Furan resin production receiving and transporting device and use method thereof

By introducing adjustable mobile components and raw material stirring components in the furan resin production and pick-up transportation device, the problem of lack of stirring function and insufficient movement adjustment during transportation is solved, and efficient transportation and productivity enhancement is achieved.

CN116078241BActive Publication Date: 2025-09-02JIANGSU LISA ENVIRONMENTAL PROTECTION TECH CO LTD
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Patent Information

Application Number
CN202211625529.3
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-12-16
Publication Date
2025-09-02
Estimated Expiration
2042-12-16

AI Technical Summary

Technical Problem

The existing furan resin production and pick-up transportation devices lack the stirring function, resulting in a decrease in productivity during transportation, and lack of mobility regulation and convenience, making it difficult to adapt to various environments.

Method used

A furan resin production and pick-up transport device including adjustable mobile components, cover protection components and raw material stirring components is designed to realize the moving and stirring functions of the transport box through hydraulic pumps and motor drives, enhancing the convenience and productivity of the device.

Benefits of technology

It improves the stirring capacity and movement convenience during transportation, adapts to different environments, and enhances the usability and productivity of the device.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a furan resin production receiving and transporting device and a method for using the same. The invention comprises a transport box, an adjustable movable component arranged on the surface of the transport box, a covering and protecting component arranged on the surface of the transport box, and a raw material stirring component arranged inside the transport box. The raw material stirring component comprises a plurality of rotating shafts arranged inside the transport box, the rotating shaft surfaces being cooperatively connected with belts, the belt surfaces being fixedly connected with a plurality of vertical plates, the belts rotating and driving the vertical plates to stir the furan resin raw material inside the transport box during transportation, the stirring plate rotating can stir the furan resin raw material particles inside the transport box, the rotating shaft rotating drives the belts to rotate and the rotating shafts in the remaining transport boxes to rotate, and the plurality of vertical plates fixedly connected to the belt surfaces stir the furan resin raw material particles in the transport box during transportation, so that stirring can be performed during transportation, thereby shortening the production process.
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Description

Technical Field

[0001] The present invention relates to the technical field of furan resin production equipment, in particular to a furan resin production receiving and transporting device and a use method thereof. Background Art

[0002] Furan resin is a thermosetting resin that crosslinks and cures when heated without the need for a curing agent. Acids catalyze the curing reaction and can also lower the temperature required for heat curing. Depending on the specific needs of the construction process, a catalytic curing agent can be added to enable rapid crosslinking and curing at room temperature without heating. Curing and crosslinking release low-molecular-weight substances, resulting in significant volume shrinkage and very low elongation, making it brittle. Because the cured product's molecular chains are primarily composed of methine (—CH2—) groups and saturated C—C bonds, lacking reactive functional groups, furan resin is inert to chemical reactions with corrosive media. Cured furan resin exhibits outstanding resistance to alkalis, solvents, and alternating acid-base media, and exhibits good corrosion resistance to inorganic acids. Furan resin also exhibits excellent heat resistance and can generally be used for long periods at temperatures between 120°C and 140°C, and in some cases, at temperatures between 180°C and 190°C. However, due to the presence of double bonds in the furan ring and the tendency of heterocyclic rings to open under certain conditions, furan resin exhibits a tendency to form rings. Therefore, furan resin has poor oxidation resistance and will be destroyed in oxidizing nitric acid and concentrated sulfuric acid. Furan resin has good miscibility with many plasticizers, thermosetting resins, and thermoplastic resins, so that products with various properties can be obtained.

[0003] Patent No. CN214396837U. This utility model relates to the technical field of material transport attachments, specifically a material transport vehicle for furan resin production. The vehicle's housing can be steered to facilitate the removal of materials from the inside, improving reliability. The vehicle comprises a vehicle body, a steering platform, and supporting columns. A top-opening housing is located at the top of the vehicle body, while running wheels are located at the bottom. A bearing is fixedly mounted on the top of the vehicle body, and a geared disc is located on the outer side of the rotating shaft. A manual locking mechanism for locking the geared disc is provided on the vehicle body. The manual locking mechanism includes a hand-crank plate, a brake plate, a tension spring, fixed teeth, and a drive rod. Two sets of limit rods are located at the bottom of the hand-crank plate, with the drive rod positioned between the two sets of limit rods. The vehicle body is mounted on the top of the steering platform. A discharge port is located at the left end of the vehicle body, with a removable discharge baffle provided at the discharge port.

