Electric control bubble blowing framework and bubble machine device
By designing an electronically controlled bubble blowing architecture, the problems of bubble machines being unable to produce large-sized bubbles and having low integration have been solved, achieving automated production and easy mobility of large-sized bubbles.
Patent Information
- Application Number
- CN202421388451.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-06-18
- Publication Date
- 2025-11-28
- Estimated Expiration
- 2034-06-18
AI Technical Summary
Existing bubble machines struggle to produce large bubbles and have low architecture integration, making them inconvenient to move.
It adopts an electronically controlled bubble blowing architecture, including a positioning base structure, a liquid guiding bubble blowing structure, a bubble blowing drive structure, and a bubble blowing fan structure. The positioning base serves as the foundation of the overall architecture. The adjustable opening and closing action is achieved by using the opening and closing assembly structure and the bubble blowing drive structure. In conjunction with the bubble blowing fan, air energy is continuously output to form bubbles of a specific size.
It enables automated production of large-sized bubbles, improves the functionality and integration of the bubble machine, and makes it easy to move.
Smart Images

Figure CN223602009U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to bubble blowing equipment technical field, specifically, relate to a kind of electric control bubble blowing architecture and bubble machine device. BACKGROUND
[0002] At present, bubble machine is usually used as amusement facilities, and is also applied to the arrangement of various exhibition entertainment scenes. However, the bubble size generated by the bubble machine on the market is generally small, usually maintained at about 2-5 cm, and it is difficult to generate bubbles of more extensive size using the existing architecture. At the same time, the overall architecture size of the current bubble machine is large, and the integration is low, which is heavy and inconvenient when the whole needs to be shifted. SUMMARY
[0003] Therefore, the utility model provides an electric control bubble blowing architecture and bubble machine device to solve the problem that the existing architecture of the bubble machine in the prior art cannot meet the large-size bubble blowing requirement and the low structure integration.
[0004] In order to achieve the above purpose, the utility model provides the following technical scheme:
[0005] An electric control bubble blowing architecture comprises:
[0006] a positioning base structure;
[0007] a liquid-guiding bubble blowing structure comprising two groups of bubble blowing arches, which are respectively connected and assembled to the positioning base structure, and form an openable and closable bubble blowing port between the two groups of bubble blowing arches;
[0008] a bubble blowing driving structure, which is fixedly connected and assembled to the positioning base structure, and has a reciprocating linear kinetic energy output end, and the reciprocating linear kinetic energy output end of the bubble blowing driving structure is connected and arranged in transmission assembly with the opening and closing driving end of the two groups of bubble blowing arches;
[0009] a bubble blowing fan structure, which is fixedly connected and assembled to the positioning base structure, and has a wind energy output end, and the wind energy output end of the bubble blowing fan structure faces the openable and closable bubble blowing port.
[0010] On the basis of the above technical scheme, the utility model is further described as follows:
[0011] As a further scheme of the utility model, the positioning base structure comprises a motor fixing support;
[0012] The bubble blowing driving structure comprises a reciprocating motor;
[0013] The base part of the reciprocating motor is fixedly connected and assembled to the motor fixing support.
[0014] As a further scheme of the utility model, the positioning base structure further includes a guiding seat body;
[0015] The guiding seat body is fixedly connected and assembled on the top of the motor fixing support;
[0016] The bubble blowing driving structure further includes a transmission rod, a reciprocating slide rod and a bubble blowing driving plate;
[0017] One end of the transmission rod is fixedly connected and assembled with the rotary kinetic energy output part of the reciprocating motor, and the other end of the transmission rod is connected and arranged through the rotary connection assembly with one end of the reciprocating slide rod, and the reciprocating slide rod is slidingly assembled on the guiding seat body; one end of the bubble blowing driving plate is fixedly connected and assembled with the other end of the reciprocating slide rod, and the other end of the bubble blowing driving plate is connected and arranged through the transmission assembly with the opening and closing driving ends of the two groups of bubble blowing arc frames.
