Double-row paper cup synchronous output mechanism

By combining the conveying mechanism, guide mechanism and wheel mechanism, the problem of product stuck or tilting during the conveying process is solved, and a stable and continuous double-draft paper cup output is achieved to meet the needs of large-scale production.

CN223149567UActive Publication Date: 2025-07-25HANGZHOU PANJI INTELLIGENT DEVICE CO LTD
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Patent Information

Application Number
CN202422458009.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-11
Publication Date
2025-07-25
Estimated Expiration
2034-10-11

AI Technical Summary

Technical Problem

During the transportation process, existing conveyor belts are prone to stuck or tilt each other, and cannot continuously and stably turn from multiple rows to two rows of products, which cannot meet the needs of large-scale production.

Method used

The combination design includes a conveying mechanism, a first guide mechanism, a swing mechanism, a second guide mechanism and a wheel mechanism is adopted. The first guide mechanism assists in the guidance, and the second guide mechanism is guided in a column. The swing mechanism prevents jamming, and the wheel mechanism is quantitatively controlled to achieve stable transportation of product materials.

Benefits of technology

It has achieved the smooth transformation of product materials from multiple columns to two columns during the transportation process, and the continuous and stable transportation is avoided and met the needs of large-scale production.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a double-row paper cup synchronous output mechanism which comprises a conveying mechanism, a first guide mechanism, a swing mechanism, a second guide mechanism and a dial wheel mechanism used for quantitatively controlling conveying, and the first guide mechanism and the second guide mechanism are both installed on the front side and the rear side of the conveying mechanism. The first guiding mechanism is used for achieving side auxiliary guiding when product materials enter the conveying mechanism, the second guiding mechanism is used for guiding, arranging and conveying the product materials in columns, and the swing mechanism is installed in the middle of the bottom of the conveying mechanism and used for horizontally swinging in a reciprocating mode to prevent the product materials on the conveying mechanism from being mutually clamped. Through the implementation of the utility model, a plurality of columns of product materials can be smoothly changed into two columns of products in the conveying process, a large number of materials can be continuously and stably conveyed, the product materials are not easy to clamp with each other, the operation is smooth, the requirements of large-scale production are effectively met, and certain use value and popularization value are realized.
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Description

Technical Field

[0001] The utility model relates to the technical field of outer packaging of product conveyor lines, in particular to a double-row paper cup synchronous output mechanism. Background Art

[0002] With the continuous development of automation technology, conveyor belts have also been further improved and applied. The automated conveyor belt adopts an electronic control system, which can realize functions such as automatic sorting, counting, and positioning of materials, greatly improving the automation level of the production line. However, during the conveying process of the existing conveyor belt, products are prone to getting stuck with each other or tilting, and cannot smoothly change from multiple columns to two columns of products, and cannot continuously and stably convey a large amount of materials, failing to meet the requirements of large-scale production.

[0003] In summary, a double-row paper cup synchronous output mechanism is needed to solve the deficiencies in the prior art. Summary of the Utility Model

[0004] Aiming at the deficiencies of the prior art, the utility model provides a double-row paper cup synchronous output mechanism to solve the above problems.

[0005] To achieve the above object, the utility model provides the following technical solution: A double-row paper cup synchronous output mechanism includes a conveying mechanism, a first guiding mechanism, a swinging mechanism, a second guiding mechanism, and a dial wheel mechanism for quantitatively controlling the conveying. The first guiding mechanism and the second guiding mechanism are both installed on the front and rear sides of the conveying mechanism. The first guiding mechanism is used to provide side auxiliary guiding when the product materials enter the conveying mechanism, and the second guiding mechanism is used to guide and arrange the product materials in columns for conveying. The swinging mechanism is installed in the middle of the bottom of the conveying mechanism and is used for horizontal reciprocating swinging to prevent the product materials on the conveying mechanism from getting stuck with each other. The dial wheel mechanism is installed on the conveying mechanism and close to one end of the first guiding mechanism. Through the coordinated use of the first guiding mechanism, the swinging mechanism, the second guiding mechanism, and the dial wheel mechanism, the product materials on the conveying mechanism can smoothly change from multiple columns to two columns of products during the conveying process, and can continuously and stably convey a large amount of materials. The product materials are not easily stuck with each other, and the operation is smooth, effectively meeting the requirements of large-scale production.

