CN215901651U - Movable coating production equipment - Google Patents

Movable coating production equipment Download PDF

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Publication number
CN215901651U
CN215901651U CN202122024238.6U CN202122024238U CN215901651U CN 215901651 U CN215901651 U CN 215901651U CN 202122024238 U CN202122024238 U CN 202122024238U CN 215901651 U CN215901651 U CN 215901651U
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China
Prior art keywords
gland
barrel
top cap
fixed top
frame
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CN202122024238.6U
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Chinese (zh)
Inventor
施林生
陈增红
宋康群
何刚
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Changzhou Hualing New Material Co ltd
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Changzhou Hualing New Material Co ltd
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Abstract

The utility model relates to a portable coating production facility belongs to the technical field of coating production processing equipment, and it includes batching cauldron, (mixing) shaft and rotation motor, still includes the frame, be equipped with lift cylinder in the frame, lift cylinder's the flexible direction of piston rod is the same with the length direction of (mixing) shaft, rotate the motor and locate in the frame, the (mixing) shaft rotates with the frame to be connected, the batching cauldron includes fixed top cap and barrel, fixed top cap lid is located on the barrel, the (mixing) shaft rotates with fixed top cap to be connected. This application has cancelled the charging tube of direct connection batching cauldron, when production, moves the barrel and carries out the raw materials interpolation to the special household utensils department of splendid attire raw materials, has reduced because the liquid material in the longer pipeline solidifies and gives the purity influence that the liquid material that flows caused.

