An aqueous binder encapsulation shipping device and method of use thereof
By designing a water-based adhesive packaging and transportation device with a mobile transport mechanism and a fixed unloading mechanism, the problems of unstable transportation and low efficiency were solved, achieving stable and efficient automated transportation and unloading, and ensuring the quality of the water-based adhesive.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- YIXING CHENGDA RUBBER FACTORY
- Filing Date
- 2023-10-18
- Publication Date
- 2026-04-10
AI Technical Summary
Existing water-based adhesive transportation methods are unstable, prone to coagulation, and have low transportation efficiency, requiring manual handling and unloading.
A water-based adhesive encapsulation and transportation device was designed, which includes a mobile transportation mechanism and a fixed unloading mechanism. The device utilizes a sealing plate, a load-bearing mounting frame, and a linkage clamp to achieve stable fixing of the material cylinder and rapid unloading, combined with an insulated transport box and dry ice cooling.
It improves the stability and efficiency of the transportation process, reduces manual labor, ensures that the quality of water-based adhesives is not compromised, and realizes automated transportation and unloading processes.
Smart Images

Figure CN117246392B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of adhesive packaging and transportation, in particular to a water-based adhesive packaging and transportation device and a use method thereof. BACKGROUND
[0002] Water-based adhesive is an environmentally friendly adhesive prepared by using natural or synthetic polymer as adhesive material and water as solvent or dispersant, instead of toxic organic solvents that pollute the environment. Existing water-based adhesives are not 100% solvent-free and may contain limited volatile organic compounds as additives for their water-based medium to control viscosity or flowability. The advantages are mainly non-toxic, non-polluting, non-combustible, safe to use, easy to realize clean production process, etc., and the disadvantages include slow drying speed, poor water resistance, and poor freeze resistance.
[0003] After the preparation of the water-based coagulant is completed, it needs to be packaged in a barrel and transported. However, the existing transportation method is to place the packaged barrels on a shelf and load them into a vehicle for transportation. This transportation method is common, but has obvious defects, such as:
[0004] When the barrels are stacked on the shelf, they will become unstable with the movement of the vehicle, which can easily collapse. In addition, the storage environment of the water-based adhesive requires a temperature that is not too high, otherwise the water-based adhesive can easily coagulate. The existing transportation method involves dense placement, which prevents air from flowing and cannot guarantee a reduction in the transportation environment temperature. In addition, the staff needs to manually carry and unload the barrels each time, which reduces efficiency.
[0005] Therefore, a water-based adhesive packaging and transportation device is designed to improve transportation efficiency and the transportation environment to solve these defects. SUMMARY
[0006] In view of the deficiencies of the prior art, the present application provides a water-based adhesive packaging and transportation device and a use method thereof, which solves the problem of imperfect water-based adhesive transportation method and instability of coagulation.
[0007] To achieve the above purpose, the present application is implemented by the following technical scheme: a water-based adhesive packaging and transportation device, comprising a mobile transportation mechanism for movement, and a fixed unloading mechanism for packaging arranged on the inner side of the mobile transportation mechanism.
[0008] Preferably, the mobile transportation mechanism comprises a heat preservation transportation box, the front side and the rear side of the top of the heat preservation transportation box are fixedly connected with a retracting frame, the bottom of the inner cavity of the retracting frame is provided with a first moving opening penetrating into the inner cavity of the heat preservation transportation box, the inner side of the retracting frame is slidably installed with a limiting plate, the bottom of the limiting plate is fixedly connected with a pressure column, the pressure column is provided with a plurality of pressure columns, the bottom end of the pressure column penetrates the retracting frame and the heat preservation transportation box in sequence and extends to the inner side of the heat preservation transportation box, one end of the pressure column extending to the inner cavity of the heat preservation transportation box is fixedly connected with a pressure plate, one side of the bottom of the limiting plate is fixedly connected with a first arc-shaped seat, and the surface of the pressure column and the inner side of the retracting frame are sleeved with a first spring.
[0009] Preferably, the bottom of the heat preservation transportation box is provided with a vacant slot, the inner side of the vacant slot is provided with a storage drawer, the front and rear parts of the two sides of the bottom of the heat preservation transportation box are rotatably connected with a rotating column through a bearing piece, the bottom end of the rotating column is fixedly connected with a moving wheel, the surface of the rotating column is fixedly connected with a gear, the front and rear sides of the bottom of the inner cavity of the vacant slot are slidably installed with a vertical sliding rod through an opening, the bottom end of the vertical sliding rod is fixedly connected with a horizontal pressing plate, the two ends of the horizontal pressing plate are fixedly connected with an arc-shaped toothed plate matched with the gear, the top end of the vertical sliding rod is fixedly connected with a second arc-shaped seat, and the surface of the vertical sliding rod is sleeved with a second spring.
