CN215028491U - Sealed production jar that glues - Google Patents

Sealed production jar that glues Download PDF

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Publication number
CN215028491U
CN215028491U CN202121234367.1U CN202121234367U CN215028491U CN 215028491 U CN215028491 U CN 215028491U CN 202121234367 U CN202121234367 U CN 202121234367U CN 215028491 U CN215028491 U CN 215028491U
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China
Prior art keywords
tank
jar
development
development tank
gear
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CN202121234367.1U
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Inventor
樊金禹
朱洪志
孙荣
李颖
鲍发凯
孙文超
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High Speed Materials Storage And Transportation Co ltd Shandong
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High Speed Materials Storage And Transportation Co ltd Shandong
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Abstract

The utility model discloses a sealed glue production jar, including development jar, heated board and heat preservation cotton, the feed inlet is installed at the top of development jar, the top avris of development jar is provided with the oil inlet, the motor is installed on the top of development jar, install the first awl tooth with second awl tooth engaged with on the vertical axis, the top center department of development jar runs through and installs the lifting rod, and both are perpendicular sliding connection to inside lifting rod top and the cover frame fixed connection who is hollow structure, the bottom mounting of puddler is in the pivot, and rotates to connect and be provided with the discharge gate in the pivot both sides of development bottom of the jar. This sealed glue production jar uses frame shape stirring structure to replace traditional paddle stirring structure, the furthest has reduced the existence in stirring dead angle region to through the use of device box isotructure, can carry out more efficient heating to the material in the jar of developing, improved sealed production efficiency who glues greatly.

