Dentifrice product forming apparatus

CN224654648UActive Publication Date: 2026-08-21SHANDONG LUSI PET FOOD
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Patent Information

Application Number
CN202521744902.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-08-16
Publication Date
2026-08-21
Estimated Expiration
2035-08-16

AI Technical Summary

Technical Problem

[0009]针对现有技术中的缺陷,本实用新型提供洁齿酥产品定型设备,用以解决传统技术中的食品成型装置在对食品成型后,在开模过程中,还需操作人员手动的将产品从模具中取出,不仅效率低,并且取出产品过程中产品受到挤压易出现变形的现象;以及食品成型装置在对食品成型时,无法实现连续性生产,进而降低了食品成型效率的问题

Benefits of technology

[0024]通过放料机将面团放置在皮带输送机主体上,随着皮带输送机主体的转动将面团朝向进料导向结构移动,在进料导板以及进料导向皮带导向作用下,使得面团朝向冲压成型模具下方的区域移动,面团移动至模具主体下方时,伸缩缸带动模具主体下降,实现对面团进行冲压,面团在产品成型腔内成型成为产品,然后伸缩缸带动模具主体上升,通脱模吹气孔实现从顶部吹气,实现对产品进行脱模,防止产品随着模具主体上升,并且该方式相较于传统技术人工脱模的方式,不仅效率高,并且不会影响产品的外形,提高产品外观美观度,通过皮带输送机主体及自动脱模,实现了产品的连续性生产,提高了产品的成型效率。

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Abstract

The utility model relates to food forming technical field relates to toothpaste product shaping equipment, toothpaste product shaping equipment includes support cabinet, the upper end part horizontal rotation of support cabinet installs belt conveyor main part, the upper of belt conveyor main part is provided with feed guide structure and punch forming die along the feeding direction parallelly, feed guide structure includes the feed guide plate and feed guide belt along the lateral parallel arrangement, and the material feeding channel is formed between feed guide plate and feed guide belt, punch forming die includes the mould main part along the vertical lifting setting, the lower end part of mould main part is provided with product forming cavity, and the top surface of product forming cavity is evenly distributed with a plurality of demoulding air holes, the utility model discloses solved the food forming device in traditional technology in to food forming, still needs the manual product of operator to take out from the mould in the mold opening process, not only low efficiency, and the product is extruded and is easy to appear the problem of deformation in the process of taking out product.
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Description

Technical Field

[0001] This utility model relates to the field of food forming technology, specifically to a shaping equipment for teeth whitening crisps. Background Technology

[0002] With pet health receiving increasing attention today, oral care for pets has gradually become a focus of concern for pet owners. Dental cleaning biscuits, as an innovative pet oral care product, are quietly entering countless households, bringing pets both health and deliciousness. Not only do they need to taste good, but their appearance also has high requirements; generally, foods with more appealing appearances tend to sell better. Therefore, food processing often requires shaping and processing of these foods.

[0003] In existing technologies, food forming is basically done using molds. However, the mold and the equipment itself are often molded as one piece, making the mold difficult to disassemble and install.

[0004] A prior art patent with publication number CN211065009U discloses a solution comprising a first support plate, a fixed tube integrally formed above the first support plate, and a support rod sleeved inside the fixed tube. A control panel is integrally formed on one side of the support rod, and a connecting tube is rotatably sleeved at the top of the support rod. A second support plate is integrally formed above the connecting tube, and a fixed plate is fixedly mounted on the upper surface of the second support plate. Connecting blocks are integrally formed on both sides of the upper end of the fixed plate, and bearings are installed between the connecting blocks. The bearings pass through a mold fixing plate and a forming pressing plate. By providing a mold fixing groove and detachably mounting the pressing rod within the pressing groove, not only is the stability of food forming improved, but the mold can also be disassembled for cleaning after use, ensuring the interior of the mold is clean for reuse.

[0005] As existing devices are used, the shortcomings of this technology have gradually become apparent, mainly in the following aspects:

[0006] First, existing food forming equipment requires operators to manually remove the product from the mold after the food has been formed. This is not only inefficient, but the product is also prone to deformation due to compression during the removal process.

[0007] Secondly, the food forming device cannot achieve continuous production when forming food, which reduces the forming efficiency of food.