[0010] Preferably, the front and rear sides of the bottom of the inner cavity of the heat preservation transportation box are provided with a second moving opening matched with the second arc-shaped seat, the bottom of the inner cavity of the heat preservation transportation box is provided with a gas distribution opening matched with the storage drawer, and the gas distribution opening is provided with a plurality of gas distribution openings, and the front and rear parts of the inner cavity of the heat preservation transportation box are fixedly connected with a first sliding groove plate.
[0011] Preferably, the fixed unloading mechanism comprises a square sliding frame, and the square sliding frame is slidably installed between the two first sliding groove plates, the left side of the square sliding frame is fixedly connected with a sealing plate, the two sides of the front and rear parts of the inner cavity of the square sliding frame are fixedly connected with a second sliding groove plate through an opening, the inner side of the second sliding groove plate is slidably installed with a sliding seat, and the sliding seats on the front and rear parts are fixedly connected with a load-bearing installation frame.
[0012] Preferably, the front side and the rear side of the inner cavity bottom of the load-bearing mounting frame are fixedly connected with third sliding groove plates, and the third sliding groove plates are provided with a plurality of sliding blocks slidingly installed on the front and rear portions of the inner side of the third sliding groove plates, the top of the sliding block is fixedly connected with a linkage clamp rod, the top of the load-bearing mounting frame is provided with a circular placement opening penetrating to the bottom, and the opposite side of the linkage clamp rod is fixedly connected with an arc-shaped clamping plate matched with the circular placement opening, the left side of the opposite side of the linkage clamp rod is fixedly connected with an arc-shaped convex seat, the left side of the top and bottom of the load-bearing mounting frame is provided with a pressing opening matched with the arc-shaped convex seat, the right side of the sealing plate is provided with a rectangular sliding groove, the left side of the inner cavity of the rectangular sliding groove is provided with a third moving opening penetrating to the left side, the inner side of the rectangular sliding groove is slidingly installed with a sliding pressing plate, the top of the sliding pressing plate is slidingly installed with a pulling column through an opening, and the bottom end of the pulling column is fixedly connected with the two load-bearing mounting frames through a support, the surface of the pulling column is sleeved with a third spring, and the inner wall between the linkage clamp rod and the load-bearing mounting frame is fixedly connected with a fourth spring.
[0013] Preferably, the two sides of the sliding pressing plate are fixedly connected with arc-shaped extrusion seats matched with the arc-shaped convex seat through supports, the two sides of the arc-shaped extrusion seat are provided with clamping openings matched with the arc-shaped convex seat, the top and bottom of the inner cavity of the clamping opening are provided with insertion openings, the front and rear portions of the right side of the sealing plate are fixedly connected with circular head top plates matched with the insertion openings, and the left side of the sealing plate is fixedly connected with a steam cylinder through a support, and the bottom end of the steam cylinder is fixedly connected with the sliding pressing plate through a support.
[0014] Preferably, the front and rear portions of the left side of the sealing plate are slidingly installed with pulling handle rods through openings, the right end of the pulling handle rod is fixedly connected with a first circular abutting seat matched with the first arc-shaped seat through a support, the front and rear portions of the right side of the bottom of the square sliding frame are fixedly connected with second circular abutting seats matched with the second arc-shaped seat through supports, and the right side of the surface of the pulling handle rod is fixedly connected with a blocking ring.
[0015] The application also discloses a use method of the water-based adhesive packaging and transporting device, and specifically comprises the following steps:
[0016] S1, in use, the material cylinder loaded with the adhesive is placed on the inner side of the circular placement opening, the edge side of the material cylinder is clamped by the arc-shaped clamping plate, after all the circular placement openings are placed, the storage drawer is pulled out, dry ice is placed in the inside, then the sealing plate is pushed under the action of the first sliding groove plate, the square sliding frame and the load-bearing mounting frame are pushed to the inner side of the heat preservation transporting box, and then the step S2 is turned to;
[0017] S2, after the square sliding frame is pushed, the first circular abutment and the second circular abutment move right along the first arc-shaped seat and the second arc-shaped seat respectively, after the load mounting frame is completely entered into the heat preservation transport box, firstly, the second circular abutment will be separated from the second arc-shaped seat, the second arc-shaped seat drives the horizontal pressure plate to rise under the tension of the second spring, so that the two arc-shaped toothed plates are separated from the gear to restore the moving function of the heat preservation transport box as a whole, at the same time, the handle is pulled to the right again to drive the first circular abutment to continue to move right, until the first circular abutment is separated from the first arc-shaped seat, after the first arc-shaped seat loses the top force of the first circular abutment, the pressure column and the pressure plate are pressed down by the action of the first spring, so that the pressure plate directly presses the top of the material cylinder to fix the material cylinder, at this time, the heat preservation transport box is pushed to move for transportation, after the transportation is completed, the step S3 is turned to;
