Fat adjusting equipment in cow milk production line
The dairy production line uniformization device addresses leak detection challenges with a flexible installation system for voice imaging, improving accuracy and reliability while reducing maintenance costs and ensuring device stability.
Patent Information
- Application Number
- CN202422361781.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-27
- Publication Date
- 2025-07-15
- Estimated Expiration
- 2034-09-27
AI Technical Summary
The fine leakage caused by aging, wear or improper installation of seals in the existing milk production line is difficult to detect and deal with in a timely manner, affecting the normal operation of the equipment, reducing production efficiency, milk quality and hygiene standards, and potentially threatening consumers' health.
The acoustic imager is combined with the installation mechanism, and through the design of the adjustment frame and adjustment seat, the multi-angle and position adjustment of the acoustic imager is realized to monitor pump body leakage, and the stability and monitoring accuracy of the equipment are ensured through the installation mechanism of stainless steel and the acoustic imager made of engineering plastic.
It improves the monitoring accuracy and reliability of pump body leakage, reduces the space occupation of equipment, facilitates transportation and storage, enhances the stability and intelligence of equipment, and reduces maintenance and operation costs.
Smart Images

Figure CN223094439U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the field of milk homogenizers, and particularly to a fat-adjusting device in a milk production line. Background Art
[0002] In a milk production line, if fat-adjusting operation needs to be performed on milk, a series of professional equipment is required and a multi-step fine process needs to be followed. As the core equipment in this series of processes, the homogenizer plays a crucial role. It can effectively break up the fat globules in milk and promote their uniform dispersion in the milk liquid, not only ensuring the delicate and stable taste of the milk after fat adjustment, but also precisely controlling the mixing ratio of fat and milk liquid, so as to meet the double high standards of product quality and taste.
[0003] The inventor of the present application found the following problems in the practical use process:
[0004] In the homogenizer of the existing fat-adjusting device in a milk production line, during long-term use, due to reasons such as aging, wear or improper installation of the sealing parts, fine leakage will occur at the pump body position of the homogenizer. This situation will not only affect the normal operation of the equipment, reduce production efficiency, but also pose a potential threat to the quality and hygiene standards of milk, affecting the health of consumers. However, this kind of leakage is often so fine that it is difficult to observe with the naked eye in the early stage, so it is easy to be ignored. But once it fails to be discovered and maintained in time, it may gradually deteriorate, causing larger leakage and even leading to equipment failures, bringing greater losses to production.
[0005] Therefore, it is necessary to provide a fat-adjusting device in a milk production line to solve the above technical problems. Summary of the Utility Model
[0006] The technical problem to be solved by the utility model is that it is difficult to discover and handle in time the fine leakage caused by reasons such as aging, wear or improper installation of the sealing parts at the pump body position of the homogenizer, which in turn affects the normal operation of the equipment, reduces production efficiency and the quality and hygiene standards of milk, and may ultimately pose a potential threat to the health of consumers. In view of the above defects of the prior art, a fat-adjusting device in a milk production line is provided.
[0007] To achieve the above object, the technical solution of the utility model is: a fat-adjusting device in a milk production line, including a homogenizer, the homogenizer includes a body, an installation mechanism is arranged at the bottom center of the body, the installation mechanism includes an installation frame, the rear end of the top of the installation frame is fixedly connected with the body through a resistance rotating shaft, a receiving groove is opened on the installation frame, and the front section of the inner wall of the receiving groove is rotatably connected with an adjusting frame through a resistance rotating shaft. The top end of the adjusting frame is detachably connected with an adjusting seat through an installation bolt, and the adjusting seat is rotatably connected with the adjusting frame;
[0008] An installation head is provided on the back of the adjustment seat, and an acoustic imager is provided on the back of the installation head. An installation groove is formed on the outer surface of the acoustic imager, and the installation groove is inserted into the installation head. Fixing screw holes are formed in both the adjustment seat and the installation groove, and fixing bolts are screwed into the fixing screw holes in the adjustment seat and the installation groove. The fixing bolts are used for disassembling and assembling the acoustic imager and the installation mechanism.
[0009] By adopting the above technical solution, the acoustic imager is allowed to be adjusted in multiple angles and positions through the adjustment frame and the adjustment seat. This flexibility ensures that the acoustic imager can accurately capture the subtle leaks of the pump body, thereby improving the accuracy and reliability of the monitoring.
[0010] Further, after the acoustic imager is disassembled from the installation mechanism, the adjustment frame can be stored in the receiving groove. After the adjustment frame is placed in the receiving groove, the installation frame can be flipped to the bottom of the machine body.
