CN214372024U - Bidirectional telescopic mechanical baton - Google Patents
Bidirectional telescopic mechanical baton Download PDFInfo
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- CN214372024U CN214372024U CN202120243758.3U CN202120243758U CN214372024U CN 214372024 U CN214372024 U CN 214372024U CN 202120243758 U CN202120243758 U CN 202120243758U CN 214372024 U CN214372024 U CN 214372024U
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Abstract
The utility model discloses a bidirectional telescopic mechanical baton, which comprises two mechanical telescopic batons and a connecting pipe, wherein the connecting pipe is arranged between the two mechanical telescopic batons and is detachably connected with the heads of the mechanical telescopic batons; the mechanical telescopic stick comprises a front pipe, a middle pipe, a rear pipe, a button and a telescopic rod core, wherein the front pipe is movably clamped in the middle pipe, a threaded connector is arranged at the front end of the front pipe and is matched with internal threads arranged on the connecting pipe for use, the middle pipe is movably clamped in the rear pipe, the button is arranged at the tail end of the rear pipe and is connected with the tail end of the telescopic rod core, the front end of the telescopic rod core is connected with the tail end of the front pipe, and the front pipe and the middle pipe are driven to move through the telescopic rod core; when using, through this two-way flexible mechanical rod, the police can both hands grip the baton, and the left and right hands can freely switch over the one-hand at any time and hold, when meetting emergency and need pull out the rifle, and the baton is held to the left hand, and the right hand pulls out the rifle rapidly, in time prevents the illegal crime, has simple to use, the efficient characteristics of law enforcement.
Description
Technical Field
The utility model belongs to the technical field of police equipment, concretely relates to two-way flexible mechanical baton.
Background
The traditional baton is provided with a rubber baton and a telescopic baton, can only be used for daily training and daily patrol, and can not meet the requirements of field use under the condition that the field condition is unpredictable in the processes of frequent occurrence of terrorist events, riot control, police duty prevention and anti-terrorism treatment;
the prior baton is mostly a telescopic mechanical baton, and has the following problems when in use:
(1) when the baton is used in police law enforcement, the one-way telescopic baton is generally held by the right hand, which is not beneficial to drawing out the gun by the right hand in emergency;
(2) when the police enforces the law into the guard posture, the police can not carry out the upper, lower, left and right blocking by utilizing the prior telescopic baton, thereby effectively protecting the self safety;
(3) when the police enforces the law and becomes the guard posture, the gangster can easily judge the hitter of the police according to the position of the baton, which is not beneficial to the use of the police in the duty process;
in order to solve the problems, a bidirectional telescopic mechanical baton is urgently needed to be designed.
Disclosure of Invention
To the defect that above-mentioned prior art exists, the utility model aims to provide a two-way flexible mechanical baton, when using, through this two-way flexible mechanical baton, the police can both hands grip the baton, and the left and right hands can freely switch over the one hand at any time and hold, when meetting emergency and need pull out the rifle, and the baton is held to the left hand, and the right hand pulls out the rifle rapidly, in time prevents illegal crime, has simple to use, the efficient characteristics of law enforcement.
In order to achieve the above object, the utility model adopts the following technical scheme:
a bidirectional telescopic mechanical baton comprises two mechanical telescopic batons and a connecting pipe, wherein the connecting pipe is arranged between the two mechanical telescopic batons and is detachably connected with the heads of the mechanical telescopic batons; mechanical telescopic rod includes head tube, well pipe, back pipe, button and telescopic rod core, and head tube activity block is in well intraductal, and is provided with threaded connection head at the front end of head tube, and threaded connection head uses with the interior screw-thread fit that sets up on even managing, well intraductal activity block is in the back, and installs the button at the end of back pipe, the end-to-end connection of button and telescopic rod core, the front end of telescopic rod core and the end-to-end connection of head tube.
Preferably, the tail end of the front pipe is provided with a first clamping ring which is movably clamped in a first annular groove in the middle pipe and extends and retracts left and right in the first movable cavity along the first annular groove; and the tail end of the middle pipe is provided with a second clamping ring which is movably clamped in a second annular groove in the rear pipe and moves in a second movable cavity along the second annular groove.