[0008] As can be seen from the above, the existing technology obviously has inconveniences and defects in practical use, so it is necessary to improve it. Utility Model Content

[0009] To address the shortcomings of existing technologies, this utility model provides a teeth-cleaning crisp product shaping equipment. This equipment solves the problems of traditional food forming devices requiring operators to manually remove the product from the mold during the mold opening process after food forming. This is not only inefficient but also causes the product to deform due to compression during removal. Furthermore, the food forming device cannot achieve continuous production during food forming, thus reducing food forming efficiency.

[0010] To achieve the above objectives, the present invention provides the following technical solution.

[0011] The teeth-cleaning powder product shaping equipment includes a support cabinet, on the upper end of which a belt conveyor body is horizontally rotatably mounted. Above the belt conveyor body, a feeding guide structure and a stamping forming mold are arranged side by side along the feeding direction.

[0012] The feeding guide structure includes a feeding guide plate and a feeding guide belt arranged in parallel along the transverse direction, and a material feeding channel is formed between the feeding guide plate and the feeding guide belt;

[0013] The stamping die includes a die body that is vertically raised and lowered, and a product forming cavity is provided at the lower end of the die body. Several demolding air holes are evenly distributed on the top surface of the product forming cavity.

[0014] As an optimized solution, the mold body has an air distribution chamber in the area above the product forming cavity, the inlet end of the demolding air hole is connected to the air distribution chamber, and the outlet end of the demolding air hole is connected to the product forming cavity.

[0015] As an optimized solution, two air pipe connectors are fixedly connected side by side to the upper end of the mold body, and air channels connecting the air pipe connectors to the air distribution chamber are opened side by side inside the mold body.

[0016] As an optimized solution, an arched support frame is fixedly connected to the opposite side frame of the belt conveyor body, and a telescopic cylinder is vertically fixed to the upper end of the support frame. The telescopic end of the telescopic cylinder is fixedly connected to the upper end of the mold body.

[0017] As an optimized solution, a spring buffer is vertically fixed to the upper end of the mold body, and the upper end of the spring buffer is fixed to the telescopic end of the telescopic cylinder.

[0018] As an optimized solution, a position sensor is fixed on the inner wall of the support frame near the lower end, and the position sensor is located on the side close to the feed guide structure.

[0019] As an optimized solution, a belt frame is fixedly connected to the side frame of the belt conveyor body via a first connecting plate, and the feed guide belt is rotatably mounted on the belt frame.

[0020] As an optimized solution, the surface of the feed guide belt is coated with an anti-stick layer.

[0021] As an optimized solution, an anti-sticking layer is also adhered to the inner wall of the feed guide plate.

[0022] As an optimized solution, the outer wall of the feed guide plate is fixed to the other side frame of the belt conveyor body via a second connecting plate.

[0023] Compared with the prior art, the beneficial effects of this utility model are:

[0024] The dough is placed on the belt conveyor body by the feeding machine. As the belt conveyor body rotates, the dough moves towards the feeding guide structure. Under the guidance of the feeding guide plate and the feeding guide belt, the dough moves towards the area below the stamping mold. When the dough moves to the bottom of the mold body, the telescopic cylinder drives the mold body to descend, thus stamping the dough. The dough is formed into a product in the product forming cavity. Then, the telescopic cylinder drives the mold body to rise, and air is blown from the top through the demolding air hole to demold the product, preventing the product from rising with the mold body. Compared with the traditional manual demolding method, this method is not only more efficient, but also does not affect the shape of the product, improving the product's appearance. Through the belt conveyor body and automatic demolding, continuous production of products is achieved, and the product forming efficiency is improved. Attached Figure Description

[0025] To more clearly illustrate the specific embodiments of this utility model or the technical solutions in the prior art, the drawings used in the description of the specific embodiments or the prior art will be briefly introduced below. In all the drawings, similar elements or parts are generally identified by similar reference numerals. In the drawings, the elements or parts are not necessarily drawn to scale.

[0026] Figure 1 This is a schematic diagram of the structure of this utility model;

[0027] Figure 2 This is a top view of the structure of the feed guide plate of this utility model;

[0028] Figure 3 This is a schematic diagram of the stamping die of this utility model.