Description

Movable coating production equipment
Technical Field
The application relates to the technical field of coating production and processing equipment, in particular to movable coating production equipment.
Background
The batching kettle is an important production processing device in paint production, and can be used for mixing and batching solid-liquid raw materials. The batching kettle consists of a stirrer and a cylinder body.
The batching cauldron intercommunication has the filling tube that is used for adding liquid raw materials in the cauldron, and the one end that the batching cauldron was kept away from to the filling tube is connected with the container of depositing the raw materials, has the production place of a plurality of batching cauldron simultaneously, and the filling tube in the place often is provided with many.
With respect to the related art among the above, the inventors consider that the following drawbacks exist: to the batching cauldron far away from the container of depositing the raw materials, the filling tube distance of intercommunication between the two is also longer, and when the liquid material was static in the filling tube, part material will solidify in filling tube inner wall upper tube, when treating that reinforced next time, the material that solidifies in the filling tube will cause the influence to the purity of the liquid material of circulation.
SUMMERY OF THE UTILITY MODEL
In order to improve the above-mentioned problems, the present application provides a mobile dope production apparatus.
The application provides a portable coating production facility adopts following technical scheme:
the utility model provides a portable coating production facility, includes batching cauldron, (mixing) shaft and rotation motor, still includes the frame, be equipped with lift cylinder in the frame, lift cylinder's the flexible direction of piston rod is the same with the length direction of (mixing) shaft, it locates in the frame to rotate the motor, the (mixing) shaft rotates with the frame to be connected, the batching cauldron includes fixed top cap and barrel, fixed top cap lid is located on the barrel, the (mixing) shaft rotates with fixed top cap to be connected.
Through adopting above-mentioned technical scheme, when reinforced, pass the barrel and carry out the raw materials interpolation to the special household utensils department of splendid attire raw materials, reduced because the liquid material in the longer pipeline solidifies and the purity influence that causes for the liquid material that flows.
Optionally, still include interim top cap, main charge door has been seted up to interim top cap, the cooperation can be dismantled with the nozzle of barrel to interim top cap.
Through adopting above-mentioned technical scheme, interim top cap is used for moving the operation with the barrel closing cap at the barrel, has reduced the barrel and has removed the in-process because the liquid raw materials that jolts and take place spatters the raw materials loss that causes outward, when reinforced, need not to open interim top cap alright accomplish the feeding process, improves the convenience of operation.
Optionally, the fixed top cover is provided with an auxiliary feed inlet.
Through adopting above-mentioned technical scheme, when needing to add a small amount of raw materials temporarily, open vice charge door and can operate, need not to operate lift cylinder again and open fixed top cap, vice charge door has improved the fault-tolerant rate and the strain capacity of this equipment.
Optionally, the frame is equipped with positioning groove, positioning groove's notch is towards the lateral wall of barrel, positioning groove's tank bottom and the global butt of barrel.
By adopting the technical scheme, the cylinder body which completes charging is convenient to position when being placed at the designated position in the rack.
Optionally, the frame is provided with a filter vat, the fixed top cover is provided with an exhaust port, and an exhaust pipe is communicated between the filter vat and the exhaust port.
Through adopting above-mentioned technical scheme, the organic waste gas that produces in the barrel when having reduced the material and mixing discharges in to the air, and the filter core of filter vat can be held back partial powder raise dust simultaneously, repeatedly usable after the reaction to this utilization ratio that has improved the raw materials.
Optionally, a locking cover assembly is arranged on the barrel and comprises a pressing cover sliding block, the pressing cover sliding block is connected with the barrel in a sliding mode, and the pressing cover sliding block is abutted to one side, away from the barrel, of the fixed top cover.
Through adopting above-mentioned technical scheme, the gland slider removes to when with fixed top cap butt, thereby fixed top cap receives pressure can be with the tight shutoff of nozzle of barrel, and fixed top cap is difficult for taking place relative movement with the barrel simultaneously.
Optionally, the locking cover assembly further comprises a locking cover screw rod and a locking cover ring, the locking cover screw rod is fixedly connected with the gland sliding block, the length direction of the locking cover screw rod is consistent with the sliding direction of the gland sliding block, the locking cover ring rotates relative to the barrel, and the locking cover screw rod coaxially penetrates through the locking cover ring and is in threaded fit with the locking cover ring and the gland sliding block.
Optionally, lock lid ring and gland slider all are equipped with a plurality ofly, the lock lid subassembly still includes synchronous ring gear, the outer peripheral face fixedly connected with gear portion of lock lid ring, synchronous ring gear and gear portion meshing.