[0011] By adopting the above technical solution, after the acoustic imager is disassembled from the installation mechanism, the adjustment frame can be stored in the receiving groove. This design saves space and reduces the height of the equipment, making the equipment more convenient for transportation, storage and use.
[0012] Further, the acoustic imager is arranged in an oblique structure and is opposite to the pump body on the outer surface of the homogenizer. The acoustic imager is used to monitor the leakage of the pump body.
[0013] By adopting the above technical solution, the acoustic imager is arranged in an oblique structure and is opposite to the pump body. This design ensures that the acoustic imager can more accurately and effectively monitor any leakage of the pump body, thereby improving the monitoring efficiency and accuracy of the equipment.
[0014] Further, four legs are provided at the four corners of the bottom of the machine body, and the four legs are arranged in a rectangular array.
[0015] By adopting the above technical solution, the four legs provided at the four corners of the bottom of the machine body are arranged in a rectangular array. This design provides stable support and ensures the stability and safety of the equipment during operation.
[0016] Further, a control panel is provided above the outer surface of the machine body, and a pump body is provided below the outer surface of the machine body.
[0017] By adopting the above technical solution, the control panel provided above the outer surface of the machine body facilitates the operator to control and monitor the equipment. At the same time, the pump body below the outer surface of the machine body is reasonably designed and is convenient to cooperate with the acoustic imager to achieve efficient leakage monitoring.
[0018] Further setting, the installation mechanism is made of stainless steel, and the outer surface material of the acoustic imager is engineering plastic.
[0019] By adopting the above technical solution, the installation mechanism is made of stainless steel, ensuring its corrosion resistance and mechanical strength, and extending the service life of the equipment. The outer surface of the acoustic imager is made of engineering plastic, which is light and durable, reducing the overall weight and cost of the equipment.
[0020] Further setting, the acoustic imager is electrically connected to an external control terminal.
[0021] By adopting the above technical solution, the acoustic imager is electrically connected to an external control terminal. This design allows operators to remotely monitor the operating status and monitoring results of the equipment, improving the intelligence level and convenience of the equipment.
[0022] Compared with the related technology, a fat-adjusting device in a milk production line provided by the present utility model has the following beneficial effects:
[0023] The present utility model provides a fat-adjusting device in a milk production line. By setting an installation mechanism, fixing screw holes, fixing bolts, and an acoustic imager installation groove, the combination of the adjusting frame and the adjusting seat enables the acoustic imager to flexibly adjust the angle and position, accurately capture the fine leakage of the pump body, improving the accuracy and reliability of monitoring. In terms of space optimization, the installation mechanism can be housed at the bottom before the installation of the acoustic imager, saving space, reducing the height of the equipment, facilitating transportation, storage, and use, and at the same time reducing additional costs. In terms of stability, through the connection of the fixing screw holes and the fixing bolts, the stability and accuracy of the acoustic imager during the monitoring process are ensured, preventing errors or safety accidents caused by equipment loosening. In addition, the flexible design of the installation mechanism and the convenient installation and disassembly method of the acoustic imager facilitate equipment maintenance and replacement, improving the maintenance efficiency, reducing the maintenance cost and time cost. And the acoustic imager, as the core equipment for monitoring the leakage of the pump body, is closely connected to the installation mechanism through a specially designed installation groove. Its oblique structural setting and specific relative position with the pump body ensure that the acoustic imager can more accurately and effectively monitor any leakage situation of the pump body.
[0024] The present utility model provides a fat-adjusting device in a milk production line. By setting an installation mechanism and an acoustic imager, the installation mechanism made of stainless steel, with its excellent corrosion resistance, high strength, and good toughness, ensures the long-term stable operation of the equipment and extends its service life in an environment such as a milk production line that may involve corrosive liquids and harsh working conditions. The outer surface of the acoustic imager is made of engineering plastic, which is light, durable, and easy to carry, especially suitable for occasions where the equipment needs to be moved frequently. Engineering plastic also has good insulation performance, ensuring the electrical stability of the acoustic imager and reducing potential safety hazards. BRIEF DESCRIPTION OF THE DRAWINGS
[0025] Figure 1 is a three-dimensional structural schematic diagram of the present utility model;
[0026] Figure 2 is a bottom three-dimensional structural schematic diagram of the present utility model;
[0027] Figure 3 is a partial three-dimensional structural schematic diagram of the installation mechanism of the present utility model;
[0028] Figure 4 of the present utility model Figure 2 is an enlarged structural schematic diagram of part A in the present utility model.