Preferably, the telescopic rod core include third snap ring, telescopic link, rod core and rod cover, the third snap ring sets up in the terminal outside of rod cover, fixes the rod cover in the back pipe, and rod core movable sleeve is established in the rod cover, and the front end of rod core is connected with the rod core draw-in groove that sets up at the head tube end, still is provided with flexible control mechanism on the rod cover, the tail end at the rod cover is established to the telescopic link cover, and the front end and the flexible control mechanism of telescopic link are connected, and the tail end is connected with the button.
Preferably, the button is movably arranged at the tail end of the rear tube and comprises a rubber body and a button body, the rubber body is arranged on the outer side of the button body, the button body is connected with the tail end of the telescopic rod, and a first return spring is arranged between the button body and the rod sleeve.
Preferably, the rod core be hollow rod structure, be provided with first flexible chamber in the rod core, and be provided with the card body at the end of rod core, card body block is flexible intracavity at the second of rod cover, stretches out and draws back about the flexible chamber of second, and is provided with trapezoidal locking chamber in the card body, locking chamber and first flexible chamber intercommunication.
Preferably, the front end of the rod sleeve is also symmetrically provided with telescopic grooves, the telescopic grooves are internally provided with limiting bulges, and the limiting bulges are connected with the telescopic grooves through second return springs; and the front end of the limiting bulge is of an arc surface structure, and the limiting bulge is matched with a limiting clamping groove arranged on the outer side for use.
Preferably, the telescopic control mechanism comprises a guide rod and a third return spring, the guide rod is of a hollow guide pipe structure and is fixedly arranged in the two telescopic cavities, and the guide rod is matched with the first telescopic cavity for use; the third reset spring is movably sleeved on the outer side of the guide rod, one end of the third reset spring is connected with the clamping body, and the other end of the third reset spring is connected with the side wall of the tail part of the two telescopic cavities.
Preferably, the one end that the card body was kept away from to the guide arm be provided with sliding sleeve, vaulting pole, gag lever post, fourth reset spring and spacing ring, sliding sleeve movable sleeve establishes on the guide arm, and the spacing ring is fixed to be set up at the end of guide arm, and the fourth reset spring cover establishes on the guide arm between sliding sleeve and the spacing ring, just all be provided with the hinged-support on sliding sleeve, vaulting pole, gag lever post and the spacing ring, wherein the one end and the spacing ring of gag lever post pass through the hinged-support and are connected, the one end of vaulting pole is passed through the hinged-support and is connected with the gag lever post, the sliding sleeve passes through the hinged-support and is connected with the other end of vaulting pole.
Preferably, the end of the telescopic rod is further provided with a connecting block, the connecting block penetrates through a movable connecting groove formed in the guide rod to be connected with the sliding sleeve, and the sliding sleeve is driven to move left and right through the telescopic rod.
Preferably, the tail end of the rear tube is further provided with a soft rubber protective sleeve.
The utility model has the advantages that: the utility model discloses a two-way flexible mechanical baton, compared with the prior art, the utility model discloses an improvement part lies in:
aiming at the problems in the prior art, the utility model designs a bidirectional telescopic mechanical spontoon, which comprises two mechanical telescopic batons and a connecting pipe, wherein the connecting pipe is arranged between the two mechanical telescopic batons, when in use, a spontoon can be held by both hands, the left hand and the right hand can be freely switched to be held by one hand at any time, when the spontoon needs to be pulled out in an emergency, the spontoon is held by the left hand, the right hand pulls out the gun rapidly, and the illegal crimes are prevented in time; meanwhile, when the police enforces the law into the guard posture, the two ends of the bidirectional telescopic mechanical baton are held by the two hands, so that various defensive actions such as upper, lower, left and right check stops can be rapidly carried out, and the safety of the police is effectively protected; when the police enforces the law into the guard posture, the two ends of the bidirectional telescopic mechanical baton are held by the two hands, the left hand or the right hand is used to hold the baton to strike the opposite side according to the situation, especially when the police are in a fighting type, the forehand holding the end of the baton can make a surprise, and the opposite side can be attacked rapidly.
Drawings
Fig. 1 is a schematic structural view of the bidirectional telescopic mechanical baton of the present invention.
Fig. 2 is a schematic structural view of the mechanical telescopic stick of the present invention.
Fig. 3 is a cross-sectional view of the mechanical telescopic stick of the present invention.
