A device for constant temperature pickling of preserved eggs
Patent Information
- Application Number
- CN202522093393.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-29
- Publication Date
- 2026-09-18
- Estimated Expiration
- 2035-09-29
AI Technical Summary
[0005]为了解决上述技术问题,本实用新型提供了一种皮蛋恒温腌制装置,以解决现有技术中,传统的装置不具备对恒温箱等部件固定功能的技术问题
本实用新型通过多组滑动承载框、滑轨与恒温箱的设置,使得装置能够布置多个恒温箱,提升了该装置的空间利用效率。装置可通过滑动承载框上的安装槽与滑轨配合,来便捷地安装和调整恒温腌制的位置,使得装置能够根据实际需求合理安排皮蛋腌制区域,提高了该装置在皮蛋腌制布局方面的能力。
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Figure CN224761287U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the technical field of pickling equipment, and more specifically, it relates to a constant temperature pickling device for preserved eggs. Background Technology
[0002] In order to ensure the quality and taste of preserved eggs during the production and processing process, producers often use constant temperature pickling.
[0003] However, traditional equipment lacks the function of securing components such as the temperature-controlled chamber. This allows the chamber to easily shift during the preserved egg curing process due to frequent personnel movement and equipment vibrations. Once shifted, the internal temperature distribution may be affected. In the temperature-critical environment of preserved egg curing, maintaining stable temperature conditions becomes difficult, leading to poor curing results and inconsistent quality. This not only affects the overall quality of the preserved eggs, reducing the rate of high-quality products, but also increases production losses and costs due to substandard products, ultimately reducing the company's economic benefits and market competitiveness.
[0004] Meanwhile, relocation of the incubator may also cause it to collide with other equipment or items, resulting in equipment damage, further affecting normal production, and increasing maintenance costs and the risk of production delays. Summary of the Invention
[0005] To address the aforementioned technical problems, this utility model provides a constant-temperature pickling device for preserved eggs, thereby solving the technical problem that traditional devices in the prior art do not have the function of fixing components such as the constant-temperature chamber.
[0006] The purpose and effect of this utility model's constant temperature pickling device for preserved eggs are achieved by the following specific technical means: A constant-temperature pickling device for preserved eggs includes a mounting base, a placement plate on the mounting base, multiple sets of loading shafts on the placement plate, multiple sets of sliding support frames on the multiple sets of loading shafts, multiple sets of mounting slots on the multiple sets of sliding support frames, multiple sets of slide rails on the multiple sets of mounting slots, and a constant-temperature chamber on each of the slide rails. Multiple sets of receiving boxes are respectively clamped on one side of each of the two sets of loading shafts, and rotating arms are rotatably connected to one side of each of the multiple sets of receiving boxes. Multiple sets of limiting grooves are provided on one side of each of the multiple sets of receiving boxes and the multiple sets of rotating arms. A pickling marking frame is clamped on the multiple sets of rotating arms, and a first pin passes through the multiple sets of limiting grooves.
[0007] According to a preferred embodiment, the placement plate is provided with multiple sets of L-shaped fixing blocks by welding, and the multiple sets of loading shafts and the multiple sets of L-shaped fixing blocks are all fixedly connected by fixing bolts. The multiple sets of loading shafts and the multiple sets of sliding bearing frames are provided with multiple sets of position adjustment holes.
[0008] According to a preferred embodiment, each of the multiple sets of position adjustment holes is provided with a second fixing pin, each of the multiple sets of constant temperature chambers is provided with a partition plate, each of the multiple sets of partition plates is respectively locked onto the sliding support frame, and each of the multiple sets of constant temperature chambers is provided with a preserved egg rack for placing preserved eggs.
[0009] According to a preferred embodiment, each of the multiple sets of sliding support frames is provided with a fixing component for restricting the constant temperature chamber from sliding out. The fixing component includes a fixing base, which is connected to the sliding support frame by fastening bolts. Instrument slots are respectively opened on both sides of the fixing base, and each of the multiple sets of instrument slots is provided with a reset spring block.
[0010] According to a preferred embodiment, a tension plate is provided on the fixed base, one side of the tension plate is connected to the reset spring block, and a limiting pin is provided on the tension plate. The two sides of the limiting pin are connected to the tension plate by the fastening bolts.
[0011] According to a preferred embodiment, multiple sets of fixing grooves are provided on one side of the multiple sets of constant temperature chambers, and one side of the limiting pin is detachably connected to the multiple sets of fixing grooves. The top of the multiple sets of loading shafts is provided with anti-detachment sealing blocks, and one set of sliding bearing frames is provided with an instrument protective net.
