Packaging device for improving production of inonotus obliquus polypeptide powder
By designing an automated Chaga polypeptide powder packaging device, a fully automated process from raw material delivery to finished product packaging has been achieved, solving the problems of low efficiency and precise control in existing technologies, improving production efficiency and packaging accuracy, and reducing the risk of human error.
Patent Information
- Application Number
- CN202423002467.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-06
- Publication Date
- 2025-09-23
- Estimated Expiration
- 2034-12-06
AI Technical Summary
Existing Chaga polypeptide powder packaging equipment relies on manual operation, resulting in low production efficiency and prone to human errors, and unable to achieve automatic automation and precise control.
A packaging device consisting of a motor, a screw shaft, a stirring paddle, a hot press, an electric cylinder, and a weighing platform was designed, realizing a fully automated process from raw material transportation to finished product packaging. The baffle and spring design in the material guide tube ensured precise control of the amount of polypeptide powder, the stirring paddle improved fluidity, and the push plate and electric cylinder drove the automatic pushing of the finished product. The weighing platform and recorder ensured the consistent weight of each bag of polypeptide powder.
It improves production efficiency, reduces manual intervention, ensures packaging accuracy and stability, reduces the risk of human error, and improves space utilization and the reliability of finished product detection.
Smart Images

Figure CN223371333U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of food packaging, in particular to a packaging device for improving the production of chaga polypeptide powder. Background Art
[0002] Chaga peptide powder is a highly active peptide product extracted from Chaga mushroom. Rich in bioactive ingredients, Chaga peptide powder has numerous health benefits and is widely used in health supplements, functional foods, and pharmaceuticals.
[0003] Some existing Chaga polypeptide powder packaging equipment often relies on manual operations, including adding raw materials, positioning the packaging bag, filling the polypeptide powder, and collecting the finished product. However, manual operations are not only time-consuming and labor-intensive, but also prone to human error, resulting in low production efficiency.
[0004] Therefore, it is urgent to propose a packaging device for improving the production of Chaga polypeptide powder. Utility Model Content
[0005] In order to overcome the above-mentioned shortcomings of the prior art, the utility model provides a packaging device for improving the production of Chaga polypeptide powder.
[0006] A packaging device for improving the production of chaga polypeptide powder includes a cabinet, a stand, a material cabin, a lower hopper, a motor, a spiral shaft, a material guide pipe, an extension pipe, a stirring paddle, a stopper, a spring, a guide frame, an electric cylinder, a hot press, an electric push rod, an adsorber and a conveyor. The stand is provided on the top of the cabinet, the upper part of the stand is provided with a material cabin with a conical lower part, one side of the top of the material cabin is connected to the lower hopper, the top of the material cabin is equipped with a motor, a spiral shaft is provided for rotation inside the material cabin, the output shaft of the motor extends into the interior of the material cabin, the output shaft of the motor is connected to the spiral shaft, a stirring paddle for improving the fluidity of the polypeptide powder is provided on the outside of the output shaft of the motor, a material guide pipe is connected to the bottom of the material cabin, the spiral shaft extends into the interior of the material guide pipe, and the outside of the material guide pipe An extension tube with a conical lower portion is provided, the rear portion of the extension tube is connected to the front portion of the cabinet, a stopper is slidingly provided on the lower portion of the guide tube, a spring is provided between the stopper and the inside of the guide tube, a guide frame is installed on the front side of the upper portion of the cabinet, electric cylinders are installed on both sides of the guide frame, the driving end of the electric cylinder passes through the inside of the guide frame, hot presses are symmetrically slidably provided on both sides of the guide frame, the electric cylinders on the same side are connected to the outside of the corresponding hot presses, the hot presses are located below the extension tube, electric push rods are installed on the top of the hot presses, the driving ends of the electric push rods are provided with adsorbers for adsorbing the surface of the packaging bag and keeping it open, a conveyor for conveying packaging bags is installed on the front side of the middle portion of the cabinet, and an inclined plate is provided on the right side of the conveyor.
[0007] Optionally, it also includes a guide rod, a positioning plate and an auxiliary plate. A guide rod is set in the center of the front of the cabinet. A positioning plate and an auxiliary plate for locating the conveying position of the packaging bag are slidably set on the guide rod, and the lower part of the auxiliary plate is inclined.
[0008] Optionally, universal wheels are also included, and each corner of the bottom of the cabinet is rotatably provided with universal wheels for moving the auxiliary device.
[0009] Optionally, screws are also included, and screws are threaded through the top of the positioning plate and the auxiliary plate, and the ends of the screws are against the guide rods.
