CN112066692A - Energy-conserving drying device of weaving cloth ash removal flattening - Google Patents

Energy-conserving drying device of weaving cloth ash removal flattening Download PDF

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Publication number
CN112066692A
CN112066692A CN202011033994.9A CN202011033994A CN112066692A CN 112066692 A CN112066692 A CN 112066692A CN 202011033994 A CN202011033994 A CN 202011033994A CN 112066692 A CN112066692 A CN 112066692A
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CN
China
Prior art keywords
groove
shaft
drying
fixedly connected
wall
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Withdrawn
Application number
CN202011033994.9A
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Chinese (zh)
Inventor
郑桥佘
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Foshan Yongyuan Knitting Co ltd
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Foshan Yongyuan Knitting Co ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
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Priority to CN202011033994.9A priority Critical patent/CN112066692A/en
Publication of CN112066692A publication Critical patent/CN112066692A/en
Withdrawn legal-status Critical Current

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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F26DRYING
    • F26BDRYING SOLID MATERIALS OR OBJECTS BY REMOVING LIQUID THEREFROM
    • F26B13/00Machines and apparatus for drying fabrics, fibres, yarns, or other materials in long lengths, with progressive movement
    • F26B13/10Arrangements for feeding, heating or supporting materials; Controlling movement, tension or position of materials
    • F26B13/14Rollers, drums, cylinders; Arrangement of drives, supports, bearings, cleaning
    • F26B13/145Rollers, drums, cylinders; Arrangement of drives, supports, bearings, cleaning on the non-perforated outside surface of which the material is being dried by convection or radiation
    • DTEXTILES; PAPER
    • D06TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
    • D06CFINISHING, DRESSING, TENTERING OR STRETCHING TEXTILE FABRICS
    • D06C15/00Calendering, pressing, ironing, glossing or glazing textile fabrics
    • D06C15/02Calendering, pressing, ironing, glossing or glazing textile fabrics between co-operating press or calender rolls
    • DTEXTILES; PAPER
    • D06TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
    • D06GMECHANICAL OR PRESSURE CLEANING OF CARPETS, RUGS, SACKS, HIDES, OR OTHER SKIN OR TEXTILE ARTICLES OR FABRICS; TURNING INSIDE-OUT FLEXIBLE TUBULAR OR OTHER HOLLOW ARTICLES
    • D06G1/00Beating, brushing, or otherwise mechanically cleaning or pressure cleaning carpets, rugs, sacks, hides, or other skin or textile articles or fabrics
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F26DRYING
    • F26BDRYING SOLID MATERIALS OR OBJECTS BY REMOVING LIQUID THEREFROM
    • F26B23/00Heating arrangements
    • F26B23/10Heating arrangements using tubes or passages containing heated fluids, e.g. acting as radiative elements; Closed-loop systems
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F26DRYING
    • F26BDRYING SOLID MATERIALS OR OBJECTS BY REMOVING LIQUID THEREFROM
    • F26B25/00Details of general application not covered by group F26B21/00 or F26B23/00
    • F26B25/005Treatment of dryer exhaust gases

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Textile Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Sustainable Development (AREA)
  • Treatment Of Fiber Materials (AREA)
  • Drying Of Solid Materials (AREA)

Abstract

The invention discloses an energy-saving drying device for dedusting and leveling textile fabrics, which comprises a drying machine body, wherein a drying channel with a right opening is formed in the drying machine body, a dedusting device is arranged in the drying channel, the dedusting device comprises a cloth rolling shaft which is in running fit with the rear wall of the left end of the drying channel, the cloth rolling shaft is arranged in the drying channel and is matched with a detachable cloth rolling wheel, the upper wall of the drying channel is in bilateral symmetry communication with a sliding groove about the central end surface of the drying machine body, a connecting block is in sliding connection with the sliding groove, a connecting groove is formed in the lower side of the connecting block, a connecting shaft is in running fit with the rear wall of the connecting groove, and the connecting shaft is arranged in the connecting groove and is fixedly connected.

