Calf milk powder bagging equipment
The calf milk powder bagging equipment, with its replaceable feeding frame and push-pull sliding mechanism, combined with the stable clamping of electric push rods and double-headed electric telescopic rods, solves the problems of inaccurate bagging volume control and stability, achieving an efficient and precise milk powder bagging process.
Patent Information
- Application Number
- CN202520556872.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-27
- Publication Date
- 2026-01-13
- Estimated Expiration
- 2035-03-27
AI Technical Summary
Existing calf milk powder bagging equipment suffers from inaccurate bag volume control, limited bag fixing methods, and inefficient bagging process. In particular, improvements are needed in metering accuracy, bagging stability, and automation.
The system employs a replaceable material container combined with a push-pull sliding mechanism for precise metering, and uses an electric push rod to drive quantitative conveying. It utilizes a double-headed electric telescopic rod and a pressure strip device to stably clamp the packaging bag, and uses a vibration motor to assist in feeding. The support structure uses a combination of brackets and multiple support springs to improve the stability of the equipment.
It enables precise metering and bagging of different volume specifications, improves bagging accuracy and stability, reduces milk powder residue and spillage, enhances the applicability and production efficiency of the equipment, and meets the needs of different packaging specifications.
Smart Images

Figure CN223791895U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the technical field of milk powder bagging equipment, specifically relating to a bagging equipment for calf milk powder. Background Technology
[0002] A calf refers to a newborn calf, typically from birth to about six months old. During the rearing process, calves need to be fed with milk powder, and milk powder bagging is a crucial step in dairy product production, directly affecting the product's hygiene, safety, and quality. Currently, the common method for bagging milk powder is to directly fill the packaging bag with a certain amount of milk powder. However, traditional bagging methods still have room for improvement in terms of metering accuracy, bagging stability, and automation.
[0003] Currently, there are some specialized equipment available on the market for bagging milk powder. For example, the technical solution with announcement number CN205441098U, entitled "A Milk Powder Bagging Device," includes a base, an L-shaped bracket, a ring-shaped support frame, and a fastening device. The L-shaped bracket is mounted on the base and fixed by a connecting beam. The ring-shaped support frame is positioned between the connecting beam and the L-shaped bracket, and the fastening device works in conjunction with the ring-shaped support frame. Furthermore, the device is equipped with casters at the bottom for easy movement and position adjustment. Compared to the traditional method of manually handling the packaging bags, this device reduces manual intervention, improves work efficiency, and saves labor costs.
[0004] However, existing calf milk powder bagging equipment still has the following technical problems:
[0005] 1. Inaccurate bagging volume control: Current technology relies heavily on manual visual estimation of milk powder volume during the bagging process, lacking specific weighing devices. This results in inaccurate bagging volume control, making it impossible to precisely control the volume according to actual needs. This may lead to some bags being overfilled, affecting packaging seal, or underfilled, impacting feeding effectiveness.
[0006] 2. Limited packaging bag fixing methods: Some bagging equipment still relies on mechanical clamps or ring support frames to fix the packaging bags. If the fixing force is insufficient or the bag is disturbed during the milk powder filling process, the packaging bag may tilt, deform or even fall off, affecting the bagging stability and the uniformity of milk powder filling.
[0007] 3. The bagging process is not efficient enough: Some equipment has a simple feeding structure design, and the milk powder is easily affected by airflow in the conveying channel, resulting in uneven distribution during filling and even blockage at the feeding port. In addition, most existing equipment lacks flexible metering devices, and once the bagging volume is set, it is difficult to quickly change to different sizes of packaging bags, resulting in poor adaptability. Utility Model Content
[0008] To address the problems existing in the prior art, the purpose of this utility model is to provide a calf milk powder bagging device. This device achieves precise metering of different volumes using replaceable material containers, and combines a push-pull sliding mechanism to complete the quantitative conveying and bagging of milk powder. The device is driven by an electric push rod, ensuring precise alignment of the material containers with the feeding and dropping frames, thus improving bagging accuracy. Furthermore, a double-headed electric telescopic rod, in conjunction with a pressure strip device, stably clamps the packaging bags, ensuring the stability and reliability of the milk powder bagging process, improving overall packaging efficiency, and overcoming the shortcomings of existing technologies.
