A method and apparatus for forming a fruit pulp product

By improving the carriage structure and filling device, the efficient conveying of the forming mold and the filling of fruit puree in the fruit puree product forming equipment were realized, which solved the constraint problem of mold conveying and fruit puree filling, and improved the overall work efficiency and material utilization rate.

CN117941855BActive Publication Date: 2026-07-21SHANDONG HUAREN AUTOMATION CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
SHANDONG HUAREN AUTOMATION CO LTD
Filing Date
2024-02-22
Publication Date
2026-07-21

AI Technical Summary

Technical Problem

In existing fruit pulp product forming equipment, the forming mold conveying and fruit pulp filling are mutually restrictive, resulting in low overall work efficiency.

Method used

The slide structure enables single or multiple molds to be conveyed in a dispersed manner. The filling device can continuously fill the fruit pulp as the mold passes by, and the leveling scraper and edge material recycling device improve the uniformity of fruit pulp filling and material utilization.

Benefits of technology

It significantly improves the overall efficiency of the fruit puree product molding process, simplifies the operation process, and improves the uniformity of fruit puree filling and material utilization.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present application relates to the technical field of food production, and discloses a fruit pulp product forming method and equipment. The forming method comprises: conveying the forming moulds entering the feeding area in a single or scattered manner; conveying the forming moulds entering the filling area in a continuous manner, and filling the fruit pulp into the forming moulds in the filling area; and conveying the forming moulds entering the discharging area in a single or scattered manner. The forming equipment comprises a frame, the frame is provided with a feeding area, a filling area and a discharging area, the filling area is provided with a filling device, a sliding frame is installed on the frame, the sliding frame is provided with a first supporting lug, a second supporting lug and a third supporting lug, and when the sliding frame moves forward, the first supporting lug and the third supporting lug respectively push the forming moulds located in the feeding area and the discharging area forward, and the second supporting lug pulls the forming mould located at the forefront of the filling area forward. The present application breaks the restrictive relationship between the conveying of the forming moulds and the filling of the fruit pulp, and improves the working efficiency of the fruit pulp product forming process.
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Description

Technical Field

[0001] This invention relates to the field of food production technology, and more specifically to a method and equipment for forming fruit puree products. Background Technology

[0002] The production process of fruit puree products such as hawthorn sticks and hawthorn cakes includes: making fruit puree from raw materials such as hawthorn, filling the fruit puree into molds, and then removing the fruit puree from the molds after cooling or drying, etc.

[0003] Filling the mold with fruit puree is a crucial step that requires fruit puree product molding equipment. Existing fruit puree product molding equipment includes a frame with a feeding area, a filling area, and a discharging area arranged sequentially from front to back. The filling area is equipped with a filling device, and the frame is equipped with a conveying device. The feeding area is used to place empty molding molds, the conveying device is used to transport the molding molds forward, the filling device is used to fill the molding molds that have passed through the filling area with fruit puree, and the molds filled with fruit puree enter the discharging area, from which the molds filled with fruit puree can be removed.

[0004] Chinese patent document CN214526641U discloses a material tray conveying device, equivalent to a conveying device in a fruit puree product molding equipment, capable of intermittently conveying multiple molds on a frame forward. Chinese patent document CN214414026U discloses a feeding mechanism, equivalent to a filling device in a fruit puree product molding equipment, capable of filling empty molding molds with fruit puree. Chinese patent document CN214651710U also discloses a loading and unloading device for placing empty molding molds in the feeding area, or for removing molding molds filled with fruit puree from the discharge area.

[0005] The existing fruit pulp product forming equipment has the following problems: the forming molds can only enter the filling area one by one, the filling device can only fill the forming molds one by one, the conveying of the forming molds needs to wait for the filling device to finish its work, and the filling device needs to wait for the conveying device to finish its work. The conveying of the forming molds and the filling of the fruit pulp are mutually restrictive, which reduces the overall working efficiency of the fruit pulp product forming equipment. Summary of the Invention

[0006] The purpose of this invention is to provide a method and equipment for forming fruit puree products to address the above problems, thereby breaking the mutual constraint between the mold conveying and fruit puree filling, and improving the overall work efficiency of fruit puree product forming.

