Wireless microphone packaging lining loading structure convenient to fold and form

By using a paper packaging liner structure that can be easily folded and molded, the problems of high cost and low production efficiency of traditional wireless microphone shells are solved, achieving the effects of simplified processes, reduced costs, and environmentally friendly production.

CN223816209UActive Publication Date: 2026-01-20GUANGDONG DINGCHUANG SMART MANUFACTURING CO LTD
View PDF 0 Cites 1 Cited by

Patent Information

Application Number
CN202520303727.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-24
Publication Date
2026-01-20
Estimated Expiration
2035-02-24

AI Technical Summary

Technical Problem

Traditional wireless microphones have high production costs for their blister housings and are difficult to degrade. Traditional cardboard box structures have complicated manufacturing processes, which limit production efficiency and market competitiveness.

Method used

The paper packaging liner structure, which is easy to fold and form, includes a base plate, a limiting beam and a cover plate. It is folded and formed by pre-set creases to form a receiving slot for loading transmitters and receivers. It can be put into production with only one bonding.

Benefits of technology

It simplifies the production process, improves ease of operation and production efficiency, reduces costs, meets environmental protection requirements, and increases production capacity.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223816209U_ABST
    Figure CN223816209U_ABST
Patent Text Reader

Abstract

The utility model discloses a wireless microphone packaging lining loading structure convenient to fold and form, which comprises a bottom plate, a first limiting beam and a second limiting beam, and the first limiting beam and the second limiting beam are folded and formed at two ends of the bottom plate along a folding line. A containing groove used for containing an emitter and a receiver is defined between the first limiting beam and the second limiting beam, and one end of the containing groove is provided with a fixing groove used for being connected with a connecting terminal on the receiver in a clamping mode on the first limiting beam. According to the design scheme provided by the utility model, the paper packaging box body is formed by folding, the paper packaging box body can be put into a production line to be folded and formed by packaging personnel in an initial state formed by one-time bonding, the structure is simple, the production is convenient, the packaging and production are convenient, and the production efficiency of the wireless microphone can be improved.
Need to check novelty before this filing date? Find Prior Art

Description

TECHNICAL FIELD

[0001] The utility model belongs to the packaging technical field, concretely is a kind of wireless microphone packing inner lining loading structure of convenient folding and forming. BACKGROUND

[0002] With the vigorous development of Internet, Internet of Things, new concept education / conference, live broadcast economy and other industries, users demand more and more for microphones.

[0003] The transmitter and receiver of the conventional wireless microphone are usually loaded in a plastic suction shell. The production cost of such plastic suction shell is relatively high, which not only increases the overall cost of the product, but also limits the market competitiveness of the product to some extent. In addition, most plastic suction shells are made of plastic materials that are difficult to degrade, which does not meet the current environmental protection requirements. A small part of the paper box structure is used to load the transmitter and receiver. However, most of the conventional paper boxes on the market rely on multiple parts to be bonded by glue to form, which not only makes the manufacturing process complicated, but also greatly restricts the improvement of production efficiency, which is not conducive to the demand of modern high-efficiency production process. SUMMARY

[0004] To overcome the shortcomings of the prior art, the utility model aims to provide a wireless microphone packing inner lining loading structure of convenient folding and forming.

[0005] The technical scheme adopted by the utility model is as follows: a wireless microphone packing inner lining loading structure of convenient folding and forming, comprising a bottom plate, a first limiting beam and a second limiting beam, wherein the first limiting beam and the second limiting beam are folded and formed along the folding line at both ends of the bottom plate, and a containing groove for containing the transmitter and receiver is formed between the first limiting beam and the second limiting beam.

[0006] In a preferred embodiment, a middle plate is provided between the first limiting beam and the second limiting beam, a first crease is provided between the first limiting beam and the second limiting beam and the middle plate, a second crease is provided between the first limiting beam and the second limiting beam and the bottom plate, and the first limiting beam and the second limiting beam are folded and formed on the bottom plate through the first crease and the second crease.

[0007] In a preferred embodiment, the first limiting beam and the second limiting beam are provided in a flat plate structure in the initial state; the first limiting beam and the second limiting beam are provided in a prismatic sleeve structure in the folded state, and have a cavity with openings at both ends.