[0004] However, there are some problems in the use of existing furan resin production receiving and transportation devices. 1. The furan resin production receiving and transportation devices currently on the market lack a stirring function during transportation, which reduces the overall usability and is not conducive to increasing productivity during transportation. The furan resin raw materials lack stirring during transportation. 2. The furan resin production receiving and transportation devices currently on the market have low overall mobility adjustability when in use and are not conducive to mobile transportation in multiple environments, thereby reducing the overall mobility convenience and reducing the transportability of the furan resin. Summary of the Invention

[0005] The object of the present invention is to provide a furan resin production receiving and transporting device and a method of using the same, so as to solve the problems raised in the above background technology.

[0006] To solve the above technical problems, the present invention provides the following technical solutions: a furan resin production receiving and transporting device, comprising a transport box, an adjustable moving component arranged on the surface of the transport box, a covering and protecting component arranged on the surface of the transport box, and a raw material stirring component arranged inside the transport box;

[0007] The adjustable movable assembly includes a plurality of first openings formed at the bottom of the transport box, a hydraulic pump being provided inside the first openings, one end of the hydraulic pump being detachably connected to a transverse plate, both ends of the transverse plate being detachably connected to baffles, a support rod being provided inside the baffle, a pulley being provided inside the support rod, a hinge being cooperatively connected to the bottom of the inner side of the first opening at one end, and the support rod being folded down and adjusted vertically by the hydraulic pump;

[0008] A second opening is formed on the top surface of the transport box;

[0009] The covering protection component includes an inner groove opened around the inside of the second opening, a film guide roller is movably connected to the inside of the inner groove, and a covering film is connected to the surface of the film guide roller, and the second opening is covered by the covering film;

[0010] The raw material stirring assembly includes a plurality of rotating shafts arranged inside the transport box, the surfaces of the rotating shafts are cooperatively connected to belts, and the surfaces of the belts are fixedly connected to a plurality of vertical plates, and the vertical plates are driven by the rotation of the belts to stir the furan resin raw materials inside the transport box during transportation;

[0011] The transport box is fixedly connected to mounting blocks on both sides, the bottom of the mounting blocks is detachably connected to a telescopic rod, and the bottom of the telescopic rod is cooperatively connected to a bottom plate;

[0012] A feed port is connected to one side of the second opening, and the furan resin raw material enters the transport box through the feed port. A rotating shaft is movably connected to the inside of the support rod, and a pulley is movably connected to the surface of the rotating shaft. The pulley is movably connected to a slot opened inside the support rod.

[0013] Preferably, the raw material stirring assembly further comprises a motor detachably connected to one side of the surface of the transport box, and the output end of the motor is connected to the input end of the rotating shaft.

[0014] Preferably, there are multiple rotating shafts and the centrally located rotating shaft is connected to the motor, and multiple stirring discs are detachably connected to the surface of the central rotating shaft.

[0015] Preferably, a slanted plate is detachably connected to one side of the transport box, one end of the slanted plate is cooperatively connected to a shell, and a motor is cooperatively connected to the inside of the shell.

[0016] Preferably, a cover plate is connected to the top of the transport box, and an opening is provided on the surface of the cover plate.

[0017] Preferably, a handle is detachably connected to the surface of the transport box, and there are multiple handles.

[0018] A method for using a furan resin production receiving and transporting device comprises the following steps:

[0019] Step 1: When receiving, place the transport box at the furan resin production discharge site, and introduce the furan resin raw material particles into the transport box through the detachable feed port on the top of the transport box. The feed port is replaced according to the size of the furan resin production discharge site. After the raw materials are introduced, take out the feed port, release the covering film by moving the film guide roller, and close the second opening, thereby sealing the transport box. The covering film is attached to the inner groove opened inside the second opening;

[0020] Step 2: When the box needs to be moved after loading, a forklift is required to move it. The power current output terminals of the multiple telescopic rods are connected through an external control switch, so that the telescopic rods drive the mounting blocks to move upward. The mounting blocks are connected to both sides of the surface of the transport box. The movement of the mounting blocks will drive the entire transport box to be lifted, and then the forklift can lift the entire box. In the case of a harsh ground environment, the entire box can also be lifted and isolated from the ground environment. The contact surface between the telescopic rods and the ground is increased through the bottom plate.