[0007] To achieve the above objectives, this invention discloses a method for forming fruit puree products. This method includes: conveying one or more forming molds entering the feeding zone forward in a dispersed, front-back manner, allowing them to enter the filling zone one by one; conveying multiple forming molds entering the filling zone forward in a continuous, front-back manner, allowing them to enter the discharge zone one by one, filling the forming molds with fruit puree in the filling zone; and conveying one or more forming molds entering the discharge zone forward in a dispersed, front-back manner. By employing this method, since the forming molds entering the filling zone are continuous, the filling device can fill multiple forming molds with fruit puree at once, or complete the filling process while the molds are passing through. This improvement breaks the constraint between forming mold conveying and fruit puree filling, significantly improving the overall efficiency of the fruit puree product forming process.

[0008] Furthermore, the forming molds located in the feeding and discharging zones are conveyed forward synchronously and intermittently, while the forming molds located in the filling zone are propelled forward by the forming mold at the forefront of the feeding zone. After implementing this method, the fruit pulp product forming equipment requires only one dedicated conveying device to efficiently complete the conveying of all forming molds. This optimization significantly simplifies the operation process, making the coordination between mold insertion in the feeding zone and mold removal in the discharging zone smoother and more convenient.

[0009] This invention also discloses a fruit puree product forming device, which includes a frame. The frame is characterized by a feeding area, a filling area, and a discharging area through which a forming mold passes sequentially from back to front. The filling area is equipped with a filling device for filling the forming mold with fruit puree. A slide is mounted on the frame below the forming mold, and the slide is connected to a first driving device that drives it to move forward and backward and up and down. The slide has a first lug, a second lug, and a third lug sequentially arranged from back to front. When the slide moves upward, the first and third lugs are inserted into the gaps behind the forming molds in the feeding and discharging areas, respectively, and the second lug is inserted into the bottom of the forming mold at the front of the filling area. When the slide moves forward, the first and third lugs push the forming molds in the feeding and discharging areas forward, respectively, and the second lug pulls the forming mold at the front of the filling area forward. With the above structure, the first drive device drives the slide to move up and down and back and forth, enabling the molding dies entering the feeding zone to be conveyed forward in a single or multiple forward and backward dispersed manner, so that they enter the filling zone one by one; enabling the molding dies entering the filling zone to be conveyed forward in a multiple forward and backward continuous manner, so that they enter the discharge zone one by one, where fruit pulp is filled into the molding dies; enabling the molding dies entering the discharge zone to be conveyed forward in a single or multiple forward and backward dispersed manner; the first drive device drives the slide to move down first and then backward to complete the reset. This breaks the constraint between the conveying of molding dies and the filling of fruit pulp, significantly improving the overall working efficiency of the fruit pulp product molding equipment.

[0010] Furthermore, the height of the second ear is lower than the height of the first and third ears. The first ear is arranged in 3+N groups from back to front, the second ear is arranged in 1 group, and the third ear (10) is arranged in 1+N groups from back to front, where N is an integer greater than or equal to 0. After the above structural improvement, a feeding device that can feed multiple molding dies into the feeding area at one time can be configured, and a discharging device that can remove multiple molding dies from the discharging area at one time can be configured, further improving work efficiency.

[0011] Furthermore, the filling device includes a filling frame, which is fixedly or detachably mounted on the frame. A space is provided between the filling frame and the frame for the forming mold to pass through from back to front. With this structural improvement, when a forming mold enters below the filling frame, fruit puree can be added to the filling frame. As the forming mold moves forward relative to the filling frame, the fruit puree will naturally flow and fill the forming mold. When the mold is completely removed from the filling frame, excess fruit puree on the mold surface will be naturally scraped flat, thus achieving an automatic leveling effect for the fruit puree. This improvement not only simplifies the operation process but also improves the uniformity and efficiency of fruit puree filling.