Description

Energy-conserving drying device of weaving cloth ash removal flattening
Technical Field
The invention relates to the field of textile drying, in particular to an energy-saving drying device for dedusting and leveling textile fabrics.
Background
The textile idea is a general name from spinning and weaving, when textile fabric is processed, drying the textile fabric is one of important processing procedures, and the drying has a shaping effect on the fabric, so that the fabric is very important to be leveled in the drying process, and a lot of dust can be attached to the fabric after production.
Disclosure of Invention
Aiming at the technical defects, the invention provides an energy-saving drying device for dedusting and leveling textile fabrics, which can overcome the defects.
The invention relates to an energy-saving drying device for dedusting and leveling textile fabrics, which comprises a drying machine body and is characterized in that: the drying machine is characterized in that a drying channel with a rightward opening is formed in the drying machine body, an ash removal device is arranged in the drying channel, the ash removal device comprises a cloth winding shaft which is matched with the left rear wall of the drying channel in a rotating mode, the cloth winding shaft is located in the drying channel in a matched mode and is provided with a detachable cloth winding wheel, the upper wall of the drying channel is communicated with a sliding groove in a bilateral symmetry mode relative to the central end face of the drying machine body, a connecting block is connected to the sliding groove in a sliding mode, a connecting groove is formed in the lower side of the connecting block in a rotating mode, a connecting shaft is matched with the rear wall of the connecting groove in a rotating mode and is located in the connecting groove, the connecting shaft is located in the connecting groove in a fixedly connected mode and is abutted against the wheel, a fixed groove which is located on the same vertical plane of the sliding groove is formed in the lower side of A moving groove, a moving rod is connected to the left wall of the sliding groove in a sliding manner, a moving block is fixedly connected to the moving rod in the drying channel, a fixed block is fixedly connected to the wall body of the sliding groove, a sliding block is fixedly connected to the moving rod and is slidably connected with the sliding groove, a tension spring is connected between the sliding block and the fixed block, abutting grooves which are in the same plane as the sliding groove are symmetrically arranged on the left and right sides of the lower side of the drying channel relative to the central end face of the drying machine body, abutting rods are slidably connected with the abutting grooves, abutting springs are connected between the abutting rods and the bottom walls of the abutting grooves, when the drying machine is started, the abutting wheels abut against the fixed wheels to clamp the cloth in a relative friction manner, the moving rod abuts against the abutting rods to clamp the cloth up and down, so that dust is thrown out, and friction force causes the, dryer body internal center terminal surface seted up with the vertical part of the steam passageway one side of stoving passageway intercommunication, be provided with heat cycle device in the steam passageway, heat cycle device is including being located stoving passageway downside with steam passageway inner wall fixed mounting's pump of blowing, the horizontal part fixed mounting of one side of steam passageway has glutinous grey board, fixed mounting has the condensing box about the vertical part of steam passageway opposite side, set up the condensate in the condensing box, steam when the step material passes through stoving leads to
After the ash is removed, the ash flows into the water vapor channel to be condensed with water vapor of the ash, so that the heat is fully used.
Preferably, the ash removing device further comprises a matching groove which is arranged at the right end of the drying channel and is symmetrical up and down, a transmission shaft is arranged on the rear wall of the matching groove in a rotating matching mode, the transmission shaft is fixedly connected with a transmission wheel in the matching groove, a matching groove is formed in the rear side of the matching groove, the transmission shaft is fixedly connected with a connecting gear in the matching groove, a turning shaft between the transmission shafts tested up and down is arranged on the rear wall of the matching groove in a rotating matching mode, the turning shaft is fixedly connected with a turning gear which can be meshed with the upper connecting gear and the lower connecting gear in the matching groove, a transmission bevel gear which is arranged in the front side of the connecting gear is fixedly connected with the transmission shaft on the upper side of the matching groove, a transmission groove is formed in the upper side of the matching groove, a rotation shaft is matched with a wall body between the rotation shaft and the matching groove, and a meshing