[0029] In the diagram: 1-Support cabinet; 2-Main body of belt conveyor; 3-Feed guide belt; 4-Feed guide plate; 5-Support frame; 6-Telescopic cylinder; 7-Stamping die; 8-Position sensor; 9-Chain drive structure; 10-Driver; 11-Die body; 12-Product forming cavity; 13-Air distribution cavity; 14-Demolding air hole; 15-Air passage; 16-Air pipe connector; 17-Spring buffer; 18-Anti-stick layer; 19-Belt frame; 20-First connecting plate; 21-Second connecting plate. Detailed Implementation

[0030] The embodiments of the present invention will now be described in detail with reference to the accompanying drawings. These embodiments are merely illustrative of the present invention and should not be construed as limiting the scope of protection of the present invention.

[0031] like Figures 1 to 3 As shown, the teeth-cleaning powder product shaping equipment includes a support cabinet 1, a belt conveyor body 2 is horizontally rotatably mounted on the upper end of the support cabinet 1, and a feeding guide structure and a stamping mold 7 are arranged side by side above the belt conveyor body 2 along the feeding direction.

[0032] The feeding guide structure includes a feeding guide plate 4 and a feeding guide belt 3 arranged in parallel along the transverse direction, and a material feeding channel is formed between the feeding guide plate 4 and the feeding guide belt 3;

[0033] The stamping die 7 includes a die body 11 that is vertically raised and lowered. The lower end of the die body 11 is provided with a product forming cavity 12. Several demolding air holes 14 are evenly distributed on the top surface of the product forming cavity 12.

[0034] A drive motor 10 is fixedly connected to the support rail. The output end of the drive motor 10 drives the roller at one end of the belt conveyor body 2 to rotate via a chain drive structure 9.

[0035] The diameter of the demolding air hole 14 is no greater than 1mm, which will not affect the molding of the product.

[0036] The mold body 11 has an air distribution chamber 13 located in the area above the product forming cavity 12. The inlet end of the demolding air blowing hole 14 is connected to the air distribution chamber 13, and the outlet end of the demolding air blowing hole 14 is connected to the product forming cavity 12.

[0037] Two air pipe connectors 16 are fixedly connected side by side to the upper end of the mold body 11, and air passages 15 are opened side by side inside the mold body 11 to connect the air pipe connectors 16 to the air distribution chamber 13.

[0038] The two air pipe connectors 16 are connected together by a T-connector, and the inlet end of the T-connector is connected to the air source.

[0039] An arched support frame 5 is fixedly connected to the opposite side frame of the belt conveyor body 2. A telescopic cylinder 6 is vertically fixed to the upper end of the support frame 5. The telescopic end of the telescopic cylinder 6 is fixedly connected to the upper end of the mold body 11.

[0040] A spring buffer 17 is vertically fixed to the upper end of the mold body 11. The upper end of the spring buffer 17 is fixed to the telescopic end of the telescopic cylinder 6. The purpose of using the spring buffer 17 is to prevent the mold body 11 from rigidly contacting the belt conveyor body 2, thereby protecting the mold body and the belt surface.

[0041] A position sensor 8 is fixed on the inner wall near the lower end of the support frame 5. The position sensor 8 is located on the side near the feeding guide structure. The dough is detected by setting the position sensor 8. The extension time of the telescopic cylinder 6 is delayed by adjusting the telescopic cylinder 6 so that when the dough enters below the mold body 11, the telescopic cylinder 6 drives the mold body 11 to descend and shape the dough.

[0042] A belt frame 19 is fixedly connected to the side frame of the belt conveyor body 2 via a first connecting plate 20, and the feed guide belt 3 is rotatably mounted on the belt frame 19. A motor that drives the feed guide belt 3 to rotate is fixedly connected to the upper end of one end of the belt frame 19. Two rotating rollers that support the feed guide belt 3 are rotatably mounted on the belt frame 19, one of which is connected to the motor.

[0043] An anti-stick layer 18 is adhered to the surface of the feed guide belt 3.

[0044] An anti-stick layer 18 is also adhered to the inner wall of the feed guide plate 4, which reduces adhesion to the dough.

[0045] The outer wall of the feed guide plate 4 is fixed to the other side frame of the belt conveyor body 2 via the second connecting plate 21.

[0046] The structure of the belt conveyor body 2, the position sensor 8, and the electrical connection method and structure with the telescopic cylinder 6 are common knowledge to those skilled in the art. Since the innovation does not lie in these aspects, they will not be elaborated on here.