[0012] Furthermore, the frame is screwed with multiple first studs, which support the bottom of the packing frame. Multiple adjustable latches connect the packing frame and the frame vertically. First limiting members are located on both the front and rear sides of the packing frame and are fixedly connected to the frame. With these structural improvements, the height of the packing frame relative to the frame can be easily adjusted by flexibly adjusting the first studs and adjustable latches. This adjustment not only optimizes the space between the packing frame and the frame, ensuring smooth passage of the molding die from back to front, but also allows the equipment to adapt to molding dies of different thicknesses. This design enhances the versatility and flexibility of the equipment.

[0013] Furthermore, the filling frame contains one or more leveling scrapers positioned horizontally or horizontally at intervals, with a space between the rearmost leveling scraper and the rear wall of the filling frame for placing fruit pulp. After this structural improvement, the leveling scraper design can precisely scrape away excess fruit pulp from the mold surface, ensuring a uniform and flat distribution of the pulp within the mold. This improvement not only enhances the appearance quality of the fruit pulp product but also reduces pulp waste, further increasing production efficiency.

[0014] The leveling scraper has second limiting members at the front and rear of its left and right sides, which are fixedly connected to the inner wall of the filler frame. The leveling scraper has two connecting parts extending upwards from the edges of the filler frame. Correspondingly, two second studs are provided on the filler frame. The connecting parts have positioning holes corresponding to the second studs, through which the second studs pass. Two fastening nuts are screwed onto the second studs, resting against the upper and lower sides of the connecting parts, respectively. After this structural improvement, the height of the leveling scraper relative to the filler frame can be flexibly adjusted. This design allows the leveling scraper to precisely adjust its working position according to different production needs and the thickness of the fruit pulp, thereby ensuring optimal results when scraping off excess fruit pulp.

[0015] Furthermore, an edge material recovery device is provided in front of the filling device in the filling area. The edge material recovery device includes a bracket, which is fixedly or detachably mounted on the frame. A space is provided between the bracket and the frame for the forming mold to pass through from back to front. Two left and right edge-collecting wheels are rotatably mounted on the bracket, and two collection containers are correspondingly provided. A material collection notch is provided on the upper rear edge of the collection container. The front part of the edge-collecting wheel enters the corresponding collection container through the material collection notch. Each of the two edge-collecting wheels is connected to or is connected to a second drive device for driving its rotation. When the edge-collecting wheel rotates, it is used to stick the edge material on the forming mold to its wheel rim. The collection container is used to collect the edge material stuck on the edge-collecting wheel. After the forming mold passes through the filling device, its edge often has fruit pulp edge material stuck to the left and right walls of the filling frame, which causes material waste. By adding an edge material recovery device, the rotating edge-collecting wheel can effectively stick to these edge materials and collect them into the collection container when passing through the material collection notch. This not only solved the problem of fruit pulp edge material adhesion, but also enabled the recycling and reuse of edge material, improving production efficiency and material utilization.

[0016] Furthermore, the frame is equipped with two sets of third studs on the left and right, and the bracket is equipped with two sets of through holes on the left and right respectively. The third studs pass through the corresponding through holes on the bracket, and two adjusting nuts are screwed onto the third studs. The two adjusting nuts are located on the upper and lower sides of the bracket respectively, and the bracket is clamped and fixed by the two nuts. After the above structural improvement, the height of the edge material recycling device can be flexibly adjusted to adapt to molding dies of different thicknesses. This design enables the edge material recycling device to better adapt to various production needs, ensuring that the edge-collecting wheel can accurately adhere to and recycle the fruit pulp edge material from the edge of the molding die, thus improving the versatility and flexibility of the equipment.