[0018] As a further scheme of the utility model, the positioning base structure further includes a bubble blowing extension support;
[0019] The bottom end of the bubble blowing extension support is fixedly connected and assembled on the top of the guiding seat body;
[0020] The two groups of bubble blowing arc frames are connected and arranged through the rotary connection assembly on the bubble blowing extension support.
[0021] As a further scheme of the utility model, further includes:
[0022] The opening and closing assembly structure includes a first bubble blowing assembly plate and a second bubble blowing assembly plate;
[0023] One end of the first bubble blowing assembly plate is fixedly connected and assembled on the top of the guiding seat body, and one end of the second bubble blowing assembly plate is fixedly connected and arranged with the top end of the bubble blowing extension support;
[0024] The top and bottom ends of the two groups of bubble blowing arc frames are connected and arranged through the rotary connection assembly on the other end of the second bubble blowing assembly plate and the other end of the first bubble blowing assembly plate.
[0025] As a further scheme of the utility model, the liquid guiding bubble blowing structure further includes a base frame main body, a liquid inlet guide port end and a liquid outlet guide port end;
[0026] The base frame main body is provided as two groups of positioning rod frames connected and arranged through the rotary connection assembly, and the two bottom ends of the two groups of positioning rod frames are connected and arranged through the rotary connection assembly on the other end of the first bubble blowing assembly plate, and the two top ends of the two groups of positioning rod frames are connected and arranged through the rotary connection assembly on the other end of the second bubble blowing assembly plate;
[0027] The liquid inlet guide port end and the liquid outlet guide port end are provided with two groups, and the two groups of liquid inlet guide port ends are respectively and correspondingly fixedly connected to the two top end portions of the two groups of positioning rod frames, and the two groups of liquid outlet guide port ends are respectively and correspondingly fixedly connected to the two bottom end portions of the two groups of positioning rod frames.
[0028] The two groups of bubble blowing arc frames are respectively and correspondingly fixedly connected to the two groups of positioning rod frames, and the top and bottom end portions of the two groups of bubble blowing arc frames are respectively and correspondingly connected to the two groups of liquid inlet guide port ends and the two groups of liquid outlet guide port ends through flow channels, flow channel penetration holes are arranged between the opposite corresponding surfaces of the two groups of bubble blowing arc frames, and the opposite corresponding surfaces of the two groups of bubble blowing arc frames form openable and closable bubble blowing openings.
[0029] As a further scheme of the utility model, the bubble blowing driving plate is symmetrically provided with two groups of self-adaptive limiting sliding grooves as the reciprocating linear kinetic energy output ends of the bubble blowing driving structure.
[0030] The two groups of liquid outlet guide port ends are arranged as the opening and closing driving ends of the bubble blowing arc frames, and the two groups of liquid outlet guide port ends are symmetrically arranged towards the side portions relative to the two groups of positioning rod frames of the base frame body, and the two groups of liquid outlet guide port ends are respectively and correspondingly slidably arranged in the two groups of self-adaptive limiting sliding grooves.
[0031] As a further scheme of the utility model, the liquid guiding and bubble blowing structure further comprises a wind guiding channel portion.
[0032] The wind guiding channel portion is provided with at least two groups, and each group of the wind guiding channel portion is arranged as two groups of arc-shaped rods which are respectively and correspondingly sequentially fixedly connected to the two groups of positioning rod frames, and the inner arc surfaces of the two groups of arc-shaped rods in each group of the wind guiding channel portion are oppositely arranged.
[0033] The bubble blowing fan structure comprises a fan motor and a blowing blade.
[0034] The base portion of the fan motor is fixedly and assembled arranged at the top position of the first bubble blowing assembly plate, and the kinetic energy output portion of the fan motor and the blowing blade are transmissionally and fixedly and assembled arranged.
[0035] The blowing blade is arranged corresponding to the center position of the base frame body.
[0036] A bubble machine device comprises the electrically-controlled bubble blowing frame structure.
