A moisture-proof diphenylamine batch storage device
By setting up bamboo charcoal placing layer plates and middle-layer fixed layer plates in the dianiline storage device, using bamboo charcoal to absorb water vapor, combined with the design of sealing plates and sealing rings, the problem of dianiline storage device being damp after opening is solved, achieving long-term moisture-proof and rapid access effects.
Patent Information
- Application Number
- CN202510465628.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-15
- Publication Date
- 2025-07-04
- Estimated Expiration
- 2045-04-15
AI Technical Summary
After opening, the existing dianiline storage device is exposed to moisture when the desiccant comes into contact with the air, affecting the long-term storage effect of dianiline.
A device including a storage barrel, a sealing plate, a sealing ring and a water vapor absorption assembly was designed. By setting up bamboo charcoal to place a laminate and a middle-layer fixed laminate, bamboo charcoal is used to absorb water vapor, and when taking medicine, the bamboo charcoal faces the inside of the storage barrel to reduce the contact time between bamboo charcoal and air, and combining the design of the sealing plate and sealing ring, rapid closure and bamboo charcoal replacement are achieved.
It effectively improves the moisture-proof effect of dianiline inside the storage barrel, ensures the long-term storage quality of dianiline, and realizes rapid use and replacement of bamboo charcoal, avoiding damage to dianiline during transportation.
Smart Images

Figure CN120024590B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of storage devices, and particularly relates to a batch storage device for diphenylamine that can prevent moisture. Background Art
[0002] Diphenylamine is a white to light gray crystal. It can be stored for 36 months in solid state. It has the smell of flowers and aniline. It needs to be stored away from light and at low temperature, and corresponding storage devices should be used during storage. When storing diphenylamine, desiccants or bamboo charcoal are usually placed inside the container to prevent moisture. Since diphenylamine is mostly stored in batches, when it is used, the storage device of diphenylamine needs to be opened to take diphenylamine in portions. When the storage device is opened, the desiccant is exposed to the outside and continuously contacts the water vapor in the air. The desiccant continuously absorbs water vapor and gets damp, which will affect the diphenylamine stored in the storage device, and thus is not conducive to the secondary storage of diphenylamine after the storage device is opened. Summary of the Invention
[0003] In order to overcome the deficiencies of the prior art, the present invention provides a batch storage device for diphenylamine that can prevent moisture.
[0004] To solve the above technical problems, the present invention provides the following technical solution: A batch storage device for diphenylamine that can prevent moisture, including a storage barrel body, a sealing plate and a sealing ring. The sealing plate is movably clamped above the outside of the storage barrel body. The sealing plate is used to close the inside of the storage barrel body. A sealing ring is fixedly connected to the outside of the sealing plate. A sealing rubber ring is fixedly connected to the side of the outside of the sealing ring close to the storage barrel body. A sealing ring groove is opened on the side of the outside of the storage barrel body close to the sealing ring. The sealing rubber ring is movably clamped inside the sealing ring groove. A water vapor absorption component for preventing moisture of the diphenylamine placed inside the storage barrel body is arranged on the outside of the sealing plate. The water vapor absorption component includes a middle-layer fixed layer plate for absorbing water vapor and a bamboo charcoal placement layer plate. The middle-layer fixed layer plate and the sealing plate are connected through an installation component. Rotating rollers are fixedly connected to both sides of the outside of the bamboo charcoal placement layer plate. One end of each of the two rotating rollers away from each other is rotatably connected to both sides inside the middle-layer fixed layer plate respectively. The bamboo charcoal placement layer plate rotates inside the middle-layer fixed layer plate through the two rotating rollers. The middle-layer fixed layer plate is used to place bamboo charcoal. A sealing panel for limiting the bamboo charcoal inside the bamboo charcoal placement layer plate is arranged on the outside of the bamboo charcoal placement layer plate. The sealing panel is movably clamped inside the bamboo charcoal placement layer plate. A pull ring plate for facilitating the removal of the sealing panel from inside the bamboo charcoal placement layer plate is fixedly connected to the side of the sealing panel away from the bamboo charcoal placement layer plate. Blocking components for limiting the rotation angle of the bamboo charcoal placement layer plate are arranged on both sides of the outside of the middle-layer fixed layer plate. Each blocking component includes a round roller and a baffle. The round roller is fixedly connected to the outside of the middle-layer fixed layer plate. The baffle is fixedly connected to the outside of the round roller. The baffle rotates on the outside of the middle-layer fixed layer plate through the round roller. The baffle fits on the outside of the bamboo charcoal placement layer plate.
