SBR latex transportation barrel with safety protection function
By designing an SBR latex transport barrel with safety protection functions, and using a power conveying beam to drive the mixing rod, the precipitation problem caused by gravity and vibration in SBR latex transportation is solved, and the stable stirring and quality assurance of latex is achieved.
Patent Information
- Application Number
- CN202510558977.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-30
- Publication Date
- 2025-05-30
- Estimated Expiration
- 2045-04-30
AI Technical Summary
In the prior art, SBR latex is prone to particles aggregation and precipitation due to gravity and vibration during transportation, resulting in latex layered precipitation, affecting product quality.
A SBR latex transport barrel with safety protection functions was designed, including a barrel fixing frame and a loading and stirring structure. The barrel fixing frame transmits power through the power conveying beam, causing the stirring rod to rotate, achieving stirring of latex and avoiding precipitation.
By stirring the latex during transportation, the precipitation of the latex is effectively avoided, the stability and quality of the latex are ensured, and the production cost and time are reduced.
Smart Images

Figure CN120057416A_ABST
Abstract
Description
Technical Field
[0001] The present invention belongs to the technical field of SBR latex storage and transportation, and particularly relates to an SBR latex transportation barrel with a safety protection function. Background Art
[0002] SBR latex is a synthetic latex made by emulsion polymerization of styrene and butadiene. It has excellent adhesiveness, film-forming property and mechanical stability, and is widely used in fields such as papermaking, carpet backing, adhesives, architectural coatings, etc. The stability of SBR latex depends on the action of emulsifiers and stabilizers. Rubber particles (with a diameter of about 0.1 - 1 micron) in the latex are suspended in water through Brownian motion. Prolonged standing may cause them to gradually sink due to gravity and form stratification. The density of rubber particles (about 0.9 - 1.0 g / cm³) is slightly lower than that of water, but transportation vibrations may cause local aggregation and precipitation. The bumps and vibrations during long-distance transportation may accelerate the aggregation of particles and cause the latex to stratify and precipitate.
[0003] In the prior art, latex is mostly transported in ordinary barrels during transportation. Without technical stirring during long-distance transportation, if stratification or precipitation occurs after transportation, users need to remix or filter it, which increases production costs and time. The precipitation may cause fluctuations in key indicators such as the mechanical strength and adhesiveness of the latex, affecting the quality of the final product. Summary of the Invention
[0004] The technical problem to be solved by the present invention is to overcome the above-mentioned drawbacks of the prior art and provide a transportation barrel dedicated to SBR latex transportation.
[0005] The technical solution adopted to solve the above technical problem is: an SBR latex transportation barrel with a safety protection function, including a barrel fixing frame that can be fixed on the surface of the transportation carriage, and a number of loading and stirring structures for loading and stirring the latex are placed at the position of the barrel fixing frame.
[0006] Through the above technical solution, the barrel fixing frame can fixedly carry the loading and stirring structures, so that the loading and stirring structures are fixed at the surface position of the transportation carriage, and the latex is stored and stirred through the loading and stirring structures. During vehicle transportation, the latex can be stirred to avoid latex precipitation.
[0007] Two symmetrically arranged power transmission beams for stirring power transmission are fixedly connected above the barrel fixing frame, and the loading and stirring structures are located directly below the corresponding power transmission beams.
[0008] Through the above technical solution, the power transmission beams can transmit the power of the reduction motor to each loading and stirring structure, so that the loading and stirring structures obtain power.
[0009] Furthermore, the bucket fixing frame includes a horizontally arranged fixed load-bearing plate. On the upper surface of the fixed load-bearing plate, a number of uniformly distributed side support plates are fixedly connected. Between two side support plates on the upper surface of the fixed load-bearing plate, two symmetrically arranged "U"-shaped guide plates are fixedly connected, and the openings of the guide plates face outward. The opening positions of the guide plates are inclined. The loading and stirring structure is located inside the guide plates. A trigger-type fixing structure is arranged at the position below the loading and stirring structure on the upper surface of the fixed load-bearing plate.