groove is formed in the upper side, a connecting shaft is rotatably matched on a wall body between the meshing groove and the sliding groove, the connecting shaft is positioned in the sliding groove and is in threaded connection with the connecting block, the connecting shaft is positioned in the meshing groove and is fixedly connected with a meshing half gear, the top wall of the meshing groove is rotatably matched with a belt pulley shaft which is positioned on the connecting shaft and is in rotating fit towards the central end surface side of the drying machine body, the belt pulley shaft is positioned in the meshing groove and is fixedly connected with a rotating gear meshed with the meshing half gear, a connecting torsion spring is connected between the connecting shaft and the bottom wall of the meshing groove, a bevel gear meshing groove is formed in the lower side of the meshing groove, a cam shaft is rotatably matched on the wall body between the bevel gear meshing groove and the sliding groove, the cam shaft is positioned in the sliding groove and is fixedly connected with a cam shaft abutted against the moving rod, and the cam shaft and, the belt wheel groove is formed in the upper side of the meshing groove, the left belt wheel shaft and the right belt wheel shaft are located in the belt wheel groove and are connected through belt transmission, the belt wheel shaft on the right side extends upwards to the tail end of the upper side of the transmission groove and is in power connection with a power motor embedded in the inner wall of the drying machine body, and the belt wheel shaft on the right side and the rotating shaft are located in the transmission groove and are connected through belt transmission.
Preferably, the heat circulating device further comprises a heating cavity arranged on the lower side of the water vapor channel, a heat conducting plate is connected to a position of a connector between the water vapor channel, a heating device arranged on the lower side of the heating cavity is fixedly mounted on the inner wall of the drying machine body, and the heating cavity is communicated with the water vapor channel.
The invention has the beneficial effects that: rotate through the cam to make the movable block reciprocate, make the cloth rotate under the effect of drive tight pulley and butt wheel at frictional force, thereby level the cloth, the movable block reciprocates simultaneously and can throw away the dust in the cloth, the heat takes the vapor area dust of cloth to get into in the steam passageway through the effect of glutinous grey board adsorb the dust down, steam flows in the heating chamber through the condensation again, the water of condensation this moment still possesses certain heat, thereby has improved the heat utilization ratio.
Drawings
In order to more clearly illustrate the embodiments of the invention or the technical solutions in the prior art, the drawings used in the description of the embodiments or the prior art will be briefly described below, and it is obvious that the drawings in the following description are only some embodiments of the invention, and it is obvious for those skilled in the art that other drawings can be obtained based on these drawings without creative efforts.
The invention is further illustrated with reference to the following figures and examples.
FIG. 1 is a schematic view of the overall structure of an energy-saving drying device for removing dust and leveling textile fabric;
FIG. 2 is an enlarged view of a portion of the structure at A in FIG. 1;
fig. 3 is an enlarged view of a partial structure at B in fig. 2;
fig. 4 is a schematic view of the structure in the direction of C-C in fig. 2.
Detailed Description
The invention will now be described in detail with reference to fig. 1-4, wherein for ease of description the orientations described hereinafter are now defined as follows: the up, down, left, right, and front-back directions described below correspond to the up, down, left, right, and front-back directions in the projection relationship of fig. 1 itself.
The invention relates to an energy-saving drying device for removing dust and leveling textile fabric, which comprises a drying machine body 13, wherein a drying channel 10 with a right opening is formed in the drying machine body 13, an ash removing device is arranged in the drying channel 10, the ash removing device comprises a cloth rolling shaft 15 which is matched with the rear wall of the left end of the drying channel 10 in a rotating manner, a detachable cloth rolling wheel 14 is matched in the cloth rolling shaft 15 positioned in the drying channel 10, the upper wall of the drying channel 10 is symmetrically communicated with a sliding groove 35 in a left-right manner relative to the central end surface of the drying machine body 13, a connecting block 36 is connected in the sliding groove 35 in a sliding manner, a connecting groove 37 is formed in the lower side of the connecting block 36, a connecting shaft 38 is matched in a rotating manner on the rear wall of the connecting groove 37, the connecting shaft 38 is fixedly connected with a butting wheel 70 in