[0008] In a preferred embodiment, the first limiting beam comprises a first horizontal plate and first vertical plates arranged at two ends of the first horizontal plate, one end of each of the two first vertical plates is connected with the middle plate and the bottom plate respectively, the first crease is formed between the middle plate and the first vertical plate adjacent to the middle plate, and the second crease is formed between the bottom plate and the first vertical plate adjacent to the bottom plate; the third crease is formed at the connection between the first horizontal plate and the two first vertical plates.

[0009] In a preferred embodiment, the second limiting beam comprises a second horizontal plate and second vertical plates arranged at two ends of the second horizontal plate, one end of each of the two second vertical plates is connected with the middle plate and the bottom plate respectively, the first crease is formed between the middle plate and the second vertical plate adjacent to the middle plate, and the second crease is formed between the bottom plate and the second vertical plate adjacent to the bottom plate; the fourth crease is formed at the connection between the second horizontal plate and the two second vertical plates.

[0010] In a preferred embodiment, the front and rear ends of the bottom plate are provided with cover plates for covering the inner cavities of the first limiting beam and the second limiting beam, and the folding direction of the cover plates is arranged perpendicularly to the folding direction of the first limiting beam and the second limiting beam.

[0011] In a preferred embodiment, the cover plate comprises a baffle plate and locking plates, the baffle plate is connected to the end of the bottom plate, the locking plates are two and are connected to the two ends of the baffle plate away from the bottom plate, the fifth crease is arranged between the baffle plate and the bottom plate, the sixth crease is arranged between the baffle plate and the locking plates, the locking plates are folded along the sixth crease and are clamped in the inner cavities of the first limiting beam and the second limiting beam.

[0012] In a preferred embodiment, one end of the accommodating groove is provided with a fixing groove for clamping the connecting terminal of the receiver on the first limiting beam.

[0013] In a preferred embodiment, the first vertical plate, the first horizontal plate, the other first vertical plate, the middle plate, the second vertical plate, the second horizontal plate, the other second vertical plate and the bottom plate are sequentially connected in a linear direction to form a flat plate structure, the end of the bottom plate away from the second vertical plate is provided with an adhesive member, and the end of the bottom plate away from the second vertical plate is connected with the first vertical plate through the adhesive member.

[0014] In a preferred embodiment, the first limiting beam, the second limiting beam, the bottom plate, the middle plate and the cover plate are all made of paper material.

[0015] In summary, due to the adoption of the above technical scheme, the beneficial effects of the present application are:

[0016] 1. The utility model discloses a paper packaging box body is formed into by folding, only needs the initial state of once bonding to put into the production line by the packing personnel and is formed into, simple structure, convenient production and pack conveniently and put into production, improve wireless microphone production efficiency;

[0017] 2. The utility model discloses, the containing groove and the limiting beam in the box body are all formed into by the preset crease guide folding, be favorable to the operation convenience of packing personnel, further improve the forming speed of loading structure, further improve the production capacity. ACCURACY OF DRAWINGS

[0018] Figure 1 It is plane structure schematic diagram when the utility model loads launcher and receiver;

[0019] Figure 2 It is the sectional plane structure schematic diagram of the utility model first limiting beam and second limiting beam are in initial state whole;

[0020] Figure 3 It is the sectional plane structure schematic diagram of the utility model first limiting beam and second limiting beam are in folding state whole;

[0021] Figure 4 It is plane structure schematic diagram of the utility model whole in unfolding state;

[0022] Figure 5 It is the overhead plane structure schematic diagram of the utility model cover board is in unfolding state whole;

[0023] Figure 6 It is the overhead plane structure schematic diagram of the utility model first limiting beam and second limiting beam are in initial state whole;

[0024] Figure 7 It is the principle schematic diagram of the utility model whole in folding state.

[0025] Mark in drawing:

[0026] 100-first limiting beam, 110-first horizontal plate, 120-first vertical plate;

[0027] 200-second limiting beam, 210-second horizontal plate, 220-second vertical plate;

[0028] 300-containing groove;

[0029] 400-fixing groove;

[0030] 500-receiver;

[0031] 600-launcher;

[0032] 700-covering plate, 710-locking plate, 720-baffle plate;

[0033] 800-bottom plate, 810-bonding piece;

[0034] 900-middle plate. DETAILED DESCRIPTION

[0035] In order to make the purpose, technical scheme and advantages of the utility model more clear, the utility model is further described in detail below in combination with the drawings and examples. It should be understood that the specific examples described herein are only used to explain the utility model and are not used to limit the utility model.