[0005] As a preferred technical solution of the present invention, the installation component includes a connecting collar plate, an outer connecting ring notch, a middle connecting ring plate and an L-shaped plugging notch. The middle connecting ring plate is fixedly connected to the outside of the middle fixed layer plate. The outer connecting ring notch is opened on the outside of the middle connecting ring plate. The number of L-shaped plugging notches is two, and the two L-shaped plugging notches are respectively opened on both sides inside the outer connecting ring notch. The connecting collar plate is fixedly connected to one side of the sealing plate close to the middle connecting ring plate. The number of L-shaped plugging plates is two, and the two L-shaped plugging plates are respectively fixedly connected to both sides of the outside of the connecting collar plate. The two L-shaped plugging plates respectively pass through the upper part of the L-shaped plugging notch and extend into the L-shaped plugging notch. The connecting collar plate is connected to the middle connecting ring plate through the L-shaped plugging plate.
[0006] As a preferred technical solution of the present invention, a pressing component for space compression of diphenylamine placed inside the storage barrel body is arranged outside the middle fixed layer plate. The pressing component includes a pressing plate, two stretching long plates and two stretching sleeve plates. The two stretching long plates are respectively fixedly connected to both sides of the outside of the pressing plate. A plurality of plugging holes are opened on the outside of each stretching long plate. The two stretching sleeve plates are respectively fixedly embedded on both sides of the outside of the middle fixed layer plate. A short plate is fixedly connected to the inside of each stretching sleeve plate. The two stretching long plates respectively slide up and down inside the two stretching sleeve plates through the two short plates. The pressing plate adjusts and moves outside the middle fixed layer plate through the stretching long plates and the stretching sleeve plates. A pressing component for fixing is arranged outside one of the stretching sleeve plates. The pressing component includes a pressing pile and a side vertical plate. The side vertical plate is fixedly connected to the outside of one of the stretching sleeve plates. The pressing pile movably penetrates through the outside of the side vertical plate and the stretching sleeve plate and extends into the stretching sleeve plate. One end of the pressing pile located inside the stretching sleeve plate is plugged into the plugging hole to fix the stretching long plate. A shielding sleeve disc is fixedly connected to the outside of the pressing pile. The shielding sleeve disc is located inside the side vertical plate. A transverse spring is fixedly connected to the side of the shielding sleeve disc facing the inner wall of the side vertical plate. The transverse spring is movably sleeved on the outside of the pressing pile.
[0007] As a preferred technical solution of the present invention, a grasping component for suspending the auxiliary sealing plate and the sealing ring is arranged outside the storage barrel body. The grasping component includes an outer pulling beam plate. The outer pulling beam plate is fixedly connected to the outside of the storage barrel body. The outer pulling beam plate is arranged in a U shape. Vertical notches are opened on both sides inside the outer pulling beam plate. A vertical sliding plate is movably connected to the inside of each vertical notch. One ends of the two vertical sliding plates facing each other are respectively fixedly connected to both sides of the outside of the sealing ring. The sealing ring and the sealing plate move up or down inside the outer pulling beam plate through the vertical sliding plates and the vertical notches. The grasping component further includes a card slot and a rotating clamping plate. The card slot is opened on the outside of the outer pulling beam plate. The rotating clamping plate is rotatably connected to the outside of the sealing ring.
