Practice weapon drilling / shotgun
A training weapon simulating real firearm functions addresses the limitation of independent practice by enabling flexible weapon handling training at home, facilitating test preparation.
Patent Information
- Application Number
- DE202024002076
- Authority / Receiving Office
- DE · DE
- Patent Type
- Utility models
- Current Assignee / Owner
- Filing Date
- 2024-11-04
- Publication Date
- 2025-06-05
- Estimated Expiration
- 2034-11-30
AI Technical Summary
Hunting students are unable to independently practice weapon handling skills at home due to legal restrictions on owning firearms, limiting their training opportunities.
A training weapon simulating the sequence of handling steps for a drilling rifle and shotgun is developed, made of wood or plastic, with features mimicking real weapon functions like barrel tilt, safety mechanisms, and trigger actuation.
Enables independent practice of weapon handling sequences, allowing candidates to prepare for hunting tests without real weapons, enhancing training flexibility and efficiency.
Smart Images

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Abstract
Description
Reason for the invention:In order to pass the weapon handling test, a jagd student must be able to operate the operator control elements of a jagd weapon required for the situation (such as, for example, securing the drilling) in the correct sequence (such as, for example, first securing, then piercing). In the test, the testee has to act on real weapons. In this case, Japanese exemplary situations are predefined for him.Up to now he can only practice (using buffer cartridges) functional ("sharp") weapons within the class of training within the instruction in the jagd school.These boundary conditions create the following problems:They prevent independent training at home, since the testee is not yet authorized to purchase / own weapons. The training pencil can therefore also not be extended in a self-controlled manner. The testee depends on the training times and the training training training means (weapons) of the jagd school.My utility model solves the particular problem of having no access to a teaching agent. On the basis of the features listed in the claims, the sequence of the handling steps and the manual activities necessary for this purpose of the two long weapons Drilling and Tile to be tested can be simulated in only one object, the "Training Weapon Drilling / Tile". It is preferably made of wood or plastic. It is excluded that it can be confused with a real weapon.An embodiment of the invention will be explained with reference to FIGS. 1 to 4.Subsequent modes of action can be specially performed with the training weapon drilling / flying:The training weapon can be opened (tilted) and closed analog to the real weapon (FIG. 1 )The tilting of the barrels is released by a steel sheet lever which pivots to the right analogously to the real weapon. The handles are the same as the real weapon (FIG. 3, partial section drawing). By setting the locking milling (1) on the opposite side, a left weapon can be simulated.The tilting of the barrels is also made possible by two lateral steel sheets ( 2) in which the front shaft is screwed by means of a screw / nut connection.The securing process of the tile is made possible analogously to the real weapon by actuating a slide (3) with the thumb forwards or backwards.The speed selection process of the drilling is made possible analogously to the real weapon by actuating a slide (3) with the thumb forwards or backwards. The component is the same, preferably a brass slide from furniture construction.Trigger actuation and simulation of the piercing and de-piercing process are made possible by a double trigger made of plastic (4). The test subject must be able to simulate the thumb grip for puncturing and the forceps grip for piercing. Both are due to the double plastic draw."Loading" and "unloading" of the shot runs is made possible by drilling and subsequent lateral chamfering. As a result, cylindrical bodies (dummy cartridge) can be installed and executed analogously to the real weapon FIG. 3(5).For the "loading and unloading" of the ball track, the front shaft is provided with a notch and a blind bore, as shown in FIG. 4(7). This can be seen as a partial cutaway drawing in the side view in FIG. 4.The securing process of the drilling is made possible analogously to the real weapon by actuating a lever (describes a "circle segment") with the thumb forwards ("unlocked") or backwards ("secured") FIG. 2 ( 8).List of reference numbers:1 Milled-out on the steel sheet lever 2 Lateral steel sheets 3 Slides 4 Plastic double draw-off 5 Cylindrical body in blind bore (plan view) 6 Cylindrical body in blind bore (side view) 7 Notch in the front shaft with blind bore and cylindrical body located therein (side view) 8 Securing lever 9 Beechwood bar with front shaft 10 Shotshells
Claims
Tilting lever: The tilting of the barrels is released by a lever (1) made preferably of steel sheet, approximately 2.5 mm thick, which sits just like the real weapon, preferably above the piston neck, pivots to the right, and is actuated with the thumb.Tilting mechanism: The tilting of the runs is preferably made possible by two lateral steel sheets ( 2) into which the front shaft is screwed by means of a screw / nut connection.Safety slide Tile: The safety process of the tile is made possible analogously to the real weapon by actuating a slide (3) with the thumb forwards or backwards. It is the same slider that also simulates the running selection during drilling. The slider is preferably a small brass slider used in furniture construction.Speed selection slide Drilling: The speed selection process of the drilling is made possible analogously to the real weapon by actuating a slide ( 3) with the thumb forwards or backwards. It is the same slider that simulates the securing of the tile. The slide is preferably a brass slide which is used in furniture construction.Print: The print is represented by a plastic double print (4), preferably 3D print. It is oval and preferably has the internal dimensions 55 mm to 30 mm. The wall thickness is 3.5 mm wide, and is preferably 15 mm wide. The two trigger nuts have a length of 23 mm and are oval, analogous to the real weapon. They taper and have a length of 23 mm. The width is preferably 6 mm. As a result, it has the optimum dimensions to represent the processShot runs: The shot runs ( 10) have blind holes, preferably 12.5 mm to 13 mm, and are laterally beveled, preferably at an angle of 40° to max. 45°. 45°. FIG. 3 They consist preferably of beech wood bars with a length of 55 cm and a diameter of 24 mm. They can be seen in FIG. 3 in a plan view with the caliber inscriptions.Ball race: The ball race consists of a beechwood bar (9), diameter 10 mm, screwed to the two shot races and the front stock piece. The front shank piece is provided with a bore of 10 mm diameter and a notch (7).Securing: The securing of the drilling consists of a small lever (8) which is fastened to the shank by means of a screw. It preferably consists of a wing nut M6 on which a wing has been removed.