[0036] A wireless microphone package inner lining loading structure of convenient folding and forming, referring to Figures 1-7 , comprising a bottom plate 800, a first limiting beam 100 and a second limiting beam 200, the first limiting beam 100 and the second limiting beam 200 are folded and formed at both ends of the bottom plate 800 along the folding line, and a containing groove 300 for containing the transmitter 600 and the receiver 500 is formed between the first limiting beam 100 and the second limiting beam 200, the containing groove 300 and the limiting beam in the loading structure are folded and formed by the preset creases, which is beneficial to improve the operation convenience of the packaging personnel, further improve the forming speed of the loading structure, and further improve the production capacity. Wherein, the size of the first limiting beam 100 and the second limiting beam 200 can be flexibly adjusted according to the size of the transmitter 600 and the receiver 500, so as to adjust the size of the containing groove 300 and further adapt to the transmitter 600 and the receiver 500 of corresponding size.

[0037] Referring to Figure 1 and Figure 5 , one end of the containing groove 300 is provided with a fixing groove 400 for clamping the connecting terminal on the receiver 500 on the first limiting beam 100, the designed fixing groove 400 can be used to place the connecting terminal on the receiver 500, and can also assist in limiting the installation position of the receiver 500.

[0038] It can be understood that in other examples, the fixing groove 400 can also be designed at the end of the second limiting beam 200 facing the containing groove 300.

[0039] Further, the first limiting beam 100 and the second limiting beam 200 are provided with a middle plate 900, the first limiting beam 100 and the second limiting beam 200 are provided with a first crease between the middle plate 900, the first limiting beam 100 and the second limiting beam 200 are provided with a second crease between the bottom plate 800, the first limiting beam 100 and the second limiting beam 200 are folded and formed on the bottom plate 800 through the first crease and the second crease, the paper packaging box body (loading structure) is folded and formed by folding and forming, and only needs to be once bonded to form an initial state and can be put into a production line by a packaging person for folding and forming, so that the structure is simple, production is convenient and packaging is convenient, and the overall production efficiency can be improved.

[0040] Referring to Figure 1 , Figure 2 and Figure 3 , the first limiting beam 100 and the second limiting beam 200 are provided in a flat plate structure in the initial state; the first limiting beam 100 and the second limiting beam 200 are provided in a prismatic sleeve structure in the folded state, and have a cavity with openings at the front and rear ends. It can be understood that the flat plate structure before folding can reduce the overall thickness, and more loading structures can be placed in a limited space. When folded, the prismatic sleeve structure formed by the first limiting beam 100 and the second limiting beam 200 can serve as a closed portion on both sides of the containing groove 400, and can also assist in positioning the placed transmitter 600 and receiver 500.

[0041] Further, the first limiting beam 100 includes a first horizontal plate 110 and first vertical plates 120 provided at both ends of the first horizontal plate 110, one end of each of the two first vertical plates 120 is connected to the middle plate 900 and the bottom plate 800, the first crease is formed between the middle plate 900 and the first vertical plate 120 adjacent thereto, the second crease is formed between the bottom plate 800 and the first vertical plate 120 adjacent thereto, and the third crease is formed at the connection between the first horizontal plate 110 and the two first vertical plates 120; the second limiting beam 200 includes a second horizontal plate 210 and second vertical plates 220 provided at both ends of the second horizontal plate 210, one end of each of the two second vertical plates 220 is connected to the middle plate 900 and the bottom plate 800, the first crease is formed between the middle plate 900 and the second vertical plate 220 adjacent thereto, the second crease is formed between the bottom plate 800 and the second vertical plate 220 adjacent thereto, and the fourth crease is formed at the connection between the second horizontal plate 210 and the two second vertical plates 220. The creases between the vertical plate and the horizontal plate and the creases between the vertical plate and the middle plate and the bottom plate can be formed by an external creasing machine (not shown in the figure).