[0029] Reference numerals in the figures: 1, homogenizer; 101, body; 102, legs; 103, control panel; 104, pump body; 2, installation mechanism; 201, resistance rotating shaft; 202, mounting bracket; 203, receiving groove; 204, adjusting bracket; 205, adjusting seat; 206, mounting bolt; 207, mounting head; 208, fixing screw hole; 3, fixing bolt; 4, acoustic imager; 5, mounting groove. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0030] For ease of understanding the present utility model, the present utility model will be described more comprehensively below with reference to the relevant drawings. The typical embodiments of the present utility model are shown in the drawings.
[0031] Such as Figure 1As shown in the figure, a fat - adjusting device in a milk production line of the present utility model includes a homogenizer 1. The homogenizer 1 includes a body 101. An installation mechanism 2 is provided at the central axis of the bottom of the body 101. The installation mechanism 2 includes an installation frame 202. The rear end of the top of the installation frame 202 is fixedly connected to the body 101 through a resistance rotating shaft 201. A receiving groove 203 is formed on the installation frame 202. The front section of the inner wall of the receiving groove 203 is rotatably connected to an adjusting frame 204 through a resistance rotating shaft. The top end of the adjusting frame 204 is detachably connected to an adjusting seat 205 through an installation bolt 206, and the adjusting seat 205 is rotatably connected to the adjusting frame 204; An installation head 207 is provided on the back of the adjusting seat 205, and an acoustic imager 4 is provided on the back of the installation head 207. An installation groove 5 is formed on the outer surface of the acoustic imager 4, and the installation groove 5 is inserted into the installation head 207. Both the adjusting seat 205 and the installation groove 5 are provided with fixing screw holes 208. The fixing screw holes 208 in the adjusting seat 205 and the installation groove 5, and a fixing bolt 3 is screwed into the fixing screw hole 208. The fixing bolt 3 is used to disassemble and assemble the acoustic imager 4 and the installation mechanism 2. By providing the installation mechanism 2 at the central axis of the bottom of the body 101 and using the ingenious combination of the resistance rotating shaft 201, the installation frame 202, the receiving groove 203, the adjusting frame 204, the adjusting seat 205, the installation bolt 206, the installation head 207, the fixing screw hole 208 and the fixing bolt 3, the flexible installation and adjustment of the acoustic imager 4 are realized. This design enables the acoustic imager 4 to easily adapt to different monitoring angles and positions, thereby improving the accuracy and reliability of monitoring.
[0032] As Figure 2 shown, after the acoustic imager 4 is disassembled from the installation mechanism 2, the adjusting frame 204 can be stored in the receiving groove 203. After the adjusting frame 204 is placed in the receiving groove 203, it can cause the installation frame 202 to flip to the bottom of the body 101. After the acoustic imager 4 is disassembled from the installation mechanism 2, the adjusting frame 204 can be stored in the receiving groove 203. This design greatly saves space, enabling the device to be stored more compactly when idle. At the same time, the installation frame 202 can be flipped to the bottom of the body 101, further reducing the height of the device, facilitating transportation, storage and use, and reducing additional costs.
[0033] As Figure 3 shown, the acoustic imager 4 is arranged in an oblique structure, and the acoustic imager 4 is aligned with the pump body 104 on the outer surface of the homogenizer 1. The acoustic imager 4 is used to monitor the leakage of the pump body 104. By arranging the acoustic imager 4 in an oblique structure and aligning it with the pump body 104 on the outer surface of the homogenizer 1, it is ensured that the acoustic imager 4 can more accurately and effectively monitor any leakage of the pump body 104. This design improves the monitoring efficiency and accuracy of the device, and helps to timely discover and handle potential safety hazards.
[0034] As Figure 3As shown, four legs 102 are provided at the four corners of the bottom of the body 101. The four legs 102 are arranged in a rectangular array. The four legs 102 provided at the four corners of the bottom of the body 101 are arranged in a rectangular array, providing stable support for the device. This design enhances the stability of the device and ensures the safety and stability of the device during operation.
[0035] As Figure 3 shown, a control panel 103 is provided above the outer surface of the body 101, and a pump body 104 is provided below the outer surface of the body 101. The control panel 103 provided above the outer surface of the body 101 facilitates the operator to control and monitor the device. At the same time, the pump body 104 below the outer surface of the body 101 is reasonably designed and cooperates with the acoustic imager 4 to achieve efficient leakage monitoring. This layout makes the device more user-friendly and improves the convenience and work efficiency of the operator.
[0036] As Figure 3 shown, the installation mechanism 2 is made of stainless steel, and the outer surface of the acoustic imager 4 is made of engineering plastic. The installation mechanism 2 is made of stainless steel, which has excellent corrosion resistance and mechanical strength and can extend the service life of the device. The outer surface of the acoustic imager 4 is made of engineering plastic material, which is both light and durable, reducing the overall weight and cost of the device. This material selection makes the device more economical and practical and meets the actual needs of the production line.