[0008] Compared with the prior art, the present invention can achieve the following beneficial effects:
[0009] 1. By setting a water vapor absorption component and placing the side of the bamboo charcoal placing layer that absorbs water vapor and is stored inside the middle fixed layer, after the bamboo charcoal is placed inside the bamboo charcoal placing layer, the bamboo charcoal is sealed when the inside of the storage barrel is opened to take medicine, and when the sealing ring and the sealing plate are moved downward again and the inside of the storage barrel is sealed, the bamboo charcoal placing layer is rotated so that the side of the bamboo charcoal that absorbs water vapor faces the inside of the storage barrel, thereby reducing the contact time between the bamboo charcoal and the water vapor in the air, effectively improving the moisture absorption and moisture-proof effect of the diphenylamine stored in the storage barrel, and ensuring the long-term storage and placement effect of diphenylamine.
[0010] 2. When it is necessary to take the diphenylamine for use, the sealing plate is driven upward to drive the sealing ring out of the storage barrel body, and the sealing ring drives the vertical sliding plate to move inside the vertical slot. The sealing ring moves upward and simultaneously drives the rotating card plate to move to the outside of the slot. At this time, the rotating card plate is rotated outside the sealing ring and engaged into the inside of the slot. The sealing ring and the sealing plate are fixed inside the outer tension beam plate by the engagement state of the slot and the rotating card plate, and the sealing ring and the sealing plate drive the middle fixed layer plate to be suspended above the storage barrel body, so as to achieve the effect of quickly allowing users to take the diphenylamine stored inside the storage barrel body.
[0011] 3. Drive the middle connecting ring plate with the middle fixed layer plate to move the L-shaped plug-in slot to the position of the L-shaped plug-in plate, insert the connecting ring plate into the inner part of the outer connecting ring slot, and after the connecting ring plate drives the L-shaped plug-in plate to be inserted into the inner part of the L-shaped plug-in slot, rotate the middle fixed layer plate to drive the L-shaped plug-in plate to move to the corner of the L-shaped plug-in slot, so that the middle fixed layer plate is clamped in the lower position of the sealing plate, and when it is necessary to replace the bamboo charcoal inside the bamboo charcoal placement layer plate, drive the middle fixed layer plate to drive the middle connecting ring plate to rotate the L-shaped plug-in plate inside the L-shaped plug-in slot, remove the middle fixed layer plate from the outside of the connecting ring plate and the L-shaped plug-in plate, grab the pull ring plate to make the sealing panel detach upward from the inside of the bamboo charcoal placement layer plate and open the inside of the bamboo charcoal placement layer plate, and then the bamboo charcoal stored in the bamboo charcoal placement layer plate can be replaced, thereby achieving the effect of quickly replacing the bamboo charcoal.
[0012] 4. After separating the sealing plate and the sealing ring by moving them upward from the inside of the storage barrel body, and taking out the diphenylamine stored inside the storage barrel body, the amount of diphenylamine inside the storage barrel body decreases and the void space inside the storage barrel body becomes larger. At this time, when moving the storage barrel body, the diphenylamine stored inside the storage barrel body is likely to collide with each other and cause damage. At this time, by adjusting the position of the bottom plate inside the storage barrel body, driving the stretching long plate by the bottom plate to move inside the stretching sleeve plate to control the depth of the bottom plate inside the storage barrel body, and applying elastic pressure to the shielding sleeve plate by the elastic force provided by the transverse spring to drive the pressing pile to insert into the insertion hole opened outside the stretching long plate, fixing the position of the stretching long plate inside the stretching sleeve plate, so as to achieve the effect of quickly adjusting and fixing the bottom plate. The bottom plate shrinks the void space where the diphenylamine is stored inside the storage barrel body, avoiding the situation that the diphenylamine is damaged by shaking and hitting during transportation. BRIEF DESCRIPTION OF THE DRAWINGS
[0013] Figure 1 is a schematic structural diagram of the present invention;
[0014] Figure 2 is a schematic structural diagram of the storage barrel body of the present invention;
[0015] Figure 3 of the present invention Figure 2 is a schematic side structural diagram of the storage barrel body in the present invention;
[0016] Figure 4 is a schematic structural diagram of the middle layer connecting ring plate of the present invention;
[0017] Figure 5 of the present invention Figure 4 is a schematic bottom view structural diagram of the middle layer connecting ring plate in the present invention;
[0018] Figure 6 is a schematic structural diagram of the sealing ring of the present invention;
[0019] Figure 7 is a schematic structural diagram of the L-shaped insertion slot of the present invention;
[0020] Figure 8 is a schematic structural diagram of the stretching sleeve plate of the present invention;
[0021] Figure 9 is a schematic structural diagram of the pressing pile of the present invention;
[0022] Figure 10 is a schematic structural diagram of the sealing insert panel of the present invention.
