Balloon inflating device of balloon vending machine
By introducing a storage box and a multi-axis moving component into the balloon vending machine, the problems of automated balloon nozzle insertion and inflation were solved, enabling stable balloon inflation and convenient dispensing, thus improving the automation level and work efficiency of the balloon vending machine.
Patent Information
- Application Number
- CN202520333712.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-27
- Publication Date
- 2026-01-02
- Estimated Expiration
- 2035-02-27
AI Technical Summary
The existing balloon inflation devices in balloon vending machines have a low degree of automation, making it difficult to efficiently insert and inflate the balloon nozzles. Furthermore, inflated balloons are difficult to place into the dispensing slot for easy retrieval.
A balloon inflation device was designed, comprising a storage box, a positioning storage component, and a multi-axis moving component. The positioning storage component stacks balloon nozzles, and the multi-axis moving component drives the inflation block to connect with the balloon nozzle and inflate it. The inflated balloon is then placed into the pickup port via a guide plate.
The automated operation of the balloon vending machine has been achieved, improving work efficiency, ensuring stable inflation of the balloon nozzles and convenient dispensing, and enhancing the operational efficiency of the balloon vending machine.
Smart Images

Figure CN223757119U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to balloon vending machine equipment technical field, specifically a balloon vending machine's balloon inflation device. BACKGROUND
[0002] The existing balloon vending machine has balloon inflation device, but its defect lies in, the degree of automation is lower, cannot efficiently realize the balloon nozzle is inserted and is inflated, makes the balloon that connects with the balloon nozzle inflation. And also cannot efficiently realize the balloon nozzle and the balloon that inflation is finished, is put into the take -out mouth, is convenient for personnel to take out. The above -mentioned shortcoming leads to the balloon inflation device of prior art to meet the actual work demand, for this, people have carried out a lot of research. INNOVATION CONTENT
[0003] The utility model solves the technical problem that the balloon vending machine's balloon inflation device can solve the problem in the prior art.
[0004] The utility model is through following technical scheme to realize: the utility model discloses a balloon vending machine's balloon inflation device, including the body, be provided with the take -out mouth in the body, the rear side of take -out mouth is provided with balloon inflation device, its characterized in that, balloon inflation device includes storage box, be provided with a plurality of balloon nozzles in the storage box, be provided with balloon on the balloon nozzle, be provided with the positioning storage subassembly that the balloon nozzle is placed in the storage box and is stacked, still include the inflation block, the front side of storage box still is provided with the multi -axis movement subassembly of making inflation block multidirectional movement and with the balloon nozzle is inserted.
[0005] Further technical scheme, the top of storage box is provided with the guide plate.
[0006] Further technical scheme, positioning storage subassembly includes being provided with a plurality of cavities in the storage box, be provided with the placing groove in the cavity, the balloon nozzle is connected to the placing groove in.
[0007] Further technical scheme, multi -axis movement subassembly includes the support, the first guide rail is provided on the upper side of support, the mobile board is slidably arranged on the first guide rail, the second guide rail is connected and arranged between the mobile board, the first synchronous belt pulley mechanism is arranged on the support, the synchronous belt of first synchronous belt pulley mechanism is fixedly connected with the mobile board, the first sliding block is slidably arranged on the second guide rail, the shell is arranged on one side of first sliding block, the second synchronous belt pulley mechanism is arranged on the mobile board, the synchronous belt of second synchronous belt pulley mechanism is fixed with the shell, the telescopic structure that drives inflation block telescopic movement is arranged on the shell.
[0008] Further technical solutions, the shell side is provided with a limiting block, the first clamping groove is arranged in the limiting block, and the second clamping groove is also arranged in the limiting block.
[0009] Further technical solutions, the first clamping groove and the second clamping groove are abutted on the outer surface of the balloon nozzle.
[0010] Further technical solutions, the first sliding block is fixedly arranged on the inner side of the shell.
[0011] Further technical solutions, the telescopic structure includes a gas cylinder arranged on the shell, a telescopic gas cylinder push rod is arranged in the gas cylinder, and the gas cylinder push rod is fixedly connected with the inflating block.
[0012] Further technical solutions, the shell bottom is also provided with a second sliding block, a guide rod is arranged in the second sliding block and slides, and the guide rod is fixedly connected with the inflating block.