[0018] S3, when the material needs to be unloaded after the transportation is completed, the pulling handle is pulled to the left to move a distance, so that the blocking ring abuts against the sealing plate, and in the process of pulling the pulling handle, the first circular abutment will first contact and top the first arc-shaped seat, after the first arc-shaped seat is lifted, a plurality of pressure columns and pressure plates are lifted by the driving of the limiting plate, so that the pressure plate is separated from the top of the material cylinder, then the pulling handle is continuously pulled, at this time, the sealing plate is driven to move left together with the load mounting frame, the second circular abutment is driven to press the vertical sliding rod to drive the horizontal pressure plate and the arc-shaped toothed plate to descend, after the arc-shaped toothed plate descends, the arc-shaped toothed plate is engaged with the gear to prevent the moving wheel from moving to limit the heat preservation transport box, after the load mounting frame is pulled to the left limit position, stop, then start the cylinder to pull the sliding pressure plate and the two arc-shaped extrusion seats to descend, the sliding pressure plate will first pull the load mounting frame to descend by pulling the column, until the bottom of the material cylinder completely contacts the ground, the cylinder continues to descend, at this time, the sliding pressure plate will slide down on the surface of the pulling column and compress the third spring, when the sliding pressure plate continues to descend, the arc-shaped extrusion seat will descend after being pushed, and then extrude the two arc-shaped convex seats, so that the two linkage clamping rods in the load mounting frame drive a plurality of arc-shaped clamping plates to separate, at this time, the arc-shaped clamping plate is not clamped and engaged with the material cylinder, at the same time, the arc-shaped convex seat is clamped into the inner side of the clamping interface to fix the linkage clamping rod to avoid relative folding, then the arc-shaped convex seat drives the clamping interface to pull the two load mounting frames upward to make the material cylinder remain on the ground, when the load mounting frame is pulled to the top limit position, the round head top plate is inserted into the inner side of the plug-in port to extrude the two arc-shaped convex seats from the inner side of the clamping interface, at this time, the load mounting frame loses the butt joint force of the arc-shaped convex seat and the clamping interface, and is reset under the pushing of the third spring, and the linkage clamping rod makes the arc-shaped clamping plate fold again under the pushing force of the fourth spring, then the load mounting frame is pushed into the inner side of the heat preservation transport box for subsequent transportation.
[0019] Preferably, the dry ice in the storage drawer releases cold air through the air dispersing port to cool the material cylinder.
[0020] The application provides a water-based binder packaging and transporting device and a use method thereof. Compared with the prior art, the application has the following beneficial effects:
[0021] (1), the water-based adhesive packaging transport device, by the combination of mobile transport mechanism and fixed unloading mechanism, the sealing plate is used to push the load bearing installation frame and the square slide frame to move left and right, the stroke can be completed to the fixed packaging of the barrel, and the fixed heat preservation transport box is fixed, the stability during transportation and feeding and discharging is guaranteed, and after the load bearing installation frame is pulled out, the feeding and discharging are quickly completed through the driving of the cylinder, the transportation efficiency is improved, and the labor amount of the workers is also reduced.
[0022] (2), the water-based adhesive packaging transport device, two load bearing installation frames are arranged on the inner side of the square slide frame, linkage clamping rods, arc convex seats and arc clamping plates are arranged in the square slide frame, arc extrusion seats and round head top plates are used in combination, so that when the arc convex seat drives the load bearing installation frame to descend, the barrel is first in contact with the ground, then the arc extrusion seat extrudes the arc convex seat to complete the relaxation of all barrels, and after reset, the insertion of the round head top plate restores the fixing function, effectively improving the transportation efficiency.
[0023] (3), the water-based adhesive packaging transport device, a rotating column and a moving wheel are installed at the bottom of the heat preservation transport box, a gear is installed on the surface of the rotating column, a second arc-shaped seat and a second round abutting seat are used in combination, and the arrangement of these structures can press down the horizontal pressure plate to make the arc-shaped tooth plate engage with the gear when the square slide frame is pulled, so that the heat preservation transport box is fixed, feeding and discharging are facilitated, and complicated fixing procedures of workers are not needed.
[0024] (4), the water-based adhesive packaging transport device, a retracting frame is fixedly installed at the top of the heat preservation transport box, a limiting plate, a first arc-shaped seat and a pressure plate are arranged on the inner side of the retracting frame, and a first round abutting seat is used in combination, and the arrangement of these structures can fix the barrel by the pressure plate after the load bearing installation frame is pushed into the heat preservation transport box, so that the stability during transportation is guaranteed, the dry ice placed in the storage drawer can reduce the temperature in the heat preservation transport box, so that solidification is avoided, and the quality of the water-based adhesive is guaranteed. DETAILED DESCRIPTION
[0025] Figure 1 It is a structural schematic view of the present application;
[0026] Figure 2 It is a sectional view of the heat preservation transport box structure of the present application;
[0027] Figure 3 It is a bottom view of the internal structure of the heat preservation transport box of the present application;
[0028] Figure 4 It is a schematic view of the pressure column, pressure plate and first spring structure of the present application;
[0029] Figure 5 The schematic view of the storage drawer structure of the present application;
[0030] Figure 6 The schematic view of the square sliding frame, sealing plate and second sliding groove plate structure of the present application;
[0031] Figure 7 The partial enlarged view of A in the present application Figure 6
[0032] Figure 8 The sectional view of the load-bearing mounting frame structure of the present application;
[0033] Figure 9 The partial enlarged view of B in the present application Figure 8
[0034] Figure 10 The schematic view of the sliding block, linkage clamp rod and arc-shaped clamping plate structure of the present application;
[0035] Figure 11 The schematic view of the round head top plate, rectangular sliding groove and third moving opening structure of the present application.
