The present invention relates to a toy gun, especially to a ballistic adjusting structure of toy gun.
For allowing the ballistic of a fired bullet to be stabilized, an inner wall of a gun barrel would be carved with a spiral rifling, so that when the bullet is forwardly displaced inside the gun barrel, the bullet is able to be rotated in a high speed so as to stabilize the ballistic, increase the firing range and precisely hit a desired target.
However, the structure of a toy gun is relatively simpler, the inner wall of a gun barrel is not provided with a rifling for guiding the bullet to be rotated, thus even if a user has already accurately aim at the desired target, the fired bullet may be deviated from the target because the actual ballistic is not stable and the firing range is not enough.
Accordingly, a rubbing member is provided inside the gun barrel of a toy gun for allowing a fired bullet to rub against the robbing member to generate a hopping up status, so that the parabola is increased, the ballistic is stabilized and the firing range is expanded.
However, there are some disadvantages existed in a conventional ballistic adjusting device of toy gun, as follows: more components are required in the conventional ballistic adjusting device, thus a problem of not easy to be assembled is caused, the volume thereof is enlarged, and the layout of other structures in the toy gun would be affected.
Accordingly, the applicant of the present invention has devoted himself for improving the mentioned disadvantages.
The present invention is to provide a ballistic adjusting structure of toy gun, which has effects of simplifying the structure for altering the ballistic of a bullet, decreasing the volume of the ballistic adjusting structure and providing an easy assembling convenience.
Accordingly, the present invention provides a ballistic adjusting structure of toy gun, which includes: a base; an inner barrel, inserted in the base; a robbing cylinder, sleeved with the inner barrel, and having a robbing part arranged in the inner barrel; an adjusting pipe, having a pivotal end and a free end oppositely arranged, wherein the pivotal end is rotatably pivoted to the base and formed with a spiral guiding slot, and the spiral guiding slot is able to be rotated with the adjusting pipe via the pivotal end; and an operation member, moveably disposed in the base and having a driven part and a driving part, wherein the driven part is protruded into the spiral guiding slot, and the driving part is served to operate on the robbing cylinder; wherein, the free end of the adjusting pipe is driven by an external force to drive the pivotal end to be rotated, the driven part of the operation member is guided by the spiral guiding slot to drive the driving part to be displaced, and the displacement of the driving part is able to operate on the robbing cylinder for altering a location where the robbing part being arranged in the inner barrel.
In comparison with related art, the present invention has advantageous features as follows. The present invention has effects of simple structure, smaller volume and easy assembly.
A preferred embodiment of the present invention will be described with reference to the drawings.
The present invention provides a ballistic adjusting structure of toy gun, which enables a fired bullet to be in a hopping up status with a simplified structure, so that the hopping up status allows the bullet to be upwardly offset so as to alter the ballistic, thereby increasing the parabola, expanding the firing range and stabling the ballistic.
Please refer from
The base 1 cannot only be formed as a single-piece structure (not shown in figures), but also can be formed as a two-piece structure as shown in figures. The base 1 formed in the two-piece structure includes two base pieces 11 capable of being mutually engaged, an inner end of the inner barrel 2 is inserted in the base 1, so that a notch 21 (as shown in
Preferably, a pivotal shaft 111 is disposed in the base 1 and extended along a length direction of the inner barrel 2, a slide slot 112 (as shown in
The rubbing cylinder 3 is made of an elastic material and sleeved at the inner end of the inner barrel 2, a rubbing part 31 (as shown in
The adjusting pipe 5 has a pivotal end 5a and a free end 5b which are oppositely arranged. The pivotal end 5a is rotatably pivoted to the base 1, so that the adjusting pipe 5 can be driven to be rotated. The pivotal end 5a is formed with a spiral guiding slot 522, so that the spiral guiding slot 522 can be rotated with the adjusting pipe 5 via the pivotal end 5a. The free end 5b is exposed outside the housing 7.
Preferably, the pivotal end 5a of the adjusting pipe 5 is formed with an end surface (not provided with a code), the end surface has a first pivotal part 521 and formed with the above-mentioned spiral guiding slot 522; as shown in
The operation member 6 is moveably disposed on the base 1, and the pivotal end 5a can be driven by the operation member 6 to drive the rubbing cylinder 3 to be displaced. The operation member 6 has a driven part 611 and a driving part 612. The driven part 611 is protruded into the spiral guiding slot 522 so as to be linked, and the driving part 612 is operated on the rubbing cylinder 3. As shown in
According to the present invention, the structure of the operation member 6 is not specially limited as long as the operation member 6 can be guided by the spiral guiding slot 522 for being operated on the rubbing cylinder 3. According to this embodiment, details are provided as follows: the operation member 6 has an arm body 61 and a second pivotal part 62, the driven part 611 and the driving part 612 are disposed at two ends of the arm body 61, the second pivotal part 62 is disposed between the driven part 611 and the driving part 612 and pivoted to the base 1, so that the arm body 61 can be operated in a seesaw fashion with the second pivotal part 62 being served as a pivot.