[0009] To achieve the above objectives, this utility model provides the following technical solution:
[0010] A calf milk powder bagging device includes a storage box, a bagging component, and a support component. The storage box has an opening on its top surface, and a sealing plate is inserted into the opening. The bagging component is located on the bottom surface of the storage box, and a support component is vertically positioned below the bagging component. The bagging component includes a push-pull frame box, a receiving frame, and a discharging frame. The push-pull frame box is horizontally positioned below the storage box, and a discharging frame is vertically connected and fixed to the center of its top. The top of the discharging frame is connected and fixed to the bottom surface of the storage box. A receiving frame is slidably assembled inside the push-pull frame box, and one vertical end face of the push-pull frame box is open. A discharging frame is fixed through the other side of the bottom surface of the push-pull frame box, and the other end of the push-pull frame box is open. A cover plate is inserted into the opening of the push-pull frame box, and an electric push rod is horizontally fixed on the cover plate. The output end of the electric push rod is fixed to the side end face of the receiving frame.
[0011] Furthermore, a guide groove is horizontally opened through the other end face of the push-pull frame box, and a vibration motor is horizontally fixed on one side of the push-pull frame box.
[0012] Furthermore, the material holding frame is available in various volume sizes. A baffle is horizontally fixed on the top surface of the material holding frame near the cover plate, and the baffle is detachably assembled and connected to the output end of the electric push rod.
[0013] Furthermore, a horizontally detachable insert plate is mounted on the other vertical end face of the material holding frame, and the insert plate is slidably inserted into the guide groove.
[0014] Furthermore, a perforated plate is horizontally fixed at the top of the opening of the sliding box, and a positioning rod is vertically slidably inserted into the outer wall of the cover plate, with the top of the positioning rod inserted into the perforated plate.
[0015] Furthermore, a positioning spring is vertically sleeved on the outside of the positioning rod, and the two ends of the positioning spring are fixed to the outer wall of the cover plate and the bottom surface of the positioning rod, respectively.
[0016] Furthermore, the support includes a bracket, which is vertically positioned below the sliding box, and multiple support springs are vertically fixed to the top surface of the bracket, with the top ends of the multiple support springs fixed to the bottom surface of the sliding box.
[0017] Furthermore, pressure strips are horizontally installed on the bottom of both the front and rear sides of the material drop frame, and double-headed electric telescopic rods are horizontally fixed on the vertical end faces of both the left and right sides of the material drop frame. The output ends of the double-headed electric telescopic rods are respectively fixedly assembled with the pressure strips on the front and rear sides of the material drop frame.
[0018] Compared with the prior art, the beneficial effects of this utility model are:
[0019] This invention provides a bagging device for calf milk powder. Through a replaceable feeding frame, it achieves precise measurement of different volume specifications, overcoming the shortcomings of existing technologies that rely on human judgment of bag volume. During the bagging process, the device utilizes the linkage control of a push-pull frame box and an electric push rod, allowing the feeding frame to slide precisely between the feeding frame and the discharge frame, achieving high-precision quantitative bagging and avoiding the problem of inaccurate milk powder bag volume caused by human estimation errors. Furthermore, the replaceable specifications of the feeding frame allow the device to adapt to different packaging requirements, improving its versatility and applicability.
[0020] This invention employs an electric pusher-driven sliding structure to achieve smooth pushing and pulling of the feeding frame. Simultaneously, the automatic closing function of the baffle prevents spillage of milk powder during bagging due to unstable flow rate. A vibration motor is installed inside the push-pull frame, generating appropriate vibration as the milk powder falls, preventing blockages caused by powder accumulation, improving the uniformity of feeding, and ensuring smooth filling of the feeding frame and packaging bag. Compared to traditional fixed metering methods, this equipment, through a sliding feeding frame combined with an electric pusher drive, reduces milk powder residue, improves bagging efficiency, avoids metering errors caused by changes in milk powder density, and enhances the accuracy of milk powder filling.
[0021] This invention optimizes bagging stability. Double-headed electric telescopic rods with pressure strips are installed on both sides of the feeding frame to tightly secure the packaging bag during the bagging process, ensuring that the bag opening does not deform or fall off due to filling pressure, thus preventing milk powder spillage. Furthermore, a cover plate and positioning rod structure are installed at the opening of the push-pull frame box. Through the cooperation of the positioning rod and positioning spring, the cover plate provides stable support during bagging, preventing the bagging components from loosening due to vibration during equipment operation, thereby improving the overall operational stability of the equipment.