[0006] Furthermore, the dial wheel mechanism includes a fixing plate, bearings, a dial wheel motor, a coupling, a rotating shaft, a lower dial wheel, and an upper dial wheel. The fixing plate is fixedly installed on the bottom of the conveying mechanism. The dial wheel motors are symmetrically installed at the front and rear ends of the fixing plate. The output end of the dial wheel motor is connected to the rotating shaft through the coupling. The top end of the rotating shaft passes through the bearings and is connected to the lower dial wheel and the upper dial wheel. The bearings are symmetrically installed at the front and rear ends of the conveying mechanism.

[0007] Further, the outer circumferences of the lower and upper lifting wheels are equidistantly spaced apart with outer tangent arcs for toggling the products to be conveyed on the conveying mechanism.

[0008] Further, the swinging mechanism includes a base, a swinging motor, an eccentric member, a movable plate, a slider, a light shaft, a fixed seat, a swinging bracket, and a swinging plate. The swinging motor is installed at the bottom of the base, the output end of the swinging motor is in transmission connection with the eccentric member, the eccentric member is connected to the movable plate through a connecting rod, the bottom of the movable plate is slidably connected to the light shaft through the slider, the light shaft is installed on the base through the fixed seat, and the swinging brackets and the swinging plates are symmetrically installed at the front and rear ends of the movable plate.

[0009] Further, the first guiding mechanism includes an input guiding guardrail, and the second guiding mechanism includes an output guiding guardrail and a separating rail. The input guiding guardrail and the output guiding guardrail are symmetrically installed on the left and right sides of the conveying mechanism, and the separating rail is connected to the output guiding guardrail through a connecting rod.

[0010] Further, the conveying mechanism includes a frame, a housing, and a transmission chain plate. The frame is installed at the bottom of the housing, and the transmission chain plate is installed on the housing.

[0011] The beneficial effects of the present utility model: Through the combined use of the first guiding mechanism, the swinging mechanism, the second guiding mechanism, and the wheel toggling mechanism, the product materials on the conveying mechanism can smoothly change from multiple columns to two columns during the conveying process, and can continuously and stably convey a large amount of materials. The product materials are not easily stuck to each other, the operation is smooth, effectively meeting the requirements of large-scale production, and having certain use value and promotion value. BRIEF DESCRIPTION OF THE DRAWINGS

[0012] In order to more clearly illustrate the technical solutions in the embodiments of the present utility model or the prior art, the following will briefly introduce the drawings required for use in the description of the embodiments or the prior art. Obviously, the following drawings are only some embodiments of the present utility model. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings.

[0013] Figure 1 It is a three-dimensional structural schematic diagram of the present utility model.

[0014] Figure 2 It is a side structural schematic diagram of the wheel toggling mechanism and the conveying mechanism of the present utility model.

[0015] Figure 3 It is a three-dimensional structural schematic diagram of the swinging mechanism of the present utility model without the swinging plate installed.

[0016] Figure 4 It is a side structural schematic diagram of the swinging mechanism of the present utility model.

[0017] In the figure: 1 - conveying mechanism, 11 - frame, 12 - casing, 13 - transmission chain plate; 2 - first guiding mechanism, 21 - input guiding guardrail; 3 - swinging mechanism, 31 - base, 32 - swinging motor, 33 - eccentric part, 34 - movable plate, 35 - slider, 36 - optical axis, 37 - fixed seat, 38 - swinging bracket, 39 - swinging plate; 4 - second guiding mechanism, 41 - output guiding guardrail, 42 - partition bar; 5 - dial wheel mechanism, 51 - fixing plate, 52 - bearing, 53 - dial wheel motor, 54 - coupling, 55 - rotating shaft, 56 - lower dial wheel, 57 - upper dial wheel. Specific embodiments

[0018] For the convenience of understanding the present utility model, the present utility model will be described in more detail below in conjunction with the accompanying drawings and specific embodiments. It should be noted that when an element is expressed as "fixed to" another element, it can be directly on the other element, or there can be one or more intermediate elements therebetween. When an element is expressed as "connected to" another element, it can be directly connected to the other element, or there can be one or more intermediate elements therebetween. The terms "vertical", "horizontal", "left", "right" and similar expressions used in this specification are only for the purpose of illustration.

[0019] Unless otherwise defined, all technical and scientific terms used in this specification have the same meaning as commonly understood by those skilled in the technical field to which the present utility model belongs. The terms used in the specification of the present utility model are only for the purpose of describing specific embodiments, and are not used to limit the present utility model. The term "and / or" used in this specification includes any and all combinations of one or more of the related listed items.

