Soft sweet production and storage device with damp-proof function

By designing a wax candy production and storage device with moisture-proof function, and using a combination of a tilt rack and a skew lifting system, the problems of poor ventilation and low humidity reduction efficiency in the prior art are solved, and a more efficient drying effect is achieved.

CN120096935AActive Publication Date: 2025-06-06FUJIAN FUPAIYUAN FOODSTUFF CORP LTD +1
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Patent Information

Application Number
CN202510600292.0
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-05-12
Publication Date
2025-06-06
Estimated Expiration
2045-05-12

AI Technical Summary

Technical Problem

During the drying process, the existing fudge production and storage devices will cause poor ventilation due to horizontal stacked pallets, difficulty in dissipating water vapor, low humidity reduction efficiency, and intensive placement to improve drying efficiency will lead to poor ventilation.

Method used

A fondant production and storage device with moisture-proof function was designed, using a motion system, a skewed hoist system and several tilt racks. The tilt rack is connected by a rotating pair, and the lifting ends of the adjacent tilt racks are connected, and the reference ends are stuck to each other. The skewed hoist system is heated to lift the lifting end of the bottom layer of the tilt rack to achieve tilt stacking, enhancing the air flow rate and drying effect.

Benefits of technology

Through the design of inclined stacking, the air flow rate is improved, the drying effect is enhanced, the problems of poor ventilation and difficult water vapor dissipation are solved, and the efficiency of humidity reduction is improved.

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Abstract

The invention relates to a soft sweet production and storage device with a damp-proof function, and belongs to the technical field of storage and transportation equipment, the soft sweet production and storage device comprises a movement system, a deflection jacking system and a plurality of tilting frames, the tilting frames are placed on the movement system, the tilting frames are stacked and stacked mutually, each tilting frame is provided with a reference end and a lifting end, and the reference end is connected with the lifting end. The base end and the lifting end of each tilting frame are connected through a revolute pair, the lifting ends of the adjacent tilting frames abut against each other, the base ends of the adjacent tilting frames are clamped with each other, the inclined jacking system is installed on the movement system, and the inclined jacking system is heated to jack the lifting end of the bottommost layer of tilting frame, so that the humidity reduction efficiency is improved.
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Description

Technical Field

[0001] The invention relates to the technical field of storage and transportation equipment, in particular to a soft candy production and storage device with moisture-proof function. Background Art

[0002] Soft candy is a soft and elastic candy. Its production process mainly includes steps such as sugar refining, molding, cutting and packaging. The molding step mainly involves lowering the temperature and humidity. The faster the temperature and humidity are lowered, the higher the production efficiency.

[0003] In order to quickly reduce humidity, drying chambers are widely used in the prior art. Therefore, a storage device that can push materials in and out of the drying chamber is required. The existing storage device often includes several layers of pallets stacked horizontally. The reason why the pallets need to be horizontal is that after drying is completed and before drying, when the materials are transported through a motion system, the motion system is transported horizontally. The pallets must be in a horizontal state to adapt to transportation, otherwise it is easy to cause the entire pile to tip over.

[0004] When the horizontal trays are drying, the water vapor in the lower layer is blocked by the upper trays. After the water evaporates, the water vapor between adjacent trays only rises to the height of the adjacent trays. The water vapor is not discharged smoothly, the ventilation is poor, and the water vapor is difficult to dissipate. The existing measures to reduce temperature and humidity can still be improved, and there is still potential for efficiency improvement, especially reflected in the contradiction that in order to increase the total mass of drying at one time, dense placement requires poor ventilation, which limits the drying efficiency. Summary of the invention

[0005] In order to overcome the technical defects of the prior art, the present invention provides a soft candy production and storage device with moisture-proof function, which improves the efficiency of reducing humidity.

[0006] The technical solution adopted by the present invention is: A soft candy production and storage device with moisture-proof function includes a motion system, an oblique lifting system and a plurality of tilting frames, each of which is placed on the motion system, and each of which is stacked on top of each other. Each of the tilting frames is provided with a reference end and a lifting end, and the reference end and the lifting end of each of the tilting frames are connected by a rotating pair, and the lifting ends of adjacent tilting frames are abutted, and the reference ends of adjacent tilting frames are clamped with each other. The oblique lifting system is installed on the motion system, and the oblique lifting system is heated to lift the lifting end of the bottom tilting frame.