[0021] Step 3: When performing autonomous movement, first lift the entire transport box using the telescopic rod, then connect the power current input terminals of multiple hydraulic pumps through the external control switch, and the hydraulic pumps drive the horizontal plate to lift and move, and the movement of the horizontal plate drives the baffle to move in a circular manner, vertically adjusting the support rod connected to the middle of the baffle;

[0022] Step 4: After the support rod is vertical, the pulley is connected through the rotating shaft connected inside the support rod, and the pulley moves in contact with the ground, thereby moving the entire transport box. The baffle is connected to the bottom of the first opening through the hinge, thereby lifting the telescopic rod and the baffle in a circular manner;

[0023] Step 5: The user secures the transport box to the outside through multiple handles fixed on the surface, buckles the motor through the housing, and then secures the housing to the transport box through the inclined plate;

[0024] Step 6. When stirring the furan resin particles during transportation, the power current output terminal of the motor is connected through an external controller, so that the motor drives the rotating shaft to work, and the rotation of the rotating shaft drives the multiple stirring plates detachably connected to the surface to rotate, thereby stirring the furan resin raw material particles inside the transport box. The rotation of the rotating shaft drives the belt to rotate the rotating shafts in the remaining transport boxes, and then the furan resin raw material particles in the transport box are stirred during transportation through the multiple vertical plates fixedly connected to the surface of the belt.

[0025] Compared with the prior art, the present invention has the following beneficial effects:

[0026] 1. When in use, the transport box is placed at the furan resin production discharge site, and the furan resin raw material particles are introduced into the transport box through the detachable feed port on the top of the transport box. The feed port can be replaced according to the size of the furan resin production discharge site. After the raw materials are introduced, the feed port is taken out, and the covering film is released by moving the film guide roller to close the second opening, thereby sealing the transport box. The covering film fits into the inner groove opened inside the second opening. When the filling is completed and the transport box needs to be moved, when a forklift is needed to move it, the power current output end of the multiple telescopic rods can be connected through an external control switch, so that the telescopic rods drive the mounting blocks to move upward, and the mounting blocks are connected to both sides of the surface of the transport box. The movement of the mounting blocks will drive the transport box as a whole to be lifted, so that the forklift can lift the whole, thereby increasing the convenience of mechanical transportation, thereby being adaptable to the adjustment of equipment at different heights, and can also be used in harsh ground environments with water, ice, etc. The whole transport box is lifted to isolate the ground environment, which increases the convenient adjustability of the ground environment and reduces the damage to the furan resin raw material. The contact area between the telescopic rod and the ground is increased by the bottom plate. When the transport box is moved independently, the telescopic rod is first used to lift the transport box as a whole, and then the power current input end of multiple hydraulic pumps is connected through the external control switch. The operation of the hydraulic pump drives the cross plate to lift and move, and the movement of the cross plate drives the baffle to move in a circle. The support rod connected in the middle of the baffle is verticalized. After the support rod is verticalized, the pulley is connected to the pulley through the rotating shaft connected inside the support rod, and the pulley contacts and moves with the ground, thereby moving the transport box as a whole. The baffle is connected to the bottom of the first opening by a hinge, so as to lift the telescopic rod and the baffle in a circle. Then, the furan resin production receiving and transportation device has a high overall movement adjustability when in use, and is conducive to mobile transportation in multiple environments, thereby improving the overall movement convenience and improving the handling performance of the furan resin.

[0027] 2. When stirring the furan resin particles during transportation, the power current output terminal of the motor is connected through an external controller, so that the motor drives its rotating shaft to work, and the rotation of the rotating shaft drives the multiple stirring plates detachably connected to its surface to rotate, so that the furan resin raw material particles inside the transport box can be stirred, and the rotation of the rotating shaft drives the belt to rotate. The rotating shafts in the other transport boxes rotate, and the multiple vertical plates fixedly connected to the belt surface stir the furan resin raw material particles in the transport box during transportation. Stirring can be carried out during transportation, and the production process is shortened. Then, the furan resin production and transportation device has a stirring function during transportation when it is used, thereby improving the overall usability and facilitating the increase in productivity during transportation. It has stirring properties for the furan resin raw materials during transportation. BRIEF DESCRIPTION OF THE DRAWINGS