[0036] In the figure: 1, moving transportation mechanism; 2, fixed unloading mechanism; 101, heat preservation transportation box; 102, retraction frame; 103, first moving opening; 104, limiting plate; 105, pressure column; 106, pressure plate; 107, first spring; 108, first arc-shaped seat; 109, empty slot; 110, storage drawer; 111, rotating column; 112, moving wheel; 113, gear; 114, vertical sliding rod; 115, horizontal pressure plate; 116, second spring; 117, second arc-shaped seat; 118, second moving opening; 119, air diffuser; 120, first sliding groove plate; 121, arc-shaped toothed plate; 201, square sliding frame; 202, sealing plate; 203, second sliding groove plate; 204, sliding seat; 205, load-bearing mounting frame; 206, third sliding groove plate; 207, sliding block; 208, linkage clamp rod; 209, round-shaped placing opening; 210, arc-shaped clamping plate; 211, arc-shaped convex seat; 212, pressing opening; 213, rectangular sliding groove; 214, third moving opening; 215, sliding pressure plate; 216, pulling column; 217, arc-shaped extrusion seat; 218, clamping opening; 219, insertion opening; 220, round head top plate; 221, cylinder; 222, first round-shaped abutting seat; 223, second round-shaped abutting seat; 224, pulling handle; 225, blocking ring; 226, third spring; 227, fourth spring. DETAILED DESCRIPTION
[0037] The technical solutions in the embodiments of the present application will be described clearly and completely below with reference to the accompanying drawings in the embodiments of the present application.
[0038] Please refer to Figures 1-11 The application provides a technical scheme: a water-based binder packaging and transporting device, which comprises a moving transporting mechanism 1 for movement, and a fixed unloading mechanism 2 for packaging is arranged on the inner side of the moving transporting mechanism 1.
[0039] Please refer to Figure 3 、 Figure 4 and Figure 5 , which show the overall structure of the moving transporting mechanism 1, the moving transporting mechanism 1 comprises a heat preservation transporting box 101, heat preservation materials are arranged in the interlayer of the heat preservation transporting box 101, a retractable frame 102 is fixedly connected to the front side and the rear side of the top of the heat preservation transporting box 101, a first moving opening 103 penetrating into the inner cavity of the heat preservation transporting box 101 is formed in the bottom of the inner cavity of the retractable frame 102, a limiting plate 104 is slidingly installed on the inner side of the retractable frame 102, a plurality of pressure columns 105 are fixedly connected to the bottom of the limiting plate 104, the bottom ends of the pressure columns 105 sequentially penetrate through the retractable frame 102 and the heat preservation transporting box 101 and extend to the inner side of the heat preservation transporting box 101, a pressure plate 106 is fixedly connected to one end of the pressure column 105 extending into the inner cavity of the heat preservation transporting box 101, a first arc-shaped seat 108 is fixedly connected to one side of the bottom of the limiting plate 104, a first spring 107 is sleeved on the surface of the pressure column 105 and located on the inner side of the retractable frame 102, a vacant groove 109 is formed in the lower part of the heat preservation transporting box 101, and a storage drawer 110 is arranged on the inner side of the vacant groove 109, dry ice in the storage drawer 110 releases cold air through a gas releasing opening 119 to cool the material cylinder, rotary columns 111 are rotatably connected to the front part and the rear part of both sides of the bottom of the heat preservation transporting box 101 through bearing members, moving wheels 112 are fixedly connected to the bottom ends of the rotary columns 111, a gear 113 is fixedly connected to the surface of the rotary column 111, vertical sliding rods 114 are slidingly installed on the front side and the rear side of the bottom of the inner cavity of the vacant groove 109 through openings, a horizontal pressing plate 115 is fixedly connected to the bottom end of the vertical sliding rod 114, arc-shaped toothed plates 121 matched with the gear 113 are fixedly connected to both ends of the horizontal pressing plate 115, a second arc-shaped seat 117 is fixedly connected to the top end of the vertical sliding rod 114, a second spring 116 is sleeved on the surface of the vertical sliding rod 114, second moving openings 118 matched with the second arc-shaped seat 117 are formed in the front side and the rear side of the bottom of the inner cavity of the heat preservation transporting box 101, gas releasing openings 119 matched with the storage drawer 110 are formed in the bottom of the inner cavity of the heat preservation transporting box 101, a plurality of gas releasing openings 119 are arranged, and first sliding groove plates 120 are fixedly connected to the front part and the rear part of the inner cavity of the heat preservation transporting box 101.