the connecting groove 37, and a fixing groove 40 which, the rear wall of the fixing groove 40 is matched with a right transmission shaft 39 in a rotating manner, the transmission shaft 39 is positioned in the fixing groove 40 and fixedly connected with a fixed wheel 41, the sliding groove 35 is symmetrically provided with a sliding groove 53 about the central end surface of the drying machine body 13 near the central end surface side of the drying machine body 13, the left wall of the sliding groove 53 is connected with a movable rod 47 in a sliding manner, the movable rod 47 is positioned in the drying channel 10 and fixedly connected with a movable block 46, the wall of the sliding groove 53 is fixedly connected with a fixed block 50, the movable rod 47 is fixedly connected with a sliding block 48 which is connected with the sliding groove 53 in a sliding manner, an extension spring 49 is connected between the sliding block 48 and the fixed block 50, the lower side of the drying channel 10 is symmetrically provided with an abutting groove 44 which is in the same plane with the sliding groove 53 about the central end surface, a butting spring 43 is connected between the butting rod 45 and the bottom wall of the butting groove 44, when the drying machine is opened, the butting wheel 70 butts against the fixed wheel 41 to clamp cloth strips in a friction manner, the moving rod 47 butts against the butting rod 45 to clamp the cloth strips to move up and down, so that dust is thrown out, the fixed wheel 41 rotates to flatten the cloth strips through friction force, a vertical part at one side of a water vapor channel 17 communicated with the drying channel 10 is arranged on the central end surface in the drying machine body 13, a thermal circulation device is arranged in the water vapor channel 17 and comprises an air blowing pump 22 fixedly arranged at the lower side of the drying channel 10 and on the inner wall of the water vapor channel 17, a dust sticking plate 16 is fixedly arranged at the horizontal part at one side of the water vapor channel 17, and a condensing box 11 is fixedly arranged at the left side and the right side of the vertical part at the other side, the condensing box 11 is internally provided with a condensate 12, and when the moisture in the step materials is dedusted through the drying channel 10, the moisture is condensed in the moisture flowing channel 17, so that the heat is fully used.
Advantageously, the ash removing device further comprises a matching groove 55 which is arranged at the right end of the drying channel 10 and is symmetrical up and down, a transmission shaft 23 is rotatably matched at the rear wall of the matching groove 55, a transmission wheel 24 is fixedly connected to the transmission shaft 23 in the matching groove 55, a matching groove 71 is arranged at the rear side of the matching groove 55, a connecting gear 57 is fixedly connected to the transmission shaft 23 in the matching groove 71, a direction-changing shaft 59 is rotatably matched at the rear wall of the matching groove 71 and is positioned between the transmission shafts 23 tested up and down, a direction-changing gear 60 which can be meshed with the upper and lower connecting gears 57 is fixedly connected to the direction-changing shaft 59 in the matching groove 71, a transmission bevel gear 58 which is positioned at the front side of the connecting gear 57 is fixedly connected to the transmission shaft 23 at the upper side in the matching groove 71, a transmission groove 26 is arranged at the upper side of the matching groove 71, and a rotating shaft 25 is matched with a wall body between the rotating shaft 25 and the matching groove 71, the upper side of the sliding groove 35 is provided with an engaging groove 33, a wall body between the engaging groove 33 and the sliding groove 35 is rotatably matched with a connecting shaft 32, the connecting shaft 32 is positioned in the sliding groove 35 and is connected with the connecting block 36 in a threaded manner, the connecting shaft 32 is positioned in the engaging groove 33 and is fixedly connected with an engaging half gear 73, the top wall of the engaging groove 33 is rotatably matched with a belt pulley shaft 30 positioned on the connecting shaft 32 and rotatably matched with the central end surface side of the drying machine body 13, the belt pulley shaft 30 is positioned in the engaging groove 33 and is fixedly connected with a rotating gear 31 engaged with the engaging half gear 73, a connecting torsion spring 34 is connected between the connecting shaft 32 and the bottom wall of the engaging groove 33, the lower side of the engaging groove 33 is provided with a bevel gear engaging groove 54, the wall body between the bevel gear engaging groove 54 and the sliding groove 53 is rotatably matched with a cam shaft 51, and the cam shaft 51 is positioned in the sliding 52, the cam shaft 51 and the pulley shaft 30 are positioned in the bevel gear meshing groove 54 and are connected through a bevel gear pair, the upper side of the meshing groove 33 is provided with a pulley groove 29, the left and right pulley shafts 30 are positioned in the pulley groove 29 and are connected through belt transmission, the right pulley shaft 30 extends upwards to the tail end of the upper side of the transmission groove 26 and is in power connection with a power motor 27 embedded in the inner wall of the drying machine body 13, the right pulley shaft 30 and the rotating shaft 25 are positioned in the transmission groove 26 and are connected through belt transmission, and when the transmission shaft 23 rotates, the transmission shaft can drive the transmission wheel 24 to rotate, so that the cloth strip is moved to the right intermittently, and the cloth is moved to the right uniformly to achieve the effects of fully removing ash, drying and leveling.