[0007] Preferably, the motion system comprises a motion trolley and a transfer frame device, the transfer frame device is installed on the top of the motion trolley, the deflection jacking system is installed in the transfer frame device, and each of the tilting frames is placed on the transfer frame device.

[0008] Preferably, the transfer rack device is provided with a side support column on a side close to the reference end.

[0009] Preferably, the inclined jacking system includes a heat absorption and pressure storage device and a jacking device, the heat absorption and pressure storage device is installed on the motion system, and the jacking device is installed on the top of the heat absorption and pressure storage device. The heat absorption and pressure storage device absorbs heat and the pressure rises. The jacking device jacks the lifting end of the bottom tilt frame after the heat absorption and pressure storage device is heated.

[0010] Preferably, the heat absorbing and pressure storing device comprises a heat absorbing airbag and a plurality of heat absorbing sheets, the heat absorbing airbag is installed on the motion system, and the heat absorbing sheets are installed outside the heat absorbing airbag.

[0011] Preferably, the lifting device is a lifting plate.

[0012] Preferably, an arc groove is provided at the top of the reference end of the tilt frame, an engaging column is provided at the top of the arc groove, a semi-cylinder matching the size of the arc groove is provided at the bottom of the reference end of the tilt frame, the arc groove and the semi-cylinder are engaged with each other, and one side of the lifting end of the tilt frame abuts against each other.

[0013] Preferably, a sharp corner is provided at the bottom of the lifting end of the tilting frame.

[0014] The beneficial effects of the present invention are: Each tilting frame is placed on the motion system, and each tilting frame is transported with the motion system. Each tilting frame is stacked on top of each other, and each tilting frame is provided with a reference end and a lifting end. The reference end and the lifting end of each tilting frame are connected by a rotating pair, the lifting ends of adjacent tilting frames are abutted, and the reference ends of adjacent tilting frames are clamped with each other. The oblique jacking system is installed on the motion system. Before each tilting frame enters the drying room, each tilting frame is stacked horizontally on the motion system, which is convenient for the entire pile of tilting frames to be transported by the motion system. The oblique jacking system is heated to lift the lifting end of the bottom tilting frame, thereby making each layer of the tilting frames follow the tilting, and since the reference end and the lifting end of each tilting frame are connected by a rotating pair, the tilting frame in the tilted state is prevented from tipping over. The inclined tilting frame has an inclination, so that moisture can be smoothly diverted away, thereby accelerating the air flow rate and the drying effect. BRIEF DESCRIPTION OF THE DRAWINGS

[0015] Figure 1 It is a schematic diagram of the structure of the present invention.

[0016] Figure 2 This is a schematic diagram of the tilting frame structure.

[0017] Figure 3 for Figure 1 Schematic diagram of the structure at point A in the middle.

[0018] Figure 4 This is a schematic diagram of the sports car structure.

[0019] Figure 5 Schematic diagram for comparing the structures of the tilting frame in the inclined state and the horizontal state.

[0020] Figure 6 This is a schematic diagram of the jacking device structure.

[0021] Description of reference numerals: 1. Motion system; 11. Motion trolley; 111. Traveling frame; 112. Rotating frame; 113. Lifting device; 12. Transfer frame device; 121. Side support column; 2. Deflection jacking system; 21. Heat absorption and pressure storage device; 211. Heat absorption airbag; 212. Heat absorption sheet; 22. Jacking device; 221. Jacking pin; 3. Tilt frame; 31. Reference end; 311. Arc groove; 3111. Engaging column; 312. Semi-circular column; 32. Lifting end. DETAILED DESCRIPTION

[0022] The present invention will be further described below in conjunction with the accompanying drawings: like Figure 1 — Figure 6 As shown, the present embodiment provides a soft candy production and storage device with moisture-proof function, including a motion system 1, a skewed lifting system 2 and a plurality of tilting frames 3, each tilting frame 3 is placed on the motion system 1, each tilting frame 3 is transported with the motion system 1, each tilting frame 3 is stacked on top of each other, each tilting frame 3 is provided with a reference end 31 and a lifting end 32, the reference end 31 and the lifting end 32 of each tilting frame 3 are connected by a rotating pair, the lifting ends 32 of adjacent tilting frames 3 are abutted, the reference ends 31 of adjacent tilting frames 3 are clamped with each other, the skewed lifting system 2 is installed on the motion system 1, and each tilting frame 3 is stacked on top of each other. Before entering the drying room, each tilting rack 3 is stacked horizontally on the motion system 1, so that the entire stack of tilting racks 3 can be easily transported by the motion system 1, and the inclined lifting system 2 is heated to lift the lifting end 32 of the bottom tilting rack 3, so that each layer of the tilting rack 3 follows the tilt, and because the base end 31 and the lifting end 32 of each tilting rack 3 are connected by a rotating pair, the tilting rack 3 is prevented from tipping over or sliding. Since the inclined tilting rack 3 has a slope, the moisture of each layer of soft candy can be smoothly diverted away by the bottom of the upper inclined tilting rack 3, which speeds up the air flow rate and accelerates the drying effect.