[0028] Figure 1 This is a schematic diagram of the overall structure of a furan resin production, receiving and transporting device and its use method of the present invention;

[0029] Figure 2 This is a schematic diagram of the bottom structure of a transport box for a furan resin production receiving and transporting device and a method for using the same;

[0030] Figure 3 This is a schematic diagram of the internal structure of the slots of a furan resin production receiving and transporting device and its use method of the present invention;

[0031] Figure 4 This is a schematic diagram of the internal structure of a cover plate of a furan resin production receiving and transporting device and a method of using the same according to the present invention;

[0032] Figure 5 This is a schematic diagram of the internal structure of a transport box for a furan resin production receiving and transporting device and a method for using the same;

[0033] Figure 6 The present invention provides a schematic diagram of the belt structure of a furan resin production receiving and transporting device and a method of using the same.

[0034] In the figure: 1. transport box; 2. handle; 3. inclined plate; 4. shell; 501. mounting block; 502. telescopic rod; 503. bottom plate; 504. slot; 505. hinge; 506. baffle; 507. horizontal plate; 508. connecting block; 509. hydraulic pump; 510. support rod; 511. rotating shaft; 512. pulley; 6. cover plate; 7. second opening; 8. feed port; 901. inner groove; 902. covering film; 903. film guide roller; 101. motor; 102. rotating shaft; 103. stirring plate; 104. belt; 105. vertical plate. DETAILED DESCRIPTION

[0035] In order to make the technical means, creative features, objectives and effects achieved by the present invention easier to understand, the present invention is further described below in conjunction with specific implementation methods.

[0036] See also Figure 1-6 As shown, a furan resin production receiving and transporting device includes a transport box 1, an adjustable moving component arranged on the surface of the transport box 1, a covering and protecting component arranged on the surface of the transport box 1, and a raw material stirring component arranged inside the transport box 1;

[0037] The adjustable movable assembly includes a plurality of first openings formed at the bottom of the transport box 1. A hydraulic pump 509 is provided inside the first openings. One end of the hydraulic pump 509 is detachably connected to a horizontal plate 507. Both ends of the horizontal plate 507 are detachably connected to baffles 506. A support rod 510 is provided inside the baffle 506. A pulley 512 is provided inside the support rod 510. A hinge 505 is cooperatively connected to the bottom of the inner side of the first opening at one end. The support rod 510 is adjusted to be lowered and vertically adjusted by the hydraulic pump 509.

[0038] The top surface of the transport box 1 is provided with a second opening 7;

[0039] The covering protection assembly includes an inner groove 901 formed around the inner periphery of the second opening 7, a film guide roller 903 is movably connected to the inner groove 901, and a covering film 902 is connected to the surface of the film guide roller 903, and the second opening 7 is covered by the covering film 902;

[0040] The raw material stirring assembly includes a plurality of rotating shafts 102 disposed inside the transport box 1, a belt 104 being cooperatively connected to the surface of the rotating shaft 102, and a plurality of vertical plates 105 being fixedly connected to the surface of the belt 104. The vertical plates 105 are driven by the rotation of the belt 104 to stir the furan resin raw material inside the transport box 1 during transportation;

[0041] The transport box 1 is fixedly connected to mounting blocks 501 on both sides, and the bottom of the mounting blocks 501 is detachably connected to a telescopic rod 502, and the bottom of the telescopic rod 502 is cooperatively connected to a bottom plate 503;

[0042] A feed port 8 is cooperatively connected to one side of the second opening 7, and the furan resin raw material enters the transport box 1 through the feed port 8. A rotating shaft 511 is movably connected to the support rod 510, and a pulley 512 is cooperatively connected to the surface of the rotating shaft 511. The pulley 512 is movably connected to the slot 504 opened inside the support rod 510.

[0043] Specifically, the raw material stirring assembly further includes a motor 101 detachably connected to one side of the surface of the transport box 1 , and the output end of the motor 101 is connected to the input end of the rotating shaft 102 .

[0044] Specifically, there are multiple rotating shafts 102 and the central rotating shaft 102 is connected to the motor 101. Multiple stirring discs 103 are detachably connected to the surface of the central rotating shaft 102.