[0023] Among them: 10, storage barrel body; 11, sealing ring groove; 12, sealing plate; 13, sealing ring; 14, sealing rubber ring ring; 20, middle layer fixed layer board; 21, pull ring board; 22, sealing insert board; 23, bamboo charcoal placement layer board; 24, rotating roller; 25, round roller; 26, baffle; 30, abutting board; 31, stretching long board; 32, stretching sleeve board; 33, press pile; 34, jack; 35, short board; 36, shielding sleeve disc; 37, lateral spring; 38, side vertical board; 40, outer layer pull beam board; 41, card slot opening; 42, rotating clamping board; 43, vertical slot opening; 44, vertical sliding board; 50, connecting sleeve ring board; 51, outer connecting ring slot opening; 52, middle layer connecting ring board; 53, L-shaped plug-in slot opening; 54, L-shaped plug-in board. Detailed implementation manners
[0024] In order to make the technical means, creative features, achieved purposes and functions of the present invention easy to understand, the present invention will be further described below in conjunction with specific embodiments. However, the following embodiments are only the preferred embodiments of the present invention, not all of them. Based on the embodiments in the implementation manners, other embodiments obtained by those skilled in the art without creative efforts all belong to the protection scope of the present invention. The experimental methods in the following embodiments are all conventional methods unless otherwise specified. The materials, reagents, etc. used in the following embodiments can all be obtained from commercial channels unless otherwise specified.
[0025] Embodiment: As Figure 1 , Figure 2 , Figure 3 and Figure 4A moisture-proof diphenylamine batch storage device is shown, including a storage barrel body 10, a sealing plate 12 and a sealing ring 13. The sealing plate 12 is movably clamped above the outside of the storage barrel body 10. The sealing plate 12 is used to close the inside of the storage barrel body 10. A sealing ring 13 is fixedly connected to the outside of the sealing plate 12. A sealing rubber ring ring 14 is fixedly connected to one side of the outside of the sealing ring 13 close to the storage barrel body 10. A sealing ring groove 11 is opened on one side of the outside of the storage barrel body 10 close to the sealing ring 13. The sealing rubber ring ring 14 is movably clamped inside the sealing ring groove 11. A moisture absorption component for moisture-proofing the diphenylamine placed inside the storage barrel body 10 is arranged outside the sealing plate 12. The moisture absorption component includes a middle-layer fixed layer plate 20 for absorbing moisture and a bamboo charcoal placement layer plate 23. The middle-layer fixed layer plate 20 and the sealing plate 12 are connected by an installation component. Rotating rollers 24 are fixedly connected to both sides of the outside of the bamboo charcoal placement layer plate 23. One end of each of the two rotating rollers 24 away from each other is rotatably connected to both sides inside the middle-layer fixed layer plate 20. The bamboo charcoal placement layer plate 23 rotates inside the middle-layer fixed layer plate 20 through the two rotating rollers 24. The middle-layer fixed layer plate 20 is used to place bamboo charcoal. A sealing insert plate 22 for limiting the bamboo charcoal inside the bamboo charcoal placement layer plate 23 is arranged outside the bamboo charcoal placement layer plate 23. The sealing insert plate 22 is movably clamped inside the bamboo charcoal placement layer plate 23. A pull ring plate 21 for facilitating the removal of the sealing insert plate 22 from the inside of the bamboo charcoal placement layer plate 23 is fixedly connected to one side of the sealing insert plate 22 away from the bamboo charcoal placement layer plate 23. Blocking components for limiting the rotation angle of the bamboo charcoal placement layer plate 23 are arranged on both sides of the outside of the middle-layer fixed layer plate 20. Each blocking component includes a round roller 25 and a baffle 26. The round roller 25 is fixedly connected to the outside of the middle-layer fixed layer plate 20. The baffle 26 is fixedly connected to the outside of the round roller 25. The baffle 26 rotates outside the middle-layer fixed layer plate 20 through the round roller 25. The baffle 26 fits on the outside of the bamboo charcoal placement layer plate 23. One side of the sealing plate 12 close to the middle-layer fixed layer plate 20 is hollow, and the bamboo charcoal placement layer plate 23 will not be blocked by the sealing plate 12 when rotating.