[0017] In summary, the beneficial effects of the present invention are as follows: With the improvement of the present invention, since the molding mold entering the filling zone is continuous, the filling device can complete the filling of fruit puree at the same time as the mold passes through. This improvement breaks the constraint relationship between the molding mold conveying and the filling of fruit puree, and significantly improves the overall working efficiency of the fruit puree product molding process. Attached Figure Description

[0018] Figure 1 This is a schematic diagram of one embodiment of the fruit pulp product forming equipment of the present invention; Figure 2 yes Figure 1 The front view of the fruit puree product forming equipment shown; Figure 3 yes Figure 1 A top view of the fruit puree product forming equipment shown. Figure 4 yes Figure 3 A schematic diagram of the structure after being cut along line AA in the middle; Figure 5 This is a schematic diagram of one embodiment of the carriage and the first driving device in this invention; Figure 6 This is a schematic diagram of one embodiment of the packing device in this invention; Figure 7 yes Figure 6 The front view of the packing device shown; Figure 8 yes Figure 6 Top view of the packing device shown; Figure 9 This is a schematic diagram of one embodiment of the scrap recycling device in this invention; Figure 10 yes Figure 9 The front view of the edge material recycling device shown; Figure 11 yes Figure 9 A schematic diagram of the collection container in the edge material recycling device shown; Figure 12 This is a flowchart of the fruit pulp product forming method in this invention.

[0019] In the diagram: 1. Frame, 2. Feeding area, 3. Filling area, 4. Discharge area, 5. Molding mold, 6. Filling device, 601. Filling frame, 602. First stud, 603. Adjustable latch, 604. First limiting component, 605. Leveling scraper, 606. Second limiting component, 607. Connecting part, 608. Second stud, 609. Fastening nut, 7. Slide, 8. First lug, 9. Second lug, 10. Third lug, 11. Edge material recovery device, 1101. Bracket, 1102. Edge collecting wheel, 1103. Collection container, 1104. Material collection notch, 1105. Third stud, 1106. Adjusting nut, 12. Linear track. Detailed Implementation

[0020] The specific embodiments of the present invention will be described in further detail below with reference to the accompanying drawings and examples. The following examples are for illustrative purposes only and are not intended to limit the scope of the invention.

[0021] In the description of this application, it should be understood that the terms "center", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this application and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this application.

[0022] The terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of technical features indicated. Therefore, a feature defined as "first" or "second" may explicitly or implicitly include one or more of that feature. In the description of this application, unless otherwise stated, "a plurality of" means two or more.

[0023] In the description of this application, it should be noted that, unless otherwise expressly specified and limited, the terms "installation," "connection," and "linking" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; and they can refer to the internal connection between two components. Those skilled in the art can understand the specific meaning of the above terms in this application based on the specific circumstances.

[0024] The following is a description of preferred embodiments of the present invention in conjunction with the accompanying drawings.

[0025] Figure 12 An embodiment of a method for forming fruit pulp products is disclosed.

[0026] Reference Figure 12 In this embodiment, the fruit pulp product forming method includes: conveying the forming molds 5 entering the feeding zone 2 forward in a single or multiple dispersed manner, so that they enter the filling zone 3 one by one; conveying the forming molds 5 entering the filling zone 3 forward in a multiple continuous forward and backward manner, so that they enter the discharge zone 4 one by one, filling the forming molds 5 with fruit pulp in the filling zone 3; and conveying the forming molds 5 entering the discharge zone 4 forward in a single or multiple dispersed forward and backward manner. Using the above method, since the forming molds 5 entering the filling zone 3 are continuous, the filling device can fill multiple forming molds 5 with fruit pulp at once, or complete the filling of fruit pulp while the molds are passing through. This improvement breaks the constraint relationship between the conveying of the forming molds 5 and the filling of fruit pulp, significantly improving the overall working efficiency of the fruit pulp product forming process.