[0047] The working principle of this device is as follows:

[0048] The dough is placed on the belt conveyor body 2 by the feeding machine. As the belt conveyor body 2 rotates, the dough moves towards the feeding guide structure. Under the guidance of the feeding guide plate 4 and the feeding guide belt 3, the dough moves towards the area below the stamping mold 7. When the dough moves to the area below the mold body 11, the telescopic cylinder 6 drives the mold body 11 to descend. At this time, the belt conveyor stops rotating, and the dough is stamped. The dough is formed into a product in the product forming cavity 12. Then, the telescopic cylinder 6 drives the mold body 11 to rise, and the belt conveyor rotates. Air is blown from the top through the demolding air hole 14 to demold the product and prevent the product from rising with the mold body 11. Compared with the traditional manual demolding method, this method is not only more efficient, but also does not affect the shape of the product and improves the appearance of the product. Through the belt conveyor body 2 and automatic demolding, continuous production of the product is realized and the product forming efficiency is improved.

[0049] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of this utility model, and not to limit it. Although the utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some or all of the technical features. Such modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the scope of the technical solutions of the embodiments of this utility model, and they should all be covered within the scope of the claims and specification of this utility model.

Claims

1. A teeth-cleaning shredded pastry product shaping equipment, characterized in that: Includes a support cabinet (1), the upper end of which is horizontally rotatably mounted with a belt conveyor body (2), and above the belt conveyor body (2) are a feeding guide structure and a stamping die (7) arranged in parallel along the feeding direction. The feeding guide structure includes a feeding guide plate (4) and a feeding guide belt (3) arranged in parallel along the transverse direction, and a material feeding channel is formed between the feeding guide plate (4) and the feeding guide belt (3); The stamping die (7) includes a die body (11) that is vertically raised and lowered. The lower end of the die body (11) is provided with a product forming cavity (12). The top surface of the product forming cavity (12) is evenly distributed with a number of demolding air blowing holes (14).

2. The teeth-cleaning shaving cream product shaping equipment according to claim 1, characterized in that: The mold body (11) has an air distribution cavity (13) in the area above the product forming cavity (12). The inlet end of the demolding air blowing hole (14) is connected to the air distribution cavity (13), and the outlet end of the demolding air blowing hole (14) is connected to the product forming cavity (12).

3. The teeth-cleaning shredded pastry product shaping equipment according to claim 2, characterized in that: Two air pipe connectors (16) are fixedly connected side by side to the upper end of the mold body (11), and air passages (15) are opened side by side inside the mold body (11) to connect the air pipe connectors (16) with the air distribution chamber (13).

4. The teeth-cleaning shredded pastry product shaping equipment according to claim 1, characterized in that: An arched support frame (5) is fixedly connected to the opposite side frame of the belt conveyor body (2). A telescopic cylinder (6) is vertically fixed to the upper end of the support frame (5). The telescopic end of the telescopic cylinder (6) is fixedly connected to the upper end of the mold body (11).

5. The teeth-cleaning shaving cream product shaping equipment according to claim 4, characterized in that: A spring buffer (17) is vertically fixed to the upper end of the mold body (11), and the upper end of the spring buffer (17) is fixed to the telescopic end of the telescopic cylinder (6).

6. The teeth-cleaning shaving cream product shaping equipment according to claim 5, characterized in that: A position sensor (8) is fixed on the inner wall near the lower end of the support frame (5), and the position sensor (8) is located on the side near the feed guide structure.

7. The teeth-cleaning shredded pastry product shaping equipment according to claim 1, characterized in that: A belt frame (19) is fixedly connected to the side frame of the main body (2) of the belt conveyor via a first connecting plate (20), and the feed guide belt (3) is rotatably mounted on the belt frame (19).

8. The teeth-cleaning shredded pastry product shaping equipment according to claim 1, characterized in that: The surface of the feed guide belt (3) is coated with an anti-sticking layer (18).

9. The teeth-cleaning shredded pastry product shaping equipment according to claim 1, characterized in that: An anti-stick layer (18) is also adhered to the inner wall of the feed guide plate (4).

10. The teeth-cleaning shredded pastry product shaping equipment according to claim 7, characterized in that: The outer wall of the feed guide plate (4) is fixed to the other side frame of the belt conveyor body (2) by the second connecting plate (21).

Citation Information

Patent Citations

  • Food forming device facilitating demolding

    CN211065009U