[0026] The installation component includes a connecting collar plate 50, an outer connecting ring notch 51, a middle connecting ring plate 52, an L-shaped insertion notch 53 and an L-shaped insertion plate 54. The middle connecting ring plate 52 is fixedly connected to the outside of the middle fixed layer plate 20. The outer connecting ring notch 51 is opened on the outside of the middle connecting ring plate 52. The number of L-shaped insertion notches 53 is two, and the two L-shaped insertion notches 53 are respectively opened on both sides inside the outer connecting ring notch 51. The connecting collar plate 50 is fixedly connected to one side of the sealing plate 12 close to the middle connecting ring plate 52. The number of L-shaped insertion plates 54 is two, and the two L-shaped insertion plates 54 are respectively fixedly connected to both sides of the outside of the connecting collar plate 50. The two L-shaped insertion plates 54 respectively pass through the upper part of the L-shaped insertion notch 53 and extend into the L-shaped insertion notch 53. The connecting collar plate 50 is connected to the middle connecting ring plate 52 through the L-shaped insertion plates 54.
[0027] An abutting component for spatially compressing diphenylamine placed inside the storage barrel body 10 is arranged outside the middle fixed layer plate 20. The abutting component includes an abutting plate 30, two stretching long plates 31 and two stretching sleeve plates 32. The two stretching long plates 31 are respectively fixedly connected to both sides of the outside of the abutting plate 30. A plurality of insertion holes 34 for insertion are opened on the outside of each stretching long plate 31. The two stretching sleeve plates 32 are respectively fixedly embedded on both sides of the outside of the middle fixed layer plate 20. A short plate 35 is fixedly connected to the inside of each stretching sleeve plate 32. The two stretching long plates 31 respectively slide up and down inside the two stretching sleeve plates 32 through the two short plates 35. The abutting plate 30 adjusts and moves outside the middle fixed layer plate 20 through the stretching long plates 31 and the stretching sleeve plates 32. A pressing component for fixing is arranged outside one of the stretching sleeve plates 32. The pressing component includes a pressing pile 33 and a side vertical plate 38. The side vertical plate 38 is fixedly connected to the outside of one of the stretching sleeve plates 32. The pressing pile 33 movably penetrates through the outside of the side vertical plate 38 and the stretching sleeve plate 32 and extends into the stretching sleeve plate 32. One end of the pressing pile 33 located inside the stretching sleeve plate 32 is inserted into the insertion hole 34 to fix the stretching long plate 31. A shielding sleeve disc 36 is fixedly connected to the outside of the pressing pile 33. The shielding sleeve disc 36 is located inside the side vertical plate 38. A transverse spring 37 is fixedly connected to the side of the shielding sleeve disc 36 facing the inner wall of the side vertical plate 38. The transverse spring 37 is movably sleeved on the outside of the pressing pile 33.
[0028] An auxiliary sealing plate 12 and a grabbing component for suspending the sealing ring 13 are arranged outside the storage barrel body 10. The grabbing component includes an outer layer pulling beam plate 40, and the outer layer pulling beam plate 40 is fixedly connected to the outside of the storage barrel body 10. The outer layer pulling beam plate 40 is arranged in a U shape. Vertical slots 43 are opened on both sides inside the outer layer pulling beam plate 40. A vertical sliding plate 44 is movably connected inside each vertical slot 43. One ends of the two vertical sliding plates 44 facing each other are respectively fixedly connected to both sides outside the sealing ring 13. The sealing ring 13 and the sealing plate 12 move up or down inside the outer layer pulling beam plate 40 through the vertical sliding plates 44 and the vertical slots 43. The grabbing component further includes a card slot 41 and a rotating clamping plate 42. The card slot 41 is opened on the outside of the outer layer pulling beam plate 40, and the rotating clamping plate 42 is rotatably connected to the outside of the sealing ring 13.