[0022] The support structure of this invention employs a combination of a bracket and multiple support springs, providing excellent shock absorption during bagging equipment operation. This ensures the stability of the push-pull box during movement and prevents wear or displacement of components due to frequent slippage. The support spring design not only improves the stability of the bagging equipment but also effectively reduces operating noise and extends its service life. Furthermore, all components in contact with the milk powder are made of food-grade stainless steel or high-density polyethylene, ensuring that the milk powder bagging process meets food safety standards, preventing contamination, and improving product hygiene and safety.
[0023] The overall structure of this utility model is reasonably designed, which optimizes the efficiency and accuracy of milk powder bagging, improves the applicability and stability of the equipment, and can be widely used in the milk powder processing industry to improve production efficiency, reduce labor costs, and at the same time ensure the quality of milk powder bagging and meet the packaging needs of different specifications of milk powder. Attached Figure Description
[0024] Figure 1 This is a schematic diagram of the overall structure of this utility model;
[0025] Figure 2 This is a schematic diagram of the overall structure of this utility model in an disassembled state;
[0026] Figure 3 This is a schematic diagram of the bagging component of this utility model in its disassembled state;
[0027] Figure 4 This is a schematic diagram of the material holding frame of this utility model in its disassembled state.
[0028] Figure 5 This is a structural schematic diagram of the support component of this utility model in its disassembled state.
[0029] The attached diagram lists the components represented by each number as follows:
[0030] 1. Storage box; 2. Bagging component; 21. Sliding box; 211. Discharge frame; 212. Guide groove; 213. Vibration motor; 214. Perforated plate; 22. Material holding frame; 221. Insert plate; 222. Baffle; 23. Drop frame; 231. Double-headed electric telescopic rod; 232. Pressure strip; 24. Cover plate; 241. Positioning rod; 242. Positioning spring; 25. Electric push rod; 3. Support component; 31. Bracket; 32. Support spring. Detailed Implementation
[0031] To make the objectives and advantages of this utility model clearer, the following detailed description is provided in conjunction with embodiments. It should be understood that the following text is merely used to describe one or more specific embodiments of this utility model and does not strictly limit the scope of protection specifically claimed by this utility model.
[0032] refer to Figures 1-5 As shown, a calf milk powder bagging device includes a storage box 1, a bagging component 2, and a support component 3. The storage box 1 has an opening on its top surface and is made of food-grade stainless steel (SUS304) to ensure the hygiene and safety of milk powder storage. A sealing plate is inserted into the opening of the storage box 1, and the sealing plate is fixed by a food-grade silicone sealing strip to prevent external air from entering and causing the milk powder to become damp and clump. The bagging component 2 is provided on the bottom surface of the storage box 1, and a support component is vertically provided below the bagging component 2. Component 3, the support component 3 is made of high-strength carbon steel to provide sufficient stability; the bagging component 2 includes a push-pull frame box 21, a material holding frame 22, and a material dropping frame 23. The push-pull frame box 21 is horizontally set below the storage box 1. The push-pull frame box 21 is made of aluminum alloy 6061-T6 to ensure lightweight and corrosion resistance. The top center of the push-pull frame box 21 is vertically connected and fixed to the material dropping frame 211. The top of the material dropping frame 211 is connected and fixed to the bottom surface of the storage box 1, and the inner wall is sprayed with... An anti-stick coating is applied to reduce milk powder residue and clogging. A material holding frame 22 is slidably assembled inside the push-pull box 21. The material holding frame 22 is made of food-grade polypropylene and is designed with different volume markings to meet the needs of different packaging sizes. One side of the push-pull box 21 has a vertical opening, and the other side of the bottom of the push-pull box 21 has a through-fixed material drop frame 23. The material drop frame 23 is made of stainless steel, and its inner wall is mirror-polished to reduce friction and ensure that the milk powder falls smoothly into the packaging bag. The other end of the push-pull box 21 has an opening, and a cover plate 24 is inserted into the opening. The cover plate 24 is made of aluminum alloy to ensure the overall structure is lightweight and durable. An electric push rod 25 is horizontally fixed on the cover plate 24. The output end of the electric push rod 25 is fixed to the side end face of the material holding frame 22. The electric push rod 25 is a high-precision electric push rod of model DYTJ-100 to ensure the smoothness and accuracy of the push-pull process.
