CN216845397U - Energy-saving drying tower capable of utilizing waste heat - Google Patents

Energy-saving drying tower capable of utilizing waste heat Download PDF

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Publication number
CN216845397U
CN216845397U CN202123410965.2U CN202123410965U CN216845397U CN 216845397 U CN216845397 U CN 216845397U CN 202123410965 U CN202123410965 U CN 202123410965U CN 216845397 U CN216845397 U CN 216845397U
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energy
waste heat
rod
block
drying tower
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CN202123410965.2U
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Chinese (zh)
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类延普
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Shandong Runlin New Material Technology Co ltd
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Shandong Runlin New Material Technology Co ltd
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Abstract

The utility model discloses an energy-saving drying tower that can waste heat utilization, include: the tower comprises a support and a cross rod, wherein one side of the support is connected with the cross rod, a tower body is connected inside the support, one side of the tower body is connected with a transmission pipe, one end of the transmission pipe is connected with a connecting cylinder, and one side of the cross rod is connected with a fixed block; the steering column, the activity of penetrating through the inside level of fixed block has cup jointed the steering column, steering column one side is connected with the regulation pole, and the fixed block is inside to be seted up with adjust pole assorted rotation groove, it is connected with annular pole to adjust pole one end. This energy-saving drying tower that can waste heat utilization, through to one side extrusion push rod, rotatory regulation pole again rotates annular rod to the extrusion laminating at the connecting cylinder outer wall, loosens the push rod, inside the inserted block automatic re-setting back level inserted into the fixed block under the elasticity reset action of spring to played and utilized annular rod auxiliary stay connecting cylinder, be convenient for stably carry the effect of hot-blast.