[0045] Specifically, a slanted plate 3 is detachably connected to one side of the transport box 1 , and a housing 4 is cooperatively connected to one end of the slanted plate 3 . The motor 101 is cooperatively connected to the interior of the housing 4 .

[0046] Specifically, a cover plate 6 is connected to the top of the transport box 1 , and a second opening 7 is formed on the surface of the cover plate 6 .

[0047] Specifically, a handle 2 is detachably connected to the surface of the transport box 1 , and there are multiple handles 2 .

[0048] A method for using a furan resin production receiving and transporting device comprises the following steps:

[0049] Step 1: When receiving, place the transport box 1 at the furan resin production discharge site, and introduce the furan resin raw material particles into the transport box 1 through the detachable feed port 8 on the top of the transport box 1. The feed port 8 is replaced according to the size of the furan resin production discharge site. After the raw materials are introduced, the feed port 8 is taken out, and the covering film 902 is released by moving the film guide roller 903 to close the second opening 7, thereby sealing the transport box 1. The covering film 902 is fitted into the inner groove 901 opened inside the second opening 7;

[0050] Step 2: When the transport box 1 needs to be moved after loading, a forklift is required to move it. The power current output terminals of the multiple telescopic rods 502 are turned on through an external control switch, so that the telescopic rods 502 drive the mounting blocks 501 to move upward. The mounting blocks 501 are connected to both sides of the surface of the transport box 1. Therefore, the movement of the mounting blocks 501 will drive the entire transport box 1 to be lifted, and then the forklift can lift the entire box. In the case of a harsh ground environment, the entire box can also be lifted and isolated from the ground environment. The contact surface between the telescopic rods 502 and the ground is increased through the bottom plate 503.

[0051] Step 3: When autonomously moving, the transport box 1 is first lifted as a whole by the telescopic rod 502, and then the power current input terminals of the multiple hydraulic pumps 509 are turned on by the external control switch. The hydraulic pumps 509 drive the horizontal plate 507 to lift and move, and the movement of the horizontal plate 507 drives the baffle 506 to move in a circular manner, thereby vertically adjusting the support rod 510 connected to the middle of the baffle 506;

[0052] Step 4: After the support rod 510 is vertical, the pulley 512 is connected through the rotating shaft 511 connected inside the support rod 510. The pulley 512 contacts the ground and moves, thereby moving the transport box 1 as a whole. The baffle 506 is connected to the hinge 505 at the bottom of the first opening, thereby lifting the telescopic rod 502 and the baffle 506 in a circular manner.

[0053] Step 5: The user fixes the transport box 1 to the outside through the multiple handles 2 fixedly connected to the surface, buckles the motor 101 through the housing 4, and then fixes the housing 4 and the transport box 1 through the inclined plate 3;

[0054] Step 6. When stirring the furan resin particles during transportation, the power current output end of the motor 101 is connected through an external controller, so that the motor 101 drives the rotating shaft 102 to work, and the rotation of the rotating shaft 102 drives the multiple stirring plates 103 detachably connected to the surface to rotate, thereby stirring the furan resin raw material particles inside the transport box 1. The rotation of the rotating shaft 102 drives the belt 104 to rotate, and the rotating shaft 102 in the remaining transport box 1 rotates, and then the multiple vertical plates 105 fixedly connected to the surface of the belt 104 are used to stir the furan resin raw material particles in the transport box 1 during transportation.