[0012] According to a preferred embodiment, the placement plate is connected to the mounting base via a connecting shaft, and the mounting base has multiple sets of foot pads at its bottom.
[0013] Compared with the prior art, the present invention has the following beneficial effects: This invention, through the arrangement of multiple sets of sliding support frames, slide rails, and constant temperature chambers, enables the device to accommodate multiple constant temperature chambers, thereby improving the space utilization efficiency of the device. The device can be conveniently installed and adjusted for constant temperature marinating by using the mounting grooves on the sliding support frames in conjunction with the slide rails. This allows the device to rationally arrange the preserved egg marinating area according to actual needs, enhancing its capabilities in preserved egg marinating layout.
[0014] 2. When using this device, the combination of the card holder, rotating arm, and pickling label frame allows for the identification of preserved eggs at different pickling stages, making the pickling process more organized and improving its ease of management. Furthermore, the fixed base, return spring block, tension plate, and limit pin in the fixing components secure the temperature control chamber, preventing it from sliding out due to collisions or impacts, thus improving the device's stability during use. Attached Figure Description
[0015] Figure 1 This is a schematic diagram of the assembled structure of this utility model; Figure 2 This is a schematic diagram of the disassembled structure of this utility model; Figure 3 This is a schematic diagram of the fixing component structure of this utility model; Figure 4 This is a schematic diagram of the card holder structure of this utility model.
[0016] In the diagram, the correspondence between component names and drawing numbers is as follows: 11. Mounting base; 12. Placing plate; 13. Loading shaft; 14. Sliding bearing frame; 15. Slide rail; 16. Constant temperature chamber; 17. Card holder; 18. Rotating arm; 19. L-shaped fixing block; 21. Divider plate; 22. Fixing base; 23. Return spring block; 24. Tension plate; 25. Limiting pin; 26. Pickling label frame; 101. Century egg rack; 102. Instrument protective net. Detailed Implementation
[0017] The embodiments of this utility model will be described in further detail below with reference to the accompanying drawings and examples. The following examples are used to illustrate the technical solution of this utility model, but should not be used to limit the scope of protection of this utility model.
[0018] Example
[0019] like Figure 1 , Figure 4 As shown, this utility model provides a constant temperature pickling device for preserved eggs, including a mounting base 11, a placement plate 12 on the mounting base 11, multiple sets of loading shafts 13 on the placement plate 12, multiple sets of sliding support frames 14 on the multiple sets of loading shafts 13, multiple sets of mounting grooves on the multiple sets of mounting grooves, multiple sets of slide rails 15 on the multiple sets of slide rails 15, and a constant temperature chamber 16 on each of the two sets of slide rails 15. Multiple sets of receiving card boxes 17 are respectively clamped on one side of each of the two sets of loading shafts 13. Rotating arms 18 are rotatably connected to one side of each of the multiple sets of receiving card boxes 17. Multiple sets of limiting grooves are opened on one side of each of the multiple sets of receiving card boxes 17 and the multiple sets of rotating arms 18. Pickling identification frames 26 are clamped on the multiple sets of rotating arms 18. First pins are inserted through the multiple sets of limiting grooves.
[0020] Specifically, the mounting base 11 serves as the basic support structure for the entire device, providing an installation platform for the placement plate 12 and ensuring that the entire pickling device is placed stably. The placement plate 12 is an important carrier for supporting other components, and multiple sets of loading shafts 13 are installed on it, playing a role in further support and layout.
[0021] Multiple loading shafts 13 not only provide installation positions for the sliding support frame 14, but also allow for spatial layout planning of the entire device through their arrangement. The sliding support frame 14 can move to a certain extent along the loading shafts 13, facilitating position adjustment. Multiple mounting slots on the frame match multiple slide rails 15, enabling the constant temperature chamber 16 to be easily installed on the slide rails 15, facilitating the arrangement of the constant temperature chamber 16 on the sliding support frame 14 and allowing for adjustment of the position and number of constant temperature chambers 16 according to actual production needs. Multiple card holders 17 are provided on one side of the two loading shafts 13, and a rotating arm 18 is rotatably connected to one side of each card holder 17, allowing for easy retrieval of items (such as labels) from the card holders 17. Multiple limiting slots on the rotating arm 18 and the card holder 17, in conjunction with a first pin, allow the rotating arm 18 to be fixed in place when it reaches the appropriate position, ensuring it does not rotate arbitrarily. The pickling label 26 is mounted on the rotating arm 18 and can be used to label the pickling information of different batches of preserved eggs, such as pickling time and type of preserved eggs, so that producers can manage and track the pickling process.