[0010] Through the above technology, the fixed load-bearing plate can horizontally place the loading and stirring structure, and the side support plates and the "U"-shaped guide plates arranged horizontally provide horizontal support, making the placement of the loading and stirring structure more stable. Moreover, the openings of the guide plates are inclined, which is convenient for the loading and stirring structure to be pushed in. The trigger-type fixing structure can assist in fixing the loading and stirring structure and trigger the loading and stirring structure under the action of the front fork of the forklift, facilitating the loading and stirring structure to be lifted and transported by the forklift.
[0011] Furthermore, the trigger-type fixing structure includes a positioning card slot opened on the surface of the fixed load-bearing plate. An elastic clamping block with an inclined surface is slidably connected to the inner wall position of the positioning card slot. The inclined surface of the elastic clamping block faces outward. A reset fixing spring is fixedly connected between the lower surface of the elastic clamping block and the positioning card slot.
[0012] Through the above technical solution, the positioning card slot provides a space for the elastic clamping block to be pressed down. When the elastic clamping block is pressed down, it will not act on the fixed card slot, so the loading and stirring structure will not be fixed. When the elastic clamping block pops out, it can act on the fixed card slot, thus realizing the fixation of the loading and stirring structure. The reset fixing spring can facilitate the reset of the elastic clamping block.
[0013] Furthermore, both of the power transmission beams include main load-bearing beams fixedly connected to the surfaces of the side support plates. A horizontally arranged power transmission shaft is arranged inside the main load-bearing beams. A number of uniformly distributed power bevel gears are fixedly connected through the outer wall of the power transmission shaft at the position directly above the loading and stirring structure. The power bevel gears are meshed with driven bevel gears. A semi-column frame is arranged below the main load-bearing beam. The semi-column frame is connected to the corresponding driven bevel gear through a linkage shaft, and the linkage shaft penetrates and rotates through the bottom of the main load-bearing beam.
[0014] Through the above technical solution, the main load-bearing beam can install and support the power transmission shaft, and the power transmission shaft can transmit the power of the reduction motor and transmit it to the driven bevel gear through the power bevel gears, so that the loading and stirring structure obtains power. The semi-column frame transmits the power to the top plate to make the top plate rotate.
[0015] Further, a linkage groove is formed through the semi-column frame, and two symmetrically arranged limit sliding grooves are formed on the surface of the semi-column frame on both sides of the linkage groove.
[0016] Through the above technical solution, the top plate can be pulled to fold the main stirring rod and the auxiliary stirring rod, so as to expand the stirring range of the main stirring rod and the auxiliary stirring rod. Then, the top plate is inserted into the semi-column frame. Under the action of gravity, the linkage groove can cooperate with the stirring rod, and the fixing block is limited and fixed through the limit sliding groove, so that the semi-column frame drives the stirring rod to rotate, and the mutual rotation between the main stirring rod and the auxiliary stirring rod can be realized.
[0017] Further, a reduction motor is fixedly connected to the middle position of one side of the barrel fixing frame. Synchronous belt pulleys are fixedly connected to the position of the power transmission shaft close to one end of the reduction motor and the rotating shaft of the driving end of the reduction motor. And there are two synchronous belt pulleys at the rotating shaft position of the driving shaft. Synchronous conveyor belts are arranged between the synchronous belt pulleys at the reduction motor position and the synchronous belt pulleys at the corresponding positions of the power transmission shaft.
[0018] Through the above technical solution, the reduction motor provides power, and the power is transmitted through the synchronous belt pulleys and the synchronous conveyor belts, so that the power transmission shaft obtains power.
[0019] Further, the loading and stirring structure includes a loading barrel main body. A plurality of uniformly distributed forklift slots are formed at the bottom position of the loading barrel main body. Two symmetrically arranged fixing card slots are formed on the lower surface position of the loading barrel main body. A main sealing cover is arranged at the opening position on the surface of the loading barrel main body.
[0020] Through the above technical solution, the loading barrel main body can load the latex to be transported. The forklift slots arranged at the bottom of the loading barrel main body facilitate the fork arms at the front of the forklift to lift and transfer the loading barrel main body, and the main sealing cover seals the loading barrel main body.