Beneficially, the heat circulation device further comprises a heating cavity 21 arranged on the lower side of the water vapor channel 17, a heat conduction plate 19 is connected to an interface between the heating cavity 21 and the water vapor channel 17, a heating device 20 positioned on the lower side of the heating cavity 21 is fixedly mounted on the inner wall of the drying machine body 13, and the left side of the heating cavity 21 is communicated with the water vapor channel 17.
The use steps herein are described in detail below with reference to fig. 1-4: in the initial state, the extension spring 49 is in the mode state, the travel lever 47 does not abut on the abutment block 42, the torsion spring 34 is in the relaxed state, and the abutment wheel 70 does not abut on the fixed wheel 41.
When the textile fabric needs to be dried, the fabric is wound on the fabric winding wheel 14, the upper fabric winding wheel 14 is sleeved on the fabric winding shaft 15, the fabric is pulled to the right to the lower side of the conveying wheel 24, the heating device 20, the blowing pump 22, the power motor 27 and the air suction pump 18 are started, the water in the heating cavity 21 is heated through the heating device 20, the heat generated by the heating cavity 21 is pumped into the drying channel 10 through the blowing pump 22, at the moment, the power motor 27 drives the left and right belt wheel shafts 30 to rotate, so as to drive the meshing half gear 73 to rotate, so that the connecting shaft 32 rotates, so that the connecting block 36 moves downwards, under the action of the connecting torsion spring 34, the meshing half gear 73 is meshed with the last tooth of the rotating gear 31, the abutting wheel 70 moves downwards to abut against the fixed wheel 41, at the moment, the fixed wheel 41 abuts against the abutting wheel 70, so that the fixed wheel 41 and the abutting wheel 70 rub and abut against, meanwhile, the pulley shaft 30 drives the cam shaft 51 to rotate, so that the moving rod 47 rotates, the moving block 46 moves up and down under the action of the extension spring 49, the moving block 46 presses down the moving block 46 when moving down, the moving block 46 moves up under the action of the abutting spring 43 and moves up under the action of the abutting spring 43, so that the cloth moves up and down, the fixed wheel 41 can roll under the action of friction force with the cloth at the moment, so that the cloth is leveled, dust is thrown out in the process of moving up and down of the cloth, the rotating shaft 25 drives the rotating shaft 25 to rotate, the upper connecting gear 57 and the lower connecting gear 57 move in opposite directions under the action of the change gear 60, so that the conveying wheel 24 intermittently drives the cloth to move rightwards, so that the cloth can stay at the lower side of the drying channel 10 for a period of time, and the cloth is fully dried, Flattening, ash removal, heat make the steam that the cloth was dried in by the 18 suction of aspirator pump steam passageway 17, glue the dust behind gluing grey board 16, through the condensation of condensing box 11 when steam continues the downstream, but still possess thermal garrulous powder inflow heating chamber 21 after the condensation to utilized this heat, practiced thrift the energy consumption.
The invention has the beneficial effects that: rotate through the cam to make the movable block reciprocate, make the cloth rotate under the effect of drive tight pulley and butt wheel at frictional force, thereby level the cloth, the movable block reciprocates simultaneously and can throw away the dust in the cloth, the heat takes the vapor area dust of cloth to get into in the steam passageway through the effect of glutinous grey board adsorb the dust down, steam flows in the heating chamber through the condensation again, the water of condensation this moment still possesses certain heat, thereby has improved the heat utilization ratio.
The above embodiments are merely illustrative of the technical ideas and features of the present invention, and the purpose thereof is to enable those skilled in the art to understand the contents of the present invention and implement the present invention, and not to limit the protection scope of the present invention. All equivalent changes and modifications made according to the spirit of the present invention should be covered within the protection scope of the present invention.