[0027] The fruit puree product forming method can be further improved: the forming molds 5 located in the feeding zone 2 and the discharging zone 4 are conveyed forward synchronously and intermittently, while the forming molds 5 located in the filling zone 3 are propelled forward by the forming mold 5 at the forefront of the feeding zone 2. After implementing the above method, the fruit puree product forming equipment only needs one set of professional conveying devices to efficiently complete the conveying of all forming molds 5. This optimization significantly simplifies the operation process, making the coordination of mold insertion in the feeding zone 2 and mold removal in the discharging zone 4 smoother and more convenient.

[0028] Figures 1 to 11 An embodiment of a fruit pulp product forming equipment is disclosed.

[0029] Reference Figures 1 to 5 In this embodiment of the fruit pulp product forming equipment: the fruit pulp product forming equipment includes a frame 1, on which a feeding area 2, a filling area 3, and a discharging area 4 are provided for the forming mold 5 to pass through sequentially from back to front. The filling area 3 is provided with a filling device 6 for filling fruit pulp into the forming mold 5 passing through the area. A slide 7 is installed on the frame 1 below the forming mold 5. The slide 7 is connected to a first driving device that drives it to move back and forth and up and down. The slide 7 is provided with a first lug 8, a second lug 9, and a third lug 10 sequentially from back to front. When the slide 7 moves upward, the first lug 8 and the third lug 10 are respectively inserted into the gaps behind the forming mold 5 located in the feeding area 2 and the discharging area 4, and the second lug 9 is inserted into the bottom of the forming mold 5 located at the front of the filling area 3. When the slide 7 moves forward, the first lug 8 and the third lug 10 respectively push the forming mold 5 located in the feeding area 2 and the discharging area 4 forward, and the second lug 9 pulls the forming mold 5 located at the front of the filling area 3 forward. With the above structure, the first driving device drives the slide 7 to move up and down and back and forth, enabling the molding molds 5 entering the feeding zone 2 to be conveyed forward in a single or multiple forward and backward dispersed manner, so that they enter the filling zone 3 one by one; enabling the molding molds 5 entering the filling zone 3 to be conveyed forward in a multiple forward and backward continuous manner, so that they enter the discharge zone 4 one by one, where fruit pulp is filled into the molding molds 5 in the filling zone 3; enabling the molding molds 5 entering the discharge zone 4 to be conveyed forward in a single or multiple forward and backward dispersed manner; the first driving device drives the slide 7 to move down first and then backward to complete the reset. This breaks the constraint relationship between the conveying of the molding molds 5 and the filling of fruit pulp, significantly improving the overall working efficiency of the fruit pulp product molding equipment.

[0030] The first driving device is used to drive the slide 7 to move up and down and back and forth. The first driving device can have various implementations. For example, it can adopt a series of structures disclosed in Chinese Patent Document CN214526641U for driving the movable frame to move up and down and back and forth, including the lifting frame, horizontal shaft, first support arm, first connecting rod, second support arm, second connecting rod, first power machine, third support arm, third connecting rod, second power machine, gear, rack, etc., as described in the document. Another example is that a sliding seat capable of sliding up and down is installed on the frame 1, and the slide 7 is installed on the sliding seat in a way that allows it to slide back and forth. A first hydraulic cylinder capable of driving the sliding seat to slide up and down is provided between the sliding seat and the frame 1, and a second hydraulic cylinder capable of driving the slide 7 to slide back and forth is provided between the slide 7 and the sliding seat. The first hydraulic cylinder drives the sliding seat to slide up and down, thereby driving the slide 7 to move up and down, and the second hydraulic cylinder drives the slide 7 to move back and forth.

[0031] In the embodiment of the fruit pulp product forming equipment shown in the figure, the height of the second ear 9 is lower than the height of the first ear 8 and the third ear 10. The first ear 8 is provided in 3 sets from back to front, the second ear 9 is provided in 1 set, and the third ear 10 is provided in 1 set from back to front.