[0021] Further, a limit rotating barrel is rotatably connected through the middle position of the surface of the main sealing cover. A sliding groove is formed on the inner wall position of the limit rotating barrel. A stirring rod is slidably connected to the inner wall of the limit rotating barrel. A limit sliding block is fixedly connected to the outer wall of the stirring rod, and the limit sliding block is slidably connected with the sliding groove. The top of the stirring rod is fixedly connected with a top plate. Two symmetrically arranged fixing blocks are fixedly connected to the lower surface of the top plate.
[0022] Through the above technical solution, the limiting rotating barrel supports the stirring rod in a limited way, enabling the stirring rod to slide up and down under the action of the limiting slider and the sliding groove, facilitating the adjustment of the main stirring rod and the auxiliary stirring rod. Moreover, when the top plate is pulled upward, it can be clamped into the semi-column frame, and the limiting slider slides up and down in the sliding groove to realize the unfolding and folding of the main stirring rod and the auxiliary stirring rod. At the same time, the engagement or separation of the fixed clamping block and the limiting sliding groove can be controlled, and the limiting rotating barrel is rotatably connected to the main sealing cover, which can avoid the movement interference of the stirring rod during rotation.
[0023] Further, the main stirring rod is rotatably connected to the bottom position of the outer wall of the limiting rotating barrel, and two symmetrically arranged auxiliary stirring rods are rotatably connected to the bottom position of the stirring rod. The main stirring rod is rotatably connected to the auxiliary stirring rod, and two symmetrically arranged rotating control grooves are formed on the upper surface of the main sealing cover.
[0024] Through the above technical solution, the main stirring rod and the auxiliary stirring rod rotate relative to each other and can rotate to stir the latex after unfolding, avoiding the latex precipitation caused by static vibration during transportation. The rotating control grooves can control the main sealing cover, facilitating the opening or closing of the main sealing cover.
[0025] The beneficial effects of the present invention are as follows: (1) By setting the barrel fixing frame and arranging the forklift slot and the fixed card slot at the bottom of the main body of the loading barrel, the main body of the loading barrel can be transported by inserting the forklift into the forklift slot. Moreover, when the main body of the loading barrel is placed on the surface of the fixed bearing plate, the main body of the loading barrel can be assisted and fixed by the trigger-type fixing structure, which has good safety protection measures, making the transportation more stable during the journey, and the trigger-type fixing structure can be directly controlled by the fork wall of the forklift, with simple and convenient operation; (2) By setting the loading and stirring structure, the latex is filled into the main body of the loading barrel, and the power transmitted by the power transmission beam makes the stirring rod rotate, so that the unfolded main stirring rod and the auxiliary stirring rod carry out stirring, which can stir the latex during long-distance transportation and effectively avoid the influence of latex precipitation caused by the static state of the latex during long-distance transportation on the quality of the latex. Brief Description of the Drawings
[0026] Figure 1 is a partial structural diagram of a SBR latex transportation barrel with a safety protection function according to the present invention; Figure 2 is a three-dimensional structural schematic diagram of a single-group loading and stirring structure of a SBR latex transportation barrel with a safety protection function according to the present invention; Figure 3 is a three-dimensional structural diagram of the barrel fixing frame of a SBR latex transportation barrel with a safety protection function according to the present invention; Figure 4 is a partial structural diagram of the power transmission beam of a SBR latex transportation barrel with a safety protection function according to the present invention; Figure 5 It is the first perspective structure diagram of the loading and stirring structure of an SBR latex transportation barrel with a safety protection function according to the present invention; Figure 6 It is the second perspective structure diagram of the loading and stirring structure of an SBR latex transportation barrel with a safety protection function according to the present invention; Figure 7 It is the assembly diagram of the stirring shaft of an SBR latex transportation barrel with a safety protection function according to the present invention; Figure 8 It is Figure 4 The enlarged view of part A in Figure 9 It is the sectional view of the rotating outer cylinder of an SBR latex transportation barrel with a safety protection function according to the present invention.
