Toy gun and up-spin ballistic device

TWM686927UActive Publication Date: 2026-09-01CTMA CO LTD
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Patent Information

Application Number
TW115201757
Authority / Receiving Office
TW · TW
Patent Type
Utility models
Current Assignee / Owner
Filing Date
2026-02-26
Publication Date
2026-09-01
Estimated Expiration
2036-02-25

Smart Images

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Abstract

A toy gun includes a gun body, a spiral rubber tube, and a spiral ballistic device. The spiral rubber tube has a hollow channel for a projectile to pass through. The spiral ballistic device includes a rubber seat and a pressing component. The rubber seat includes a sleeve, a sleeve channel, and a top opening. The sleeve is located within the gun body, surrounding the sleeve channel and connected to one end of the gun barrel. The top opening is formed on one side of the sleeve and connects to the sleeve channel. The spiral rubber tube is located within the sleeve channel and connects to the top opening. The pressing component includes a main frame and a pressing part. The main frame is located within the top opening and the sleeve channel. The pressing part is movably disposed on the main frame for movement within the sleeve channel. At least one of the main frame and the pressing part contacts the spiral rubber tube, thereby pressing against the projectile through the spiral rubber tube.
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Claims

1. A toy gun, comprising: A gun body, including a barrel; A spiral rubber tube, elastic, having a hollow channel with an aperture for a projectile to pass through; and a spiral ballistic device comprising: a rubber seat including a sleeve, a sleeve channel, and a top opening, the sleeve being located within the gun body, surrounding the sleeve channel and connected to the gun barrel, the top opening being formed on one side of the sleeve and communicating with the sleeve channel, the spiral rubber tube being located within the sleeve channel and connected to the top opening, and the gun barrel, the hollow channel, and the sleeve channel being coaxially aligned; and a pressing assembly including a main frame and a pressing part, the main frame being located within the top opening and the sleeve channel, the pressing part being movably disposed on the main frame for moving within the sleeve channel, wherein at least one of the main frame and the pressing part contacts the spiral rubber tube to abut against the projectile through the spiral rubber tube.

2. The toy gun as claimed in claim 1, wherein the squeezing part includes a lifting member and a knob, the lifting member having a stud and a U-shaped abutment opposite each other, the U-shaped abutment being located in the sleeve channel and extending toward the upper-screwed rubber tube, the knob being located outside the top opening and screwed to the stud for rotation to raise or lower the U-shaped abutment; and the main frame including a strip-shaped rib located in the sleeve channel and adjacent to the U-shaped abutment, wherein at least one of the U-shaped abutment and the strip-shaped rib contacts the upper-screwed rubber tube, and the rotation axis of the knob is parallel to a center of gravity direction and orthogonal to the long axis direction of the barrel.

3. The toy gun as claimed in claim 1, wherein the squeezing part includes a lifting member and a knob, the lifting member having a stud and a strip-shaped rib facing each other, the strip-shaped rib being located within the sleeve channel and extending toward the upper-screwed rubber tube, the knob being located outside the top opening and screwed onto the stud for rotation to raise or lower the strip-shaped rib; and the main frame including two abutment portions located within the sleeve channel, the strip-shaped rib being located between the two abutment portions, wherein at least one of the two abutment portions and the strip-shaped rib contacts the upper-screwed rubber tube, and the rotation axis of the knob is parallel to a center of gravity direction and orthogonal to the long axis direction of the barrel.

4. The toy gun as claimed in claim 1, wherein the extrusion part includes a screw and a nut connected to each other, the nut being located outside the top opening and fixed to one end of the screw, the screw being screwed to the main frame and extending vertically to the upper spiral rubber tube; and the main frame includes two abutment portions located within the sleeve channel, and the screw being located between the two abutment portions, wherein at least one of the two abutment portions and the screw contacts the upper spiral rubber tube, and the rotation axis of the nut is parallel to a center of gravity direction and orthogonal to the long axis direction of the gun barrel.

5. The toy gun as claimed in claim 1, wherein the squeezing part includes a pivot portion and at least one cam member, the pivot portion being fixedly connected to the cam member and rotatably located on the main frame, the cam member having at least one convex angle portion located within the sleeve channel and extending toward the upper-spinning rubber tube; and the main frame includes a strip-shaped rib located within the sleeve channel and adjacent to the cam member, wherein at least one of the convex angle portion and the strip-shaped rib contacts the upper-spinning rubber tube, and the rotation axis of the cam member, the long axis direction of the barrel, and a center of gravity direction are orthogonal to each other.

6. The toy gun as claimed in claim 1, wherein the pressing assembly further comprises: a limiting cap fixed to the main frame and covering the pressing part, such that the pressing part is movably limited between the limiting cap and the main frame.