[0013] Further technical solutions, the number of the second sliding block and the guide rod is one or more.
[0014] The beneficial effects of the utility model are: one, the positioning storage assembly is used to store and position the balloon nozzle, the multi-shaft moving assembly drives the shell and the cylinder to inflate, take away and release the balloon nozzle and the balloon from top to bottom, then moves to the adjacent balloon nozzle to perform the same operation, realizes relatively automatic operation, and improves the working efficiency of the balloon vending machine.
[0015] Two, the placing groove is used to vertically stack the balloon nozzle, and the guide plate is used to be clamped with the placing groove, so that the balloon nozzle is more stable when stacking, and the placing stability can be improved during inflation.
[0016] Three, the first synchronous pulley mechanism and the second synchronous pulley mechanism are used to drive the shell to move in left and right and up and down directions, so that the shell and the cylinder can move in different positions, so that the balloon nozzle can be inflated from top to bottom.
[0017] Four, the cylinder is used to drive the telescopic movement of the cylinder push rod and the inflating block, so that the inflating block inserts and inflates the balloon nozzle.
[0018] Five, after the shell drives the limiting block to move from top to bottom, the first clamping groove and the second clamping groove can be used to clamp and limit the balloon nozzle, so that the inflating block cannot be stably connected after inserting into the balloon nozzle. DRAWINGS
[0019] In order to facilitate the description, the utility model is described in detail by the following specific embodiments and drawings.
[0020] Figure 1 It is the structural schematic view of balloon vending machine;
[0021] Figure 2 It is the structural schematic view of balloon vending machine; Figure 1
[0022] It is the structural schematic view of balloon vending machine; Figure 3 Figure 2 It is the structural schematic view of balloon vending machine;
[0023] Figure 4 It is the structural schematic view of balloon vending machine; Figure 3
[0024] It is the structural schematic view of balloon vending machine; Figure 5 Figure 2 It is the structural schematic view of balloon vending machine;
[0025] Figure 6 It is the structural schematic view of balloon vending machine; Figure 3
[0026] It is the structural schematic view of balloon vending machine; Figure 7 Figure 6 It is the structural schematic view of balloon vending machine;
[0027] Figure 8 It is the structural schematic view of balloon vending machine; Figure 6
[0028] It is the structural schematic view of balloon vending machine; Figure 9 Figure 8 It is the structural schematic view of balloon vending machine;
[0029] Figure 10 It is the structural schematic view of balloon vending machine; Figure 9
[0030] In the figure, the taking-out port 11, the balloon inflator 12, the storage box 21, the cavity 22, the placing groove 23, the balloon nozzle 24, the protruding block 25, the guide plate 26, the support 31, the first synchronous pulley mechanism 32, the first guide rail 33, the moving plate 34, the second synchronous pulley mechanism 35, the second guide rail 36, the first sliding block 38, the shell 39, the air cylinder 41, the air cylinder push rod 42, the guide rod 43, the second sliding block 44, the limiting block 45, the inflating block 46, the second clamping groove 51, the first clamping groove 52. DETAILED DESCRIPTION
[0031] As Figures 1-10 shown, the present application will be described in detail, for the convenience of description, now to the following text said direction as follows: the following said up and down, left and right, front and back direction and Figure 1 The projection relationship is consistent in all directions (up, down, left, right, front, back). This utility model discloses a balloon inflation device for a balloon vending machine, comprising a body with a dispensing port 11. A balloon inflation device 12 is located behind the dispensing port 11. The balloon inflation device 12 includes a storage box 21 containing multiple stacked balloon nozzles 24, each with a balloon attached. The storage box 21 also includes a positioning and storage component for stacking the balloon nozzles 24. An inflation block 46 is located at the front of the storage box 21, along with a multi-axis moving component that allows the inflation block 46 to move in multiple directions and connect with the balloon nozzles 24. After the inflation block 46 is inserted into the balloon nozzle 24, a connecting air tube injects gas into the balloon nozzle 24, causing the balloon to inflate. The balloon nozzle 24 is a prior art device, typically equipped with an internal anti-leakage valve to prevent backflow of gas from the balloon.
[0032] Advantageously, the inflatable block 46 is provided with an air passage, which is inserted into the balloon nozzle 24 to realize the inflation function. The inflatable block 46 is also connected to an air pipe that supplies air to the air passage.