[0020] As Figure 1 、 2 As shown in Figures 1, 2, 3, and 4, a double-row paper cup synchronous output mechanism includes a conveying mechanism 1, a first guiding mechanism 2, a swinging mechanism 3, a second guiding mechanism 4, and a dial wheel mechanism 5 for quantitatively controlling the conveying. The first guiding mechanism 2 and the second guiding mechanism 4 are both installed on the front and rear sides of the conveying mechanism 1. The first guiding mechanism 2 is used to provide side auxiliary guiding when the product material enters the conveying mechanism 1, and the second guiding mechanism 4 is used to guide and arrange the product material in a divided column for conveying. The swinging mechanism 3 is installed in the middle of the bottom of the conveying mechanism 1, and the swinging mechanism 3 is used for horizontal reciprocating swinging to prevent the product materials on the conveying mechanism 1 from getting stuck with each other. The dial wheel mechanism 5 is installed on the conveying mechanism 1 and close to one end of the first guiding mechanism 2.

[0021] As an implementation manner, the dialing wheel mechanism 5 includes a fixing plate 51, bearings 52, a dialing wheel motor 53, a coupling 54, a rotating shaft 55, a lower dialing wheel 56 and an upper dialing wheel 57. The fixing plate 51 is fixedly installed at the bottom of the conveying mechanism 1. The dialing wheel motors 53 are symmetrically installed at the front and rear ends of the fixing plate 51. The output ends of the dialing wheel motors 53 are connected to the rotating shaft 55 through the coupling 54. The top end of the rotating shaft 55 passes through the bearings 52 and is connected to the lower dialing wheel 56 and the upper dialing wheel 57. The bearings 52 are symmetrically installed at the front and rear ends of the conveying mechanism 1.

[0022] As an implementation manner, the outer tangent arcs are equidistantly spaced on the circumferences of the lower dialing wheel 56 and the upper dialing wheel 57, and the outer tangent arcs are used to dial the products to be conveyed on the conveying mechanism 1.

[0023] As an implementation manner, the swinging mechanism 3 includes a base 31, a swinging motor 32, an eccentric member 33, a movable plate 34, a slider 35, a smooth shaft 36, a fixed seat 37, a swinging bracket 38 and a swinging plate 39. The swinging motor 32 is installed at the bottom of the base 31. The output end of the swinging motor 32 is in transmission connection with the eccentric member 33. The eccentric member 33 is connected to the movable plate 34 through a connecting rod. The bottom of the movable plate 34 is slidably connected to the smooth shaft 36 through the slider 35. The smooth shaft 36 is installed on the base 31 through the fixed seat 37. The swinging brackets 38 and the swinging plates 39 are symmetrically installed at the front and rear ends of the movable plate 34.

[0024] As an implementation manner, the first guiding mechanism 2 includes an input guiding guardrail 21, and the second guiding mechanism 4 includes an output guiding guardrail 41 and a partition 42. The input guiding guardrail 21 and the output guiding guardrail 41 are symmetrically installed on the left and right sides of the conveying mechanism 1. The partition 42 is connected to the output guiding guardrail 41 through a connecting rod.

[0025] Working principle of the utility model: When in use, a number of products are placed on the transmission chain plate of the conveying mechanism 1. The product material (paper cup) is guided along a predetermined path through the input guiding guardrail 21 to prevent the paper cup from shifting. Specifically, it is quantitatively controlled by the dial wheel mechanism 5. The product materials (paper cups) in front of the dial wheels (lower dial wheel 56, upper dial wheel 57) on the front and back sides of the transmission chain plate can be concentrated. The rotation speed is controlled by the dial wheel motor 53. The dial wheel motor 53 transmits power to the rotating shaft 55 through the coupling 54, and then to the lower dial wheel 56 and the upper dial wheel 57 for quantitative control. A reasonable transmission mechanism is designed to ensure the high efficiency and stability of power transmission. Moreover, the upper and lower double-layer dial wheel blades effectively prevent the product material (paper cup) from tilting. The dial wheel motor 53 is fixed by the fixing plate 51, and the rotating shaft 55 is fixedly supported by the bearing 52. The support structure is used to fix and support the entire dial wheel mechanism 5 to ensure its stability and reliability. The entire motion system operates relatively independently, enabling the product material (paper cup) to enter the subsequent process in an orderly manner, and at the same time, the number of paper cups is also controlled to a certain extent. When the product material (paper cup) reaches the middle of the conveying mechanism 1, the swing mechanism 3 controls the rotation of the eccentric member 33, drives the movable plate 34 through the connecting rod. The slider 35 is fixed under the movable plate 37. When the eccentric member 33 rotates, the movable plate 37 rotates synchronously. The swing bracket 38 and the swing plate 39 are fixed on the movable plate 34 and move left and right. These mechanisms can convert the rotational motion of the swing motor 32 into the left and right swing of the swing bracket 38 and the swing plate 39. The left and right movement of the swing mechanism 3 prevents the product from jamming or stopping on the conveyor belt.