[0037] The utility model has the following beneficial effects:
[0038] The structure and device can effectively serve as the assembly base of the overall framework through the positioning base structure, and can form the openable assembly framework of the liquid guide bubble structure by cooperating the opening and closing assembly structure with the positioning base structure, and effectively drive the liquid guide bubble structure to realize the adjustable opening type automatic opening and closing action by means of the bubble driving structure, and then the specific size of the bubble can be continuously and automatically blown out by the bubble fan structure, which effectively improves the overall functional practicability. BRIEF DESCRIPTION OF DRAWINGS
[0039] In order to more clearly illustrate the embodiments of the present application or the technical solutions in the prior art, the drawings needed to be used in the embodiments or the prior art description will be briefly introduced as follows. The structures, proportions, sizes, etc. shown in the specification are only used to cooperate with the content disclosed in the specification, so as to be understood and read by those skilled in the art. Any modification of the structure, change of the proportional relationship or adjustment of the size, which does not affect the effects and purposes that can be achieved by the present application, should still fall within the scope of the technical content disclosed by the present application.
[0040] Figure 1 The structure schematic view corresponding to the front part of the bubble blowing direction of the electric control bubble blowing framework provided by the embodiment of the present application is shown in the figure.
[0041] Figure 2 The structure schematic view corresponding to the front part of the bubble blowing direction of the electric control bubble blowing framework provided by the embodiment of the present application is shown in the figure.
[0042] In the drawings, the components represented by each reference numeral are listed as follows:
[0043] Positioning base structure 1: motor fixing support 11, guide seat body 12, bubble blowing extension support 13;
[0044] Opening and closing assembly structure 2: first bubble blowing assembly plate 21, second bubble blowing assembly plate 22;
[0045] Liquid guide bubble structure 3: base frame main body 31, liquid inlet guide port end 32, liquid outlet guide port end 33, bubble blowing arc frame 34, air guide channel part 35;
[0046] Bubble blowing driving structure 4: reciprocating motor 41, transmission rod 42, reciprocating sliding rod 43, bubble blowing driving plate 44, self-adaptive limiting sliding way 45;
[0047] Bubble blowing fan structure 5: fan motor 51, blowing blade 52. DETAILED DESCRIPTION
[0048] The following embodiments of the present application are described by specific examples, and those skilled in the art can easily understand other advantages and effects of the present application from the disclosure. Obviously, the described embodiments are only some of the embodiments of the present application, not all. Based on the embodiments of the present application, all other embodiments obtained by those skilled in the art without creative labor are within the scope of protection of the present application.
[0049] The terms such as "upper", "lower", "left", "right", "middle" and the like referred to in the specification are only for the convenience of clear description, and are not intended to limit the scope of the present application. Changes or adjustments of the relative relationship without substantial changes in technical content are also considered as the scope of the present application.
[0050] As shown in Figures 1 to 2 The embodiment of the present application provides an electrically controlled bubble blowing framework and a bubble machine device comprising the electrically controlled bubble blowing framework, wherein the electrically controlled bubble blowing framework comprises a positioning base structure 1, an opening and closing assembly structure 2, a liquid guiding and bubble blowing structure 3, a bubble blowing driving structure 4 and a bubble blowing fan structure 5, so as to effectively serve as the assembly basis of the overall framework through the positioning base structure 1, and at the same time, the opening and closing assembly structure 2 can be matched with the positioning base structure 1 to form the openable assembly framework of the liquid guiding and bubble blowing structure 3, and the bubble blowing driving structure 4 can effectively drive the liquid guiding and bubble blowing structure 3 to realize the adjustable opening type automatic opening and closing action, and then the bubble blowing fan structure 5 can continuously output wind energy to correspondingly act on the liquid guiding and bubble blowing structure 3 to complete the continuous automatic blowing of bubbles of a specific size, thereby effectively improving the overall functional practicability. The specific settings are as follows:
[0051] Please refer to Figure 1 The positioning base structure 1 comprises a motor fixing support 11, a guide seat body 12 and a bubble blowing extension support 13; wherein the guide seat body 12 is fixedly assembled on the top of the motor fixing support 11, and the bottom end of the bubble blowing extension support 13 is fixedly assembled on the top of the guide seat body 12.