[0033] Advantageously, the top of the storage box 21 is provided with a rearwardly inclined guide plate 26.
[0034] Advantageously, the positioning storage component includes multiple cavities 22 disposed within the storage box 21, each cavity 22 having a placement slot 23, the balloon nozzle 24 being snapped into the placement slot 23 and stacked vertically.
[0035] Advantageously, the placement slot 23 is arranged vertically so that the balloon nozzle 24 can be stacked and snapped together by the placement slot 23.
[0036] Advantageously, the outer surface of the balloon nozzle 24 is provided with a protrusion 25, which engages with the placement groove 23, so that the balloon nozzle 24 is limited to the front and rear within the placement groove 23 and can only move up and down. The balloon nozzle 24 is engaged with a balloon at the part of the cavity 22.
[0037] Advantageously, the multi-axis moving assembly includes a bracket 31, with first guide rails 33 arranged on the upper and lower sides of the bracket 31. A moving plate 34 is slidably arranged on the first guide rails 33, and a second guide rail 36 is connected between the moving plates 34. A first synchronous belt pulley mechanism 32 is arranged on the bracket 31, and the synchronous belt of the first synchronous belt pulley mechanism 32 is fixedly connected to the moving plate 34. A first slider 38 is slidably arranged on the second guide rail 36, and a housing 39 is arranged on one side of the first slider 38. A second synchronous belt pulley mechanism 35 is arranged on the moving plate 34, and the synchronous belt of the second synchronous belt pulley mechanism 35 is fixed to the housing 39. A telescopic structure for driving the inflatable block 46 to extend and retract is arranged on the housing 39.
[0038] Beneficially, the shell 39 is provided with a limiting block 45 on one side, the first clamping groove 52 is arranged in the limiting block 45, and the second clamping groove 51 is also arranged in the limiting block 45, and the first clamping groove 52 and the second clamping groove 51 abut the outer surface of the balloon nozzle 24.
[0039] Beneficially, the first sliding block 38 is fixedly arranged on the inner side of the shell 39.
[0040] Beneficially, the second guide rail 36 is fixedly connected with the moving plate 34.
[0041] Beneficially, the first synchronous belt wheel mechanism 32 and the second synchronous belt wheel mechanism 35 are prior art, generally provided with two synchronous belt wheels and a synchronous belt, and a motor is arranged on one side of the synchronous belt wheel to drive the synchronous belt wheel to rotate, so as to realize back and forth reciprocating movement.
[0042] Beneficially, the telescopic structure includes a pneumatic cylinder 41 arranged on the shell 39, a telescopic pneumatic cylinder push rod 42 arranged in the pneumatic cylinder 41, and the pneumatic cylinder push rod 42 is fixedly connected with the inflation block 46.
[0043] Beneficially, the bottom of the shell 39 is also provided with a second sliding block 44, a guide rod 43 is arranged in the second sliding block 44 and slides, and the guide rod 43 is fixedly connected with the inflation block 46.
[0044] Beneficially, the number of the second sliding block 44 and the guide rod 43 is one or more.
[0045] By arranging the inflation block 46 and cooperating with the positioning storage assembly and the multi-axis moving assembly, the inflation block 46 can be telescopically inserted into the balloon nozzle 24 after moving, and the gas can be injected into the balloon nozzle 24 and the balloon, so that the balloon is inflated, and the inflation block 46 and the balloon nozzle 24 can also be moved to the upper side of the guide plate 26 under the action of the multi-axis moving assembly and be dropped, so that the inflated balloon falls into the take-out port 11.
[0046] When the device replenishes the balloon nozzle 24, the personnel stacks and inserts the balloon nozzle 24 into the placing groove 23, so that the convex block 25 is clamped and arranged with the placing groove 23, and the balloon is clamped on the part of the balloon nozzle 24 located in the cavity 22.
[0047] When the device works, the first synchronous belt wheel mechanism 32 drives the moving plate 34 and the second guide rail 36 to slide left and right on the first guide rail 33, and the second synchronous belt wheel mechanism 35 drives the shell 39 and the first sliding block 38 to slide up and down on one side of the second guide rail 36.