Description

Sealed production jar that glues
Technical Field
The utility model relates to a sealed production technical field that glues specifically is a sealed production jar that glues.
Background
The action objects of the sealants are different, the property characteristics of the sealants are different, the sealant applied to asphalt pavement cracking is one of a plurality of sealants, and the process flow of the sealant during production can be roughly divided into the following processes: mixing raw materials in proportion, swelling, shearing by a colloid mill, stirring, developing and premixing in a development tank, and the like, wherein the development tank is important production tank equipment in the production process of the sealant, and the materials are stirred and developed at the temperature of 200 ℃ through mixing a cross-linking agent, but the existing development tank has a stirring dead angle in the stirring process due to the high material density when the materials are stirred and developed; temperature promotes more slowly, and current edge heating is relatively poor to the material heating effect of center department, leads to the shortcoming of development time overlength. Aiming at the problems, innovative design is urgently needed on the basis of the original development tank.
SUMMERY OF THE UTILITY MODEL
The utility model aims to provide a sealant production tank, which aims to solve the problem that in the background technology, because the material density is higher, a stirring dead angle exists in the stirring process; temperature promotes more slowly, and current edge heating is relatively poor to the material heating effect of center department, leads to the problem of development time overlength.
In order to achieve the above object, the utility model provides a following technical scheme: a sealant production tank comprises a development tank, a heat insulation plate and heat insulation cotton, wherein a feed inlet is installed at the top of the development tank, the heat insulation plate is arranged on the periphery of the development tank in a sealing mode, the heat insulation plate and the development tank are filled with the heat insulation cotton between tank walls, an oil inlet is formed in the side of the top end of the development tank, a motor is installed at the top end of the development tank and is connected with the top end of a vertical shaft connected to the development tank in a rotating mode, a stirring rod is arranged inside the development tank, a first conical tooth meshed with a second conical tooth is installed on the vertical shaft and is fixed at the end of a transverse shaft, a lifting rod penetrates through the center of the top end of the development tank and is connected with the top end of the lifting rod in a vertical sliding mode, the top end of the lifting rod is fixedly connected with a sleeve frame, and device boxes located inside the development tank are installed on the lifting rod at equal intervals, the bottom mounting of puddler is in the pivot, and rotates to connect and be provided with the discharge gate in the pivot both sides of developing the tank bottom.
Preferably, the oil inlet is communicated with the top end of an oil duct, the oil duct is spirally and circularly arranged inside the tank wall of the development tank, and the bottom end of the oil duct is communicated with an oil outlet arranged on the development tank.
Preferably, the top of puddler welds the swivel inner wall, and the swivel that the level distributes rotates through the ball on its top and installs on the top of developing jar inner wall, and the outer rampart of swivel is fixed with the first rack with first gear engaged with, and first gear is fixed in the vertical axis bottom to 2 symmetric distribution's puddlers constitute frame shape structure, and the middle section of puddler is the rectangle structure, and sliding connection has the sliding ring on this rectangle structure.
Preferably, the surface welding of sliding ring has the take pole, and the lower terminal surface of take pole contacts with the upper surface of device box, and the up end of device box and lower terminal surface are outside bellied arc structure to the internally mounted of device box has electric heating wire.
Preferably, 2 sets of second racks are symmetrically fixed on the inner wall of the sleeve frame, the second racks are meshed with a second gear fixed on the transverse shaft, and the circumferential length of the gear block on the second gear accounts for 1/3 which is the total circumferential length of the second gear.
Preferably, the upper half section of the discharge port is an elastic corrugated pipe, and a cam fixed at the bottom end of the rotating shaft is arranged on the side of the discharge port.
Compared with the prior art, the beneficial effects of the utility model are that: according to the sealant production tank, a frame-shaped stirring structure is used for replacing a traditional paddle stirring structure, the existence of a stirring dead angle area is reduced to the greatest extent, and through the use of structures such as a device box, materials in the development tank can be heated more efficiently, so that the production efficiency of sealants is greatly improved;
1. on the basis of the use of the original heat-preservation cotton and other structures, the structures such as an oil duct capable of circulating hot oil are added, the modifier can be efficiently heated and preserved in the edge area of the material, and the constant temperature effect is better;