The sleeve ring 4 is sleeved on the rubbing cylinder 3 corresponding to the location of the rubbing part 31, and the sleeve ring 4 and a protrusion 41 thereof are connected to the slide slot 112 with a sliding means, so that the sleeve ring 4 is enabled to be slid along the slide slot 112 relative to the rubbing cylinder 3; and the driving part 612 of the operation member 6 is connected to the sleeve ring 4, so that the operation member 6 is enabled to operate on the rubbing cylinder 3 via the sleeve ring 4. According to the present invention, the means of the driving part 612 being connected to the sleeve ring 4 is not specially limited; according to this embodiment, a means of the protrusion 41 being protruded out from the sleeve ring 4 and an insertion hole 411 being formed on the protrusion 41 is provided as an example, the operation member 6 is enabled to drive the sleeve ring 4 to slide through the driving part 612 being protruded into the insertion slot 411.
Accordingly, when a user applies a force to the free end 5b to control the adjusting pipe 5 to be rotated, the pivotal end 5a is rotated with the adjusting pipe 5 so as to control a rotation angle of the spiral guiding slot 522.
Details are provided as follow. As shown in
As shown in
According to other embodiments which are not shown in figures, the sleeve ring 4 is not required, the driving part 612 of the operation member 6 can be directly connected and served to press the rubbing cylinder 3 at the location corresponding to the rubbing part 31, so that when the driving part 612 is served to press the rubbing cylinder 3, the rubbing cylinder 3 is deformed for altering the location where the rubbing part 31 being arranged in the inner barrel 2.
According to the present invention, a concave/convex teeth structure 523 can be additionally disposed on the end surface of the pivotal end 5a, and a protruding piece 113 is additionally disposed on the base 1. Wherein, the first pivotal part 521 is surrounded by the concave/convex teeth structure 523, the protruding piece 113 is correspondingly latched in one of teeth slots of the concave/convex teeth structure 523, so that when the user applies a force to enable the adjusting pipe 5 to be rotated, the concave/convex teeth structure 523 rotated with the pivotal end 5a is able to slide through the protruding piece 113 for making a sound and generating an adjusting feeling which can be felt by the user, the user can even obviously feel the protruding piece 113 sliding through each teeth of the concave/convex teeth structure 523, thus the user can clearly know a current adjusting process (or a rotation angle) of the adjusting pipe 5.
Preferably, the adjusting pipe 5 includes a pipe body 51, an elastic unit 53 and a rotary disk 52 connected to one end of the pipe body 51. The rotary disk 52 is rotated with the pipe body 51, and the elastic unit 53 is sleeved on the pipe body 51 and served to elastically support the rotary disk 52. As shown in figures, the elastic unit 53 is served to elastically support a back side (not provided with a code) of the rotary disk 52 as shown in
Based on what has been disclosed above, advantages achieved by the present invention are as follows: the fired bullet 900 can be in the hopping up status with a simplified structured, so that the volume of the ballistic adjusting structure can be reduced (an overly-large size would affect the layout of other structures of the toy gun), and an effect of easy assembly is also provided.
Moreover, other effects are provided to the present invention: with the concave/convex teeth structure 523 and the protruding piece 113, a sound and an adjusting feeling which can be felt by the user during the adjusting process can be generated, and the user can even clearly know the current adjusting process (or the rotation angle) for being provided with a more precise adjusting effect.
Although the present invention has been described with reference to the foregoing preferred embodiment, it will be understood that the invention is not limited to the details thereof. Various equivalent variations and modifications can still occur to those skilled in this art in view of the teachings of the present invention. Thus, all such variations and equivalent modifications are also embraced within the scope of the invention as defined in the appended claims.
Number | Date | Country | Kind |
---|---|---|---|
107206855 A | May 2018 | TW | national |
Number | Name | Date | Kind |
---|---|---|---|
5655510 | Kunimoto | Aug 1997 | A |
7980238 | Wood | Jul 2011 | B2 |
8714146 | Hu | May 2014 | B2 |
9103624 | Kung | Aug 2015 | B1 |
9541346 | Huang | Jan 2017 | B1 |
20070125351 | Campo | Jun 2007 | A1 |
Number | Date | Country | |
---|---|---|---|
20190360775 A1 | Nov 2019 | US |