[0040] Please refer to Figure 6 、 Figure 7 、 Figure 8 、 Figure 9 、 Figure 10 and Figure 11, the overall structure of the fixed unloading mechanism 2 is shown, the fixed unloading mechanism 2 includes square sliding frame 201, the front and rear parts of the square sliding frame 201 can be in line with the first sliding groove plate 120 sliding, and the square sliding frame 201 is slidingly installed between the two first sliding groove plates 120, the left side of the square sliding frame 201 is fixedly connected with the sealing plate 202, the sealing plate 202 itself is provided with a locking mechanism, the two sides of the front and rear parts of the inner cavity of the square sliding frame 201 are fixedly connected with the second sliding groove plate 203 by opening, the inner side of the second sliding groove plate 203 is slidingly installed with the sliding seat 204, the front and rear sliding seats 204 are fixedly connected with the bearing installation frame 205, the front and rear sides of the inner cavity bottom of the bearing installation frame 205 are fixedly connected with the third sliding groove plate 206, and the third sliding groove plate 206 is provided with a plurality of third sliding groove plates 206, the front and rear parts of the inner side of the third sliding groove plate 206 are slidingly installed with the sliding block 207, the top of the sliding block 207 is fixedly connected with the linkage clamp rod 208, the top of the bearing installation frame 205 is provided with a circular placing opening 209 penetrating to the bottom, the opposite side of the front and rear linkage clamp rods 208 is fixedly connected with the arc-shaped clamping plate 210 matched with the circular placing opening 209, the left side of the opposite side of the linkage clamp rod 208 is fixedly connected with the arc-shaped convex seat 211, the left side of the top and bottom of the bearing installation frame 205 is provided with the pressing opening 212 matched with the arc-shaped convex seat 211, the right side of the sealing plate 202 is provided with the rectangular sliding groove 213, and the left side of the inner cavity of the rectangular sliding groove 213 is provided with the third moving opening 214 penetrating to the left side, the inner side of the rectangular sliding groove 213 is slidingly installed with the sliding pressing plate 215, the top of the sliding pressing plate 215 is slidingly installed with the pulling column 216 by opening, and the bottom end of the pulling column 216 is fixedly connected with the two bearing installation frames 205 through the support, the surface of the pulling column 216 is sleeved with the third spring 226, the fourth spring 227 is fixedly connected between the linkage clamp rod 208 and the inner wall of the bearing installation frame 205, the two sides of the sliding pressing plate 215 are fixedly connected with the arc-shaped extrusion seat 217 matched with the arc-shaped convex seat 211 through the support, the two sides of the arc-shaped extrusion seat 217 are provided with the clamping opening 218 matched with the arc-shaped convex seat 211, the top and bottom of the inner cavity of the clamping opening 218 are provided with the insertion opening 219, the front and rear parts of the right side of the sealing plate 202 are fixedly connected with the round head top plate 220 matched with the insertion opening 219, the left side of the sealing plate 202 is fixedly connected with the cylinder 221 through the support, and the bottom end of the cylinder 221 is fixedly connected with the sliding pressing plate 215 through the support, the front and rear parts of the left side of the sealing plate 202 are slidingly installed with the pulling handle 224 by opening, the right end of the pulling handle 224 is fixedly connected with the first round abutting seat 222 matched with the first arc-shaped seat 108 through the support, the front and rear parts of the right side of the bottom of the square sliding frame 201 are fixedly connected with the second round abutting seat 223 matched with the second arc-shaped seat 117 through the support, and the right side of the surface of the pulling handle 224 is fixedly connected with the blocking ring 225.
[0041] The application further discloses a use method of the water-based adhesive packaging and transporting device.