[0029] Working principle:
[0030] When in use: In the first step, when aniline diphenylamine needs to be taken and used, the sealing plate 12 is lifted upward to drive the sealing ring 13 out of the storage barrel body 10. The sealing ring 13 drives the vertical sliding plate 44 to move inside the vertical slot 43. When the sealing ring 13 moves upward, it synchronously drives the rotating clamping plate 42 to move to the outside of the card slot 41. At this time, the rotating clamping plate 42 is rotated outside the sealing ring 13 and clamped into the inside of the card slot 41. The positions of the sealing ring 13 and the sealing plate 12 inside the outer layer pulling beam plate 40 are fixed by the clamping state of the card slot 41 and the rotating clamping plate 42, and the sealing ring 13 and the sealing plate 12 drive the middle layer fixed layer plate 20 to be suspended above the storage barrel body 10.
[0031] In the second step, after the sealing plate 12 and the sealing ring 13 drive the middle layer fixed layer plate 20 to be suspended above the storage barrel body 10, the baffle 26 is rotated around the round roller 25 in a direction away from the bamboo charcoal placement layer plate 23 and separated from the outside of the bamboo charcoal placement layer plate 23. At this time, the bamboo charcoal placement layer plate 23 is rotated inside the middle layer fixed layer plate 20 with the two side rotating rollers 24 as the center, and the side of the bamboo charcoal placement layer plate 23 for placing bamboo charcoal to absorb water vapor is received inside the middle layer fixed layer plate 20. After the bamboo charcoal is placed inside the bamboo charcoal placement layer plate 23, when taking medicine inside the storage barrel body 10, the bamboo charcoal is sealed. At the same time, when the sealing ring 13 and the sealing plate 12 are moved downward again and the inside of the storage barrel body 10 is closed, the bamboo charcoal placement layer plate 23 is rotated so that the side of the bamboo charcoal for absorbing water vapor faces the inside of the storage barrel body 10. Thus, while reducing the contact time between the bamboo charcoal and the water vapor in the air, the moisture absorption and moisture-proof effect of storing aniline diphenylamine inside the storage barrel body 10 is effectively improved, ensuring the long-term storage effect of aniline diphenylamine.
[0032] In the third step, by driving the middle-layer fixed layer board 20 to drive the middle-layer connecting ring board 52, the L-shaped insertion slot opening 53 is moved to the position of the L-shaped insertion board 54. After the connecting sleeve ring board 50 is inserted into the outer connecting ring slot opening 51 and the connecting sleeve ring board 50 drives the L-shaped insertion board 54 to be inserted into the L-shaped insertion slot opening 53, the middle-layer fixed layer board 20 is rotated to drive the L-shaped insertion board 54 to move to the corner of the L-shaped insertion slot opening 53, so as to clamp the middle-layer fixed layer board 20 below the sealing board 12. When it is necessary to replace the bamboo charcoal inside the bamboo charcoal placement layer board 23, after the middle-layer fixed layer board 20 drives the middle-layer connecting ring board 52 to rotate the L-shaped insertion board 54 inside the L-shaped insertion slot opening 53, the middle-layer fixed layer board 20 is taken out from the outside of the connecting sleeve ring board 50 and the L-shaped insertion board 54. Then, by grasping the pull ring board 21, the sealing inlay board 22 is pulled upward to disengage from the inside of the bamboo charcoal placement layer board 23 and the inside of the bamboo charcoal placement layer board 23 is opened. At this time, the bamboo charcoal stored inside the bamboo charcoal placement layer board 23 can be replaced, thus achieving the effect of quickly replacing the bamboo charcoal.