[0022] like Figures 1 to 3 As shown, the plate 12 is provided with multiple sets of L-shaped fixing blocks 19 by welding. Multiple sets of loading shafts 13 and multiple sets of L-shaped fixing blocks 19 are fixedly connected by fixing bolts. Multiple sets of position adjustment holes are provided on multiple sets of loading shafts 13 and multiple sets of sliding bearing frames 14.
[0023] Specifically, the L-shaped fixing block 19 welded to the placement plate 12 provides a stable and reliable connection point for the loading shaft 13. The loading shaft 13 is fixed to the L-shaped fixing block 19 with fixing bolts, ensuring the stability of the loading shaft 13 on the placement plate 12 and preventing loosening or displacement, thus ensuring the stability of the entire device structure. Multiple sets of position adjustment holes on the multiple sets of loading shafts 13 and multiple sets of sliding support frames 14 facilitate adjusting the position of the sliding support frames 14 on the loading shafts 13. During production, the position of the sliding support frames 14 can be changed through these position adjustment holes according to actual needs, thereby adjusting the layout of the constant temperature chamber 16 to adapt to the pickling requirements of different scales of preserved eggs.
[0024] Each of the multiple sets of position adjustment holes is equipped with a second fixing pin, and each of the multiple sets of constant temperature chambers 16 is provided with a partition plate 21. The multiple sets of partition plates 21 are respectively locked onto the sliding support frame 14, and each of the multiple sets of constant temperature chambers 16 is provided with a preserved egg rack 101 for placing preserved eggs.
[0025] Specifically, after the second fixing pin is inserted into the position adjustment hole, the sliding support frame 14 can be fixed at a specific position on the loading shaft 13, preventing it from shifting due to other external forces during use, thus ensuring the stability and reliability of the entire device. The partition plates 21 installed between the multiple constant temperature chambers 16 can, on the one hand, prevent interference between the temperature, humidity, and other pickling conditions of different constant temperature chambers 16, ensuring that the pickling environment within each constant temperature chamber 16 is relatively independent and stable; on the other hand, the partition plates 21, when engaged with the sliding support frame 14, also enhance the structural strength of the sliding support frame 14, enabling it to better support the constant temperature chambers 16. The preserved egg rack 101 installed inside the constant temperature chamber 16 is specifically designed for placing preserved eggs, allowing them to be arranged orderly within the constant temperature chamber 16, ensuring that each preserved egg fully contacts a suitable pickling environment, which is beneficial for improving the uniformity and quality of the preserved egg pickling process.
[0026] Multiple sets of sliding support frames 14 are provided with fixing components on both sides to restrict the constant temperature box 16 from sliding out. The fixing components include a fixing base 22, which is connected to the sliding support frame 14 by fastening bolts. Instrument slots are opened on both sides of the fixing base 22, and multiple sets of instrument slots are provided with reset spring blocks 23.
[0027] Specifically, the fixing assembly is designed to ensure the constant temperature chamber 16 is fixed in position on the sliding support frame 14, preventing it from accidentally sliding out. The fixing base 22 is connected to the sliding support frame 14 by fastening bolts, providing a stable mounting foundation for the entire fixing assembly. The instrument slots on both sides of the fixing base 22 are used to place the return spring blocks 23. The return spring blocks 23 have an elastic return function, providing a certain resistance when the constant temperature chamber 16 is subjected to external force and tends to slide out, pushing the constant temperature chamber 16 back towards the inside of the sliding support frame 14, thus playing a buffering and limiting role.
[0028] A tension plate 24 is mounted on the fixed base 22. One side of the tension plate 24 is connected to the reset spring block 23. A limit pin 25 is mounted on the tension plate 24. The two sides of the limit pin 25 are connected to the tension plate 24 by fastening bolts.
[0029] Specifically, the tension plate 24 can be stretched and contracted to a certain extent on the fixed base 22. One side of the tension plate 24 is connected to the return spring block 23. When the thermostatic chamber 16 moves outward to the sliding support frame 14, it will cause the tension plate 24 to stretch outward. At this time, the return spring block 23 is compressed, generating an inward elastic force. The limiting pin 25 is inserted into the tension plate 24 and fixed to both sides of the tension plate 24 by fastening bolts. Its function is to cooperate with the fixing groove opened on one side of the thermostatic chamber 16 to further restrict the sliding of the thermostatic chamber 16. When the limiting pin 25 is inserted into the fixing groove of the thermostatic chamber 16, it can prevent the thermostatic chamber 16 from continuing to slide outward, ensuring that the thermostatic chamber 16 is stable on the sliding support frame 14.