[0042] S1, when in use, the material cylinder loaded with the adhesive is placed at the inner side of the circular placing opening 209, and the edge side of the material cylinder is clamped by the arc-shaped clamping plate 210; after all the circular placing openings 209 are placed, the storage drawer 110 is pulled out, dry ice is placed in the interior, then the sealing plate 202 is pushed, under the action of the first sliding groove plate 120, to push the square sliding frame 201 and the load mounting frame 205 to the inner side of the heat preservation transporting box 101, and then the step S2 is performed;
[0043] S2, after the square sliding frame 201 is pushed, the first circular abutment 222 and the second circular abutment 223 are right shifted along the first arc-shaped seat 108 and the second arc-shaped seat 117 respectively; after the load mounting frame 205 is completely entered into the interior of the heat preservation transporting box 101, firstly, the second circular abutment 223 is separated from the second arc-shaped seat 117, the second arc-shaped seat 117 is driven to ascend by the pulling force of the second spring 116, the two arc-shaped toothed plates 121 are separated from the gear 113 to restore the moving function of the heat preservation transporting box 101, the handle 224 is pulled to right push again, the first circular abutment 222 continues to right shift, until the first circular abutment 222 is separated from the first arc-shaped seat 108, the first arc-shaped seat 108 loses the top force of the first circular abutment 222, the pressure column 105 and the pressure plate 106 are pressed down by the action of the first spring 107, the pressure plate 106 directly presses the top of the material cylinder to fix the material cylinder, at this time, the heat preservation transporting box 101 is pushed to move to transport, after the transportation is completed, the step S3 is performed;
[0044] S3, when the transportation is completed and the material needs to be unloaded, first pull the pull handle 224 to the left for a distance, so that the blocking ring 225 abuts against the sealing plate 202, and in the process of pulling the pull handle 224, the first circular abutment 222 will first contact and top the first arc-shaped seat 108, after the first arc-shaped seat 108 is lifted, the limiting plate 104 drives the plurality of pressure columns 105 and the pressure plate 106 to rise, so that the pressure plate 106 is separated from the top of the barrel, then continue to pull the pull handle 224, at this time the sealing plate 202 is driven to move left with the load mounting frame 205, the second circular abutment 223 is driven to press the vertical slide rod 114 to make the horizontal pressure plate 115 drive the arc-shaped tooth plate 121 to descend, after the arc-shaped tooth plate 121 descends, it will mesh with the gear 113 to prevent the moving wheel 112 from moving, thereby limiting the heat preservation transport box 101, after the load mounting frame 205 is pulled to the left limit position, stop, then start the cylinder 221 to pull the sliding pressure plate 215 and the two arc-shaped extrusion seats 217 to descend, the sliding pressure plate 215 will first pull the load mounting frame 205 to descend through the pulling column 216, until the bottom of the barrel continues to contact the ground, the cylinder 221 continues to descend, at this time the sliding pressure plate 215 will slide on the surface of the pulling column 216 and descend and compress the third spring 226, when the sliding pressure plate 215 continues to descend, it will push the arc-shaped extrusion seat 217 to descend and extrude the two arc-shaped convex seats 211, so that the two linkage clamping rods 208 in the load mounting frame 205 drive the plurality of arc-shaped clamping plates 210 to separate, at this time the arc-shaped clamping plate 210 no longer clamps and engages the barrel, and the arc-shaped convex seat 211 is clamped into the inner side of the clamping interface 218 to fix the linkage clamping rod 208 to avoid relative folding, then start the arc-shaped convex seat 211 to pull the clamping interface 218 to pull the two load mounting frames 205 upward to make the barrel stay on the ground, when the load mounting frame 205 is pulled to the top limit position, the round head top plate 220 is inserted into the inner side of the insertion port 219 to extrude the two arc-shaped convex seats 211 from the inner side of the clamping interface 218, at this time the load mounting frame 205 loses the interfacing force of the arc-shaped convex seat 211 and the clamping interface 218, and is reset under the pushing force of the third spring 226, and the linkage clamping rod 208 makes the arc-shaped clamping plate 210 fold again under the pushing force of the fourth spring 227, then the load mounting frame 205 is pushed into the inner side of the heat preservation transport box 101 for subsequent transportation.
[0045] The above embodiments are only used to illustrate the technical solutions of the present application and not to limit the present application. Although the present application has been described in detail with reference to the above embodiments, the present application is not limited to the above specific embodiments, and any modification or equivalent replacement of the present application; all technical solutions and improvements without departing from the spirit and scope of the application are encompassed in the scope of the claims of the present application.
[0046] The above merely describes preferred specific embodiments of the present application, but the protection scope of the present application is not limited thereto, and any person skilled in the art, according to the technical solution and inventive concept of the present application, makes equivalent replacement or change within the technical range disclosed by the present application, which should be covered within the protection scope of the present application.