[0033] In the fourth step, after the sealing board 12 and the sealing ring 13 are moved upward to be separated from the inside of the storage barrel body 10, and diphenylamine stored inside the storage barrel body 10 is taken out, the amount of diphenylamine inside the storage barrel body 10 decreases and the void space inside the storage barrel body 10 becomes larger. At this time, when the storage barrel body 10 is moved, the diphenylamine stored inside the storage barrel body 10 is likely to collide with each other and cause damage. At this time, by adjusting the position of the resisting board 30 inside the storage barrel body 10, the resisting board 30 drives the stretching long board 31 to move inside the stretching sleeve board 32 to control the depth of the resisting board 30 inside the storage barrel body 10. And the elastic force provided by the transverse spring 37 exerts an elastic pressure on the shielding sleeve disc 36 to drive the pressing pile 33 to be inserted into the insertion hole 34 opened outside the stretching long board 31, so as to fix the position of the stretching long board 31 inside the stretching sleeve board 32, thus achieving the effect of quickly adjusting and fixing the resisting board 30. The resisting board 30 contracts the void space for storing diphenylamine inside the storage barrel body 10, avoiding the situation that diphenylamine is damaged by shaking and impact during transportation.
[0034] The embodiments of the present invention have been described in detail above with reference to the accompanying drawings. However, the present invention is not limited thereto. Various changes can be made without departing from the spirit of the present invention within the scope of knowledge possessed by those skilled in the art to which the present invention pertains.
Claims
1. A batch storage device for diphenylamine that can prevent moisture, comprising a storage barrel body (10), a sealing plate (12) and a sealing ring (13). The sealing plate (12) is movably clamped above the outside of the storage barrel body (10), and is characterized in that, An annular seal (13) is fixedly connected to the outside of the sealing plate (12). A sealing rubber ring (14) is fixedly connected to one side of the outside of the annular seal (13) close to the storage barrel body (10). A sealing ring groove (11) is formed on one side of the outside of the storage barrel body (10) close to the annular seal (13). The sealing rubber ring (14) is movably engaged inside the sealing ring groove (11). A water vapor absorption component for moisture-proofing diphenylamine placed inside the storage barrel body (10) is arranged outside the sealing plate (12). The water vapor absorption component includes a middle-layer fixed layer plate (20) and a bamboo charcoal placement layer plate (23) for absorbing water vapor. The middle-layer fixed layer plate (20) and the sealing plate (12) are connected through an installation component. Rotating rollers (24) are fixedly connected to both sides of the outside of the bamboo charcoal placement layer plate (23). One end of each of the two rotating rollers (24) away from each other is rotatably connected to both sides inside the middle-layer fixed layer plate (20). The bamboo charcoal placement layer plate (23) rotates inside the middle-layer fixed layer plate (20) through the two rotating rollers (24). The middle-layer fixed layer plate (20) is used for placing bamboo charcoal. A sealing panel (22) for restricting bamboo charcoal inside the bamboo charcoal placement layer plate (23) is arranged outside the bamboo charcoal placement layer plate (23). The sealing panel (22) is movably engaged inside the bamboo charcoal placement layer plate (23). A pull ring plate (21) for facilitating the removal of the sealing panel (22) from inside the bamboo charcoal placement layer plate (23) is fixedly connected to one side of the sealing panel (22) away from the bamboo charcoal placement layer plate (23).
2. The batch storage device for diphenylamine capable of preventing moisture according to claim 1, characterized in that, Blocking components for restricting the rotation angle of the bamboo charcoal placement layer plate (23) are arranged on both sides of the outside of the middle-layer fixed layer plate (20). Each blocking component includes a round roller (25) and a baffle (26). The round roller (25) is fixedly connected to the outside of the middle-layer fixed layer plate (20). The baffle (26) is fixedly connected to the outside of the round roller (25). The baffle (26) rotates outside the middle-layer fixed layer plate (20) through the round roller (25). The baffle (26) is attached to the outside of the bamboo charcoal placement layer plate (23).