[0033] refer to Figure 3 As shown, a guide groove 212 is horizontally opened through the other end face of the push-pull frame box 21. The inside of the guide groove 212 is anodized to improve wear resistance and ensure that the material holding frame 22 reduces frictional resistance when sliding. A vibration motor 213 is horizontally fixed on one side of the push-pull frame box 21. The vibration motor 213 is a YZD-10-6 model vibration motor, which assists the milk powder feeding through high-frequency vibration, prevents the milk powder from being blocked due to changes in humidity, and improves the milk powder bagging efficiency.
[0034] refer to Figure 3 and Figure 4As shown, the material holding frame 22 is available in various sizes, with a minimum capacity of 500g and a maximum capacity of 5000g. A baffle 222 is horizontally fixed on the top surface of the material holding frame 22 near the cover plate 24. The baffle 222 is made of 304 stainless steel. The height of the baffle 222 is adapted to the specifications of the material holding frame 22. The baffle 222 is detachably assembled and connected to the output end of the electric push rod 25 and is fixed with M6 stainless steel bolts to ensure the stability of the baffle 222 and facilitate maintenance and replacement.
[0035] refer to Figure 3 and Figure 4 As shown, a horizontally detachable insert plate 221 is assembled on the vertical end face of the other side of the material holding frame 22. The insert plate 221 is made of food-grade high-density polyethylene (HDPE) material to ensure food safety and durability. The insert plate 221 is slidably inserted into the guide groove 212 and fixed by a locking nut to ensure that it will not deviate during the sliding process, thereby improving the service life and reliability of the equipment.
[0036] refer to Figure 3 and Figure 4 As shown, a perforated plate 214 is horizontally fixed at the top of the opening of the sliding box 21. The perforated plate 214 adopts a stainless steel mesh structure to ensure air circulation and reduce the impact of static electricity accumulation on the flowability of milk powder. A positioning rod 241 is vertically slidably inserted into the outer wall of the cover plate 24. The positioning rod 241 is made of high-strength alloy steel, and its top is inserted into the perforated plate 214. Its surface is galvanized to enhance corrosion resistance.
[0037] refer to Figure 3 and Figure 4 As shown, a positioning spring 242 is vertically sleeved on the outside of the positioning rod 241. The positioning spring 242 is made of 65Mn high-strength spring steel, and the spring stiffness is set to 25N / mm to ensure stable positioning in different environments. The two ends of the positioning spring 242 are fixed to the outer wall of the cover plate 24 and the bottom surface of the positioning rod 241, respectively, to ensure that the cover plate 24 can be firmly positioned during assembly and to avoid displacement due to vibration or external force.
[0038] refer to Figure 3 and Figure 5As shown, the support component 3 includes a bracket 31, which is vertically positioned below the push-pull frame box 21. The bracket 31 is made of Q235 carbon steel and is treated with anti-rust spraying to improve corrosion resistance and load-bearing capacity. Multiple support springs 32 are vertically fixed on the top surface of the bracket 31. The support springs 32 are made of 60Si2Mn alloy spring steel, and the load-bearing capacity of each support spring 32 is set to 50N to ensure that the push-pull frame box 21 can provide sufficient support force during movement and to prevent the device from deforming or fatigued due to long-term use. The top ends of the multiple support springs 32 are fixed to the bottom surface of the push-pull frame box 21 and connected by high-strength bolts to ensure the stability of the support system.
[0039] refer to Figure 3 As shown, pressure strips 232 are horizontally installed on the bottom of both the front and rear sides of the feeding frame 23. The pressure strips 232 are made of food-grade silicone material to ensure that the packaging bag will not be damaged due to compression, while also having good flexibility. Double-headed electric telescopic rods 231 are horizontally fixed on the vertical end faces of both the left and right sides of the feeding frame 23. The double-headed electric telescopic rods 231 are LA-12-300 electric telescopic rods with a maximum thrust output of 300N, ensuring that the packaging bag can be firmly fixed during the milk powder bagging process and preventing the packaging bag from shifting due to the impact of the falling material. The output ends of the double-headed electric telescopic rods 231 are fixedly assembled with the pressure strips 232 on the front and rear sides of the feeding frame 23, and are installed through high-strength aluminum alloy connectors to ensure that the clamping force can still be maintained during long-term use, thereby improving the bagging efficiency and accuracy of the overall equipment.