[0023] Specifically, the motion system 1 includes a motion trolley 11 and a transfer frame device 12. The transfer frame device 12 is installed on the top of the motion trolley 11. The transfer frame device 12 is placed on the motion trolley 11 for transportation. The oblique jacking system 2 is installed in the transfer frame device 12. Each tilting frame 3 is placed on the transfer frame device 12. The transfer frame device 12 is provided with a side support column 121 on the side close to the reference end 31. In addition to the limiting effect produced by the mutual clamping of the reference ends 31 of adjacent tilting frames 3, the existence of the side support column 121 further ensures that after the oblique jacking system 2 lifts each layer of the tilting frames 3, each tilting frame 3 will not fall over. The motion trolley 11 carries each transfer frame device 12 to move, thereby realizing that each tilting frame 3 enters or exits the drying room.

[0024] In order to facilitate the transportation of the moving trolley 11, the moving trolley 11 has a traveling frame 111, a rotating frame 112 and a lifting device 113. The rotating frame 112 is rotatably installed on the traveling frame 111 using a slewing bearing. The lifting device 113 is installed on the rotating frame 112. A rotating gear is provided at the bottom of the rotating frame 112. A motor for driving the rotating gear is installed on the traveling frame 111, thereby realizing the rotation of the rotating frame 112. The lifting device 113 is a conventional oil cylinder driven lifting device 113, which will not be repeated here, thereby realizing the placement of the transfer frame device 12 in the drying room.

[0025] Specifically, the inclined jacking system 2 includes a heat absorption and pressure storage device 21 and a jacking device 22. The heat absorption and pressure storage device 21 is installed on the motion system 1, and the jacking device 22 is installed on the top of the heat absorption and pressure storage device 21. The heat absorption and pressure storage device 21 absorbs heat and the pressure rises. After the heat absorption and pressure storage device 21 is heated, the jacking device 22 jacks up the lifting end 32 of the bottom tilt frame 3, thereby pushing the jacking device 22 to lift the lifting end 32 of each tilt frame 3. The jacking device 22 is a jacking plate, and a preset jacking pin 221 on the top of the jacking plate supports the lifting end 32 and thereby pushes the lifting end 32 of the tilt frame 3 to lift.

[0026] Specifically, the heat absorbing pressure storage device 21 includes a heat absorbing airbag 211 and a plurality of heat absorbing sheets 212. The heat absorbing airbag 211 is installed on the motion system 1, and the heat absorbing sheets 212 are installed outside the heat absorbing airbag 211. The heat absorbing sheets 212 increase the heat absorbing efficiency of the heat absorbing airbag 211. It is worth noting that in order to ensure that the heat absorbing airbag 211 can drive the tilting racks 3 of each layer to rotate, the heat absorbing airbag 211 needs to be pre-pressurized. The degree of pressurization is determined by the total weight of the loaded tilting racks 3 and the soft candies to be dried. The specific method of pressurizing the heat absorbing airbag 211 is to set a spring with a pre-tightening pressure of 2 kg to 5 kg between the tilting rack 3 of the bottom layer and the transfer rack device 12, and then gradually inflate the heat absorbing airbag 211 until it is The tilting frame 3 at the bottom layer begins to lift away from the moving trolley 11, and then the spring is withdrawn. Due to the loss of the auxiliary support of the spring, the tilting frames 3 at each layer are firmly pressed on the transfer frame device 12. In this way, after the moving trolley 11 is pushed into the drying chamber for drying, as the moisture is lost and the heat-absorbing airbag 211 expands due to heat, the tilting frame 3 can be easily lifted. However, as the moisture continues to be lost, there may be a situation where the tilting frames 3 at each layer cannot fall even if the heat-absorbing airbag 211 has dropped to room temperature. At this time, it is necessary to open the preset screw plug on the heat-absorbing airbag 211 to release the gas on the heat-absorbing airbag 211, so that each tilting frame 3 can fall smoothly, which is convenient for the moving trolley 11 to transport the entire stack of tilting frames 3 for subsequent processing.