[0027] Reference numerals: 1, barrel fixing frame; 10, side support plate; 11, fixed load-bearing plate; 12, guide plate; 13, reset fixing spring; 14, positioning card slot; 15, elastic clamping block; 2, power transmission beam; 20, main load-bearing beam; 21, power bevel gear; 22, power transmission shaft; 23, semi-column frame; 24, linkage groove; 25, limit sliding groove; 26, driven bevel gear; 3, synchronous pulley; 4, synchronous conveyor belt; 5, reduction motor; 6, loading and stirring structure; 60, loading barrel body; 61, main sealing cover; 62, forklift slot; 63, fixed card slot; 64, rotation control slot; 65, limit rotating barrel; 66, main stirring rod; 67, auxiliary stirring rod; 68, stirring rod; 69, limit sliding block; 610, fixed clamping block; 611, top plate; 612, sliding slot. Detailed implementation manners
[0028] In order to make the objectives, technical solutions and advantages of the present invention clearer, the present invention will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the present invention and are not used to limit the present invention.
[0029] As Figure 1-9 shown, an SBR latex transportation barrel with a safety protection function in this embodiment includes a barrel fixing frame 1 that can be fixed on the surface of the transportation carriage. The barrel fixing frame 1 can fixedly carry the loading and stirring structure 6, so that the loading and stirring structure 6 is fixed at the surface position of the transportation carriage, and the latex is stored and stirred through the loading and stirring structure 6. During the vehicle transportation process, the latex can be stirred to avoid latex precipitation.
[0030] The barrel fixing frame 1 includes a horizontally arranged fixed load-bearing plate 11. A number of uniformly distributed side support plates 10 are fixedly connected to the upper surface of the fixed load-bearing plate 11. Two symmetrically arranged "U"-shaped guide plates 12 are fixedly connected to the upper surface of the fixed load-bearing plate 11 between the two side support plates 10, and the openings of the guide plates 12 face outward. The opening positions of the guide plates 12 are inclined. The loading and stirring structure 6 is located inside the guide plates 12. A trigger-type fixing structure is arranged at the position below the loading and stirring structure 6 on the upper surface of the fixed load-bearing plate 11. The fixed load-bearing plate 11 can horizontally place the loading and stirring structure 6, and through the side support plates 10 and the horizontally arranged "U"-shaped guide plates 12 for horizontal support, so that the placement of the loading and stirring structure 6 is more stable. And the openings of the guide plates 12 are inclined, which is convenient for the loading and stirring structure 6 to be pushed in. The trigger-type fixing structure can assist in fixing the loading and stirring structure 6, and under the action of the front fork of the forklift, the loading and stirring structure 6 is triggered, which is convenient for the loading and stirring structure 6 to be lifted and transported by the forklift.
[0031] The trigger-type fixing structure includes a positioning card slot 14 opened on the surface of the fixed load-bearing plate 11. An elastic clamping block 15 with an inclined surface is slidably connected to the inner wall position of the positioning card slot 14. The inclined surface of the elastic clamping block 15 faces outward. A reset fixing spring 13 is fixedly connected between the lower surface of the elastic clamping block 15 and the positioning card slot 14. The positioning card slot 14 provides a space for the elastic clamping block 15 to be pressed down. When the elastic clamping block 15 is pressed down, it will not act on the fixed card slot 63, so it will not fix the loading and stirring structure 6. When the elastic clamping block 15 pops out, it can act on the fixed card slot 63, and then the fixing of the loading and stirring structure 6 can be realized. The reset fixing spring 13 can facilitate the reset of the elastic clamping block 15.
[0032] A reduction motor 5 is fixedly connected to the middle position on one side of the barrel fixing frame 1. Synchronous belt pulleys 3 are fixedly connected to both the end of the power transmission shaft 22 close to the reduction motor 5 and the rotating shaft of the driving end of the reduction motor 5. And there are two synchronous belt pulleys 3 at the rotating shaft position of the driving shaft. A synchronous conveyor belt 4 is arranged between the two synchronous belt pulleys 3 at the position of the reduction motor 5 and the synchronous belt pulleys 3 at the corresponding positions of the power transmission shaft 22. The reduction motor 5 provides power, and the power is transmitted through the synchronous belt pulleys 3 and the synchronous conveyor belt 4, so that the power transmission shaft 22 obtains power.