[0010] Optionally, it also includes electric cylinder 2 and push plate 1. Electric cylinder 2 is installed on one side of the middle of the cabinet. Push plate 1 is provided at the driving end of electric cylinder 2. Push plate 1 is in sliding contact with the conveyor belt of the conveyor. When electric cylinder 2 drives push plate 1 to move linearly, the push plate contacts the surface of the finished product that has completed hot pressing and laminating on the conveyor belt, pushing it to the right, and the finished product falls down from the inclined surface of the auxiliary plate and falls from the inclined plate.
[0011] Optionally, a material frame is also included, and a material frame for loading finished products is provided on the right front side of the lower part of the cabinet.
[0012] Optionally, it also includes an electric cylinder three, a push plate two and a weighing platform. The electric cylinder three is installed on the left front side of the lower part of the cabinet. The push plate two is provided on the driving end of the electric cylinder three. The push plate two is located at the inner lower part of the inclined plate. A weighing platform for measuring the weight of the finished product is installed on the upper left part of the material frame. When the push plate is moved linearly by the electric cylinder three, it first contacts the top of the weighing platform and then approaches the upper part of the material frame.
[0013] Optionally, a recorder is also included. A recorder for recording missing weight is installed at the lower left side of the front of the cabinet, and the recorder is electrically connected to the weighing platform.
[0014] Compared with the existing technology, the utility model has the following advantages: 1. The utility model realizes the whole process from raw material transportation to finished product packaging through the motor, spiral shaft, electric cylinder and hot press, greatly reducing manual intervention and improving production efficiency; through the block and spring design in the guide tube, it ensures that the amount of polypeptide powder entering the extension tube each time is accurately controlled, avoiding excess or insufficient conditions and improving packaging accuracy.
[0015] 2. The utility model uses a stirring paddle to work synchronously with the rotation of the spiral shaft to stir the polypeptide powder, improve its fluidity, prevent agglomeration and blockage, and improve the stability and continuity of material feeding; the design of the spiral shaft can evenly push the polypeptide powder to the guide pipe, ensuring the uniformity of the feeding process.
[0016] 3. The push plates 1 and 2 of the utility model are driven by the electric cylinders 2 and 3 to realize the automatic pushing and collection of finished packaging bags, which reduces manual intervention, improves production efficiency and reduces the risk of human error.
[0017] 4. The utility model ensures the consistency of weight of each bag of polypeptide powder through the use of a weighing platform and a recorder, improves the accuracy and reliability of finished product testing, and avoids rework and waste caused by unqualified weight.
[0018] 5. The conveyor, inclined plate and material frame in the utility model are compactly designed and occupy little space, making them easy to arrange in a limited production area and improving space utilization. BRIEF DESCRIPTION OF THE DRAWINGS
[0019] Figure 1 It is a schematic diagram of the three-dimensional structure of the utility model.
[0020] Figure 2 It is a three-dimensional structural diagram of the components of the utility model, such as the stand, the material cabin and the lower hopper.
[0021] Figure 3 It is a three-dimensional structural diagram of the extension tube, guide frame, electric cylinder and other components of the utility model.
[0022] Figure 4 It is a three-dimensional structural diagram of the electric cylinder 1, the hot press and the electric push rod of the utility model.
[0023] Figure 5 It is a three-dimensional structural diagram of the positioning plate, auxiliary plate, screws and other components of the utility model.
[0024] Figure 6 This is a schematic diagram of the bottom perspective of the positioning plate, auxiliary plate, screws and other components of the utility model.
[0025] Figure 7 It is a three-dimensional structural diagram of the weighing platform, push plate 2 and material frame of the utility model.
[0026] Figure 8 It is a schematic cross-sectional view of the weighing platform, push plate 2 and material frame of the utility model.
[0027] Markings in the accompanying drawings: 1: cabinet, 2: universal wheel, 21: stand, 3: material compartment, 4: lower hopper, 5: motor, 6: screw shaft, 61: material guide tube, 62: extension tube, 7: stirring paddle, 8: stopper, 9: spring, 10: guide frame, 11: electric cylinder 1, 12: hot press, 121: electric push rod, 122: adsorber, 13: guide rod, 14: positioning plate, 141: auxiliary plate, 142: screw, 15: conveyor, 16: electric cylinder 2, 161: push plate 1, 162: electric cylinder 3, 163: push plate 2, 17: weighing platform, 18: material frame, 19: recorder. DETAILED DESCRIPTION
[0028] The present invention will be further described below in conjunction with specific embodiments. The illustrative embodiments and descriptions of the present invention are used to explain the present invention, but are not intended to limit the present invention.