2. the stirring efficiency is improved by using the stirring rod and other structures, and the frame-shaped structure formed by the stirring rod and the stirring rod is matched with the stirring effect of the lapping rod, so that the existence of stirring dead angles can be avoided to the greatest extent;
3. the design of device box is used, and the use of its inside electric heating wire of cooperation can be followed the central zone of material and heated the constant temperature operation to the modifier, and heating effect is better to through the use of structures such as cover frame, enable the material box and be in the state that the circulation reciprocated, it is better to have increased the mixing plane, the stirring effect of material.
Drawings
FIG. 1 is a schematic view of the front cross-section structure of the present invention;
FIG. 2 is an enlarged schematic view of the structure at A of FIG. 1 according to the present invention;
FIG. 3 is a schematic view of the swivel of the present invention;
FIG. 4 is a schematic view of the top view of the landing rod of the present invention;
FIG. 5 is a schematic diagram of a side view of the frame of the present invention;
FIG. 6 is a schematic view of the front cross-sectional structure of the device case of the present invention;
fig. 7 is a schematic view of the bottom structure of the discharge port of the present invention.
In the figure: 1. a development tank; 2. a feed inlet; 3. a thermal insulation board; 4. heat preservation cotton; 5. an oil inlet; 51. an oil passage; 52. an oil outlet; 6. an electric motor; 7. a vertical axis; 8. a stirring rod; 81. rotating the ring; 82. a first rack; 83. a first gear; 84. a slip ring; 85. building a rod; 9. a first bevel gear; 10. a second taper tooth; 11. a horizontal axis; 12. lifting a pull rod; 121. a device cartridge; 122. an electric heating wire; 13. sleeving a frame; 131. a second rack; 132. a second gear; 14. a rotating shaft; 15. a discharge port; 151. an elastic bellows; 152. a cam.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
Referring to fig. 1-7, the present invention provides a technical solution: a sealant production tank comprises a development tank 1, a feeding port 2, a heat insulation plate 3, heat insulation cotton 4, an oil inlet 5, an oil duct 51, an oil outlet 52, a motor 6, a vertical shaft 7, a stirring rod 8, a rotating ring 81, a first rack 82, a first gear 83, a sliding ring 84, a lapping rod 85, a first bevel gear 9, a second bevel gear 10, a transverse shaft 11, a lifting rod 12, a device box 121, an electric heating wire 122, a sleeve frame 13, a second rack 131, a second gear 132, a rotating shaft 14, a discharging port 15, an elastic corrugated pipe 151 and a cam 152, wherein the feeding port 2 is installed at the top of the development tank 1, the heat insulation plate 3 is sealed at the periphery of the development tank 1, the heat insulation cotton 4 is filled between the heat insulation plate 3 and the tank wall of the development tank 1, the oil inlet 5 is arranged on the side of the top end of the development tank 1, the motor 6 is installed at the top end of the development tank 1, and the motor 6 are connected with the top end of the vertical shaft 7 which is rotatably connected to the development tank 1, and the inside of jar 1 that develops is provided with puddler 8, install on the vertical axis 7 with the first awl tooth 9 of second awl tooth 10 engaged with, and second awl tooth 10 fixes in the end department of cross axle 11, the top center department of jar 1 that develops runs through installs lifting rod 12, and both are perpendicular sliding connection, and inside lifting rod 12 top and the cover frame 13 fixed connection who is hollow structure, equidistant device box 121 that is located jar 1 inside that develops is installed on lifting rod 12 simultaneously, the bottom mounting of puddler 8 is on pivot 14, and rotate and connect and be provided with discharge gate 15 in the 14 both sides of pivot of jar 1 bottom that develops.
The oil inlet 5 is communicated with the top end of the oil channel 51, the oil channel 51 is spirally wound around the inside of the tank wall of the development tank 1, the bottom end of the oil channel 51 is communicated with the oil outlet 52 arranged on the development tank 1, before stirring development operation is carried out, hot oil with specified temperature can be added into the oil channel 51 from the oil inlet 5, the hot oil flows in the oil channel 51 and finally returns to hot oil supply equipment from the oil outlet 52, so that the tank wall of the development tank 1 is preheated, the heating efficiency of the modifier is improved, and the internal temperature of the development tank 1 can be maintained more stably by matching with the use of the heat preservation cotton 4.
The top welding of puddler 8 is at the swivel 81 inner wall, the swivel 81 of horizontal distribution rotates through the ball on its top and installs the top at the jar 1 inner wall that develops, and the outer rampart of swivel 81 is fixed with the first rack 82 with first gear 83 engaged with, first gear 83 is fixed in vertical axis 7 bottom, and 2 symmetrical distribution's puddler 8 constitutes frame-shaped structure, the middle section of puddler 8 is the rectangle structure, sliding connection has sliding ring 84 on this rectangle structure, motor 6's circular telegram operation can drive first gear 83 through vertical axis 7 and rotate in the jar 1 that develops, under the meshing transmission effect of first gear 83 and first rack 82, swivel 81 can drive puddler 8 synchronous rotation in the jar 1 that develops, puddler 8 rotates in the jar 1 with the synchronizing of taking 85 that develops, thereby carry out stirring operation to the material in the jar 1 that develops.