[0033] Several loading and stirring structures 6 for loading and stirring latex are placed at the position of the barrel fixing frame 1. The loading and stirring structure 6 includes a loading barrel main body 60. A number of evenly distributed forklift slots 62 are opened at the bottom position of the loading barrel main body 60. Two symmetrically arranged fixed card slots 63 are opened at the lower surface position of the loading barrel main body 60. A main sealing cover 61 is arranged at the opening position of the surface of the loading barrel main body 60. The loading barrel main body 60 can load the latex to be transported. The forklift slots 62 arranged at the bottom of the loading barrel main body 60 facilitate the fork arms at the front of the forklift to lift and transfer the loading barrel main body 60. The main sealing cover 61 seals the loading barrel main body 60. And two rows of symmetric loading barrel main bodies 60 are arranged at the surface position of the fixed load-bearing plate 11, which is convenient for forklift picking.
[0034] A limiting rotating barrel 65 is rotatably connected through the middle position of the surface of the main sealing cover 61. A sliding groove 612 is opened at the inner wall position of the limiting rotating barrel 65. A stirring rod 68 is slidably connected to the inner wall of the limiting rotating barrel 65. A limiting slider 69 is fixedly connected to the outer wall of the stirring rod 68. And the limiting slider 69 is slidably connected with the sliding groove 612. The top of the stirring rod 68 is fixedly connected with a top plate 611. Two symmetrically arranged fixed clamping blocks 610 are fixedly connected to the lower surface of the top plate 611. The limiting rotating barrel 65 limits and supports the stirring rod 68, so that the stirring rod 68 slides up and down under the action of the limiting slider 69 and the sliding groove 612, which is convenient for adjusting the main stirring rod 66 and the auxiliary stirring rod 67. And when the top plate 611 is pulled up, it can be clamped into the half-column frame 23. The limiting slider 69 slides up and down in the sliding groove 612 to realize the unfolding and folding of the main stirring rod 66 and the auxiliary stirring rod 67. At the same time, the clamping or separation of the fixed clamping block 610 and the limiting sliding groove 25 can be controlled. And the limiting rotating barrel 65 is rotatably connected with the main sealing cover 61, which can avoid the movement interference when the stirring rod 68 rotates.
[0035] A main stirring rod 66 is rotatably connected to the bottom position of the outer wall of the limiting rotating barrel 65. Two symmetrically arranged auxiliary stirring rods 67 are rotatably connected to the bottom position of the stirring rod 68. The main stirring rod 66 is rotatably connected with the auxiliary stirring rod 67. Two symmetrically arranged rotating control grooves 64 are opened on the upper surface of the main sealing cover 61. The main stirring rod 66 and the auxiliary stirring rod 67 rotate relative to each other and can rotate to stir the latex after unfolding, so as to avoid the latex precipitation caused by static vibration during transportation. The rotating control grooves 64 can control the main sealing cover 61 to facilitate the opening or closing of the main sealing cover 61.
[0036] Two symmetrically arranged power transmission beams 2 for stirring power transmission are fixedly connected above the barrel fixing frame 1. The power transmission beams 2 can transmit the power of the reduction motor 5 to each loading and stirring structure 6, so that the loading and stirring structure 6 obtains power.
[0037] Both of the two power transmission beams 2 include a main load-bearing beam 20 fixedly connected to the surface of the side support plate 10. A horizontally arranged power transmission shaft 22 is arranged inside the main load-bearing beam 20. A number of uniformly distributed power bevel gears 21 are fixedly connected through the outer wall of the power transmission shaft 22 at a position directly above the loading and stirring structure 6. The power bevel gears 21 are meshed with driven bevel gears 26. A semi-column frame 23 is arranged at the lower position of the main load-bearing beam 20. The semi-column frame 23 is connected to the corresponding driven bevel gear 26 through a linkage shaft, and the linkage shaft penetrates and rotates through the bottom of the main load-bearing beam 20. The main load-bearing beam 20 can install and support the power transmission shaft 22, and the power transmission shaft 22 can transmit the power of the reduction motor 5 and transmit it to the driven bevel gear 26 through the power bevel gear 21, so that the loading and stirring structure 6 obtains power. The semi-column frame 23 transmits the power to the top plate 611 to make the top plate 611 rotate.