[0032] In other embodiments of the fruit pulp product forming equipment, the first ear 8 is arranged in 3+N groups from back to front, the second ear 9 is arranged in 1 group, and the third ear 10 is arranged in 1+N groups from back to front, where N is an integer greater than or equal to 1. After the above structural improvement, a feeding device that can feed multiple forming molds 5 into the feeding area 2 at one time can be configured, and a discharging device that can remove multiple forming molds 5 from the discharging area 4 at one time can be configured, further improving work efficiency.

[0033] In addition, to ensure that the forming mold 5 does not deviate from its direction during forward conveying, such as Figure 1 As shown, the frame 1 is provided with two straight tracks 12, one on the left and one on the right. The straight track 12 on the left is used to move the left side of the molding die 5 from back to front along it, and the straight track 12 on the right is used to move the right side of the molding die 5 from back to front along it.

[0034] Figures 6 to 8 An embodiment of the packing device 6 is disclosed.

[0035] Reference Figures 6 to 8 In this embodiment of the filling device 6: the filling device 6 includes a filling frame 601, which is fixedly or detachably mounted on the frame 1. A space is provided between the filling frame 601 and the frame 1 for the forming mold 5 to pass through from back to front. After the above structural improvement, when the forming mold 5 enters below the filling frame 601, fruit pulp can be added to the filling frame 601. As the forming mold 5 moves forward relative to the filling frame 601, the fruit pulp will naturally flow and fill the forming mold 5. When the mold is completely removed from the filling frame 601, excess fruit pulp on the mold surface will be naturally scraped flat, thus achieving an automatic leveling effect for the fruit pulp. This improvement not only simplifies the operation process but also improves the uniformity and efficiency of fruit pulp filling.

[0036] To enable the detachable installation of the filler frame 601 on the frame 1, multiple first studs 602 are screwed onto the frame 1, supporting the bottom of the filler frame 601. Multiple adjustable latches 603 connect the filler frame 601 and the frame 1 vertically. First limiting members 604 are provided on both the front and rear sides of the filler frame 601, and are fixedly connected to the frame 1. With this structural improvement, the height of the filler frame 601 relative to the frame 1 can be easily adjusted by flexibly adjusting the first studs 602 and the adjustable latches 603. This adjustment not only optimizes the space between the filler frame 601 and the frame 1, ensuring the molding die 5 can pass smoothly from back to front, but also allows the equipment to adapt to molding dies 5 of different thicknesses. This design enhances the versatility and flexibility of the equipment.

[0037] To improve the leveling effect, the filling frame 601 has one or more leveling scrapers 605 arranged horizontally or horizontally at intervals. A space is left between the rearmost leveling scraper 605 and the rear wall of the filling frame 601 for placing fruit pulp. After this structural improvement, the leveling scraper 605 can accurately scrape off excess fruit pulp from the mold surface, ensuring that the fruit pulp is evenly and smoothly distributed within the mold. This improvement not only enhances the appearance quality of the fruit pulp product but also reduces fruit pulp waste, further increasing production efficiency.

[0038] To enable the detachable installation of the leveling scraper 605 within the filler frame 601, second limiting members 606 are provided at the front and rear of the left and right sides of the leveling scraper 605. These second limiting members 606 are fixedly connected to the inner wall of the filler frame 601. The leveling scraper 605 has two connecting portions 607 extending upwards from the edges of the filler frame 601. Correspondingly, two second studs 608 are provided on the filler frame 601. The connecting portions 607 have positioning holes corresponding to the second studs 608, through which the second studs 608 pass. Two fastening nuts 609 are screwed onto the second studs 608, resting against the upper and lower sides of the connecting portions 607 respectively. After this structural improvement, the height of the leveling scraper 605 relative to the filler frame 601 can be flexibly adjusted. This design allows the leveling scraper 605 to precisely adjust its working position according to different production needs and pulp thickness, thereby ensuring optimal results when scraping off excess pulp.