Claims (3)

1. The utility model provides an energy-conserving drying device of textile fabric ash removal flattening, includes the drying-machine body, its characterized in that: the drying machine is characterized in that a drying channel with a rightward opening is formed in the drying machine body, an ash removal device is arranged in the drying channel, the ash removal device comprises a cloth winding shaft which is matched with the left rear wall of the drying channel in a rotating mode, the cloth winding shaft is located in the drying channel in a matched mode and is provided with a detachable cloth winding wheel, the upper wall of the drying channel is communicated with a sliding groove in a bilateral symmetry mode relative to the central end face of the drying machine body, a connecting block is connected to the sliding groove in a sliding mode, a connecting groove is formed in the lower side of the connecting block in a rotating mode, a connecting shaft is matched with the rear wall of the connecting groove in a rotating mode and is located in the connecting groove, the connecting shaft is located in the connecting groove in a fixedly connected mode and is abutted against the wheel, a fixed groove which is located on the same vertical plane of the sliding groove is formed in the lower side of A moving groove, a moving rod is connected to the left wall of the sliding groove in a sliding manner, a moving block is fixedly connected to the moving rod in the drying channel, a fixed block is fixedly connected to the wall body of the sliding groove, a sliding block is fixedly connected to the moving rod and is slidably connected with the sliding groove, a tension spring is connected between the sliding block and the fixed block, abutting grooves which are in the same plane as the sliding groove are symmetrically arranged on the left and right sides of the lower side of the drying channel relative to the central end face of the drying machine body, abutting rods are slidably connected with the abutting grooves, abutting springs are connected between the abutting rods and the bottom walls of the abutting grooves, when the drying machine is started, the abutting wheels abut against the fixed wheels to clamp the cloth in a relative friction manner, the moving rod abuts against the abutting rods to clamp the cloth up and down, so that dust is thrown out, and friction force causes the, the drying-machine internal center terminal surface seted up with the vertical part of the steam passageway one side of stoving passageway intercommunication, be provided with heat cycle device in the steam passageway, heat cycle device is including being located stoving passageway downside with steam passageway inner wall fixed mounting's pump of blowing, the horizontal part fixed mounting of one side of steam passageway has glutinous grey board, fixed mounting has the condensing box about the vertical part of steam passageway opposite side, set up the condensate in the condensing box, when the steam in the step material passes through after the stoving passageway ash removal, will be along with its steam condensation in the steam passageway of flowing in to make full use of heat.
2. The energy-saving drying device for dedusting and leveling textile fabrics as claimed in claim 1, is characterized in that: the ash removing device also comprises a matching groove which is arranged at the right end of the drying channel and is symmetrical up and down, a transmission shaft is rotationally matched with the rear wall of the matching groove, the transmission shaft is fixedly connected with a transmission wheel in the matching groove, a matching groove is arranged at the rear side of the matching groove, the transmission shaft is fixedly connected with a connecting gear in the matching groove, a turning shaft between the transmission shafts tested up and down is rotationally matched with the rear wall of the matching groove, the turning shaft is fixedly connected with a turning gear which can be meshed with the upper connecting gear and the lower connecting gear in the matching groove, the transmission shaft at the upper side is fixedly connected with a transmission bevel gear at the front side of the connecting gear in the matching groove, a transmission groove is arranged at the upper side of the matching groove, a rotation shaft is matched with the wall body between the rotation shaft and the matching groove, and a meshing groove is arranged at the upper side of the sliding groove, a connecting shaft is rotatably matched on a wall body between the meshing groove and the sliding groove, the connecting shaft is positioned in the sliding groove and is in threaded connection with the connecting block, the connecting shaft is positioned in the meshing groove and is fixedly connected with a meshing half gear, the top wall of the meshing groove is rotatably matched with a belt pulley shaft which is positioned on the connecting shaft and is in rotating fit towards the central end surface side of the drying machine body, the belt pulley shaft is positioned in the meshing groove and is fixedly connected with a rotating gear meshed with the meshing half gear, a connecting torsion spring is connected between the connecting shaft and the bottom wall of the meshing groove, a bevel gear meshing groove is formed in the lower side of the meshing groove, a cam shaft is rotatably matched on the wall body between the bevel gear meshing groove and the sliding groove, the cam shaft is positioned in the sliding groove and is fixedly connected with a cam shaft abutted against the moving rod, and the cam shaft and, the belt wheel groove is formed in the upper side of the meshing groove, the left belt wheel shaft and the right belt wheel shaft are located in the belt wheel groove and are connected through belt transmission, the belt wheel shaft on the right side extends upwards to the tail end of the upper side of the transmission groove and is connected with a power motor embedded in the inner wall of the drying machine body in a power connection mode, and the belt wheel shaft on the right side and the rotating shaft are located in the transmission groove and are connected through belt transmission.
3. The energy-saving drying device for dedusting and leveling textile fabrics as claimed in claim 1, is characterized in that: the hot circulating device still includes and sets up the heating chamber of steam passageway downside, the heating chamber with kneck between the steam passageway is connected with the heat-conducting plate, drying machine inner wall fixed mounting has and is located heating device of chamber downside, the heating chamber left side with steam passageway intercommunication.
CN202011033994.9A 2020-09-27 2020-09-27 Energy-conserving drying device of weaving cloth ash removal flattening Withdrawn CN112066692A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202011033994.9A CN112066692A (en) 2020-09-27 2020-09-27 Energy-conserving drying device of weaving cloth ash removal flattening

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202011033994.9A CN112066692A (en) 2020-09-27 2020-09-27 Energy-conserving drying device of weaving cloth ash removal flattening

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Publication Number Publication Date
CN112066692A true CN112066692A (en) 2020-12-11

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113649449A (en) * 2021-07-28 2021-11-16 泰兴市龙腾电子有限公司 Stamping die for manufacturing semiconductor lead frame

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN113649449A (en) * 2021-07-28 2021-11-16 泰兴市龙腾电子有限公司 Stamping die for manufacturing semiconductor lead frame

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Application publication date: 20201211