[0038] A linkage groove 24 is penetrated and opened at the position of the semi-column frame 23. Two symmetrically arranged limit sliding grooves 25 are opened on both sides of the linkage groove 24 on the surface of the semi-column frame 23. The top plate 611 can be pulled to fold the main stirring rod 66 and the auxiliary stirring rod 67, so that the stirring range of the main stirring rod 66 and the auxiliary stirring rod 67 is enlarged. Then the top plate 611 is inserted into the semi-column frame 23. Under the action of gravity, the linkage groove 24 can cooperate with the stirring rod 68, and the fixed block 610 is limited and fixed through the limit sliding groove 25, so that the semi-column frame 23 drives the stirring rod 68 to rotate, and the relative rotation between the main stirring rod 66 and the auxiliary stirring rod 67 can be realized.
[0039] The loading and stirring structure 6 is located directly below the corresponding power transmission beam 2.
[0040] The working principle of this embodiment is as follows: Quantitatively fill the SBR latex to be transported into the main body 60 of the container barrel, and the total amount of the SBR latex does not exceed four-fifths of the main body 60 of the container barrel. By rotating the control groove 64, the main sealing cover 61 can be screwed and fixed at the position of the main body 60 of the container barrel. Insert the forklift arm of the forklift into the forklift slot 62, and through the guiding of the guiding plate 12, the main body 60 of the container barrel can be placed on the surface of the fixed load-bearing plate 11. When pushing the main body 60 of the container barrel into the fixed load-bearing plate 11, the staff pulls the top plate 611 upward, so that the top plate 611 is snapped into the semi-column frame 23, and the fixed clamping block 610 on the lower surface of the top plate 611 is snapped into the corresponding limit sliding groove 25. During the upward pulling process of the top plate 611, the stirring rod 68 slides upward, and then the main stirring rod 66 and the auxiliary stirring rod 67 rotate relatively, so that the main stirring rod 66 and the auxiliary stirring rod 67 are unfolded. Place the main body 60 of the container barrel on the surface of the fixed load-bearing plate 11, and pull out the forklift arm of the forklift from the forklift slot 62. Under the action of the elastic force of the reset fixing spring 13, the elastic clamping block 15 pops out, and the elastic clamping block 15 is snapped into the fixed clamping groove 63, realizing the auxiliary fixation of the main body 60 of the container barrel and making the transportation more stable.
[0041] When transporting, start the reduction motor 5. The power of the reduction motor 5 is transmitted through the synchronous belt pulley 3 and the synchronous conveyor belt 4 to the position of the power transmission shaft 22, so that the driving bevel gear 21 drives the driven bevel gear 26 and the semi-column frame 23 to rotate, and then the unfolded main stirring rod 66 and the auxiliary stirring rod 67 can be rotated to stir the latex.
[0042] When arriving at the destination, turn off the reduction motor 5 to stop the stirring. Pull the top plate 611 to separate the fixed clamping block 610 from the limit sliding groove 25 at the corresponding position. Insert the forklift arm of the forklift into the forklift slot 62 of the elastic clamping block 15. Under the pressure of the forklift arm, the elastic clamping block 15 is pressed into the positioning clamping groove 14, and then the main body 60 of the container barrel can be removed from the position of the fixed load-bearing plate 11.
[0043] The above is only a preferred embodiment of the present invention and is not intended to limit the protection scope of the present invention.
Claims
1. An SBR latex transport barrel with safety protection function, characterized in that: It comprises a barrel fixing frame (1) that can be fixed on the surface of a transport carriage, and a plurality of containing and stirring structures (6) for containing and stirring latex are placed on the barrel fixing frame (1); Two symmetrically arranged power transmission beams (2) for transmitting stirring power are fixedly connected to the upper position of the barrel fixing frame (1), and the stirring structure (6) is located directly below the corresponding power transmission beams (2).