[0052] The opening and closing assembly structure 2 comprises a first bubble blowing assembly plate 21 and a second bubble blowing assembly plate 22; wherein one end of the first bubble blowing assembly plate 21 is fixedly assembled on the top of the guide seat body 12, and one end of the second bubble blowing assembly plate 22 is fixedly assembled and connected with the top end of the bubble blowing extension support 13, so as to form the openable assembly framework through the one-to-one correspondence of the first bubble blowing assembly plate 21 and the second bubble blowing assembly plate 22 to the top and bottom ends of the liquid guiding and bubble blowing structure 3.
[0053] Please refer to Figure 1 and Figure 2The liquid guiding and bubble blowing structure 3 comprises a base body 31, a liquid inlet guide end 32, a liquid outlet guide end 33, a bubble blowing arc frame 34 and a wind guiding channel part 35. The base body 31 is arranged to adaptively connect two groups of positioning rod frames. The two bottom ends of the two groups of positioning rod frames are respectively adaptively connected to the first bubble blowing assembly plate 21, and the two top ends of the two groups of positioning rod frames are respectively adaptively connected to the second bubble blowing assembly plate 22, so that the two groups of positioning rod frames can be rotated based on the first bubble blowing assembly plate 21 and the second bubble blowing assembly plate 22 respectively.
[0054] The liquid inlet guide end 32 and the liquid outlet guide end 33 are each provided with two groups, and the two groups of liquid inlet guide ends 32 are respectively and correspondingly fixed to the two top ends of the two groups of positioning rod frames, and the two groups of liquid outlet guide ends 33 are respectively and correspondingly fixed to the two bottom ends of the two groups of positioning rod frames.
[0055] The bubble blowing arc frame 34 is provided with two groups, and the two groups of bubble blowing arc frames 34 are respectively and correspondingly fixed to the two groups of positioning rod frames. The top and bottom ends of the two groups of bubble blowing arc frames 34 are respectively and correspondingly connected to the two groups of liquid inlet guide ends 32 and the two groups of liquid outlet guide ends 33 through flow channels. The facing surfaces of the two groups of bubble blowing arc frames 34 are also provided with flow channel penetration holes, so that the two groups of bubble blowing arc frames 34 can effectively realize opening and closing action based on the synchronous corresponding rotation of the two groups of positioning rod frames. The bubble blowing liquid flow path between the liquid inlet guide end 32 and the liquid outlet guide end 33 is further used to cover the bubble film between the two groups of bubble blowing arc frames 34 when the two groups of bubble blowing arc frames 34 are opened.
[0056] The wind guiding channel part 35 is provided with at least two groups, and each group of the wind guiding channel part 35 is arranged to be respectively and correspondingly connected to the two groups of arc-shaped rods of the two groups of positioning rod frames. The inner arc surfaces of the two groups of arc-shaped rods in each group of the wind guiding channel part 35 are arranged to face each other, so that the two groups of arc-shaped rods can effectively form an adaptive bubble blowing wind guiding channel based on the synchronous corresponding rotation of the two groups of positioning rod frames.
[0057] Please continue to refer to Figure 1The bubble blowing driving structure 4 comprises a reciprocating motor 41, a transmission rod 42, a reciprocating slide rod 43 and a bubble blowing driving plate 44; wherein the base part of the reciprocating motor 41 is fixedly assembled on the motor fixing support 11; one end of the transmission rod 42 is fixedly assembled and connected with the rotary kinetic energy output part of the reciprocating motor 41, and the other end of the transmission rod 42 is rotatably assembled and connected with one end of the reciprocating slide rod 43; the reciprocating slide rod 43 is slidingly assembled on the guide seat body 12, so as to realize reciprocating sliding displacement of the reciprocating slide rod 43 through the reciprocating rotary driving action of the reciprocating motor 41 through the transmission rod 42; one end of the bubble blowing driving plate 44 is fixedly assembled and connected with the other end of the reciprocating slide rod 43, so as to realize synchronous reciprocating displacement of the bubble blowing driving plate 44 through the reciprocating sliding displacement of the reciprocating slide rod 43, thereby driving the opening and closing of the liquid guiding and bubble blowing structure 3.