3. A batch storage device for diphenylamine that can prevent moisture, characterized in that, The installation component includes a connecting sleeve ring plate (50), an outer connecting ring groove opening (51), a middle-layer connecting ring plate (52), and an L-shaped insertion groove opening (53). The middle-layer connecting ring plate (52) is fixedly connected to the outside of the middle-layer fixed layer plate (20). The outer connecting ring groove opening (51) is formed on the outside of the middle-layer connecting ring plate (52). The number of L-shaped insertion groove openings (53) is two. The two L-shaped insertion groove openings (53) are respectively formed on both sides inside the outer connecting ring groove opening (51). The connecting sleeve ring plate (50) is fixedly connected to one side of the outside of the sealing plate (12) close to the middle-layer connecting ring plate (52). The number of L-shaped insertion plates (54) is two. The two L-shaped insertion plates (54) are respectively fixedly connected to both sides of the outside of the connecting sleeve ring plate (50). The two L-shaped insertion plates (54) respectively pass through the upper part of the L-shaped insertion groove opening (53) and extend into the L-shaped insertion groove opening (53). The connecting sleeve ring plate (50) is connected to the middle-layer connecting ring plate (52) through the L-shaped insertion plates (54).
4. A batch storage device for diphenylamine that can prevent moisture, characterized in that, An external pressure component for spatially compressing diphenylamine placed inside the storage barrel body (10) is provided outside the middle fixed layer board (20). The pressure component includes a pressure plate (30), two stretching long plates (31), and two stretching sleeve plates (32). The two stretching long plates (31) are respectively fixedly connected to both sides outside the pressure plate (30). A plurality of insertion holes (34) for insertion are formed outside each stretching long plate (31). The two stretching sleeve plates (32) are respectively fixedly embedded in both sides outside the middle fixed layer board (20). A short plate (35) is fixedly connected to the inside of each stretching sleeve plate (32). The two stretching long plates (31) slide up and down inside the two stretching sleeve plates (32) respectively through the two short plates (35). The pressure plate (30) adjusts its position outside the middle fixed layer board (20) through the stretching long plates (31) and the stretching sleeve plates (32).
5. A batch storage device for diphenylamine that can prevent moisture, characterized in that, A pressing component for fixing is provided outside the stretching sleeve plate (32) on one side. The pressing component includes a pressing pile (33) and a side vertical plate (38). The side vertical plate (38) is fixedly connected to the outside of the stretching sleeve plate (32) on one side. The pressing pile (33) movably penetrates through the outside of the side vertical plate (38) and the stretching sleeve plate (32) and extends into the inside of the stretching sleeve plate (32). One end of the pressing pile (33) located inside the stretching sleeve plate (32) is inserted into the insertion hole (34) to fix the stretching long plate (31).
6. The batch storage device for diphenylamine capable of preventing moisture according to claim 5, wherein, A shielding sleeve disc (36) is fixedly connected to the outside of the pressing pile (33). The shielding sleeve disc (36) is located inside the side vertical plate (38). A transverse spring (37) is fixedly connected to one side of the shielding sleeve disc (36) facing the inner wall of the side vertical plate (38). The transverse spring (37) is movably sleeved on the outside of the pressing pile (33).
7. A batch storage device for diphenylamine that can prevent moisture, characterized in that, A grasping component for suspending the auxiliary sealing plate (12) and the sealing ring (13) is provided outside the storage barrel body (10). The grasping component includes an outer layer pulling beam plate (40). The outer layer pulling beam plate (40) is fixedly connected to the outside of the storage barrel body (10). The outer layer pulling beam plate (40) is U-shaped. Vertical slot openings (43) are formed on both sides inside the outer layer pulling beam plate (40). A vertical sliding plate (44) is movably connected to the inside of each vertical slot opening (43). One ends of the two vertical sliding plates (44) facing each other are respectively fixedly connected to both sides outside the sealing ring (13). The sealing ring (13) and the sealing plate (12) move up or down inside the outer layer pulling beam plate (40) through the vertical sliding plates (44) and the vertical slot openings (43).
8. A moisture-proof diphenylamine batch storage device according to claim 7, characterized in that, The grasping component further includes a card slot opening (41) and a rotating clamping plate (42). The card slot opening (41) is formed on the outside of the outer layer pulling beam plate (40). The rotating clamping plate (42) is rotatably connected to the outside of the sealing ring (13).
Citation Information
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