By adopting the technical scheme, the synchronous gear ring can be rotated to simultaneously control all the gland rings to synchronously rotate, and the gland sliding blocks correspondingly and simultaneously move.
Optionally, fixedly connected with gland sleeve on the barrel, gland sleeve supplies the gland slider to slide, wear to be equipped with the stopping round pin on the gland sleeve, the lateral wall of the telescopic part of gland is inserted to the stopping round pin and one side butt that the gland slider deviates from the barrel axis.
Through adopting above-mentioned technical scheme, insert the back pin, the gland slider can't keep away from the axis removal of barrel, then the tight relation of clamp of gland subassembly to fixed top cap and barrel is more stable.
In summary, the present application includes at least one of the following beneficial technical effects:
1. through the mutual separation arrangement of the cylinder body, the fixed top cover and the stirring shaft, the cylinder body can be moved to a special vessel for containing raw materials for adding the raw materials, so that the influence on the purity of flowing liquid materials due to the solidification of the liquid materials in a longer pipeline is reduced;
2. through the setting of interim top cap, through interim top cap with the barrel closing cap when the barrel removes the operation, reduced the barrel and removed the in-process because the liquid raw materials that jolts and take place spatters the raw materials loss that causes outward.
Drawings
Fig. 1 is a schematic structural diagram for embodying a mobile dope production apparatus in the embodiment of the present application.
Fig. 2 is a schematic diagram for embodying the working principle of the locking cover assembly in the embodiment of the present application.
Fig. 3 is a partially enlarged view of a portion a in fig. 2.
Description of reference numerals: 1. a frame; 11. a lift cylinder; 12. positioning blocks; 121. a positioning groove; 2. a stirring shaft; 21. rotating the motor; 3. a batching kettle; 31. a barrel; 32. fixing the top cover; 322. an auxiliary feed inlet; 323. an exhaust port; 33. a temporary top cover; 331. a main feed inlet; 34. a universal wheel; 35. a discharge pipe; 4. a filter vat; 41. an exhaust pipe; 5. a locking cover assembly; 51. a synchronizing ring gear; 52. a cover locking ring; 521. a gear portion; 53. a gland sleeve; 54. a gland slide block; 541. a cover locking screw rod; 55. and a backstop pin.
Detailed Description
The present application is described in further detail below with reference to figures 1-3.
The embodiment of the application discloses a mobile paint production device, which comprises a rack 1 and a batching kettle 3, wherein a lifting oil cylinder 11, a rotating motor 21 and a stirring shaft 2 are arranged on the rack 1, a piston rod of the lifting oil cylinder 11 moves along the vertical direction, and the rotating motor 21 and the stirring shaft 2 are both fixed at the end part of the piston rod of the lifting oil cylinder 11 and are respectively positioned at two sides of the length direction of the piston rod of the lifting oil cylinder 11; the stirring shaft 2 is rotationally connected with the frame 1, and the rotating motor 21 is used for driving the stirring shaft 2 to rotate. The batching kettle 3 comprises a cylinder 31 and a fixed top cover 32, wherein the cylinder 31 is not directly connected with the frame 1, the fixed top cover 32 is coaxially and rotatably connected with the stirring shaft 2, and one end, far away from the frame 1, of the stirring shaft 2 extends into the cylinder 31. When the piston rod of the lifting oil cylinder 11 is at the descending final stroke point, the fixed top cover 32 just seals the cylinder 31; when the piston rod of the lifting oil cylinder 11 runs to the upward end point, the stirring shaft 2 is completely positioned outside the cylinder body 31.
As shown in fig. 1 and 2, the bottom of the cylinder 31 is provided with universal wheels 34. When the raw material is required to be added into the cylinder 31, the cylinder 31 and the fixed top cover 32 are relatively separated, and then the cylinder 31 is moved to the raw material adding position. The cylinder 31 is additionally provided with a temporary cap 33, and the temporary cap 33 is used for covering the cylinder 31 when the cylinder 31 is moved. The temporary top cover 33 is provided with the main feeding port 331, so that the feeding process can be completed without opening the temporary top cover 33 in the process that the barrel 31 leaves the rack 1, the operation convenience is improved, and the raw material loss caused by the outward splashing of the liquid raw material due to bumping in the moving process of the barrel 31 is reduced.
As shown in fig. 1, after the raw material is added, the barrel 31 is moved to a designated position below the rack 1, a positioning block 12 is laterally fixed on the rack 1, a positioning groove 121 is laterally formed on the positioning block 12, the barrel 31 is cylindrical, and the groove surface of the positioning groove 121 is arc-shaped corresponding to the outer wall of the barrel 31. When the groove surface of the positioning groove 121 abuts against the cylinder 31, the cylinder 31 reaches the correct position, and the lifting cylinder 11 drives the stirring shaft 2 to descend until the edge of the fixed top cover 32 abuts against the top edge of the cylinder 31. The end face of the fixed top cover 32, which faces the cylinder 31, is adhered with a rubber sealing ring, and when the fixed top cover 32 is abutted against the cylinder 31, the sealing ring fills a gap between the fixed top cover 32 and the cylinder 31, so that the sealing property of the batching kettle 3 is improved, and the surface of the fixed top cover 32, which is abutted against the cylinder 31, is protected; meanwhile, the sealing ring increases the friction force between the fixed top cover 32 and the cylinder 31, so that the fixed top cover 32 and the cylinder 31 are not easy to slide relatively in the working process of the batching kettle 3.