[0030] Multiple sets of constant temperature chambers 16 are provided with multiple sets of fixing grooves on one side. The limiting pin 25 is detachably connected to multiple sets of fixing grooves on one side. Multiple sets of loading shafts 13 are provided with anti-detachment sealing blocks on the top. One set of sliding bearing frames 14 is provided with instrument protective nets 102.
[0031] Specifically, multiple sets of fixing grooves on one side of the constant temperature chamber 16 match the limiting pins 25. When the limiting pins 25 are inserted into the fixing grooves, the constant temperature chamber 16 is detachably connected to the fixing components. This design facilitates the removal of the constant temperature chamber 16 from the sliding support frame 14 when maintenance, replacement, or position adjustment is required. Multiple sets of anti-detachment sealing blocks on the top of the loading shaft 13 prevent the sliding support frame 14 from accidentally falling off the top of the loading shaft 13, further enhancing the safety and stability of the entire device. One set of instrument protective nets 102 on the sliding support frame 14 can protect instruments and equipment installed on it from collisions and damage from external objects, while also providing some dust protection to ensure the normal operation of the instruments and equipment.
[0032] The plate 12 is connected to the mounting base 11 via a connecting shaft, and the bottom of the mounting base 11 is provided with multiple sets of foot blocks.
[0033] Specifically, the placement plate 12 is connected to the mounting base 11 via a connecting shaft, allowing the placement plate 12 to rotate or adjust its angle relative to the mounting base 11 to a certain extent. This facilitates adjusting the position and orientation of the placement plate 12 according to the actual spatial layout and operational needs in different production environments. Multiple sets of foot blocks at the bottom of the mounting base 11 serve two purposes: firstly, they provide support, maintaining a certain distance between the entire device and the ground to prevent damage from damp ground; secondly, the foot blocks adjust the device's levelness, ensuring the placement plate 12 is horizontal by adjusting its height, thus guaranteeing the normal operation of all components and improving the stability and reliability of the preserved egg curing process.
[0034] The specific usage and function of this embodiment are as follows: First, place the mounting base 11 in a suitable production site location, and adjust the level of the device using the bottom pads to ensure that the placement plate 12 is level, laying the foundation for the stable operation of the entire device. Since the placement plate 12 is connected to the mounting base 11 via a connecting shaft, the position of the placement plate 12 can be adjusted according to the site layout and operational convenience.
[0035] Next, based on the scale and requirements of the preserved egg pickling process, the position of the sliding support frame 14 on the loading shaft 13 is adjusted using the position adjustment holes on the multiple sets of loading shafts 13 and the sliding support frame 14, as well as the second fixing pin. The second fixing pin is then inserted into the corresponding position adjustment hole to secure the sliding support frame 14, thus determining the layout of the constant temperature chamber 16. The anti-detachment sealing blocks at the top of the multiple sets of loading shafts 13 prevent the sliding support frame 14 from falling off, ensuring operational safety.
[0036] Next, the constant temperature chamber 16 is installed on the mounting groove of the sliding support frame 14 via the slide rail 15. The number and position of the constant temperature chambers 16 are adjusted according to actual needs. After the constant temperature chamber 16 is installed, the preserved egg rack 101 is placed inside it, and the preserved eggs are arranged in an orderly manner on the preserved egg rack 101. At the same time, a partition plate 21 is installed between adjacent constant temperature chambers 16 to prevent interference between the pickling environments in different constant temperature chambers 16 and to enhance the load-bearing capacity of the sliding support frame 14.
[0037] During the placement of the preserved eggs, labels and other items required for pickling can be removed from the holding card box 17. Rotate the rotating arm 18 on one side of the holding card box 17, adjust it to a suitable angle, insert the first pin to fix the rotating arm 18, and then attach the pickling label box 26 to the rotating arm 18 to mark the pickling time, type of preserved eggs, and other information for this batch of preserved eggs, so as to facilitate the management and tracking of the pickling process.