The surface of the slip ring 84 is welded with the lapping rod 85, the lower end surface of the lapping rod 85 is contacted with the upper surface of the device box 121, the upper end surface and the lower end surface of the device box 121 are both of arc structures protruding outwards, the electric heating wire 122 is installed inside the device box 121, 2 groups of second racks 131 are symmetrically fixed on the inner wall of the sleeve frame 13, the second racks 131 are meshed with a second gear 132 fixed on the transverse shaft 11, the circumferential length of a tooth block on the second gear 132 is 1/3 which is larger than the total circumferential length of the second gear 132, when the vertical shaft 7 rotates, the transverse shaft 11 is driven to rotate at the top end of the development tank 1 through the first conical teeth 9 and the second conical teeth 10, under the action of alternate meshing transmission of the second gear 132 and the second rack 131 on the transverse shaft 11, the sleeve frame 13 drives the device box 121 to reciprocate in the development tank 1 through the lifting rod 12, so that the electric heating wire 122 can efficiently heat the center material, the up-and-down movement of the device box 121 can also achieve the purpose of stirring the materials from the vertical direction, and the rotation of the lifting rod 85 can also achieve the purpose of cleaning the surface of the device box 121 during the later discharging.
The first section of discharge gate 15 is elastic bellows 151, and the avris of discharge gate 15 is provided with the cam 152 of fixing in pivot 14 bottom, when needs are unloaded, can open the on-off valve (it does not do the detailed description for prior art) of discharge gate 15 department, the material that develops the completion can be followed discharge gate 15 and flowed out promptly, the jam phenomenon has probably appeared because the density of material is great, install cam 152 in the bottom of pivot 14, cam 152 follows pivot 14 and puddler 8 synchronous rotation, through the mode of incessantly beating discharge gate 15, realize preventing the purpose of jam.
The working principle is as follows: before the stirring development operation is carried out, hot oil with a specified temperature can be added into the oil channel 51 from the oil inlet 5, the hot oil flows in the oil channel 51 and finally returns to the hot oil supply equipment from the oil outlet 52, so that the preheating operation is carried out on the tank wall of the development tank 1, the heating efficiency of the modifier is improved, and the internal temperature of the development tank 1 can be maintained more stably by matching with the use of the heat preservation cotton 4;
after preheating, materials which are sheared and ground for 2-3 times by a colloid mill and have the particle fineness of the modifier below 5 mu m are thrown into the development tank 1 from the feed inlet 2, the first gear 83 is driven to rotate in the development tank 1 by the electrifying operation of the motor 6 through the vertical shaft 7, the rotating ring 81 drives the stirring rod 8 to synchronously rotate in the development tank 1 under the meshing transmission action of the first gear 83 and the first rack 82, the stirring rod 8 and the lapping rod 85 synchronously rotate in the development tank 1 so as to stir the materials in the development tank 1, the horizontal shaft 11 is driven to rotate at the top end of the development tank 1 through the first conical teeth 9 and the second conical teeth 10 when the vertical shaft 7 rotates, the sleeve frame 13 drives the device box to reciprocate 121 in the development tank 1 through the lifting rod 12 under the alternate meshing transmission action of the second gear 132 and the second rack 131 on the horizontal shaft 11, therefore, the electric heating wire 122 can efficiently heat the central material, the vertical movement of the device box 121 can also achieve the aim of stirring the material from the vertical direction, and the rotation of the lifting rod 85 can also achieve the aim of cleaning the surface of the device box 121 during later discharging;
when the material needs to be discharged, the opening and closing valve at the discharge port 15 can be opened, the developed material can flow out from the discharge port 15, the material blocking phenomenon is likely to occur due to the high density of the material, the cam 152 is installed at the bottom end of the rotating shaft 14, the cam 152 rotates along with the rotating shaft 14 and the stirring rod 8 synchronously, and the purpose of preventing the material blocking is achieved by a mode of continuously knocking the discharge port 15;
according to the processing technology requirement of the sealant, after the materials are stirred and developed for 3-5 hours in the temperature environment of 180-200 ℃ by mixing the cross-linking agent, a high-temperature premix with a stable system is formed, the premix is conveyed to a premixing tank, and the waste tire rubber powder, the natural rock asphalt, the phase solvent, the polyester fiber and the lignin fiber are sequentially added into the premixing tank under the continuous stirring state, heated and kept at 180-200 ℃ for stirring and development for 1-2 hours until the materials are uniformly mixed.
Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that changes, modifications, substitutions and alterations can be made in these embodiments without departing from the principles and spirit of the invention, the scope of which is defined in the appended claims and their equivalents.