Claims
1. A water-based adhesive packaging and transport device, comprising a mobile transport mechanism (1) for movement, characterized in that: The inner side of the mobile transport mechanism (1) is provided with a fixed unloading mechanism (2) for sealing. The mobile transport mechanism (1) includes an insulated transport box (101). A retractable frame (102) is fixedly connected to both the front and rear sides of the top of the insulated transport box (101). A first moving opening (103) penetrating into the inner cavity of the insulated transport box (101) is provided at the bottom of the inner cavity of the retractable frame (102). A limiting plate (104) is slidably installed on the inner side of the retractable frame (102). A pressure column (105) is fixedly connected to the bottom of the limiting plate (104), and the pressure column (105) is provided with… Several pressure columns (105) are provided, with the bottom end of each pressure column (105) passing through the retracting frame (102) and the insulated transport box (101) and extending to the inside of the insulated transport box (101). A pressure plate (106) is fixedly connected to one end of the pressure column (105) extending into the inner cavity of the insulated transport box (101). A first arc-shaped seat (108) is fixedly connected to one side of the bottom of the limiting plate (104). A first spring (107) is sleeved on the surface of the pressure column (105) and located inside the retracting frame (102). The insulated transport box (101) has an empty slot (109) at the bottom inside, and a storage drawer (110) is provided on the inner side of the empty slot (109). The front and rear sides of the bottom of the insulated transport box (101) are rotatably connected to a rotating column (111) through bearing components. The bottom end of the rotating column (111) is fixedly connected to a moving wheel (112). The surface of the rotating column (111) is fixedly connected to a gear (113). The front and rear sides of the bottom of the cavity of the empty slot (109) are slidably installed with a vertical slide rod (114) through openings. The bottom end of the vertical slide rod (114) is fixedly connected to a horizontal pressure plate (115). Both ends of the horizontal pressure plate (115) are fixedly connected to an arc-shaped toothed plate (121) that cooperates with the gear (113). The top end of the vertical slide rod (114) is fixedly connected to a second arc-shaped seat (117). The surface of the vertical slide rod (114) is fitted with a second spring (116).
2. The water-based adhesive packaging and transport device according to claim 1, characterized in that: The insulated transport box (101) has a second moving opening (118) on the front and rear sides of the bottom of the inner cavity, which is used in conjunction with the second arc-shaped seat (117). The bottom of the inner cavity of the insulated transport box (101) has a vent (119) that is used in conjunction with the storage drawer (110), and there are several vents (119). The front and rear parts of the inner cavity of the insulated transport box (101) are fixedly connected to the first sliding plate (120).
3. The water-based adhesive packaging and transportation device according to claim 2, characterized in that: The fixed unloading mechanism (2) includes a square slide frame (201), which is slidably installed between two first slide plates (120). A sealing plate (202) is fixedly connected to the left side of the square slide frame (201). The front and rear sides of the inner cavity of the square slide frame (201) are fixedly connected to second slide plates (203) through openings. A sliding seat (204) is slidably installed on the inner side of the second slide plate (203). A load-bearing mounting frame (205) is fixedly connected to both the front and rear sliding seats (204).
4. The water-based adhesive packaging and transportation device according to claim 3, characterized in that: The front and rear sides of the bottom of the inner cavity of the load-bearing mounting frame (205) are fixedly connected to a third sliding plate (206), and several third sliding plates (206) are provided. The front and rear sides of the inner side of the third sliding plate (206) are slidably installed with sliding blocks (207). The top of the sliding block (207) is fixedly connected to a linkage clamping rod (208). The top of the load-bearing mounting frame (205) is provided with a circular placement opening (209) that extends to the bottom. The front and rear sides of the linkage clamping rod (208) are fixedly connected to an arc-shaped clamping plate (210) that cooperates with the circular placement opening (209). The left side of the side opposite to the linkage clamping rod (208) is fixedly connected to an arc-shaped protrusion (211). The top and bottom of the load-bearing mounting frame (205) The left side of each part is provided with a pressing port (212) that cooperates with the arc-shaped protrusion (211). The right side of the sealing plate (202) is provided with a rectangular slide groove (213), and the left side of the inner cavity of the rectangular slide groove (213) is provided with a third moving port (214) that extends to the left side. A sliding pressure plate (215) is slidably installed on the inner side of the rectangular slide groove (213). A pulling column (216) is slidably installed on the top of the sliding pressure plate (215) through an opening. The bottom end of the pulling column (216) is fixedly connected to two load-bearing mounting frames (205) through a bracket. A third spring (226) is sleeved on the surface of the pulling column (216). A fourth spring (227) is fixedly connected between the linkage clamp (208) and the inner wall of the load-bearing mounting frame (205).
5. The water-based adhesive packaging and transportation device according to claim 4, characterized in that: Both sides of the sliding pressure plate (215) are fixedly connected by brackets to arc-shaped extrusion seats (217) that cooperate with arc-shaped protrusions (211). Both sides of the arc-shaped extrusion seats (217) are provided with card interfaces (218) that cooperate with arc-shaped protrusions (211). The top and bottom of the inner cavity of the card interfaces (218) are provided with insertion ports (219). The front and rear parts of the right side of the sealing plate (202) are fixedly connected to round-headed top plates (220) that cooperate with insertion ports (219). The left side of the sealing plate (202) is fixedly connected by brackets to a cylinder (221), and the bottom end of the cylinder (221) is fixedly connected to the sliding pressure plate (215) by brackets.