As shown in fig. 1, 2 and 3, the cylinder 31 is provided with a locking cap assembly 5, the locking cap assembly 5 can improve the matching coaxiality and the matching tightness of the cylinder 31 and the fixed top cap 32 or the temporary top cap 32, and the locking cap assembly 5 comprises a synchronizing gear ring 51, a locking cap ring 52, a gland sleeve 53 and a gland slider 54. The four gland sleeves 53 are welded and fixed with the cylinder body 31, the gland sliding blocks 54 slide in the gland sleeves 53 in a matched mode, the four gland sleeves 53 are arranged in an annular array mode by taking the axis of the cylinder body 31 as the center, and the axis of the cylinder body 31 and the axis of each gland sleeve 53 are coplanar and perpendicular to each other respectively. The cover locking ring 52 is rotatably connected with the gland sleeve 53, the rotation axis of the cover locking ring 52 coincides with the axis of the gland sleeve 53, the cover locking ring 52 is located on one side of the gland sleeve 53, which is far away from the axis of the cylinder 31, the gland slider 54 is fixedly connected with a cover locking screw 541, the cover locking screw 541 coaxially penetrates through the cover locking ring 52 and is in threaded fit with the cover locking ring 52, the cross section of the inner cavity of the gland sleeve 53 is square, namely, when the cover locking ring 52 rotates, the cover locking screw 541 moves together with the gland slider 54.
As shown in fig. 2 and 3, the synchronizing gear ring 51 is sleeved outside the cylinder 31 and coaxially and rotatably connected with the cylinder 31, one side of the outer ring of the synchronizing gear ring 51 is a bevel gear, one side of the outer ring of the lock cover ring 52 is integrally formed with a gear portion 521, the gear portion 521 is a bevel gear meshed with the synchronizing gear ring 51, and the rotation of the synchronizing gear ring 51 drives all the lock cover rings 52 to synchronously rotate. One side of the gland sliding block 54 close to the axis of the cylinder 31 is a wedge surface, the gland sliding block 54 can move towards the fixed top cover 32 or the temporary top cover 33 until the wedge surface of the gland sliding block 54 is abutted against the top edge of the fixed top cover 32 or the temporary top cover 33, and the lock cover assembly 5 is used as a clamp at the moment, so that the joint relation between the cylinder 31 and the fixed top cover 32 or the temporary top cover 33 is tighter and more stable. The locking cover assembly 5 further comprises a stopping pin 55, the stopping pin 55 can be arranged on any one of the gland sleeves 53 in a penetrating manner, the length direction of the stopping pin 55 is perpendicular to that of the gland sleeve 53, when the gland slide block 54 abuts against the fixed top cover 32 or the temporary top cover 33, the side wall of the part, inserted into the gland sleeve 53, of the stopping pin 55 can abut against one side, facing the locking cover screw rod 541, of the gland slide block 54, at the moment, the stopping pin 55 plays a stopping limiting role on the gland slide block 54, and the mutual clamping state of the cylinder 31 and the fixed top cover 32 or the temporary top cover 33 by the locking cover assembly 5 is more stable.
As shown in fig. 1, an auxiliary feed opening 322 is provided on the fixed top cap 32, and the auxiliary feed opening 322 is in a sealed state during normal production. When a small amount of raw materials need to be temporarily added, the operation can be carried out by opening the auxiliary feed opening 322, the fixed top cover 32 is not required to be opened by operating the lifting oil cylinder 11, and the fault tolerance and the strain capacity of the equipment are improved by the auxiliary feed opening 322.
As shown in fig. 1, in order to improve the environmental protection performance of the device, an exhaust port 323 is formed in the fixed top cover 32, a filter vat 4 is arranged on the frame 1, the filter vat 4 is communicated with the exhaust port 323 through an exhaust pipe 41, the exhaust gas generated in the stirring process is intensively exhausted, the powder dust contained in the gas is intercepted, and the intercepted powder dust can be recycled to improve the utilization rate of the raw material.
As shown in fig. 1, a material discharging pipe 35 for discharging the material is fixedly connected to the bottom of the cylinder 31, and the material discharging pipe 35 facilitates the discharge of the processed material from the bottom of the cylinder 31 and also discharges water for cleaning the inner wall of the cylinder 31.
The implementation principle of the mobile paint production equipment in the embodiment of the application is as follows:
the stirring shaft 2 and the fixed top cover 32 are separated from the cylinder body 31 through the lifting oil cylinder 11, and the cylinder body 31 is pushed to a liquid raw material adding position to add raw materials; after the liquid raw material is added, the cylinder body 31 is pushed back into the rack 1, after the positioning block 12 is correctly positioned, the lifting oil cylinder 11 lowers the stirring shaft 2 until the fixed top cover 32 seals the cylinder body 31, the feeding process is completed, the locking cover assembly 5 is adjusted to enable the fixed top cover 32 to tightly seal the cylinder body 31, and the stirring processing can be started by starting the rotating motor 21.
The embodiments of the present invention are preferred embodiments of the present application, and the scope of protection of the present application is not limited by the embodiments, so: all equivalent changes made according to the structure, shape and principle of the present application shall be covered by the protection scope of the present application.