[0037] As Figure 3 shown, the acoustic imager 4 is electrically connected to an external control terminal. The electrical connection between the acoustic imager 4 and the external control terminal realizes the remote monitoring and control of the device. This design improves the intelligent level of the device, enables the operator to real-time grasp the operating status and monitoring results of the device, helps to discover and handle problems in time, and ensures the normal operation of the production line.
[0038] In implementation, first, it is necessary to ensure that the fat-adjusting equipment in the milk production line is correctly installed and in good working condition. Then, turn out the installation mechanism 2 from the center of the bottom of the body 101. If the acoustic imager 4 has been disassembled before, it is necessary to first turn out the adjusting frame 204 from the receiving groove 203, align the installation groove 5 on the back of the acoustic imager 4 with the installation head 207, and then insert it. Subsequently, ensure that the adjusting seat 205 is aligned with the fixing screw holes 208 on the installation groove 5, and then screw in the fixing bolt 3 to tighten the connection between the acoustic imager 4 and the installation mechanism 2.
[0039] The advantages of this technical solution in practical applications include but are not limited to the following points:
[0040] 1. By setting up the installation mechanism 2, the fixing screw holes 208, the fixing bolts 3, the acoustic imager 4 and the installation groove 5, the flexible adjustment and accurate monitoring of the acoustic imager are realized, the accuracy and reliability of the monitoring are improved, the space utilization is optimized, the stability is enhanced, and the equipment maintenance and replacement are facilitated;
[0041] 2. By adopting the installation mechanism 2 made of stainless steel and the outer surface of the acoustic imager 4 made of engineering plastic, the corrosion resistance, high strength, long-term stable operation of the equipment are ensured, and the acoustic imager is light in weight, durable, easy to carry and stable in electrical performance.
Claims
1. A fat-adjusting device in a milk production line, characterized in that: It includes a homogenizer (1), the homogenizer (1) includes a machine body (101), an installation mechanism (2) is arranged at the center of the bottom of the machine body (101), the installation mechanism (2) includes an installation frame (202), the rear end of the top of the installation frame (202) is fixedly connected to the machine body (101) through a resistance rotating shaft (201), a receiving groove (203) is formed on the installation frame (202), and the front section of the inner wall of the receiving groove (203) is rotatably connected to an adjusting frame (204) through a resistance rotating shaft. The top end of the adjusting frame (204) is detachably connected to an adjusting seat (205) through an installation bolt (206), and the adjusting seat (205) is rotatably connected to the adjusting frame (204). An installation head (207) is arranged on the back of the adjusting seat (205), and an acoustic imager (4) is arranged on the back of the installation head (207). An installation groove (5) is formed on the outer surface of the acoustic imager (4), and the installation groove (5) is inserted into the installation head (207). Fixing screw holes (208) are formed in both the adjusting seat (205) and the installation groove (5). The fixing screw holes (208) in the adjusting seat (205) and the installation groove (5) are provided, and a fixing bolt (3) is screwed into the fixing screw hole (208). The fixing bolt (3) is used for disassembling and assembling the acoustic imager (4) and the installation mechanism (2).
2. The fat-adjusting device in a milk production line according to claim 1, characterized in that, After the acoustic imager (4) is disassembled from the installation mechanism (2), the adjusting frame (204) can be stored in the receiving groove (203). After the adjusting frame (204) is placed in the receiving groove (203), the installation frame (202) can be flipped to the bottom of the machine body (101).
3. The lipid adjustment device in a milk production line according to claim 1, characterized in that, The acoustic imager (4) is arranged in an oblique structure and is opposite to the pump body (104) on the outer surface of the homogenizer (1). The acoustic imager (4) is used to monitor the leakage condition of the pump body (104).
4. A fat-adjusting device in a milk production line according to claim 1, characterized in that, Four legs (102) are arranged at the four corners of the bottom of the machine body (101), and the four legs (102) are arranged in a rectangular array.
5. The lipid regulation device in a milk production line according to claim 1, characterized in that, A control panel (103) is arranged above the outer surface of the machine body (101), and a pump body (104) is arranged below the outer surface of the machine body (101).
6. The fat - adjusting device in a milk production line according to claim 1, characterized in that, The material of the installation mechanism (2) is stainless steel, and the outer surface material of the acoustic imager (4) is engineering plastic.
7. The lipid adjusting device in a milk production line according to claim 1, characterized in that, The acoustic imager (4) is electrically connected to an external control terminal.