[0055] When in use, the transport box 1 is placed at the furan resin production discharge site, and the furan resin raw material particles are introduced into the transport box 1 through the feed port 8 detachably connected to the top of the transport box 1. The feed port 8 can be replaced according to the size of the furan resin production discharge site. After the raw materials are introduced, the feed port 8 is taken out, and the covering film 902 is released by moving the film guide roller 903 to close the second opening 7, thereby sealing the transport box 1. The covering film 902 fits in the inner groove 901 opened inside the second opening 7. When it needs to be moved after filling, when a forklift is needed to move it, the power current output end of the multiple telescopic rods 502 can be turned on by the external control switch, so that the telescopic rods 502 work to drive the installation thereof. The block 501 moves upward, and the mounting block 501 is connected to both sides of the surface of the transport box 1, so that the movement of the mounting block 501 will drive the transport box 1 to be lifted as a whole, so that the forklift can pick up the whole, which increases the convenience of mechanical transportation, thereby being adaptable to the adjustment of equipment at different heights. In the case of harsh ground environment with water, ice, etc., the whole can also be lifted to isolate the ground environment, increase the convenient adjustability of the ground environment, and reduce the damage to the furan resin raw material. The contact area between the telescopic rod 502 and the ground is increased by the bottom plate 503. When moving autonomously, the transport box 1 is first lifted as a whole by the telescopic rod 502, and then the power current input terminals of multiple hydraulic pumps 509 are connected through the external control switch. The hydraulic pump 509 drives the horizontal plate 507 to be lifted and moved, and the movement of the horizontal plate 507 drives the baffle 506 to move in a circle, and the support rod 510 connected in the middle of the baffle 506 is vertically erected. After the support rod 510 is vertical, the pulley 512 is connected through the rotating shaft 511 connected inside the support rod 510, and the pulley 512 contacts and moves with the ground, thereby moving the transport box 1 as a whole, and the baffle 506 is connected to the hinge 505 at the bottom of the first opening, thereby lifting the telescopic rod 502 and the baffle 506 in a circle, and then the furan resin production and transportation device has a high overall movement adjustability when in use, and is conducive to mobile transportation in multiple environments, thereby improving The overall mobility convenience improves the transportability of furan resin. When stirring the furan resin particles during transportation, the power current output end of the motor 101 is connected through the external controller, so that the motor 101 drives its rotating shaft 102 to work, so that the rotation of the rotating shaft 102 drives the multiple stirring plates 103 detachably connected to its surface to rotate, and the furan resin raw material particles inside the transport box 1 can be stirred. The rotation of the rotating shaft 102 drives the belt 104 to rotate. The rotating shafts 102 in the remaining transport boxes 1 rotate, and the multiple vertical plates 105 fixedly connected to the surface of the belt 104 stir the furan resin raw material particles in the transport box 1 during transportation, so that stirring can be carried out during transportation, and the production process is shortened.Then, the furan resin production receiving and transporting device has a stirring function during transportation, thereby improving the overall usability and facilitating the increase in productivity during transportation. The furan resin raw materials are stirred during transportation.

[0056] The basic principles, main features, and advantages of the present invention are shown and described above. Those skilled in the art should understand that the present invention is not limited to the above embodiments. The above embodiments and descriptions are merely illustrative of the principles of the present invention. Various changes and modifications may be made to the present invention without departing from the spirit and scope of the present invention. Such changes and modifications are intended to fall within the scope of the present invention. The scope of protection claimed in the present invention is defined by the appended claims and their equivalents.

Claims

1. A furan resin production receiving and transporting device, characterized by: It comprises a transport box (1), an adjustable movable component arranged on the surface of the transport box (1), a covering protection component arranged on the surface of the transport box (1), and a raw material stirring component arranged inside the transport box (1); The adjustable moving assembly includes a plurality of first openings opened at the bottom of the transport box (1), a hydraulic pump (509) is provided inside the first opening, one end of the hydraulic pump (509) is detachably connected to a transverse plate (507), both ends of the transverse plate (507) are detachably connected to baffles (506), a support rod (510) is provided inside the baffle (506), a pulley (512) is provided inside the support rod (510), a hinge (505) is cooperatively connected to the bottom of the inner side of the first opening at one end, and the support rod (510) is folded down and adjusted vertically by the hydraulic pump (509); The top surface of the transport box (1) is provided with a second opening (7); The covering protection component comprises an inner groove (901) provided around the interior of the second opening (7); a film guide roller (903) is movably connected to the interior of the inner groove (901); a covering film (902) is cooperatively connected to the surface of the film guide roller (903); and the second opening (7) is covered by the covering film (902); The raw material stirring assembly comprises a plurality of rotating shafts (102) arranged inside the transport box (1); a belt (104) is cooperatively connected to the surface of the rotating shaft (102); a plurality of vertical plates (105) are fixedly connected to the surface of the belt (104); the vertical plates (105) are driven by the rotation of the belt (104) to stir the furan resin raw material inside the transport box (1) during transportation; The transport box (1) is fixedly connected to mounting blocks (501) on both sides, the bottom of the mounting blocks (501) is detachably connected to a telescopic rod (502), and the bottom of the telescopic rod (502) is cooperatively connected to a bottom plate (503); One side of the second opening (7) is connected to a feed port (8), and the furan resin raw material enters the transport box (1) through the feed port (8). The support rod (510) is movably connected to a rotating shaft (511), and the surface of the rotating shaft (511) is connected to a pulley (512), and the pulley (512) is movably connected to a slot (504) opened in the support rod (510).