[0029] Example: A packaging device for improving the production of Chaga polypeptide powder, such as Figures 1-8As shown, it includes a cabinet 1, a stand 21, a material cabin 3, a lower hopper 4, a motor 5, a screw shaft 6, a guide pipe 61, an extension pipe 62, a stirring paddle 7, a stopper 8, a spring 9, a guide frame 10, an electric cylinder 11, a hot press 12, an electric push rod 121, an adsorber 122 and a conveyor 15. The cabinet 1 serves as the main frame of the entire device and provides a basis for installing and supporting various components. A stand 21 is provided on the top of the cabinet 1 to provide a stable support to ensure the stability and safety of the material cabin 3. A material cabin 3 with a conical lower part is provided on the upper part of the stand 21 for storing chaga polypeptide powder. The conical top design helps the raw materials to flow in evenly. One side of the top of the material cabin 3 is connected to The lower hopper 4 is convenient for adding polypeptide powder and ensuring the continuous supply of raw materials. A motor 5 is installed on the top of the material cabin 3 to drive the screw shaft 6 and the stirring paddle 7 to push the polypeptide powder evenly to the guide tube 61 for guiding the discharge of the polypeptide powder. The material cabin 3 is provided with a screw shaft 6 for rotation. When rotating, it ensures the uniform distribution of the polypeptide powder to prevent agglomeration and blockage. The output shaft of the motor 5 extends into the material cabin 3. The output shaft of the motor 5 is connected to the screw shaft 6. The outside of the output shaft of the motor 5 is provided with a stirring paddle 7 for improving the fluidity of the polypeptide powder. The bottom of the material cabin 3 is docked with a guide tube 61. The screw shaft 6 extends into the inside of the guide tube 61. The outside of the guide tube 61 is provided with an extension tube 62 with a tapered lower portion for The polypeptide powder is fed into the packaging bag, and the rear of the extension tube 62 is connected to the front of the cabinet 1. A stopper 8 is provided on the lower part of the guide tube 61 for sliding. The stopper 8 ensures that the amount of polypeptide powder entering the extension tube 62 each time is accurately controlled to avoid excessive or insufficient amounts. A spring 9 is provided between the stopper 8 and the inside of the guide tube 61 to ensure that the stopper 8 is automatically closed under the action of the spring 9, thereby improving the accuracy and stability of the material feeding. A guide frame 10 is installed on the front side of the upper part of the cabinet 1 for supporting and guiding the hot press 12. Electric cylinders 11 are installed on both sides of the guide frame 10. The driving end of the electric cylinder 11 passes through the inside of the guide frame 10. Hot presses 12 are symmetrically slidably provided on both sides of the guide frame 10 for heat sealing the package. Bagging, the electric cylinder 11 on the same side is externally connected to its corresponding hot press 12, the hot press 12 is located below the extension tube 62, and an electric push rod 121 is installed on the top of the hot press 12. The driving end of the electric push rod 121 is provided with an adsorber 122 for adsorbing the surface of the packaging bag and opening it. The electric push rod 121 drives the adsorber 122 to adsorb the opening part of the packaging bag to ensure that the packaging bag is open, which is convenient for filling with polypeptide powder. A conveyor 15 for conveying packaging bags is installed on the front side of the middle of the cabinet 1. The conveyor 15 is provided with an inclined plate on the right side to guide the finished product to fall, ensure that the finished product packaging bags fall smoothly, and reduce the risk of jamming and accumulation.
[0030] like Figure 5-Figure 6As shown, it also includes a guide rod 13, a positioning plate 14 and an auxiliary plate 141. A guide rod 13 is provided in the center of the front of the cabinet 1 to guide and support the positioning plate 14 and the auxiliary plate 141 to ensure stable sliding of the positioning plate 14 and the auxiliary plate 141 to improve the positioning accuracy of the packaging bag. The positioning plate 14 and the auxiliary plate 141 for positioning the conveying position of the packaging bag are slidably provided on the guide rod 13. The lower part of the auxiliary plate 141 is in the shape of a slope to guide the finished product to fall.
[0031] like Figure 1 As shown, it also includes universal wheels 2. Each corner of the bottom of the cabinet 1 is rotatably provided with universal wheels 2 for assisting the movement of the device, which facilitates the movement and adjustment of the position of the device and improves flexibility and applicability.
[0032] like Figure 5-Figure 6 As shown, screws 142 are also included. Screws 142 are threaded through the top of the positioning plate 14 and the auxiliary plate 141. The ends of the screws 142 are against the guide rod 13. The screws 142 are used to fix the positions of the positioning plate 14 and the auxiliary plate 141 to ensure their stability and accuracy.