Fig. 4 is a partial enlarged view of the mechanical telescopic stick a of the present invention.
Fig. 5 is a cross-sectional view of the telescopic rod core of the present invention.
Fig. 6 is a partial enlarged view of the telescopic rod core B of the present invention.
Fig. 7 is a partial enlarged view of the telescopic rod core C of the present invention.
Fig. 8 is a cross-sectional view of the tail of the guide rod of the present invention.
Wherein: 1. mechanical telescopic stick, 2, connecting tube, 3, front tube, 31, threaded connector, 32, first snap ring, 33, rod core clamping groove, 4, middle tube, 41, first ring groove, 42, second snap ring, 43, first movable cavity, 5, rear tube, 51, second ring groove, 52, second movable cavity, 6, button, 61, rubber body, 62, button body, 63, first return spring, 7, telescopic rod core, 71, third snap ring, 72, telescopic rod, 721, connecting block, 73, rod core, 731, first telescopic cavity, 732, clamping body, 733, locking cavity, 734, limiting clamping groove, 74, rod sleeve, 741, second telescopic cavity, 742, telescopic groove, 743, limiting protrusion, 744, second return spring, 75, guide rod, 751, movable connecting groove, 752, sliding sleeve, 753, strut, 754, limiting rod, 755, limiting ring, 756, 76, third return spring, 8. a rubber protective sleeve.
Detailed Description
In order to make those skilled in the art better understand the technical solution of the present invention, the following describes the technical solution of the present invention with reference to the accompanying drawings and embodiments.
Referring to the attached drawings 1-8, the bidirectional telescopic mechanical baton comprises two mechanical telescopic batons 1 and a connecting pipe 2, wherein the connecting pipe 2 is arranged between the two mechanical telescopic batons 1 and is detachably connected with the heads of the mechanical telescopic batons 1, and the two mechanical telescopic batons 1 are symmetrically connected to form the bidirectional telescopic mechanical baton; mechanical telescopic rod 1 includes head tube 3, well pipe 4, back pipe 5, button 6 and telescopic rod core 7, and 3 activity blocks of head tube are in well pipe 4, and are provided with threaded connection head 31 at the front end of head tube 3, and threaded connection head 31 uses with the interior screw-thread fit that sets up on being in a line 2, through threaded connection head 31 and the interior threaded connection who is in a line 2, realize being connected of being in a line 2 and mechanical telescopic rod 1, well pipe 4 activity blocks are in back pipe 5, and install button 6 at the end of back pipe 5, and the end-to-end connection of button 6 and telescopic rod core 7, telescopic rod core 7's front end and head tube 3's end-to-end connection drives head tube 3 and well pipe 4 through telescopic rod core 7 and moves, realizes mechanical telescopic rod 1's flexible.
Preferably, the end of the front pipe 3 is provided with a first snap ring 32, the first snap ring 32 is movably clamped in a first annular groove 41 in the middle pipe 4, and extends and retracts left and right in a first movable cavity 43 along the first annular groove 41, so as to realize the extension and retraction of the front pipe 3 in the middle pipe 4; and the end of the middle pipe 4 is provided with a second snap ring 42, the second snap ring 42 is movably clamped in a second ring groove 51 in the rear pipe 5 and moves in a second movable cavity 52 along the second ring groove 51 to realize the extension and retraction of the middle pipe 4 in the rear pipe 5.
Preferably, the telescopic rod core 7 comprises a third snap ring 71, a telescopic rod 72, a rod core 73 and a rod sleeve 74, the third snap ring 71 is arranged at the outer side of the tail end of the rod sleeve 74, the rod sleeve 74 is fixed in the rear tube 5, the rod core (73) is movably sleeved in the rod sleeve (74), the front end of the rod core 73 is connected with the rod core clamping groove 33 at the tail end of the front tube 3, the middle tube 4 and the rear tube 5 are connected by using the telescopic rod core 7, a telescopic control mechanism is further arranged on the rod sleeve 74, the telescopic rod 72 is sleeved at the tail end of the rod sleeve 74, the front end of the telescopic rod 72 is connected with the telescopic control mechanism, the tail end of the telescopic rod is connected with the button 6, and the opening and closing of the telescopic control mechanism are controlled by pressing the button 6.