[0042] Referring to Figures 3 to 6As shown, the front and rear ends of the bottom plate 800 are provided with cover plates 700 for covering the inner cavities of the first limiting beam 100 and the second limiting beam 200. The folding direction of the cover plate 700 is perpendicular to the folding direction of the first limiting beam 100 and the second limiting beam 200. The cover plate 700 includes a baffle plate 720 and locking plates 710. The baffle plate 720 is connected to the end of the bottom plate 800. The locking plates 710 are two and are connected to the two ends of the baffle plate 720 away from the bottom plate 800. The baffle plate 720 and the bottom plate 800 are provided with a fifth fold line. The baffle plate 720 and the locking plates 710 are provided with a sixth fold line. The locking plates 710 are folded along the sixth fold line 710 and are clamped in the inner cavities of the first limiting beam 100 and the second limiting beam 200. The upwardly folded baffle plate 720 can close the openings at the two ends of the containing groove 300, so as to form a containing space with only an upper opening. At the same time, the clamping cooperation of the locking plates 710 with the first limiting beam 100 and the second limiting beam 200 can improve the support strength of the overall loading structure.

[0043] Referring to Figure 4 and Figure 6 As shown, a first vertical plate 120, a first horizontal plate 110, another first vertical plate 120, a middle plate 900, a second vertical plate 220, a second horizontal plate 210, another second vertical plate 220 and a bottom plate 800 are sequentially connected in a linear direction to form a flat plate structure. The end of the bottom plate 800 away from the second vertical plate 220 is provided with an adhesive member 810. The end of the bottom plate 800 away from the second vertical plate 220 is connected to a first vertical plate through the adhesive member 810. Before being folded and formed, the flat plate structure is connected by the end of the bottom plate 800 to a first vertical plate 120 through the adhesive member 810, and then the entire flat plate paper structure is pressed and formed into a first whole and a second whole through a fold line by an external pressing device (not shown in the figure).

[0044] Referring to Figure 2 and Figure 6 As shown, a first vertical plate 120, a bottom plate 800 and another second vertical plate 220 are horizontally coplanarly connected to form a first whole. Another first vertical plate 120, a middle plate 900, a second vertical plate 220 and a second horizontal plate 210 are horizontally coplanarly connected to form a second whole. The two ends of the first whole and the second whole are connected. The above forms the initial state of the loading structure before being folded and formed.

[0045] Further, the first limiting beam 100, the second limiting beam 200, the bottom plate 800, the middle plate 900 and the cover plate 700 are all made of paper material. Paper packaging can be reused, is energy-saving and environment-friendly, and paper material is widely available, low in cost, various in types and easy to mass-produce.

[0046] Referring toFigure 7 The specific folding process is shown as follows:

[0047] 1. In the initial state, the first vertical plate 120 and the second vertical plate 220 arranged horizontally are folded upward by the second crease to the vertical state;

[0048] 2. The first horizontal plate 110 and the second horizontal plate 210 are folded downward by the crease until they are arranged horizontally;

[0049] 3. The other first vertical plate 120 and the other second vertical plate 220 are folded downward by the crease to the vertical state;

[0050] 4. The middle plate 900 is pressed during the folding of the first vertical plate 120 and the second vertical plate 220, the first vertical plate 120 and the second vertical plate 220 are folded by the crease relative to the middle plate 900, the middle plate 900 can still be arranged horizontally and closely attached to the bottom plate 800, and at this time, the first limiting beam 100 and the second limiting beam 200 are formed;

[0051] 5. The operator folds the baffle 720 upward until the inner cavity end of the first limiting beam 100 and the second limiting beam 200 is covered, and then folds the locking plate 710 by the crease and clamps it at the inner cavity end of the first limiting beam 100 and the second limiting beam 200, so as to form the loading structure with the accommodating groove 300.

[0052] It should be noted that if the embodiment of the utility model has directionality indication (such as up, down, left, right, front, back, etc.), the directionality indication is only used to explain the relative position relationship, movement condition, etc. between the components in a certain posture, if the certain posture changes, the directionality indication also changes accordingly.