[0033] like Figure 7-Figure 8 As shown, it also includes an electric cylinder 2 16 and a push plate 161. The electric cylinder 2 16 is installed on one side of the middle of the cabinet 1. The driving end of the electric cylinder 2 16 is provided with a push plate 161. The push plate 161 is in sliding contact with the conveyor belt of the conveyor 15. When the electric cylinder 2 16 drives the push plate 161 to move linearly, the push plate contacts the surface of the finished product on the conveyor belt that has completed the hot pressing and pushing it to the right. The finished product falls down from the inclined surface of the auxiliary plate 141 and falls from the inclined plate for collection.
[0034] like Figure 1 、 Figure 3 and Figure 7-Figure 8 As shown, a material frame 18 is also included. The material frame 18 for loading finished products is set on the right front side of the lower part of the cabinet 1. The material frame 18 provides enough space to load finished products, reduces the number of frequent replacement of material frames, and improves production continuity.
[0035] like Figures 1-8 As shown, it also includes an electric cylinder 3 162, a push plate 2 163 and a weighing platform 17. The electric cylinder 3 162 is installed on the left front side of the lower part of the cabinet 1. The push plate 2 163 is provided on the driving end of the electric cylinder 3 162. The electric cylinder 3 162 drives the push plate 2 163 to push the finished product to the weighing platform 17 to ensure accurate weighing of the finished product. The push plate 2 163 is located at the inner lower part of the inclined plate. The weighing platform 17 for measuring the weight of the finished product is installed on the upper left part of the material frame 18 to ensure that the weight of each bag of polypeptide powder is consistent, thereby improving the accuracy and reliability of the finished product detection; when the push plate is moved linearly by the electric cylinder 3 162, it first contacts the top of the weighing platform 17 and then approaches the upper part of the material frame 18.
[0036] like Figures 1-8 As shown, a recorder 19 is also included. A recorder 19 for recording missing weight is installed at the lower left side of the front of the cabinet 1. The recorder 19 is electrically connected to the weighing platform 17. The recorder 19 records the weight of each bag of polypeptide powder to ensure the quality of the finished product and avoid rework and waste due to unqualified weight.
[0037] Before packaging, the Chaga polypeptide powder is added to the material compartment 3 through the lower hopper 4, the motor 5 is started, driving the screw shaft 6 and the stirring paddle 7 to rotate, and the polypeptide powder is evenly pushed to the guide tube 61. After the polypeptide powder enters the guide tube 61, the stopper 8 is automatically closed under the action of the spring 9, ensuring that the amount of polypeptide powder entering the extension tube 62 is accurate each time. The electric cylinder 11 drives the hot press 12 to slide left and right, preparing to heat-seal the packaging bag. The empty packaging bag is transported to the bottom of the hot press 12 by the conveyor 15. During this process, the positioning plate 14 will position the packaging bag to ensure that the packaging bag will not deviate during transportation. The adsorber 122 uses negative pressure to absorb the opening part of the packaging bag, so that Open, the polypeptide powder enters the opened packaging bag through the extension tube 62, the electric cylinder 11 drives the heat press 12 to move left and right, heat-seals the filled packaging bag to ensure the sealing effect, and then starts the electric cylinder 2 16. The push plate 1 161 is driven by the electric cylinder 2 16 to push the finished packaging bag and contact the inclined surface at the bottom of the auxiliary plate 141. The auxiliary plate 141 guides the finished product to fall and pushes the finished packaging bag to the inclined plate. Before that, the push plate 2 163 is driven by the electric cylinder 3 162 to push the finished product onto the weighing platform 17. The recorder 19 records the weight of the finished product to ensure the quality is qualified. The weighed finished product is pushed into the material frame 18 by the push plate 2 163 to complete the entire packaging process.
[0038] The above is only a preferred embodiment of the present invention. It should be pointed out that for ordinary technicians in this technical field, several improvements and modifications can be made without departing from the principles of the present invention. These improvements and modifications should also be regarded as within the scope of protection of the present invention.