[0038] After the constant temperature chamber 16 is installed and the preserved eggs are placed in it, the constant temperature chamber 16 is fixed in place using the fixing components. The fixing base 22 is connected to both sides of the sliding support frame 14 by fastening bolts, and the reset spring block 23 in its instrument slot is connected to the tension plate 24. When the constant temperature chamber 16 is subjected to external force and tends to slide out, the tension plate 24 will be pulled outward, compressing the reset spring block 23. The reset spring block 23 generates an inward elastic force, which restricts the constant temperature chamber 16. At the same time, the limiting pin 25 on the tension plate 24 cooperates with the fixing groove on one side of the constant temperature chamber 16. After being inserted into the fixing groove, it can prevent the constant temperature chamber 16 from continuing to slide outward, ensuring its stable position on the sliding support frame 14.
[0039] If maintenance, replacement or position adjustment of the constant temperature chamber 16 is required later, the limit pin 25 can be pulled out from the fixing groove to easily remove the constant temperature chamber 16.
[0040] In addition, if instruments and equipment are installed on one of the sliding support frames 14, the instrument protection net 102 can protect the instruments and equipment from external collisions and dust, ensuring their normal operation.
[0041] The foregoing has shown and described the basic principles, main features, and advantages of this utility model. It is obvious to those skilled in the art that this utility model is not limited to the details of the above exemplary embodiments.
Claims
1. A constant-temperature pickling device for preserved eggs, comprising a mounting base (11), characterized in that: The mounting base (11) is provided with a placement plate (12), the placement plate (12) is provided with multiple sets of loading shafts (13), the multiple sets of loading shafts (13) are provided with multiple sets of sliding bearing frames (14), the multiple sets of sliding bearing frames (14) are provided with multiple sets of mounting slots, the multiple sets of mounting slots are provided with multiple sets of slide rails (15), and both sets of slide rails (15) are provided with constant temperature chambers (16). The two sets of loading shafts (13) are respectively provided with multiple sets of card boxes (17) on one side, and the multiple sets of card boxes (17) are rotatably connected to one side of each set of card boxes (17). The multiple sets of card boxes (17) and the multiple sets of rotating arms (18) are provided with multiple sets of limiting slots on one side, the multiple sets of rotating arms (18) are provided with pickling marking frames (26), and the multiple sets of limiting slots are provided with first pins.
2. The constant temperature pickling device for preserved eggs according to claim 1, characterized in that: The placement plate (12) is provided with multiple sets of L-shaped fixing blocks (19) by welding. The multiple sets of loading shafts (13) and the multiple sets of L-shaped fixing blocks (19) are all fixedly connected by fixing bolts. The multiple sets of loading shafts (13) and the multiple sets of sliding bearing frames (14) are provided with multiple sets of position adjustment holes.
3. The constant temperature pickling device for preserved eggs according to claim 2, characterized in that: Each of the multiple sets of position adjustment holes is provided with a second fixing pin, and each of the multiple sets of constant temperature chambers (16) is provided with a partition plate (21). Each of the multiple sets of partition plates (21) is respectively locked on the sliding bearing frame (14), and each of the multiple sets of constant temperature chambers (16) is provided with a preserved egg rack (101) for placing preserved eggs.
4. The constant temperature pickling device for preserved eggs according to claim 1, characterized in that: Each of the multiple sets of sliding support frames (14) is provided with a fixing component on both sides to restrict the constant temperature box (16) from sliding out. The fixing component includes a fixing base (22). The fixing base (22) is connected to the sliding support frame (14) by fastening bolts. Instrument slots are provided on both sides of the fixing base (22). Each of the multiple sets of instrument slots is provided with a reset spring block (23).
5. The constant temperature pickling device for preserved eggs according to claim 4, characterized in that: A tension plate (24) is provided on the fixed base (22). One side of the tension plate (24) is connected to the reset spring block (23). A limiting pin (25) is provided on the tension plate (24). The two sides of the limiting pin (25) are connected to the tension plate (24) by the fastening bolts.
6. The constant temperature pickling device for preserved eggs according to claim 5, characterized in that: Multiple sets of fixed grooves are provided on one side of the multiple sets of constant temperature chambers (16). The side of the limiting pin (25) is detachably connected to the multiple sets of fixed grooves. The top of the multiple sets of loading shafts (13) is provided with anti-detachment sealing blocks. One set of sliding bearing frames (14) is provided with instrument protective nets (102).
7. The constant temperature pickling device for preserved eggs according to claim 1, characterized in that: The placement plate (12) is connected to the mounting base (11) via a connecting shaft, and the mounting base (11) has multiple sets of foot pads at its bottom.