Description

Energy-saving drying tower capable of utilizing waste heat
Technical Field
The utility model relates to a drying tower technical field specifically is an energy-saving drying tower that can waste heat utilization.
Background
The drying tower is used for reducing the moisture of materials by utilizing heat energy and drying the objects, and can recycle waste heat, for example, in order to realize energy conservation and environmental protection and utilize the heat energy to the maximum extent;
for example, in an energy-saving drying tower for recycling waste heat with publication number CN202021227210.1, hot air enters the interior of the tower body through a rotating shaft, is uniformly dispersed into the interior of the tower body under the addition of the rotating action, and heats wet materials through stirring blades; then, the gas still having certain heat energy is pulled from the air inlet to a cavity between the inner wall and the outer wall of the tower body to form a heat insulation layer through the traction of the pump, and finally, the gas is discharged from the air outlet through spiral circulation heating, so that the secondary utilization of the heat energy is realized;
this prior art solution also presents the following problems when in use:
1. the outer wall of the connecting cylinder of the tower body is lack of an auxiliary supporting mechanism, so that the hot air is not conveniently and stably conveyed;
2. the outer wall of the tower body is of an integrated structure, so that the running state inside the tower body cannot be observed, and the like;
improvements are needed to address the above problems.
SUMMERY OF THE UTILITY MODEL
The utility model aims to provide an energy-saving drying tower capable of utilizing waste heat, which solves the problem that the outer wall of the connecting cylinder of the tower body provided by the prior art is not convenient to stably convey hot air because an auxiliary supporting mechanism is lacked; and the outer wall of the tower body is of an integrated structure, so that the problems that the running state inside the tower body cannot be observed and the like can be solved.
In order to achieve the above object, the utility model provides a following technical scheme: an energy-saving drying tower capable of waste heat utilization, comprising: the tower comprises a support and a cross rod, wherein one side of the support is connected with the cross rod, a tower body is connected inside the support, one side of the tower body is connected with a transmission pipe, one end of the transmission pipe is connected with a connecting cylinder, and one side of the cross rod is connected with a fixed block;
the steering column, the activity of penetrating through the inside level of fixed block has cup jointed the steering column, steering column one side is connected with the regulation pole, and the fixed block is inside to be seted up with adjust pole assorted rotation groove, it is connected with annular pole to adjust pole one end.
Preferably, the inside of the adjusting rod is movably inserted and connected with a push rod, one end of the push rod is vertically connected with a linkage strip, and one side of the linkage strip is connected with a spring.
Preferably, linkage strip bottom is connected with the inserted block, and the inserted block passes through the push rod and linkage strip constitutes elastic telescopic structure with the spring to for block connection structure between inserted block and the fixed block, extrude the push rod to one side, rotatory regulation pole again rotates the annular rod to the extrusion laminating at the connecting cylinder outer wall, loosens the push rod, and the inserted block is inside the fixed block is inserted to the level after automatic re-setting under the elastic reset effect of spring.
Preferably, one side of the support is connected with a supporting seat, the surface of the supporting seat is connected with a convex block, the surface of the supporting seat is provided with an electric box, and the bottom of the electric box is provided with a rectangular sunken groove.
Preferably, the support seat includes:
the threaded rod, supporting seat internal connection have the threaded rod, the stopper has been cup jointed to the threaded rod outside, stopper one end is connected with the slider.
Preferably, the supporting seat and the lug are internally provided with moving grooves matched with the sleeve joint rod and the external size of the sliding block, one side of each groove of the electric box is provided with a slot matched with the external size of the sliding block, the electric box is horizontally inserted and jointed outside the lug, and then the threaded rod is rotated to enable the sleeve joint rod to move along the outer wall of the threaded rod, so that the sliding block is driven to horizontally move and then inserted into the electric box.
Preferably, the surface of the tower body is embedded and connected with a welding frame, the inner part of the welding frame is clamped and connected with an observation door, two ends of the observation door are connected with clamping blocks, the clamping blocks are made of rubber, and the clamping blocks are in interference connection with the welding frame.
Preferably, the fixture block surface is connected with the pivot, the pivot both sides are connected with the trace, the inside interpolation of trace is closed and is connected with the connecting block, and connecting block one end is connected with the welding frame surface, rotates the pivot, drives the trace and rotatory to breaking away from the connecting block outside, and the outside pull observation door again removes the relation of connection between fixture block and the welding frame, and then opens the tower body.
Compared with the prior art, the beneficial effects of the utility model are that: the push rod is extruded to one side, the adjusting rod is rotated, the annular rod is rotated to be extruded and attached to the outer wall of the connecting cylinder, the push rod is loosened, the inserting block automatically resets under the elastic resetting action of the spring and then is horizontally inserted into the fixing block, and therefore the effect of utilizing the annular rod to assist in supporting the connecting cylinder and facilitating stable hot air conveying is achieved; the electric box is horizontally inserted and sleeved outside the convex block, and then the threaded rod is rotated to drive the sliding block to horizontally move and then be inserted and sleeved into the electric box, so that the electric box is conveniently positioned and installed; and finally, the rotating shaft is rotated to drive the linkage rod to rotate to the outside of the separation connecting block, and then the observation door is pulled outwards to open the tower body, so that the operation state in the tower body can be observed.
1. This energy-saving drying tower that can waste heat utilization, the operator is to one side extrusion push rod, and the regulation pole of rotating again rotates annular rod to the extrusion laminating at the connecting cylinder outer wall, loosens the push rod, and the inserted block is inside automatic re-setting back level inserted into the fixed block under the elasticity reset action of spring to played and utilized annular rod auxiliary stay connecting cylinder, be convenient for stably carry the effect of hot-blast.