Claims (9)

1. The utility model provides a portable coating production facility, includes batching cauldron (3), (mixing) shaft (2) and rotation motor (21), its characterized in that: still include frame (1), be equipped with lift cylinder (11) on frame (1), the flexible direction of piston rod of lift cylinder (11) is the same with the length direction of (mixing) shaft (2), rotate motor (21) and locate on frame (1), mixing shaft (2) rotate with frame (1) and are connected, batching cauldron (3) are including fixed top cap (32) and barrel (31), fixed top cap (32) lid is located on barrel (31), mixing shaft (2) rotate with fixed top cap (32) and are connected.
2. A mobile paint production facility according to claim 1, wherein: still include interim top cap (33), main charge door (331) have been seted up in interim top cap (33), the nozzle detachable fit of interim top cap (33) and barrel (31).
3. A mobile paint production facility according to claim 1, wherein: the fixed top cover (32) is provided with an auxiliary feed inlet (322).
4. A mobile paint production facility according to claim 1, wherein: frame (1) is equipped with positioning groove (121), the notch of positioning groove (121) is towards the lateral wall of barrel (31), the tank bottom of positioning groove (121) and the global butt of barrel (31).
5. A mobile paint production facility according to claim 1, wherein: the frame (1) is equipped with filter vat (4), gas vent (323) have been seted up in fixed top cap (32), it has blast pipe (41) to communicate between filter vat (4) and gas vent (323).
6. A mobile paint production facility according to claim 1, wherein: be equipped with locking closure subassembly (5) on barrel (31), locking closure subassembly (5) are including gland slider (54), gland slider (54) slide with barrel (31) and be connected, gland slider (54) and fixed top cap (32) deviate from one side butt of barrel (31).
7. A mobile paint production facility according to claim 6, wherein: the locking cover assembly (5) further comprises a locking cover screw rod (541) and a locking cover ring (52), the locking cover screw rod (541) is fixedly connected with the gland sliding block (54), the length direction of the locking cover screw rod (541) is consistent with the sliding direction of the gland sliding block (54), the locking cover ring (52) rotates relative to the barrel (31), and the locking cover screw rod (541) coaxially penetrates through the locking cover ring (52) and is in threaded fit with the locking cover ring and the gland sliding block.
8. A mobile paint production facility according to claim 7, wherein: the gland cover assembly is characterized in that the gland cover ring (52) and the gland cover sliding block (54) are both provided with a plurality of parts, the gland cover assembly (5) further comprises a synchronous gear ring (51), the peripheral surface of the gland cover ring (52) is fixedly connected with a gear part (521), and the synchronous gear ring (51) is meshed with the gear part (521).
9. A mobile paint production facility according to claim 7, wherein: fixedly connected with gland sleeve (53) on barrel (31), gland sleeve (53) supply gland slider (54) to slide, wear to be equipped with stopping round pin (55) on gland sleeve (53), the lateral wall of the part that inserts gland sleeve (53) is inserted with gland slider (54) to deviate from the one side butt of barrel (31) axis to stopping round pin (55).
CN202122024238.6U 2021-08-25 2021-08-25 Movable coating production equipment Active CN215901651U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202122024238.6U CN215901651U (en) 2021-08-25 2021-08-25 Movable coating production equipment

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202122024238.6U CN215901651U (en) 2021-08-25 2021-08-25 Movable coating production equipment

Publications (1)

Publication Number Publication Date
CN215901651U true CN215901651U (en) 2022-02-25

Family

ID=80292646

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202122024238.6U Active CN215901651U (en) 2021-08-25 2021-08-25 Movable coating production equipment

Country Status (1)

Country Link
CN (1) CN215901651U (en)

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