2. The SBR latex transport barrel with safety protection function according to claim 1, characterized in that: The barrel fixing frame (1) comprises a horizontally arranged fixed load-bearing plate (11), the upper surface of which is fixedly connected to a plurality of evenly distributed side support plates (10), the upper surface of which is located between two side support plates (10) and fixedly connected to two symmetrically arranged guide plates (12) in a "U" shape, wherein the openings of the guide plates (12) face outwards, and the openings of the guide plates (12) are arranged at an inclined position, the carrying stirring structure (6) is located at an inner side of the guide plate (12), and a trigger-type fixing structure is arranged on the upper surface of the fixed load-bearing plate (11) below the carrying stirring structure (6).
3. The SBR latex transport barrel with safety protection function according to claim 2, characterized in that: The trigger-type fixing structure comprises a positioning slot (14) formed on the surface of the fixed load-bearing plate (11); an elastic block (15) having an inclined surface is slidably connected to the inner wall of the positioning slot (14); the inclined surface of the elastic block (15) faces outward; and a reset fixing spring (13) is fixedly connected between the lower surface of the elastic block (15) and the positioning slot (14).
4. The SBR latex transport barrel with safety protection function according to claim 1, characterized in that: The two power transmission beams (2) each comprise a main load-bearing beam (20) fixedly connected to the surface of the side support plate (10); a horizontally arranged power transmission shaft (22) is arranged inside the main load-bearing beam (20); a plurality of evenly distributed power bevel gears (21) are fixedly connected and penetrated through the outer wall of the power transmission shaft (22) at a position just above the supporting stirring structure (6); the power bevel gears (21) are meshingly connected to driven bevel gears (26); a semi-column frame (23) is arranged below the main load-bearing beam (20); the semi-column frame (23) is connected to the driven bevel gear (26) at a corresponding position via a linkage shaft, and the linkage shaft rotates through the bottom of the main load-bearing beam (20).
5. The SBR latex transport barrel with safety protection function according to claim 4, characterized in that: A linkage groove (24) is provided through the semi-column frame (23), and two symmetrically arranged limit sliding grooves (25) are provided on the surface of the semi-column frame (23) at positions on both sides of the linkage groove (24).
6. The SBR latex transport barrel with safety protection function according to claim 4, characterized in that: A reduction motor (5) is fixedly connected to the middle position of one side of the barrel fixing frame (1); a synchronous pulley (3) is fixedly connected to the power transmission shaft (22) at a position close to one end of the reduction motor (5) and at a rotating shaft position of a driving end of the reduction motor (5); and there are two synchronous pulleys (3) at the rotating shaft position of the driving shaft; a synchronous transmission belt (4) is arranged between the two synchronous pulleys (3) at the position of the reduction motor (5) and the synchronous pulleys (3) at the corresponding position of the power transmission shaft (22).
7. The SBR latex transport barrel with safety protection function according to claim 1, characterized in that: The containing and stirring structure (6) comprises a containing barrel body (60), a plurality of evenly distributed forklift slots (62) are provided at the bottom of the containing barrel body (60), two symmetrically arranged fixing slots (63) are provided at the lower surface of the containing barrel body (60), and a main sealing cover (61) is provided at the opening of the surface of the containing barrel body (60).
8. The SBR latex transport barrel with safety protection function according to claim 7, characterized in that: A limited rotation barrel (65) is rotatably connected to the middle portion of the surface of the main sealing cover (61), a sliding groove (612) is provided on the inner wall of the limited rotation barrel (65), a stirring rod (68) is slidably connected to the inner wall of the limited rotation barrel (65), a limited sliding block (69) is fixedly connected to the outer wall of the stirring rod (68), and the limited sliding block (69) is slidably connected to the sliding groove (612), a top plate (611) is fixedly connected to the top of the stirring rod (68), and two symmetrically arranged fixed blocks (610) are fixedly connected to the lower surface of the top plate (611).
9. The SBR latex transport barrel with safety protection function according to claim 8, characterized in that: A main stirring rod (66) is rotatably connected to the bottom of the outer wall of the position-limiting rotating barrel (65), and two symmetrically arranged auxiliary stirring rods (67) are rotatably connected to the bottom of the stirring rod (68). The main stirring rod (66) is rotatably connected to the auxiliary stirring rod (67), and the upper surface of the main sealing cover (61) is provided with two symmetrically arranged rotation control grooves (64).
Citation Information
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