[0040] Example 2: Replaceable material container enables precise metering and bagging.
[0041] This embodiment provides a calf milk powder bagging device based on replaceable container frames to solve the problem of large errors caused by relying on human judgment of bagging volume in existing technologies. The device uses detachable container frames, each made of food-grade polypropylene (PP) material, available in four different sizes: 500g, 1000g, 2000g, and 5000g, with corresponding volume markings on the inner wall to meet different packaging requirements. The container frames are slidably assembled inside a push-pull box and connected to an electric push rod via M6 stainless steel bolts. When the electric push rod (model: DYTJ-100, stroke 200mm, thrust 500N) is activated, the container frames slide along the guide rails of the push-pull box, precisely aligning them with the feeding and dropping frames to achieve high-precision quantitative bagging. This device optimizes the bagging accuracy of milk powder and allows for the replacement of container frames of different capacities as needed, improving the applicability of the equipment.
[0042] Comparative Case: Traditional milk powder bagging equipment typically uses fixed-capacity metering devices. If the bagging specifications need to be changed, the equipment needs to be readjusted or the entire bagging mechanism needs to be replaced. This not only increases the adjustment time but also results in poor equipment adaptability. For example, the milk powder bagging equipment with announcement number CN205441098U can only be used for a single specification of milk powder packaging. This embodiment uses replaceable material containers to enable the equipment to flexibly adapt to different packaging specifications, improving bagging accuracy and production efficiency.
[0043] Example 3: The sliding box and electric push rod are linked to prevent milk powder from spilling.
[0044] This embodiment provides a milk powder bagging solution based on the linkage between a sliding push-pull box and an electric push rod, to prevent milk powder from spilling during the filling process due to unstable flow rate. The push-pull box of this device is made of 6061-T6 aluminum alloy with an internal Teflon (PTFE) anti-stick coating to reduce milk powder residue and optimize sliding flow. The bottom surface of the push-pull box is equipped with a replaceable discharge frame (304 stainless steel). When the discharge frame moves directly above the discharge frame, the output end of the electric push rod precisely controls the sliding termination position of the discharge frame via a limit sensor (model: OMRONE3Z-T61), and closes the discharge frame through a baffle 222 (high-density polyethylene material), thereby ensuring that milk powder is released only at the discharge frame, preventing spillage during filling and improving bagging accuracy.
[0045] Comparative Case: Existing milk powder bagging equipment, such as CN108572643A, uses gravity flow during the bagging process, with milk powder directly entering the packaging bag through the inlet. Due to the lack of precise control mechanisms, milk powder may spill during filling due to airflow or uneven flow, resulting in waste. This embodiment, through precise alignment of the electric push rod and the push-pull frame, makes the milk powder filling process more controllable, reduces milk powder waste, and improves bagging quality.
[0046] Example 4: The combination of a double-headed electric telescopic rod and a pressure strip improves the stability of the packaging bag.
[0047] This embodiment provides a packaging bag fixing solution based on a dual-headed electric telescopic rod and a pressure strip to improve the stability of the packaging bag during milk powder filling and prevent the packaging bag from shifting or loosening due to filling impact. The device is equipped with dual-headed electric telescopic rods (model: LA-12-300, stroke 100mm, maximum thrust 300N) on both sides of the feeding frame. The output end of each rod is connected to a food-grade silicone pressure strip, which is 50mm wide and 5mm thick, providing uniform pressure on the packaging bag during filling. When the feeding frame begins filling with milk powder, the electric telescopic rods extend, clamping the pressure strips onto both sides of the packaging bag, ensuring that the packaging bag will not deform or fall off due to filling impact, thus improving the stability of the milk powder filling process.
[0048] Comparative Case: Existing milk powder bagging equipment (such as CN107312958A) mostly uses mechanical clamping to fix the packaging bags. However, due to the fixed clamping force, the packaging bags may deform during the filling process due to the impact of the powder, affecting the bagging accuracy. This embodiment uses an adjustable double-headed electric telescopic rod to stably fix the packaging bags before filling and automatically release them after filling, improving bagging stability and equipment applicability.