[0027] Of course, the tilting jacking system 2 may not utilize the heat source in the drying chamber for jacking, but may utilize a conventional mechanical jack or hydraulic jack structure to manually jack up each tilting frame 3 after being pushed into the drying chamber.

[0028] Specifically, a circular arc groove 311 is provided at the top of the reference end 31 of the tilt frame 3, a fitting column 3111 is provided at the top of the circular arc groove 311, a semi-cylinder 312 whose size matches the circular arc groove 311 is provided at the bottom of the reference end 31 of the tilt frame 3, the circular arc groove 311 and the semi-cylinder 312 are fitted with each other, and one side of the lifting end 32 of the tilt frame 3 abuts against each other. The reference end 31 of the tilt frame 3 and the lifting end 32 of the tilt frame 3 are rotatably mounted by a pin shaft, and the soft candy to be dried is laid on a flat plate between the reference end 31 of the tilt frame 3 and the lifting end 32 of the tilt frame 3.

[0029] Specifically, a sharp corner is provided at the bottom of the lifting end 32 of the tilt frame 3 , so as to reduce the friction when the tilt frames 3 rotate relative to each other.

[0030] The above shows and describes the basic principles and main features of the present invention and the advantages of the present invention. Those skilled in the art should understand that the present invention is not limited to the above embodiments. The above embodiments and descriptions are only for illustrating the principles of the present invention. Without departing from the spirit and scope of the present invention, the present invention may have various changes and improvements, which shall fall within the scope of the present invention to be protected. The scope of protection of the present invention is defined by the attached claims and their equivalents.

Claims

1. A soft candy production and storage device with moisture-proof function, characterized in that: It includes a motion system, an oblique lifting system and a plurality of tilting frames, each of which is placed on the motion system, and each of which is stacked on top of each other. Each of the tilting frames is provided with a reference end and a lifting end, and the reference end and the lifting end of each of the tilting frames are connected via a rotating pair, the lifting ends of adjacent tilting frames are abutted, and the reference ends of adjacent tilting frames are clamped with each other, and the oblique lifting system is installed on the motion system, and the oblique lifting system is heated to lift the lifting end of the bottom tilting frame.

2. The soft candy production and storage device with moisture-proof function according to claim 1, characterized in that: The motion system comprises a motion trolley and a transfer frame device, wherein the transfer frame device is installed on the top of the motion trolley, the deflection jacking system is installed in the transfer frame device, and each of the tilting frames is placed on the transfer frame device.

3. The soft candy production and storage device with moisture-proof function according to claim 2, characterized in that: The transfer frame device is provided with a side support column on a side close to the reference end.

4. The soft candy production and storage device with moisture-proof function according to claim 1, characterized in that: The inclined jacking system includes a heat absorption and pressure storage device and a jacking device. The heat absorption and pressure storage device is installed on the motion system, and the jacking device is installed on the top of the heat absorption and pressure storage device. The heat absorption and pressure storage device absorbs heat and the pressure increases. The jacking device jacks up the lifting end of the bottom tilt frame after the heat absorption and pressure storage device is heated.

5. The soft candy production and storage device with moisture-proof function according to claim 4, characterized in that: The heat absorption and pressure storage device comprises a heat absorption air bag and a plurality of heat absorption sheets. The heat absorption air bag is installed on the motion system, and the heat absorption sheets are installed outside the heat absorption air bag.

6. The soft candy production and storage device with moisture-proof function according to claim 4, characterized in that: The jacking device is a jacking plate.

7. The soft candy production and storage device with moisture-proof function according to claim 1, characterized in that: An arc groove is provided at the top of the reference end of the tilt frame, an engaging column is provided at the top of the arc groove, a semi-cylinder matching the size of the arc groove is provided at the bottom of the reference end of the tilt frame, the arc groove and the semi-cylinder are engaged with each other, and one side of the lifting end of the tilt frame abuts against each other.

8. The soft candy production and storage device with moisture-proof function according to claim 1, characterized in that: The bottom of the lifting end of the tilting frame is provided with a sharp corner.

Citation Information

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