[0058] Specifically, the other end of the bubble blowing driving plate 44 is symmetrically provided with two groups of self-adapting limiting slide ways 45; two groups of the liquid outlet guide ends 33 are symmetrically extended towards the side of the two groups of positioning rod supports of the base frame body 31, and the two groups of the liquid outlet guide ends 33 are slidingly and correspondingly arranged in the two groups of self-adapting limiting slide ways 45; so as to realize the backward extension or forward retraction of the two groups of liquid outlet guide ends 33 through the reciprocating displacement of the bubble blowing driving plate 44, thereby further driving the two groups of positioning rod supports and the two groups of bubble blowing arc supports 34 to rotate and open and close, and the degree of functional automation is improved.
[0059] Please continue to refer to Figure 1 and Figure 2 The bubble blowing fan structure 5 comprises a fan motor 51 and a blowing blade 52; wherein the base part of the fan motor 51 is fixedly assembled on the top of the first bubble blowing assembly plate 21, and the kinetic energy output part of the fan motor 51 is fixedly and rotatably assembled and connected with the blowing blade 52; the blowing blade 52 is arranged corresponding to the center of the base frame body 31, so as to realize automatic blowing of bubbles of a specific size through the wind energy output by the fan motor 51 and the blowing blade 52.
[0060] The bubble machine device provided by the embodiment of the utility model further comprises a liquid inlet pipe, a liquid outlet pipe, a micro water pump and a liquid storage bin, wherein one end of the liquid inlet pipe is connected and assembled with the liquid inlet end 32, and the other end of the liquid inlet pipe is connected with the micro water pump; the micro water pump is arranged in the liquid storage bin, so as to realize automatic liquid supplement and ensure the continuity of subsequent bubble blowing action.
[0061] Although the utility model has been described in detail above with general description and specific embodiments, some modifications or improvements can be made on the basis of the utility model, which is obvious to those skilled in the art. Therefore, these modifications or improvements made on the basis of not deviating from the spirit of the utility model all belong to the range of protection required by the utility model.
Claims
1. An electrically controlled bubble blowing architecture, characterized by, It comprises: a positioning base structure; a liquid-guiding bubble-blowing structure, comprising two groups of bubble-blowing arc frames, which are respectively connected and arranged on the positioning base structure, and form an openable and closable bubble-blowing opening between the two groups of bubble-blowing arc frames; a bubble-blowing driving structure, which is fixedly and arranged on the positioning base structure, and has a reciprocating linear kinetic energy output end, the reciprocating linear kinetic energy output end of the bubble-blowing driving structure is respectively and correspondingly connected and arranged between the open and close driving ends of the two groups of bubble-blowing arc frames through transmission assembly; a bubble-blowing fan structure, which is fixedly and arranged on the positioning base structure, and has a wind energy output end, the wind energy output end of the bubble-blowing fan structure faces the openable and closable bubble-blowing opening.
2. The electrically controlled bubble-blowing frame structure according to claim 1, wherein the positioning base structure comprises a motor fixing support; the bubble-blowing driving structure comprises a reciprocating motor; the base part of the reciprocating motor is fixedly and arranged on the motor fixing support.
3. The electrically controlled bubble-blowing frame structure according to claim 2, wherein the positioning base structure further comprises a guide seat body; the guide seat body is fixedly and arranged on the top of the motor fixing support; the bubble-blowing driving structure further comprises a transmission rod, a reciprocating slide rod and a bubble-blowing driving plate; one end of the transmission rod is fixedly and correspondingly connected and arranged with the rotary kinetic energy output part of the reciprocating motor, the other end of the transmission rod is connected and arranged with one end of the reciprocating slide rod through transmission assembly, the reciprocating slide rod is slidingly arranged on the guide seat body; one end of the bubble-blowing driving plate is fixedly and correspondingly connected and arranged with the other end of the reciprocating slide rod, the other end of the bubble-blowing driving plate is connected and arranged with the open and close driving ends of the two groups of bubble-blowing arc frames through transmission assembly.