[0049] Example 5: Combination of bracket and multiple support springs optimizes equipment stability
[0050] This embodiment provides a device stabilization solution based on a combination of a support frame and multiple support springs to reduce the vibration impact during the sliding of the push-pull box and optimize the stability of the bagging equipment. The support frame of this equipment is made of Q235 carbon steel with a rust-proof coating to ensure long-term stable operation. Four support springs (60Si2Mn alloy spring steel, stiffness 25N / mm) are vertically installed at the top of the support frame. The even distribution of the springs provides cushioning support during equipment operation, preventing swaying of the push-pull box during high-speed sliding, thereby improving the stability and accuracy of the bagging process.
[0051] Comparative Case: Traditional bagging equipment often uses rigid fixed supports, such as the CN206394328U equipment. Its rigid support structure may loosen due to vibration after long-term operation, affecting bagging accuracy. This embodiment uses a spring-loaded cushioning structure to reduce equipment vibration while ensuring stability, extending service life, and optimizing the uniformity of milk powder bagging.
[0052] Example 6: Vibration motor-assisted feeding improves filling uniformity
[0053] This embodiment provides a solution based on a vibration motor-assisted feeding method to improve the uniformity of milk powder filling and prevent feeding blockage caused by milk powder accumulation. The device has a vibration motor (model: YZD-10-6, power: 10W, amplitude: 1.2mm) fixedly installed on the side of the push-pull frame. The vibration motor generates high-frequency vibration during milk powder filling, preventing milk powder from adhering to the feeding frame or its inner wall due to humidity or static electricity, ensuring uniform filling and improving bagging efficiency.
[0054] Comparative Case: Traditional milk powder bagging equipment (such as CN108981223A) relies heavily on gravity flow during material feeding. However, due to the hygroscopic and electrostatic properties of milk powder, it easily accumulates at the feeding port, reducing flowability and affecting bagging efficiency. This embodiment utilizes a vibrating motor to assist in allowing milk powder to enter the receiving and discharging frames more smoothly, improving filling uniformity, preventing material blockage, and increasing production efficiency.
[0055] The working principle of this utility model is as follows: During use, based on the volume requirements of the milk powder bagged for calves, a suitable volumetric capacity holding frame 22 is selected and installed in the push-pull frame box 21 of the bagging component 2. When assembling the insert plate 221 at one end of the holding frame 22, a stud is horizontally fixed to one end face of the holding frame 22, and the insert plate 221 is inserted through the stud. The holding frame 22 and the insert plate 221 are locked to the stud by a nut to secure the insert plate 221. The other end face of the holding frame 22 is connected to the electric push rod 25. The output stud is inserted through the electric push rod 25, and the output stud is locked together with a nut. The cover plate 24 is inserted into the opening of the push-pull frame box 21. When the cover plate 24 is assembled with the push-pull frame box 21, the positioning rod 241 is pulled to compress the positioning spring 242. Under the deformation force of the positioning spring 242, the positioning rod 241 is inserted into the hole plate 214 at the opening of the push-pull frame box 21, completing the positioning assembly of the bagging component 2. When bagging calf milk powder, the packaging bag is inserted into the material drop frame 23. At the bottom of the bottom, the double-headed electric telescopic rod 231 is activated to pull the pressure strip 232 to squeeze the two sides of the packaging bag at the bottom of the feeding frame 23. The electric push rod 25 is activated to push the holding frame 22 to slide in the push-pull box 21. When the holding frame 22 and the feeding frame 211 are on the same vertical line, the milk powder falls into the holding frame 22. Then, as the holding frame 22 continues to slide in the push-pull box 21, the baffle 222 on one side of the top surface of the holding frame 22 blocks the feeding frame 211. When the holding frame 22 and the feeding frame 23 are on the same vertical line, the milk powder falls into the holding frame 22. When the milk powder in the holding frame 22 is in a vertical line, it is fed into the packaging bag through the dropping frame 23, completing the packaging of calf milk powder. Then, the double-headed electric telescopic rod 231 is activated to pull the pressure strip 232 to stop squeezing the sides of the packaging bag and remove the calf milk powder. When bagging, the holding frames 22 with different preset volumes are used to quantitatively receive the milk powder. The holding frame 22 is a specific weighing component for the volume of milk powder, which can control the volume of milk powder bagged according to actual needs, thereby improving the accuracy of milk powder bagging volume.