Claims
1. A packaging device for improving the production of Chaga polypeptide powder, comprising a cabinet (1) and a stand (21), wherein the stand (21) is provided on the top of the cabinet (1); wherein: The machine also includes a material cabin (3), a lower hopper (4), a motor (5), a screw shaft (6), a material guide pipe (61), an extension pipe (62), a stirring paddle (7), a stopper (8), a spring (9), a guide frame (10), an electric cylinder (11), a hot press (12), an electric push rod (121), an adsorber (122) and a conveyor (15). The upper part of the stand (21) is provided with a material cabin (3) with a conical lower part. The top side of the material cabin (3) is connected to the lower hopper (4). A motor (5) is installed on the top of the material cabin (3), a screw shaft (6) is provided inside the material cabin (3), the output shaft of the motor (5) extends into the interior of the material cabin (3), the output shaft of the motor (5) is connected to the screw shaft (6), a stirring paddle (7) for improving the fluidity of the polypeptide powder is provided on the outside of the output shaft of the motor (5), a guide pipe (61) is docked at the bottom of the material cabin (3), the screw shaft (6) extends into the interior of the guide pipe (61), and the outside of the guide pipe (61) is provided with a tapered extension at the bottom. The rear portion of the extension tube (62) is connected to the front portion of the cabinet (1). A stopper (8) is provided in the lower portion of the guide tube (61) for sliding movement. A spring (9) is provided between the stopper (8) and the interior of the guide tube (61). A guide frame (10) is provided on the front side of the upper portion of the cabinet (1). An electric cylinder (11) is provided on both sides of the guide frame (10). The driving end of the electric cylinder (11) passes through the interior of the guide frame (10). Hot pressing springs are provided symmetrically on both sides of the guide frame (10). The electric cylinder (11) on the same side is externally connected to the corresponding hot press (12), the hot press (12) is located below the extension tube (62), the top of the hot press (12) is equipped with an electric push rod (121), the driving end of the electric push rod (121) is equipped with an adsorbent (122) for adsorbing the surface of the packaging bag and opening it, and a conveyor (15) for conveying the packaging bag is installed on the front side of the middle part of the cabinet (1), and an inclined plate is provided on the right part of the conveyor (15).
2. The packaging device for improving the production of Chaga polypeptide powder according to claim 1, characterized in that: The cabinet (1) further comprises a guide rod (13), a positioning plate (14) and an auxiliary plate (141). The guide rod (13) is arranged at the center of the front of the cabinet (1). The positioning plate (14) and the auxiliary plate (141) for locating the conveying position of the packaging bag are slidably arranged on the guide rod (13). The lower part of the auxiliary plate (141) is in the shape of an inclined plane.
3. The packaging device for improving the production of Chaga polypeptide powder according to claim 2, characterized in that: It also includes universal wheels (2), and each corner of the bottom of the cabinet (1) is rotatably provided with universal wheels (2) for moving the auxiliary device.
4. The packaging device for improving the production of Chaga polypeptide powder according to claim 3, characterized in that: The invention also includes a screw (142). The top of the positioning plate (14) and the auxiliary plate (141) are both threaded with the screw (142). The end of the screw (142) is against the guide rod (13).
5. The packaging device for improving the production of Chaga polypeptide powder according to claim 4, characterized in that: The cabinet (1) further comprises an electric cylinder (16) and a push plate (161). The electric cylinder (16) is installed on one side of the middle of the cabinet (1). The driving end of the electric cylinder (16) is provided with a push plate (161). The push plate (161) is in sliding contact with the conveyor belt of the conveyor (15). When the electric cylinder (16) drives the push plate (161) to move linearly, the push plate contacts the surface of the finished product on the conveyor belt that has completed the hot pressing and laminating, and pushes it to the right. The finished product falls down from the inclined surface of the auxiliary plate (141) and falls off the inclined plate.
6. The packaging device for improving the production of Chaga polypeptide powder according to claim 5, characterized in that: The cabinet (1) further comprises a material frame (18), which is provided on the right front side of the lower part of the cabinet (1) and is used to load finished products.
7. The packaging device for improving the production of Chaga polypeptide powder according to claim 6, characterized in that: The machine also includes an electric cylinder 3 (162), a push plate 2 (163) and a weighing platform (17). The electric cylinder 3 (162) is installed on the left front side of the lower part of the cabinet (1). The driving end of the electric cylinder 3 (162) is provided with a push plate 2 (163). The push plate 2 (163) is located at the inner lower part of the inclined plate. The weighing platform (17) for measuring the weight of the finished product is installed on the upper left part of the material frame (18); when the push plate is linearly moved by the electric cylinder 3 (162), it first contacts the top of the weighing platform (17) and then approaches the upper part of the material frame (18).
8. The packaging device for improving the production of Chaga polypeptide powder according to claim 7, characterized in that: The machine also includes a recorder (19), which is installed at the lower left side of the front of the cabinet (1) for recording the missing weight. The recorder (19) is electrically connected to the weighing platform (17).