6. The water-based adhesive packaging and transport device according to claim 5, characterized in that: The front and rear parts of the left side of the sealing plate (202) are slidably mounted with a pull handle (224) through openings. The right end of the pull handle (224) is fixedly connected to a first round abutment (222) that cooperates with the first arc-shaped seat (108) through a bracket. The front and rear parts of the bottom right side of the square slide frame (201) are fixedly connected to a second round abutment (223) that cooperates with the second arc-shaped seat (117) through a bracket. A blocking ring (225) is fixedly connected to the right side of the surface of the pull handle (224).
7. The method of using the water-based adhesive encapsulation and transportation device according to claim 6, characterized in that: Specifically, the following steps are included: S1. When using, place the tube containing adhesive inside the circular placement opening (209) and use the arc-shaped clamping plate (210) to clamp the edge of the tube. After all the circular placement openings (209) are in place, pull out the storage drawer (110) and put dry ice inside. Then push the sealing plate (202) and push the square sliding frame (201) and the load-bearing mounting frame (205) to the inside of the insulated transport box (101) under the action of the first sliding plate (120). Then proceed to step S2. S2. After the square sliding frame (201) is pushed, the first round abutment (222) and the second round abutment (223) move to the right along the first arc-shaped seat (108) and the second arc-shaped seat (117) respectively. After the load-bearing mounting frame (205) is completely inside the insulated transport box (101), the second round abutment (223) will first separate from the second arc-shaped seat (117). Under the tension of the second spring (116), the second arc-shaped seat (117) drives the horizontal pressure plate (115) to rise, so that the two arc-shaped toothed plates (121) and the gear (113) separate and restore the insulated transport box (101). 101) The overall movement function is activated. At the same time, the lever (224) is pulled to the right again to make the first round abutment (222) continue to move to the right until the first round abutment (222) separates from the first arc-shaped seat (108). After the first arc-shaped seat (108) loses the top force of the first round abutment (222), the pressure column (105) and pressure plate (106) are pressed down by the action of the first spring (107), so that the pressure plate (106) directly presses the top of the material cylinder and fixes the material cylinder. At this time, the insulated transport box (101) is pushed to move for transport. After the transport is completed, the process is transferred to step S3. S3. When unloading is required after transportation, first pull the lever (224) to the left a certain distance so that the blocking ring (225) abuts against the sealing plate (202). During the pulling of the lever (224), the first round abutment seat (222) will first contact the first arc-shaped seat (108) and push upward. After the first arc-shaped seat (108) is pushed up, it will cause several pressure columns (105) and pressure plates (106) to rise through the drive of the limiting plate (104), so that the pressure plate (106) separates from the top of the material cylinder. Then continue to pull the lever (224). At this time, the sealing plate (202) is driven to move to the left along with the load-bearing mounting frame (205). The second round abutment seat (222) 23) After being driven, it will press the vertical sliding rod (114) to make the horizontal pressure plate (115) drive the arc-shaped toothed plate (121) to descend together. After the arc-shaped toothed plate (121) descends, it will mesh with the gear (113) to prevent the moving wheel (112) from moving and limit the insulated transport box (101). After the load-bearing mounting frame (205) is pulled to the left limit position, it stops. Then the cylinder (221) is started to pull the sliding pressure plate (215) and the two arc-shaped extrusion seats (217) to descend. The descent of the sliding pressure plate (215) will first pull the load-bearing mounting frame (205) to descend together through the pulling column (216) until the bottom of the material cylinder is completely in contact with the ground. Then the cylinder (221) continues to descend. As the cylinder descends, the sliding pressure plate (215) slides down the surface of the pulling column (216) and compresses the third spring (226). As the sliding pressure plate (215) continues to descend, it pushes the arc-shaped extrusion seat (217) down and then extrudes the two arc-shaped protrusions (211), causing the two linkage clamping rods (208) inside the load-bearing mounting frame (205) to drive several arc-shaped clamping plates (210) to separate. At this time, the arc-shaped clamping plates (210) no longer clamp the material cylinder, and the arc-shaped protrusions (211) are engaged inside the clamping interface (218) to fix the linkage clamping rods (208) to prevent them from closing relative to each other. Then, the arc-shaped protrusions (211) are activated again to drive the clamping interface (218) to... The two load-bearing mounting frames (205) are pulled up to keep the material cylinder on the ground. When the load-bearing mounting frames (205) are pulled to the top limit position, the round top plate (220) is inserted into the inside of the insertion port (219) and squeezes the two arc-shaped protrusions (211) out from the inside of the card interface (218). At this time, the load-bearing mounting frames (205) lose the docking force between the arc-shaped protrusions (211) and the card interface (218). Under the push of the third spring (226), they are reset, and the linkage clamp (208) is pushed by the fourth spring (227) to make the arc-shaped card plate (210) close again. Then the load-bearing mounting frames (205) are pushed into the inside of the insulated transport box (101) for subsequent transportation.
8. The method of using the water-based adhesive encapsulation and transportation device according to claim 7, characterized in that: The dry ice inside the storage drawer (110) releases cold air through the vent (119) to cool the material cylinder.
Citation Information
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