Claims (6)

1. The utility model provides a sealed glue production jar, is including developing jar (1), heated board (3) and heat preservation cotton (4), its characterized in that: the feeding device is characterized in that a feeding hole (2) is installed at the top of the development tank (1), a heat insulation plate (3) is arranged on the periphery of the development tank (1) in a sealing mode, heat insulation cotton (4) is filled between the heat insulation plate (3) and the tank wall of the development tank (1), an oil inlet (5) is formed in the top end side of the development tank (1), a motor (6) is installed at the top end of the development tank (1), the motor (6) is connected with the top end of a vertical shaft (7) which is connected to the development tank (1) in a rotating mode, a stirring rod (8) is arranged inside the development tank (1), a first conical tooth (9) meshed with a second conical tooth (10) is installed on the vertical shaft (7), the second conical tooth (10) is fixed to the end of a transverse shaft (11), a lifting rod (12) is installed at the center of the top end of the development tank (1) in a penetrating mode and is connected with the two in a vertical sliding mode, and inside is hollow structure's lifting rod (12) top and cover frame (13) fixed connection, and equidistant device box (121) that are located development jar (1) inside are installed in lifting rod (12) simultaneously, the bottom mounting of puddler (8) is on pivot (14), and rotates and connect pivot (14) both sides of developing jar (1) bottom and be provided with discharge gate (15).
2. The sealant production tank of claim 1, wherein: the oil inlet (5) is communicated with the top end of the oil duct (51), the oil duct (51) is spirally wound around the inside of the tank wall of the development tank (1), and the bottom end of the oil duct (51) is communicated with an oil outlet (52) arranged on the development tank (1).
3. The sealant production tank of claim 1, wherein: the top welding of puddler (8) is at swivel (81) inner wall, and the top at developmental tank (1) inner wall is installed in ball rotation on its top in horizontally distributed swivel (81), and the outer rampart of swivel (81) is fixed with first rack (82) with first gear (83) engaged with, and first gear (83) are fixed in vertical axis (7) bottom, and 2 symmetric distribution's puddler (8) constitute frame shape structure, and the middle section of puddler (8) is the rectangle structure, sliding connection has sliding ring (84) on this rectangle structure.
4. The sealant production tank of claim 3, wherein: the surface welding of sliding ring (84) has set aside pole (85), and the lower terminal surface of set aside pole (85) contacts with the upper surface of device box (121), and the up end and the lower terminal surface of device box (121) are outside bellied arc structure to the internally mounted of device box (121) has electric heating wire (122).
5. The sealant production tank of claim 1, wherein: 2 groups of second racks (131) are symmetrically fixed on the inner wall of the sleeve frame (13), the second racks (131) are meshed with a second gear (132) fixed on the transverse shaft (11), and the circumferential length of a tooth block on the second gear (132) accounts for 1/3 which is the total circumferential length of the second gear (132).
6. The sealant production tank of claim 1, wherein: the first section of discharge gate (15) is elasticity bellows (151), and the avris of discharge gate (15) is provided with cam (152) of fixing in pivot (14) bottom.
CN202121234367.1U 2021-06-03 2021-06-03 Sealed production jar that glues Active CN215028491U (en)

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CN202121234367.1U CN215028491U (en) 2021-06-03 2021-06-03 Sealed production jar that glues

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Application Number Priority Date Filing Date Title
CN202121234367.1U CN215028491U (en) 2021-06-03 2021-06-03 Sealed production jar that glues

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CN215028491U true CN215028491U (en) 2021-12-07

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN115253964A (en) * 2022-07-18 2022-11-01 丽水学院 Polyurethane waterproof coating's high-efficient apparatus for producing

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN115253964A (en) * 2022-07-18 2022-11-01 丽水学院 Polyurethane waterproof coating's high-efficient apparatus for producing
CN115253964B (en) * 2022-07-18 2023-11-28 丽水学院 High-efficient apparatus for producing of polyurethane waterproof coating

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