[0048] When the shell 39 moves to the side of the uppermost balloon nozzle 24, since the shell 39 is moved from top to bottom, then under the action of the limiting block 45, the uppermost balloon nozzle 24 is clamped first by using the first clamping groove 52 and the second clamping groove 51; then under the action of the air cylinder 41, the inflation block 46 is pushed towards the balloon nozzle 24 by using the air cylinder push rod 42, so that the inflation block 46 is inserted into the outer surface of the balloon nozzle 24 and outputs gas to the balloon nozzle 24, so that the balloon connected to the side of the balloon nozzle 24 is inflated and expanded; thereafter, the second synchronous belt wheel mechanism 35 moves upwards, the balloon nozzle 24 is separated from the placing groove 23 upwards, and the balloon is separated from the cavity 22, then the air cylinder 41 drives the inflation block 46, the balloon nozzle 24 and the balloon to move forward by using the air cylinder push rod 42, so that the balloon nozzle 24 and the balloon fall into the taking-out port 11 after being located on the upper side of the guide plate 26, the air cylinder 41 drives the air cylinder push rod 42 to retract, so that the balloon nozzle 24 is separated from the inflation block 46 under the action of inertia, then the balloon nozzle 24 and the balloon fall along the guide plate 26 into the taking-out port 11.
[0049] The above is only a specific embodiment of the present application, but the protection scope of the present application is not limited to this, any change or replacement without creative labor should be covered in the protection scope of the present application; therefore, the protection scope of the present application should be limited by the protection scope defined in the claims.
Claims
1. A balloon inflator device of a balloon vending machine, comprising a machine body, a take-out opening (11) is arranged in the machine body, a balloon inflator device (12) is arranged at the rear side of the take-out opening (11), characterized in that, The balloon inflator (12) comprises a storage box (21), a plurality of balloon nozzles (24) are arranged in the storage box (21), the balloon nozzles (24) are provided with balloons, a positioning storage assembly for stacking the balloon nozzles (24) is arranged in the storage box (21), and a plurality of inflation blocks (46) are arranged in the storage box (21).
2. The balloon inflator of claim 1, wherein: The storage box (21) is provided with a guide plate (26) on the top.
3. The balloon inflator of claim 1, wherein: The positioning storage assembly comprises a plurality of cavities (22) arranged in the storage box (21), and a placing groove (23) is arranged in each cavity (22), and the balloon nozzle (24) is clamped into the placing groove (23).
4. A balloon inflator as claimed in any one of claims 1 to 3, wherein: The multi-axis moving assembly comprises a support (31), first guide rails (33) are arranged on the upper side and the lower side of the support (31), moving plates (34) are slidably arranged on the first guide rails (33), a second guide rail (36) is connected and arranged between the moving plates (34), a first synchronous belt wheel mechanism (32) is arranged on the support (31), a synchronous belt of the first synchronous belt wheel mechanism (32) is fixedly connected with the moving plates (34), a first sliding block (38) is slidably arranged on the second guide rail (36), a housing (39) is arranged on one side of the first sliding block (38), a second synchronous belt wheel mechanism (35) is arranged on the moving plate (34), a synchronous belt of the second synchronous belt wheel mechanism (35) is fixed with the housing (39), and an extension structure for driving the inflation block (46) to extend and retract is arranged on the housing (39).
5. A balloon inflator as claimed in claim 4, wherein: The housing (39) is provided with a limiting block (45) on one side, a first clamping groove (52) is arranged in the limiting block (45), and a second clamping groove (51) is further arranged in the limiting block (45).
6. A balloon inflator as claimed in claim 5, wherein: The first clamping groove (52) and the second clamping groove (51) abut the outer surface of the balloon nozzle (24).
7. The balloon inflator of claim 4, wherein: The first sliding block (38) is fixedly arranged on the inner side of the housing (39).
8. The balloon inflator of claim 4, wherein: The extension structure comprises a gas cylinder (41) arranged on the housing (39), a telescopic gas cylinder push rod (42) is arranged in the gas cylinder (41), and the gas cylinder push rod (42) is fixedly connected with the inflation block (46).
9. The balloon inflator of claim 8, wherein: The housing (39) is further provided with a second sliding block (44) at the bottom, a guide rod (43) is slidably arranged in the second sliding block (44), and the guide rod (43) is fixedly connected with the inflation block (46).
10. The balloon inflator of claim 9, wherein: The number of the second sliding block (44) and the guide rod (43) is one or more.