Preferably, the button 6 is movably disposed at the end of the rear tube 5, and includes a rubber body 61 and a button body 62, the rubber body 61 is disposed at the outer side of the button body 62 to protect the button body 62, the button body 62 is connected with the end of the telescopic rod 72, a first return spring 63 is disposed between the button body 62 and the rod sleeve 74, and the button body 62 is returned by the first return spring 63.
Preferably, the rod core 73 is a hollow rod structure, a first telescopic cavity 731 is arranged in the rod core 73, a clamping body 732 is arranged at the tail end of the rod core 73, the clamping body 732 is clamped in a second telescopic cavity 741 of the rod sleeve 74, when the rod core 73 moves, the clamping body 732 extends and retracts left and right along the second telescopic cavity 741, a trapezoidal locking cavity 733 is arranged in the clamping body 732, the locking cavity 733 is communicated with the first telescopic cavity 731, and the locking cavity 733 is matched with a telescopic control mechanism for use, so that the rod core 73 is locked.
Preferably, the front end of the rod sleeve 74 is further symmetrically provided with telescopic slots 742, the telescopic slots 742 are internally provided with limiting protrusions 743, and the limiting protrusions 743 are connected with the telescopic slots 742 through second return springs 744; the front end of the limiting protrusion 743 is of an arc surface structure, so that the use is convenient, the limiting protrusion 743 is matched with a limiting clamping groove 734 arranged on the outer side of the 732 for use, namely in the use process, when the rod core 73 is thrown out, the rod core 73 moves forwards under the action of the telescopic control mechanism until the limiting protrusion 743 is clamped in the limiting clamping groove 734, and the rod core 73 is locked.
Preferably, the telescopic control mechanism comprises a guide rod 75 and a third return spring 76, the guide rod 75 is of a hollow conduit structure and is fixedly arranged in two telescopic cavities 741, the guide rod 75 is matched with the first telescopic cavity 731 for use, the guide rod 75 is telescopic along the first telescopic cavity 731 during use, the third return spring 76 is movably sleeved outside the guide rod 75, one end of the third return spring 76 is connected with the clamping body 732, the other end of the third return spring is connected with the side wall of the tail of the two telescopic cavities 741, and the third return spring 76 is used for limiting the rod core 73 so as to realize automatic extension and locking of the rod core 73.
Preferably, one end of the guide rod 75, which is far away from the card body 732, is provided with a sliding sleeve 752, a support rod 753, a limit rod 754, a fourth return spring 755 and a limit ring 756, the sliding sleeve 752 is movably sleeved on the guide rod 75, the limit ring 756 is fixedly arranged at the tail end of the guide rod 75, the fourth return spring 755 is sleeved on the guide rod 75 between the sliding sleeve 752 and the limit ring 756 to control the distance between the sliding sleeve 752 and the limit ring 756, and hinged supports are arranged on the sliding sleeve 752, the support rod 753, the limit rod 754 and the limit ring 756, wherein one end of the limit rod 754 is connected with the limit ring 756 through a hinged support, one end of the support rod 753 is connected with the limit rod 754 through a hinged support, that is, when in a normal state, the limit rod 754 is opened, the size of the limit rod is slightly larger than the size of the locking cavity 733, and when the rod core 73 needs to be retracted, the sliding sleeve 752 is controlled to move leftwards, so that the stay 753 drives the limiting rod 754 to rotate rightwards, the limiting rod 754 is clamped in the locking cavity 733 to fix the position of the rod core 73, the mechanical telescopic stick 1 is contracted, when the mechanical telescopic stick needs to be used, under the action of outward swinging force of a police officer, the gravity of the threaded connector 31 drives the rod core 73 to move leftwards integrally to pop out the front tube 3 and the middle tube 4, and when the rod core 73 is completely popped out, the limiting protrusion 743 is clamped in the limiting clamping groove 734 to lock the rod core 73, and the length of the mechanical telescopic stick is locked.
Preferably, the end of the telescopic rod 72 is further provided with a connecting block 721, and the connecting block 721 passes through a movable connecting groove 751 arranged on the guide rod 75 to be connected with the sliding sleeve 752, that is, when in use, the telescopic rod 72 drives the sliding sleeve 752 to move left and right, so as to lock the rod core 73.