[0039] After the molding die 5 passes through the filling device 6, the edge of the die often has fruit pulp residue adhering to the left and right walls of the filling frame 601, which causes material waste. In order to solve this problem, the present invention has made further improvements.

[0040] After the improvement, the filler zone 3 is equipped with an edge material recovery device 11 located in front of the filler device 6.

[0041] Figures 9 to 11 An embodiment of the edge material recycling device 11 is disclosed.

[0042] Reference Figures 9 to 11 In this embodiment, the edge material recycling device 11 includes a bracket 1101, which is fixedly or detachably mounted on the frame 1. A space is provided between the bracket 1101 and the frame 1 for the forming mold to pass through from back to front. Two left and right edge-collecting wheels 1102 are rotatably mounted on the bracket 1101, and two collection containers 1103 are correspondingly provided. A material collection notch 1104 is provided at the upper rear edge of the collection container 1103. The front part of the edge-collecting wheel 1102 enters the corresponding collection container 1103 through the material collection notch 1104. The two edge-collecting wheels 1102 are each connected to or jointly connected to a second driving device for driving them to rotate. When the edge-collecting wheel 1102 rotates, it is used to stick the edge material on the forming mold to its wheel rim. The collection container 1103 is used to collect the edge material adhered to the edge-collecting wheel 1102. By adding an edge material recycling device 11, the rotating edge-collecting wheel 1102 can effectively adhere to these edge materials, and collect them into the collection container 1103 when passing through the collection gap 1104. This not only solves the problem of fruit pulp edge material adhesion, but also realizes the recycling and reuse of edge materials, improving production efficiency and material utilization.

[0043] To enable the detachable installation of the edge material recycling device 11 on the frame 1, the frame 1 is provided with two sets of third studs 1105 on the left and right sides, and the bracket 1101 is provided with two sets of through holes on the left and right sides respectively. The third studs 1105 pass through the corresponding through holes on the bracket 1101, and two adjusting nuts 1106 are screwed onto the third studs 1105. The two adjusting nuts 1106 are located on the upper and lower sides of the bracket 1101 respectively, and the bracket 1101 is clamped and fixed by the two nuts. After the above structural improvement, the height of the edge material recycling device 11 can be flexibly adjusted to adapt to the forming mold 5 of different thicknesses. This design enables the edge material recycling device 11 to better adapt to various production needs, ensuring that the edge-collecting wheel 1102 can accurately adhere to and recycle the fruit pulp edge material on the edge of the forming mold 5, thus improving the versatility and flexibility of the equipment.

[0044] The above description is only a preferred embodiment of the present invention. It should be noted that for those skilled in the art, several improvements and substitutions can be made without departing from the technical principles of the present invention, and these improvements and substitutions should also be considered within the scope of protection of the present invention.

Claims

1. A fruit puree product forming equipment, comprising a frame (1), characterized in that, The frame (1) is provided with a feeding area (2), a filling area (3), and a discharging area (4) through which the forming mold (5) passes from back to front. The filling area (3) is provided with a filling device (6) for filling the forming mold (5) with fruit pulp. The frame (1) is equipped with a slide (7) located below the forming mold (5). The slide (7) is connected to a first driving device that drives it to move back and forth and up and down. The slide (7) is provided with a first lug (8), a second lug (9), and a third lug (10) from back to front. (7) When moving upward, the first ear (8) and the third ear (10) are inserted into the gaps behind the forming mold (5) located in the feeding area (2) and the discharging area (4), respectively, and the second ear (9) is inserted into the bottom of the forming mold (5) located at the front of the filling area (3); when the slide (7) moves forward, the first ear (8) and the third ear (10) push the forming mold (5) located in the feeding area (2) and the discharging area (4) forward, respectively, and the second ear (9) pulls the forming mold (5) located at the front of the filling area (3) forward; The forming molds (5) entering the feeding zone (2) are conveyed forward in a single or multiple dispersed manner, the forming molds (5) entering the filling zone (3) are conveyed forward in a multiple continuous manner, and the forming molds (5) entering the discharge zone (4) are conveyed forward in a single or multiple dispersed manner.