4. The electrically controlled bubble-blowing frame structure according to claim 3, wherein the positioning base structure further comprises a bubble-blowing extension support; the bottom end of the bubble-blowing extension support is fixedly and arranged on the top of the guide seat body; the two groups of bubble-blowing arc frames are respectively connected and arranged on the bubble-blowing extension support. It further comprises: an open and close assembly structure, comprising a first bubble-blowing assembly plate and a second bubble-blowing assembly plate; one end of the first bubble-blowing assembly plate is fixedly and arranged on the top of the guide seat body, one end of the second bubble-blowing assembly plate is fixedly and correspondingly connected and arranged with the top end of the bubble-blowing extension support; 5. The electrically controlled bubble architecture of claim 4, wherein, the top and bottom ends of the two groups of bubble-blowing arc frames are respectively and correspondingly connected and arranged on the other end of the second bubble-blowing assembly plate and the other end of the first bubble-blowing assembly plate.
6. The electrically controlled bubble-blowing frame structure according to claim 5, wherein the liquid-guiding bubble-blowing structure further comprises a base frame body, a liquid inlet guide opening end and a liquid outlet guide opening end; the base frame body is arranged as two groups of positioning rod frames connected and arranged through transmission assembly, the two bottom ends of the two groups of positioning rod frames are respectively connected and arranged on the other end of the first bubble-blowing assembly plate, and the two top ends of the two groups of positioning rod frames are respectively connected and arranged on the other end of the second bubble-blowing assembly plate. The liquid inlet guide end and the liquid outlet guide end are provided with two groups, and the two groups of liquid inlet guide ends are respectively and one by one correspondingly fixedly connected to the two top end portions of the two groups of positioning rod frames, and the two groups of liquid outlet guide ends are respectively and one by one correspondingly fixedly connected to the two bottom end portions of the two groups of positioning rod frames; The two groups of bubble blowing arc frames are respectively and one by one correspondingly fixedly connected to the two groups of positioning rod frames, and the top and bottom end portions of the two groups of bubble blowing arc frames are respectively and one by one correspondingly connected and arranged through the flow channels between the two groups of liquid inlet guide ends and the two groups of liquid outlet guide ends, the flow channel penetration holes are arranged between the opposite corresponding surfaces of the two groups of bubble blowing arc frames, and the opposite corresponding surfaces of the two groups of bubble blowing arc frames form openable and closable bubble blowing openings.
7. The electrically controlled bubble blowing frame structure according to claim 6, characterized in that, The bubble blowing driving plate is symmetrically provided with two groups of self-adaptive limiting sliding grooves as the reciprocating linear kinetic energy output ends of the bubble blowing driving structure; The two groups of liquid outlet guide ends are arranged as the opening and closing driving ends of the bubble blowing arc frame, and the two groups of liquid outlet guide ends are symmetrically arranged towards the side portions relative to the two groups of positioning rod frames of the base frame body, and the two groups of liquid outlet guide ends are respectively and one by one correspondingly and slidingly accommodated in the two groups of self-adaptive limiting sliding grooves.
8. The electrically controlled bubble blowing frame structure according to claim 6, characterized in that, The liquid guide bubble blowing structure further comprises a wind guide channel portion; The wind guide channel portion is provided with at least two groups, and each group of the wind guide channel portion is arranged as two groups of arc-shaped rods which are respectively and one by one correspondingly and continuously fixedly connected to the two groups of positioning rod frames, and the inner arc surfaces of the two groups of arc-shaped rods in each group of the wind guide channel portion are oppositely arranged; The bubble blowing fan structure comprises a fan motor and a blowing blade; The base portion of the fan motor is fixedly and assembled arranged at the top position of the first bubble blowing assembly plate, and the kinetic energy output portion of the fan motor is transmissionally and fixedly and assembled connected and arranged with the blowing blade; The blowing blade is arranged corresponding to the center position of the base frame body.
9. A bubble machine device, characterized by The electrically controlled bubble blowing frame structure according to any one of claims 6-8.