[0056] The above description is merely a preferred embodiment of this utility model. It should be noted that those skilled in the art can make various improvements and modifications without departing from the principle of this utility model, and these improvements and modifications should also be considered within the scope of protection of this utility model. Structures, devices, and operating methods not specifically described or explained in this utility model, unless otherwise specified or limited, shall be implemented using conventional methods in the field.
Claims
1. A bagging device for calf milk powder, characterized in that, The system includes a storage box (1), a bagging component (2), and a support component (3). The top surface of the storage box (1) is open, and a sealing plate is inserted into the opening of the storage box (1). The bagging component (2) is provided on the bottom surface of the storage box (1), and the support component (3) is vertically provided below the bagging component (2). The bagging component (2) includes a push-pull frame box (21), a material holding frame (22), and a material dropping frame (23). The push-pull frame box (21) is horizontally provided below the storage box (1), and a material dropping frame (211) is vertically connected and fixed to the middle of the top of the push-pull frame box (21). The top of the frame (211) is connected and fixed to the bottom surface of the storage box (1). The material holding frame (22) is slidably assembled inside the push-pull frame box (21). The vertical end face of one side of the push-pull frame box (21) is open. The material dropping frame (23) is fixed through the other side of the bottom surface of the push-pull frame box (21). The other end of the push-pull frame box (21) is open. A cover plate (24) is inserted into the opening of the push-pull frame box (21). An electric push rod (25) is horizontally fixed on the cover plate (24). The output end of the electric push rod (25) is fixed on the side end face of the material holding frame (22).
2. The calf milk powder bagging equipment according to claim 1, characterized in that: A guide groove (212) is horizontally opened through the other end face of the push-pull frame box (21), and a vibration motor (213) is horizontally fixed on one side of the push-pull frame box (21).
3. The calf milk powder bagging equipment according to claim 2, characterized in that: The material holding frame (22) is provided with various volume specifications. A baffle (222) is horizontally fixed on the top surface of the material holding frame (22) near the cover plate (24), and the baffle (222) is detachably assembled and connected to the output end of the electric push rod (25).
4. The calf milk powder bagging equipment according to claim 3, characterized in that: A horizontally detachable insert plate (221) is mounted on the vertical end face of the other side of the material holding frame (22), and the insert plate (221) is slidably inserted into the guide groove (212).
5. The calf milk powder bagging equipment according to claim 1, characterized in that: The top of the opening of the push-pull box (21) is horizontally fixed with a perforated plate (214), and a positioning rod (241) is vertically slidably inserted into the outer wall of the cover plate (24), with the top of the positioning rod (241) inserted into the perforated plate (214).
6. The calf milk powder bagging equipment according to claim 5, characterized in that: A positioning spring (242) is vertically sleeved on the outside of the positioning rod (241), and the two ends of the positioning spring (242) are respectively fixed to the outer wall of the cover plate (24) and the bottom surface of the positioning rod (241).
7. The calf milk powder bagging equipment according to claim 1, characterized in that: The support member (3) includes a bracket (31), which is vertically arranged below the push-pull box (21). Multiple support springs (32) are vertically fixed on the top surface of the bracket (31), and the top ends of the multiple support springs (32) are fixed on the bottom surface of the push-pull box (21).
8. The calf milk powder bagging equipment according to claim 1, characterized in that: The bottom of the front and rear sides of the material drop frame (23) is provided with pressure strips (232) horizontally, and the vertical end faces of the left and right sides of the material drop frame (23) are fixed with double-headed electric telescopic rods (231) horizontally, and the output ends of the double-headed electric telescopic rods (231) are fixedly assembled with the pressure strips (232) on the front and rear sides of the material drop frame (23).
Citation Information
Patent Citations
Diamond-valve metal composite electrode material and preparation method thereof
CN107312958A
Obstacle avoidance method and obstacle avoidance system used in automatic driving, and recording medium
CN108572643A
Jet supercooling refrigeration system
CN108981223A
Milk power sack filling device
CN205441098U
Multi -functional teaching mapping appearance
CN206394328U