Preferably, a soft rubber protective sleeve 8 is further provided at the end of the rear tube 5, so that the rear tube is unlikely to cause fatal damage to the counterpart when in use.
The use and the theory of operation of two-way flexible mechanical spontoon do:
the structure of the structure in a non-use state is shown in figure 1, when the bidirectional telescopic mechanical baton needs to be used, a police officer can hold the bidirectional telescopic mechanical baton with two hands, judges which hand is used by the bidirectional telescopic mechanical baton when the bidirectional telescopic mechanical baton is used according to the action of a gangster, holds the tail of the mechanical telescopic baton 1 at one end after the bidirectional telescopic mechanical baton is determined, and throws the mechanical telescopic baton 1 forwards, so that the mechanical telescopic baton 1 is stretched and thrown out under the gravity of the front structure to form the bidirectional telescopic mechanical baton, and the mechanical telescopic baton 1 is shown in figure 2 after being stretched out to subdue the gangster; when the mechanical telescopic stick 1 needs to be retracted, the button 6 is pressed down, small external force is applied to the front tube 3, the device can be retracted, after the retraction, the button 6 is loosened, the locking of the rod core 73 can be realized, and the one-time use process is completed.
The bidirectional telescopic mechanical baton has the following advantages when in use:
(1) when the police baton is used, a police officer can hold the baton with two hands, and can freely switch the left hand and the right hand to hold the baton with one hand at any time, when the police officer needs to pull out the gun in an emergency, the police officer holds the baton with the left hand and quickly pulls out the gun with the right hand, so that illegal crimes can be prevented in time;
(2) when the police enforces the law into the guard posture, the two ends of the bidirectional telescopic mechanical baton are held by the two hands, so that various defensive actions such as upper, lower, left and right check stops can be rapidly carried out, and the safety of the police is effectively protected;
(3) when the police enforces the law and becomes the guard posture, the two ends of the bidirectional telescopic mechanical baton are held by the two hands, the police can use the left hand or the right hand to hold the baton to strike the opposite side according to the situation, and particularly, when the police is in a fighting type, the front hand at the end of the holding rod can make a surprise and quickly attack the opposite side.
The foregoing shows and describes the general principles, essential features, and advantages of the invention. It will be understood by those skilled in the art that the present invention is not limited to the above embodiments, and that the foregoing embodiments and descriptions are provided only to illustrate the principles of the present invention without departing from the spirit and scope of the present invention. The scope of the invention is defined by the appended claims and equivalents thereof.
Claims (10)
1. The utility model provides a two-way flexible mechanical baton which characterized in that: the telescopic walking stick comprises two mechanical telescopic sticks (1) and a connecting pipe (2), wherein the connecting pipe (2) is arranged between the two mechanical telescopic sticks (1) and is detachably connected with the heads of the mechanical telescopic sticks (1); mechanical telescopic rod (1) includes head tube (3), well pipe (4), back tube (5), button (6) and telescopic link core (7), and head tube (3) activity block is in well pipe (4), and is provided with threaded connection head (31) at the front end of head tube (3), and threaded connection head (31) uses with the interior screw-thread fit that sets up on even pipe (2), well pipe (4) activity block is in back tube (5), and installs button (6) at the end of back tube (5), and the end-to-end connection of button (6) and telescopic link core (7), the end-to-end connection of front end and head tube (3) of telescopic link core (7).
2. The mechanical baton of claim 1, wherein: the tail end of the front pipe (3) is provided with a first clamping ring (32), the first clamping ring (32) is movably clamped in a first annular groove (41) in the middle pipe (4) and extends and retracts left and right in a first movable cavity (43) along the first annular groove (41); and the tail end of the middle pipe (4) is provided with a second clamping ring (42), the second clamping ring (42) is movably clamped in a second annular groove (51) in the rear pipe (5) and moves in a second movable cavity (52) along the second annular groove (51).