[0026] It should be noted that the description and the accompanying drawings of the utility model give the preferred embodiments of the utility model. However, the utility model can be implemented in many different forms and is not limited to the embodiments described in this specification. These embodiments are not additional limitations to the content of the utility model. The purpose of providing these embodiments is to make the understanding of the disclosed content of the utility model more thorough and comprehensive. Moreover, the above technical features continue to be combined with each other to form various embodiments not listed above, which are all regarded as within the scope described in the description of the utility model. Further, for those of ordinary skill in the art, improvements or modifications can be made according to the above description, and all such improvements and modifications should fall within the protection scope of the appended claims of the utility model.

Claims

1. A double-row paper cup synchronous output mechanism, characterized in that, The invention comprises a conveying mechanism (1), a first guide mechanism (2), a swing mechanism (3), a second guide mechanism (4) and a dial mechanism (5) for quantitatively controlling conveying. The first guide mechanism (2) and the second guide mechanism (4) are both installed on the front and rear sides of the conveying mechanism (1). The first guide mechanism (2) is used for side auxiliary guidance when product materials enter the conveying mechanism (1). The second guide mechanism (4) is used for guiding and arranging product materials for conveying in columns. The swing mechanism (3) is installed in the middle of the bottom of the conveying mechanism (1). The swing mechanism (3) is used for horizontal reciprocating swing to prevent product materials on the conveying mechanism (1) from getting stuck to each other. The dial mechanism (5) is installed on the conveying mechanism (1) and is close to one end of the first guide mechanism (2).

2. The synchronous output mechanism for double-row paper cups according to claim 1, wherein The thumbwheel mechanism (5) comprises a fixed plate (51), a bearing (52), a thumbwheel motor (53), a coupling (54), a rotating shaft (55), a lower thumbwheel (56) and an upper thumbwheel (57); the fixed plate (51) is fixedly mounted on the bottom of the conveying mechanism (1); the thumbwheel motor (53) is symmetrically mounted on the front and rear ends of the fixed plate (51); the output end of the thumbwheel motor (53) is connected to the rotating shaft (55) through the coupling (54); the top end of the rotating shaft (55) passes through the bearing (52) and is connected to the lower thumbwheel (56) and the upper thumbwheel (57); the bearing (52) is symmetrically mounted on the front and rear ends of the conveying mechanism (1).

3. The synchronous output mechanism for double-row paper cups according to claim 2, wherein The circumferential arcs are equidistantly spaced apart on the circumference of the lower dial wheel (56) and the upper dial wheel (57), and the circumferential arcs are used to dial the product to be conveyed on the conveying mechanism (1).

4. The synchronous output mechanism for double-row paper cups according to claim 1, characterized in that, The swing mechanism (3) comprises a base (31), a swing motor (32), an eccentric component (33), a movable plate (34), a slider (35), an optical axis (36), a fixed seat (37), a swing bracket (38), and a swing plate (39). The swing motor (32) is mounted on the bottom of the base (31). The output end of the swing motor (32) is transmission-connected to the eccentric component (33). The eccentric component (33) is connected to the movable plate (34) via a connecting rod. The bottom of the movable plate (34) is slidably connected to the optical axis (36) via a slider (35). The optical axis (36) is mounted on the base (31) via a fixed seat (37). The swing bracket (38) and the swing plate (39) are symmetrically mounted at the front and rear ends of the movable plate (34).

5. The synchronous output mechanism for double-row paper cups according to claim 1, wherein The first guide mechanism (2) comprises an input guide guardrail (21), and the second guide mechanism (4) comprises an output guide guardrail (41) and a partition fence (42). The input guide guardrail (21) and the output guide guardrail (41) are symmetrically installed on the left and right sides of the conveying mechanism (1), and the partition fence (42) is connected to the output guide guardrail (41) via a connecting rod.

6. The synchronous output mechanism for double-row paper cups according to claim 1, characterized in that, The conveying mechanism (1) comprises a frame (11), a casing (12) and a transmission chain plate (13); the frame (11) is mounted on the bottom of the casing (12), and the transmission chain plate (13) is mounted on the casing (12).