2. The fruit puree product forming equipment as described in claim 1, characterized in that, The height of the second ear (9) is lower than the height of the first ear (8) and the third ear (10). The first ear (8) has 3+N groups from back to front, the second ear (9) has 1 group, and the third ear (10) has 1+N groups from back to front, where N is an integer greater than or equal to 0.

3. The fruit puree product forming equipment as described in claim 1, characterized in that, The filling device (6) includes a filling frame (601), which is fixedly or detachably mounted on the frame (1). There is a space between the filling frame (601) and the frame (1) for the forming mold (5) to pass through from back to front.

4. The fruit puree product forming equipment as described in claim 3, characterized in that, The frame (1) is screwed with a plurality of first studs (602), which are supported at the bottom of the packing frame (601). The packing frame (601) and the frame (1) are provided with a plurality of adjustable buckles (603), which connect the packing frame (601) and the frame (1) vertically. The packing frame (601) is provided with first limiting members (604) on both the front and rear sides, and the first limiting members (604) are fixedly connected to the frame (1).

5. The fruit puree product forming equipment as described in claim 3, characterized in that, The filling frame (601) has one or more leveling scrapers (605) placed left and right at intervals. The leveling scraper (605) located at the rearmost position has a space between it and the rear wall of the filling frame (601) for placing fruit pulp.

6. The fruit puree product forming equipment as described in claim 5, characterized in that, The leveling scraper (605) is provided with a second limiting member (606) at the front and rear of the left and right sides. The second limiting member (606) is fixedly connected to the inner wall of the packing frame (601). The leveling scraper (605) is provided with two connecting parts (607) extending to the upper edge of the packing frame (601). The packing frame (601) is provided with two second studs (608) on the left and right sides respectively. The connecting part (607) is provided with positioning holes corresponding to the second studs (608). The second studs (608) pass through the corresponding positioning holes. Two fastening nuts (609) are screwed on the second studs (608). The two fastening nuts (609) are respectively against the upper and lower sides of the connecting part (607).

7. The fruit puree product forming equipment as described in claim 1, characterized in that, The filling area (3) is located in front of the filling device (6) and is equipped with an edge material recovery device (11). The edge material recovery device (11) includes a bracket (1101). The bracket (1101) is fixedly or detachably installed on the frame (1). There is a space between the bracket (1101) and the frame (1) for the forming mold to pass through from back to front. Two left and right edge-collecting wheels (1102) are rotatably installed on the bracket (1101), and two collection containers (1103) are correspondingly provided. A material collection notch (1104) is provided at the upper rear edge of the edge receiving wheel (1102). The front part of the edge receiving wheel (1102) enters the corresponding collection container (1103) through the material collection notch (1104). The two edge receiving wheels (1102) are each connected to or jointly connected to a second drive device for driving them to rotate. When the edge receiving wheel (1102) rotates, it is used to stick the edge material on the forming mold to its wheel rim. The collection container (1103) is used to collect the edge material adhered to the edge receiving wheel (1102) into it.

8. The fruit puree product forming equipment as described in claim 7, characterized in that, The frame (1) is provided with two sets of third studs (1105) on the left and right sides. The bracket (1101) is provided with two sets of through holes on the left and right sides respectively. The third studs (1105) pass through the corresponding through holes on the bracket (1101). Two adjusting nuts (1106) are screwed on the third studs (1105). The two adjusting nuts (1106) are located on the upper and lower sides of the bracket (1101) respectively. The bracket (1101) is clamped and fixed by the two nuts.