3. The mechanical baton of claim 2, wherein: the telescopic rod core (7) comprises a third clamping ring (71), a telescopic rod (72), a rod core (73) and a rod sleeve (74), the third clamping ring (71) is arranged at the outer side of the tail end of the rod sleeve (74), the rod sleeve (74) is fixed in the rear pipe (5), the rod core (73) is movably sleeved in the rod sleeve (74), the front end of the rod core (73) is connected with a rod core clamping groove (33) arranged at the tail end of the front pipe (3), a telescopic control mechanism is further arranged on the rod sleeve (74), the telescopic rod (72) is sleeved at the tail end of the rod sleeve (74), the front end of the telescopic rod (72) is connected with the telescopic control mechanism, and the tail end is connected with the button (6).
4. The mechanical baton of claim 3, wherein: the button (6) is movably arranged at the tail end of the rear pipe (5), the button (6) comprises a rubber body (61) and a button body (62), the rubber body (61) is arranged on the outer side of the button body (62), the button body (62) is connected with the tail end of the telescopic rod (72), and a first return spring (63) is arranged between the button body (62) and the rod sleeve (74).
5. The mechanical baton of claim 3, wherein: the rod core (73) is of a hollow rod structure, a first telescopic cavity (731) is arranged in the rod core (73), a clamping body (732) is arranged at the tail end of the rod core (73), the clamping body (732) is clamped in a second telescopic cavity (741) of the rod sleeve (74) and extends and retracts left and right along the second telescopic cavity (741), a trapezoidal locking cavity (733) is arranged in the clamping body (732), and the locking cavity (733) is communicated with the first telescopic cavity (731).
6. The mechanical baton of claim 5, wherein: the front end of the rod sleeve (74) is also symmetrically provided with telescopic grooves (742), limiting protrusions (743) are arranged in the telescopic grooves (742), and the limiting protrusions (743) are connected with the telescopic grooves (742) through second return springs (744); the front end of the limiting protrusion (743) is of an arc surface structure, and the limiting protrusion (743) is matched with a limiting clamping groove (734) arranged on the outer side of the (732) for use.
7. The mechanical baton of claim 5, wherein: the telescopic control mechanism comprises a guide rod (75) and a third return spring (76), the guide rod (75) is of a hollow catheter structure and is fixedly arranged in two telescopic cavities (741), and the guide rod (75) is matched with the first telescopic cavity (731) for use; the third return spring (76) is movably sleeved on the outer side of the guide rod (75), one end of the third return spring (76) is connected with the clamping body (732), and the other end of the third return spring is connected with the tail side wall of the two telescopic cavities (741).
8. The mechanical baton of claim 7, wherein: one end, far away from the clamp body (732), of the guide rod (75) is provided with a sliding sleeve (752), a support rod (753), a limiting rod (754), a fourth reset spring (755) and a limiting ring (756), the sliding sleeve (752) is movably sleeved on the guide rod (75), the limiting ring (756) is fixedly arranged at the tail end of the guide rod (75), the fourth reset spring (755) is sleeved on the guide rod (75) between the sliding sleeve (752) and the limiting ring (756), hinged supports are arranged on the sliding sleeve (752), the support rod (753), the limiting rod (754) and the limiting ring (756), one end of the limiting rod (754) is connected with the limiting ring (756) through the hinged supports, one end of the support rod (753) is connected with the limiting rod (754) through the hinged supports, and the sliding sleeve (752) is connected with the other end of the support rod (753) through the hinged supports.
9. The mechanical baton of claim 8, wherein: the end of the telescopic rod (72) is also provided with a connecting block (721), the connecting block (721) passes through a movable connecting groove (751) arranged on the guide rod (75) to be connected with the sliding sleeve (752), and the telescopic rod (72) drives the sliding sleeve (752) to move left and right.
10. A two-way telescopic mechanical baton as claimed in any one of claims 1 to 9, wherein: the tail end of the rear pipe (5) is also provided with a soft rubber protective sleeve (8).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202120243758.3U CN214372024U (en) | 2021-01-28 | 2021-01-28 | Bidirectional telescopic mechanical baton |
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Application Number | Priority Date | Filing Date | Title |
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CN202120243758.3U CN214372024U (en) | 2021-01-28 | 2021-01-28 | Bidirectional telescopic mechanical baton |
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CN214372024U true CN214372024U (en) | 2021-10-08 |
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CN202120243758.3U Active CN214372024U (en) | 2021-01-28 | 2021-01-28 | Bidirectional telescopic mechanical baton |
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2021
- 2021-01-28 CN CN202120243758.3U patent/CN214372024U/en active Active
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