:
The present invention comprises a golf ball launcher, the golf ball launcher comprising: a frame, a firing barrel, a firing slot, an air compressor, an accelerator housing and an acceleration mechanism comprising an upper belt mechanism and a lower belt mechanism.
Abstract:
A controllable launcher for propelling a payload through a predictable and repeatable trajectory to a desired height. The launcher has an energy source for propelling a carriage and a piston in substantially opposing directions and a controller for controlling the trajectory of the propelled payload to enable the payload to land gently at a safe impact distance from the edge of a destination structure.
Abstract:
Embodiments of the present disclosure include an apparatus including a tank for pneumatic gun comprising a fluid outlet, including an adapter that includes a first end attached to the tank, a second end comprising a fitting, wherein the fitting is capable of receiving a fluid hose, wherein the fluid hose is connected to a source of compressed fluid. The apparatus allows the gun to be fired from the source of compressed fluid. Other embodiments include a method of connecting the apparatus to a pneumatic gun, attaching the fluid hose to the fitting, and firing the gun.
Abstract:
The water rocket launch system is an automated system for launching multiple water rockets simultaneously with additional visual and auditory effects. The water rocket launch system includes a platform, with at least one launching base slidably mounted on an upper surface thereof. The at least one launching base is selectively and controllably driven to slide on the platform. At least one water rocket storage chamber is mounted on the platform, with the at least one water rocket storage chamber having an open interior region for receiving and storing a plurality of water rockets, and further having an open bottom end. A plurality of launching assemblies are mounted on the at least one launching base, so that the plurality of water rockets stored within the at least one water rocket storage chamber may be released thereon, with each launching assembly engaging and releasably supporting a respective one of the water rockets.
Abstract:
A fluid pulsator for a compressed gun (10) or water gun (30) is provided having a housing (404) with a fluid inlet (409) and a fluid outlet (410), an internal tube (405) reciprocally mounted within the housing, and a sealing member (406) reciprocally mounted to the internal tube. The housing and internal tube define a rearward fluid pressure chamber (412) and a forward fluid pressure chamber (413). The pulsator also has a variable flow fluid control valve which varies the flow of fluid passing into the forward fluid pressure chamber to regulate the action of the pulsator. The sealing member has a sealing head (431) having a first portion (432) sized and shaped to overlap the housing about the fluid outlet and a second portion sized and shaped to be received within the fluid outlet.
Abstract:
An air compressed gun (10) is provided having a stock (11), a barrel (12), a trigger (13) and a manual air pump (14). The gun also has a control valve (200) which controls the flow of compressed air into a magazine (202). The control valve includes an external tube (204), an internal tube (205) reciprocally mounted within the external tube, and a plunger (206) reciprocally mounted within the internal tube.
Abstract:
An air compressed gun (10) is provided having a stock (11), a barrel (12), a trigger (13) and a manual air pump (14). The gun also has a magazine (18) having a series of barrels (26) for holding several projectiles (P). An actuator (50) indexes the magazine with each shot of the gun. The triggering of the gun is controlled by a voice activated triggering system (215) which includes a microphone (216), a control circuit (220) and a control valve (219).