2. A furan resin production, receiving and transporting device according to claim 1, characterized in that: The raw material stirring assembly further comprises a motor (101) detachably connected to one side of the surface of the transport box (1), wherein the output end of the motor (101) is connected to the input end of the rotating shaft (102).

3. A furan resin production receiving and transporting device according to claim 2, characterized in that: The rotating shafts (102) are multiple and the rotating shafts (102) at the central position are connected to the motor (101), and the surface of the rotating shaft (102) at the central position is detachably connected to multiple stirring discs (103).

4. A furan resin production, receiving and transporting device according to claim 1, characterized in that: One side of the transport box (1) is detachably connected to a sloping plate (3), one end of the sloping plate (3) is cooperatively connected to a housing (4), and the interior of the housing (4) is cooperatively connected to a motor (101).

5. The furan resin production, receiving and transporting device according to claim 1, characterized in that: The top of the transport box (1) is cooperatively connected with a cover plate (6), and an opening is provided on the surface of the cover plate (6).

6. The furan resin production, receiving and transporting device according to claim 1, characterized in that: The surface of the transport box (1) is detachably connected to a handle (2), and there are multiple handles (2).

7. A method for using the furan resin production, receiving and transporting device according to any one of claims 1 to 6, characterized in that: The following steps are involved: Step 1: When receiving, the transport box (1) is placed at the furan resin production discharge site, and the furan resin raw material particles are introduced into the transport box (1) through the feed port (8) detachably connected to the top of the transport box (1). The feed port (8) is replaced according to the size of the furan resin production discharge site. After the raw material is introduced, the feed port (8) is taken out, and the covering film (902) is released by moving the film guide roller (903) to close the second opening (7), thereby sealing the transport box (1). The covering film (902) is fitted into the inner groove (901) opened inside the second opening (7); Step 2: When the container needs to be moved after loading, a forklift is required to move the container. The power current output terminals of the multiple telescopic rods (502) are connected through an external control switch, so that the telescopic rods (502) drive the mounting block (501) to move upward, and the mounting block (501) is connected to both sides of the surface of the transport box (1). The movement of the mounting block (501) drives the entire transport box (1) to be lifted, and the forklift can lift the entire container. In the case of a bad ground environment, the entire container can also be lifted and isolated from the ground environment. The contact surface between the telescopic rods (502) and the ground is increased through the bottom plate (503); Step 3: When autonomously moving, the transport box (1) is first lifted as a whole by the telescopic rod (502), and then the power current input terminals of the plurality of hydraulic pumps (509) are connected by the external control switch. The hydraulic pumps (509) drive the horizontal plate (507) to move upward, and the movement of the horizontal plate (507) drives the baffle (506) to move in a circular manner, thereby vertically adjusting the support rod (510) connected to the middle of the baffle (506); Step 4: After the support rod (510) is vertically erected, the pulley (512) is connected via the rotating shaft (511) connected thereto in cooperation with the support rod (510), and the pulley (512) moves in contact with the ground, thereby moving the transport box (1) as a whole, and the baffle (506) is connected to the hinge (505) connected to the bottom of the first opening, thereby lifting the telescopic rod (502) and the baffle (506) in a circular manner; Step 5: The user fixes the transport box (1) to the outside through the multiple handles (2) fixedly connected to the surface, buckles the motor (101) through the housing (4), and then fixes the housing (4) and the transport box (1) through the inclined plate (3); Step 6: When the furan resin particles are stirred during transportation, the power current output terminal of the motor (101) is connected through an external controller, so that the motor (101) works to drive the rotating shaft (102) to work, and the rotating shaft (102) rotates to drive the multiple stirring plates (103) detachably connected to the surface to rotate, thereby stirring the furan resin raw material particles inside the transport box (1), and the rotating shaft (102) drives the belt (104) to rotate, and then the furan resin raw material particles in the transport box (1) are stirred during transportation through the multiple vertical plates (105) fixedly connected to the surface of the belt (104).

Citation Information

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