7. The toy gun as claimed in claim 1, wherein the main frame further comprises a rectangular frame, a frame opening and a flange, the rectangular frame being fixed within the sleeve channel, the frame opening penetrating the rectangular frame, the top-spinning rubber tube being located within the frame opening, the flange extending laterally from one side of the rectangular frame and covering the top opening, wherein the pressing part is movably disposed on the flange; the rubber seat further comprises a bottom opening formed on the other side of the sleeve and connected to the sleeve channel; and the pressing assembly further comprises a locking fastener located within the bottom opening and the sleeve channel, and removably securing the rectangular frame.

8. The toy gun as claimed in claim 7, wherein the rubber base further comprises: a limiting rib located on the other side of the sleeve and overlapping the bottom opening, wherein the locking fastener is movably limited between the sleeve and the limiting rib.

9. The toy gun as claimed in claim 1, wherein the upward-spinning trajectory device further comprises: a retainer pivotally mounted on the sleeve for removably stopping the compression portion.

10. An upward-spinning ballistic device, suitable for mounting on a toy gun, comprising: A rubber seat includes a sleeve, a sleeve channel, and a top opening. The sleeve surrounds the sleeve channel, and the top opening is formed on one side of the sleeve and connects to the sleeve channel. A spiral rubber tube for a projectile to pass through is fitted inside the sleeve channel. A pressing assembly includes a main frame and a pressing part. The main frame is located inside the top opening and the sleeve channel. The pressing part is movably disposed on the main frame and is used to move within the sleeve channel. At least one of the main frame and the pressing part is used to contact the spiral rubber tube and abut against the projectile through the spiral rubber tube.

11. The upward-rotating ballistic device as claimed in claim 10, wherein the compression part includes a lifting member and a knob, the lifting member having a stud and a U-shaped abutment opposite each other, the U-shaped abutment being located within the sleeve channel, the knob being located outside the top opening and screwed to the stud for rotation to raise or lower the U-shaped abutment; and the main frame including a strip-shaped rib located within the sleeve channel and adjacent to the U-shaped abutment, wherein at least one of the U-shaped abutment and the strip-shaped rib is used to contact the upward-rotating rubber tube, and the rotation axis of the knob is parallel to a center of gravity direction and orthogonal to the long axis direction of the sleeve channel.

12. The upward-spinning ballistic device as claimed in claim 10, wherein the compression part includes a lifting member and a knob, the lifting member having a stud and a strip-shaped rib facing each other, the knob being located outside the top opening and screwed to the stud for rotation to lift the strip-shaped rib; and the main frame includes two abutment portions located within the sleeve channel, and the strip-shaped rib being located between the two abutment portions, wherein at least one of the two abutment portions and the strip-shaped rib is used to contact the upward-spinning rubber tube, and the rotation axis of the knob is parallel to a center of gravity direction and orthogonal to the long axis direction of the sleeve channel.

13. The spiral ballistic device as claimed in claim 10, wherein the compression portion includes a screw and a nut connected to each other, the nut being located outside the top opening and fixed to one end of the screw, the screw being screwed to the main frame; and the main frame includes two abutments located within the sleeve channel, and the screw being located between the two abutments, wherein at least one of the two abutments and the screw is used to contact the spiral rubber tube, and the rotation axis of the nut is parallel to a center of gravity direction and orthogonal to the long axis direction of the sleeve channel.

14. The upward-spinning ballistic device as claimed in claim 10, wherein the compression portion includes a pivot portion and at least one cam member, the pivot portion being fixedly connected to the cam member and rotatably located on the main frame, the cam member having a protrusion located within the sleeve channel and extending toward the upward-spinning rubber tube; and the main frame including a strip-shaped rib located within the sleeve channel and adjacent to the cam member, wherein at least one of the protrusion and the strip-shaped rib is used to contact the upward-spinning rubber tube, and the rotation axis of the cam member, the long axis direction of the sleeve channel, and a center of gravity direction are orthogonal to each other.

15. The upward-spinning ballistic device as claimed in claim 10, wherein the downward-pressing assembly further comprises: a limiting cap fixed to the main frame and covering the pressing portion such that the pressing portion is movably limited between the limiting cap and the main frame.

16. The upward-spinning ballistic device as claimed in claim 10, wherein the main frame further comprises a rectangular frame, a frame opening, and a flange, the rectangular frame being fixed within the sleeve channel, the frame opening penetrating the rectangular frame to accommodate the upward-spinning rubber tube, the flange extending laterally from one side of the rectangular frame and covering the top opening, wherein the compression portion is movably disposed on the flange; the rubber seat further comprises a bottom opening formed on the other side of the sleeve and communicating with the sleeve channel; and the pressing assembly further comprises a locking fastener located within the bottom opening and the sleeve channel, and removably securing the rectangular frame.

17. The upward-spinning ballistic device as claimed in claim 16, wherein the rubber seat further comprises: a limiting rib located on the other side of the sleeve and overlapping the bottom opening, wherein the locking fastener is movably limited between the sleeve and the limiting rib.

18. The upward-spinning ballistic device as claimed in claim 10 further comprises: a retainer pivotally mounted on the sleeve for removably stopping the compression portion.