2. This energy-saving drying tower that can waste heat utilization, the operator cup joints the electronic box level and inserts and cup joint in the lug outside, rotates the threaded rod again, makes the pole that cup joints remove along threaded rod outer wall department, and it is inside to insert and close into the electronic box after driving slider horizontal migration to the effect of the installation electronic box of being convenient for have been played.
3. This energy-saving drying tower that can waste heat utilization, the operator rotates the pivot, and it is outside to breaking away from the connecting block to drive the trace rotation, and outside pull observation door again removes the relation of connection between fixture block and the welding frame, and then opens the tower body, has played the effect of observing the inside running state of tower body.
Drawings
FIG. 1 is a schematic view of the present invention;
FIG. 2 is a schematic side view of the present invention;
FIG. 3 is a schematic view of the cross-sectional structure of the fixing block of the present invention;
fig. 4 is a schematic view of the connection structure of the electric box of the present invention.
In the figure: 1. a support; 2. a cross bar; 3. a tower body; 4. a conveying pipe; 5. a connecting cylinder; 6. a fixed block; 7. a steering column; 8. adjusting a rod; 9. an annular rod; 10. a push rod; 11. a linkage bar; 12. a spring; 13. inserting a block; 14. a supporting seat; 15. a bump; 16. an electric box; 17. a threaded rod; 18. a limiting block; 19. a sleeved rod; 20. a slider; 21. welding a frame; 22. an observation door; 23. a clamping block; 24. a rotating shaft; 25. a linkage rod; 26. and (4) connecting the blocks.
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. 1-4, the present invention provides a technical solution: an energy-saving drying tower capable of waste heat utilization, comprising: the device comprises a support 1 and a cross rod 2, wherein one side of the support 1 is connected with the cross rod 2, a tower body 3 is connected inside the support 1, one side of the tower body 3 is connected with a transmission pipe 4, one end of the transmission pipe 4 is connected with a connecting cylinder 5, and one side of the cross rod 2 is connected with a fixing block 6; the steering column 7 is horizontally and movably sleeved in the fixed block 6 in a penetrating mode, one side of the steering column 7 is connected with an adjusting rod 8, a rotating groove matched with the adjusting rod 8 is formed in the fixed block 6, and one end of the adjusting rod 8 is connected with an annular rod 9; a push rod 10 is movably inserted and connected in the adjusting rod 8, one end of the push rod 10 is vertically connected with a linkage strip 11, and one side of the linkage strip 11 is connected with a spring 12; 11 bottoms of linkage strip are connected with inserted block 13, and inserted block 13 constitutes elastic telescopic structure through push rod 10 and linkage strip 11 and spring 12, and be block connection structure between inserted block 13 and the fixed block 6, to one side extrusion push rod 10, rotatory regulation pole 8 again, rotate annular rod 9 to the extrusion laminating at connecting cylinder 5 outer wall, loosen push rod 10, inserted block 13 is inside automatic re-setting back level inserted into fixed block 6 under spring 12's elasticity reset effect, thereby played and utilized 9 auxiliary stay connecting cylinders 5 of annular rod, be convenient for stably carry the effect of hot-blast.
One side of the bracket 1 is connected with a supporting seat 14, the surface of the supporting seat 14 is connected with a convex block 15, the surface of the supporting seat 14 is provided with an electric box 16, and the bottom of the electric box 16 is provided with a rectangular sunken groove; the support seat 14 includes: the supporting seat 14 is internally connected with a threaded rod 17, a limiting block 18 is sleeved outside the threaded rod 17, and one end of the limiting block 18 is connected with a sliding block 20; supporting seat 14 and 15 inside offered with the assorted shifting chute of the external dimension of pole 19 and the slider 20 of cup jointing, and recess one side of electronic box 16 offered with the assorted slot of the external dimension of slider 20, with 16 level inserts to close and cup joints in the outside of lug 15 of electronic box, rotate threaded rod 17 again, make the pole 19 of cup jointing remove along threaded rod 17 outer wall department, inside driving the electronic box 16 of inserting after 20 level shifting of slider, thereby played the effect of being convenient for fix a position installation electronic box 16.
The surface of the tower body 3 is connected with a welding frame 21 in an embedded mode, an observation door 22 is connected inside the welding frame 21 in a clamped mode, two ends of the observation door 22 are connected with clamping blocks 23, the clamping blocks 23 are made of rubber materials, and the clamping blocks 23 are in interference connection with the welding frame 21; the surface of the fixture block 23 is connected with a rotating shaft 24, two sides of the rotating shaft 24 are connected with linkage rods 25, the linkage rods 25 are connected with connecting blocks 26 in an inserting mode, one ends of the connecting blocks 26 are connected with the surface of the welding frame 21, the rotating shaft 24 is rotated to drive the linkage rods 25 to rotate to be separated from the outer portions of the connecting blocks 26, the observation doors 22 are pulled outwards, the connecting relation between the fixture block 23 and the welding frame 21 is removed, the tower body 3 is opened, and the effect of observing the operation state inside the tower body 3 is achieved.
In summary, the following steps: when the energy-saving drying tower capable of utilizing waste heat is used, firstly, the push rod 10 is extruded to one side, then the adjusting rod 8 is rotated, the annular rod 9 is rotated to be extruded and attached to the outer wall of the connecting cylinder 5, the push rod 10 is loosened, and the inserting block 13 is automatically reset under the elastic reset action of the spring 12 and then horizontally inserted into the fixing block 6, so that the effect of utilizing the annular rod 9 to assist in supporting the connecting cylinder 5 and facilitating stable hot air conveying is achieved; the electric box 16 is horizontally inserted and sleeved outside the lug 15, and then the threaded rod 17 is rotated to drive the sliding block 20 to horizontally move and then be inserted into the electric box 16, so that the electric box 16 is conveniently positioned and installed; finally, the rotating shaft 24 is rotated to drive the linkage rod 25 to rotate to the outside of the disconnecting block 26, and then the observation door 22 is pulled outwards, so that the tower body 3 is opened, and the function of observing the operation state inside the tower body 3 is achieved, which is the characteristic of the energy-saving drying tower capable of utilizing waste heat, and the content which is not described in detail in the description belongs to the prior art which is well known to those skilled in the art.
Although the present invention has been described in detail with reference to the foregoing embodiments, it will be apparent to those skilled in the art that modifications may be made to the embodiments or portions thereof without departing from the spirit and scope of the invention.