[0053] In addition, if the embodiment of the utility model has the description of "first", "second" and the like, the description of "first", "second" and the like is only for the purpose of description, and cannot be understood as indicating or implying the relative importance or implicitly indicating the number of the indicated technical features. Therefore, the features limited by "first", "second" can explicitly or implicitly include at least one of the features.

[0054] The above is only the preferred embodiment of the utility model, and does not limit the patent range of the utility model, and any equivalent structural transformation made by using the utility model specification and the drawings, or direct / indirect application in other related technical fields is included in the patent protection range of the utility model.

Claims

1. A wireless microphone package-in-liner loading structure for convenient folding and forming, characterized by, The application relates to a bottom plate, a first limiting beam and a second limiting beam, wherein the first limiting beam and the second limiting beam are folded along a folding line and formed on both ends of the bottom plate, and a containing groove for containing a transmitter and a receiver is formed between the first limiting beam and the second limiting beam.

2. The convenient folding and forming wireless microphone package insert loading structure of claim 1, wherein: A middle plate is arranged between the first limiting beam and the second limiting beam, a first crease is arranged between the first limiting beam, the second limiting beam and the middle plate, a second crease is arranged between the first limiting beam, the second limiting beam and the bottom plate, and the first limiting beam and the second limiting beam are folded and formed on the bottom plate through the first crease and the second crease.

3. The convenient folding wireless microphone package insert loading structure of claim 2, wherein: The first limiting beam and the second limiting beam are arranged in a flat plate structure in an initial state, and are arranged in a prismatic sleeve structure in a folded state, and have cavities with front and rear openings.

4. The convenient folding wireless microphone package insert loading structure of claim 2, wherein: The first limiting beam comprises a first horizontal plate and first vertical plates arranged at both ends of the first horizontal plate, one end of each of the two first vertical plates is connected with the middle plate and the bottom plate, the first crease is formed between the middle plate and the first vertical plate adjacent to the middle plate, and the second crease is formed between the bottom plate and the first vertical plate adjacent to the bottom plate; and a third crease is formed at the connection between the first horizontal plate and the two first vertical plates.

5. The convenient folding wireless microphone package insert loading structure of claim 2, wherein: The second limiting beam comprises a second horizontal plate and second vertical plates arranged at both ends of the second horizontal plate, one end of each of the two second vertical plates is connected with the middle plate and the bottom plate, the first crease is formed between the middle plate and the second vertical plate adjacent to the middle plate, and the second crease is formed between the bottom plate and the second vertical plate adjacent to the bottom plate; and a fourth crease is formed at the connection between the second horizontal plate and the two second vertical plates.

6. The convenient folding wireless microphone package insert loading structure of claim 3, wherein: Covering plates are arranged at the front and rear ends of the bottom plate and used for covering the cavities in the first limiting beam and the second limiting beam, and the folding direction of the covering plates is perpendicular to the folding direction of the first limiting beam and the second limiting beam.

7. The conveniently foldable and shapeable wireless microphone package insert loading structure of claim 6, wherein: The covering plate comprises a baffle and locking plates, the baffle is connected to the end of the bottom plate, the locking plates are two and connected to the two ends of the baffle away from the bottom plate, a fifth crease is arranged between the baffle and the bottom plate, a sixth crease is arranged between the baffle and the locking plates, the locking plates are folded along the sixth crease and clamped in the cavities in the first limiting beam and the second limiting beam.

8. The convenient folding and forming wireless microphone package insert loading structure of claim 1, wherein: A fixing groove for clamping a terminal on a receiver is arranged at one end of the containing groove on the first limiting beam.

9. The convenient folding wireless microphone package insert loading structure of claim 4, wherein: The first vertical plate, the first horizontal plate, the other first vertical plate, the middle plate, the second vertical plate, the second horizontal plate, the other second vertical plate and the bottom plate are sequentially connected in a linear direction to form a flat plate structure, an adhesive member is arranged at the end of the bottom plate away from the second vertical plate, and the end of the bottom plate away from the second vertical plate is connected with the first vertical plate through the adhesive member.

10. The convenient folding shaped wireless microphone package insert loading structure of claim 6, wherein: The first limiting beam, the second limiting beam, the bottom plate, the middle plate and the covering plate are all made of paper material.

Citation Information

Cited By

  • Full-automatic folding device for paper lining of wireless microphone

    CN224013113U