Claims (8)

1. An energy-saving drying tower capable of waste heat utilization, comprising: the device comprises a support (1) and a cross rod (2), and is characterized in that one side of the support (1) is connected with the cross rod (2), a tower body (3) is connected inside the support (1), one side of the tower body (3) is connected with a transmission pipe (4), one end of the transmission pipe (4) is connected with a connecting cylinder (5), and one side of the cross rod (2) is connected with a fixed block (6);
steering column (7), steering column (7) have been cup jointed to the activity of penetrating through of fixed block (6) inside level, steering column (7) one side is connected with adjusts pole (8), and fixed block (6) inside set up with adjust pole (8) assorted rotation groove, it is connected with annular pole (9) to adjust pole (8) one end.
2. The energy-saving drying tower capable of utilizing waste heat according to claim 1, wherein: the adjusting rod (8) is movably inserted and connected with a push rod (10), one end of the push rod (10) is vertically connected with a linkage strip (11), and one side of the linkage strip (11) is connected with a spring (12).
3. An energy-saving drying tower capable of utilizing waste heat according to claim 2, wherein: linkage strip (11) bottom is connected with inserted block (13), and inserted block (13) constitute elastic telescopic structure through push rod (10) and linkage strip (11) and spring (12) to be block connection structure between inserted block (13) and fixed block (6).
4. The energy-saving drying tower capable of utilizing waste heat according to claim 1, wherein: support (1) one side is connected with supporting seat (14), supporting seat (14) surface connection has lug (15), supporting seat (14) surface is provided with electronic box (16), and the recess that the rectangle caves in is seted up to electronic box (16) bottom.
5. The energy-saving drying tower capable of utilizing waste heat according to claim 4, wherein: the support seat (14) comprises:
threaded rod (17), supporting seat (14) internal connection have threaded rod (17), stopper (18) have been cup jointed to threaded rod (17) outside, stopper (18) one end is connected with slider (20).
6. The energy-saving drying tower capable of utilizing waste heat according to claim 4, wherein: the supporting seat (14) and the convex block (15) are internally provided with moving grooves matched with the external sizes of the sleeve rod (19) and the sliding block (20), and one side of the groove of the electric box (16) is provided with a slot matched with the external size of the sliding block (20).
7. The energy-saving drying tower capable of utilizing waste heat according to claim 1, wherein: the surface of the tower body (3) is embedded and connected with a welding frame (21), the inner portion of the welding frame (21) is clamped and connected with an observation door (22), two ends of the observation door (22) are connected with clamping blocks (23), the clamping blocks (23) are made of rubber, and the clamping blocks (23) are in interference connection with the welding frame (21).
8. An energy-saving drying tower capable of utilizing waste heat according to claim 7, wherein: the surface of the clamping block (23) is connected with a rotating shaft (24), two sides of the rotating shaft (24) are connected with linkage rods (25), connecting blocks (26) are inserted and connected in the linkage rods (25), and one ends of the connecting blocks (26) are connected with the surface of the welding frame (21).
CN202123410965.2U 2021-12-31 2021-12-31 Energy-saving drying tower capable of utilizing waste heat Active CN216845397U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202123410965.2U CN216845397U (en) 2021-12-31 2021-12-31 Energy-saving drying tower capable of utilizing waste heat

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202123410965.2U CN216845397U (en) 2021-12-31 2021-12-31 Energy-saving drying tower capable of utilizing waste heat

Publications (1)

Publication Number Publication Date
CN216845397U true CN216845397U (en) 2022-06-28

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ID=82111438

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202123410965.2U Active CN216845397U (en) 2021-12-31 2021-12-31 Energy-saving drying tower capable of utilizing waste heat

Country Status (1)

Country Link
CN (1) CN216845397U (en)

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