Adjustable drying frame for drying in tablecloth production and use method of adjustable drying frame

By designing an adjustable drying rack, the main motor is used to drive the inner push rod and gear assembly to achieve synchronous heating, drying and transportation of tablecloths, which solves the problems of long drying time, large space occupation and heavy burden on staff of existing tablecloths, improves drying efficiency and avoids shrinkage and wrinkles of tablecloths.

CN120760434APending Publication Date: 2025-10-10SOYANG TECH TEXTILE (ZHE JIANG) CO LTD
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Patent Information

Application Number
CN202510981060.4
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-07-16
Publication Date
2025-10-10

AI Technical Summary

Technical Problem

The existing tablecloth drying rack has the problems of long drying time, large space occupation, increased production cost, heavy burden on workers and shrinkage of tablecloths after drying.

Method used

An adjustable drying rack was designed, which included a main bracket, an inward-pushing assembly, a multi-tooth assembly, an extrusion assembly, a sloped drainage rack and a blast assembly. The main motor drove the inward-pushing rotating rod and the gear assembly to achieve simultaneous heating, drying and transportation of tablecloths. The sloped drainage rack was combined to separate sewage, and the stretching assembly prevented wrinkles on the tablecloths.

Benefits of technology

The drying efficiency is improved, the occupied space and production cost are reduced, the burden on the staff is reduced, and the shrinkage and wrinkles of the tablecloth after drying are avoided.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of tablecloth processing, in particular to an adjustable drying frame for drying for tablecloth production and a using method thereof.The adjustable drying frame comprises a main support, inner pushing assemblies are connected to the two ends of the top of the main support in a penetrating mode, and a main motor is connected to the end, extending to the top of the main support, of each inner pushing assembly through a shaft; and the inner pushing assembly and the side surface of a main motor connecting shaft are sleeved with a connecting gear set, the lower portion of the side surface of the main motor is fixedly connected with the side face of the main support, the interior of the top end of the main support is fixedly connected with a material distributing assembly, and the top of the material distributing assembly is fixedly connected with an arc-shaped protection plate. According to the adjustable drying frame for drying for tablecloth production and the using method thereof, the device is convenient to move and store through the main support, one end of the main motor serves as main energy supply power, multiple sets of gear structures can be matched when the device is optimized, energy is saved, and the risk degree of electric leakage caused by multiple wiring positions can be avoided.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of tablecloth processing, in particular to a drying adjustable drying rack for tablecloth production and a using method thereof. BACKGROUND

[0002] As one of the commonly used household items, in order to maintain the cleanliness of the table, tablecloths are used, so the demand for tablecloths is very large. In the production process of tablecloths, after cutting, the tablecloths will undergo a dyeing process, and the tablecloths mixed with medicinal water need to be dried.

[0003] However, in the existing drying process of tablecloths, due to the large production quantity, the water inside the tablecloths cannot be discharged, resulting in a long drying process, which requires a large amount of drying racks and space, increasing the production cost of tablecloths. In addition, the weight of the tablecloths increases when they are wet, which increases the burden of the workers carrying them. Moreover, the existing drying racks mostly use electric poles for heating, which requires workers to place them neatly first, further reducing the drying efficiency. At the same time, the dried tablecloths will shrink to a certain extent, and the existing drying racks cannot stretch them.

[0004] In view of this, we propose a drying adjustable drying rack for tablecloth production and a using method thereof. SUMMARY

[0005] The tablecloth production drying adjustable drying rack and the using method thereof aim to solve the problem that the water in the tablecloth of the existing drying rack cannot be discharged, resulting in a long drying process, the need to occupy a large drying rack and site, the increase of the tablecloth production cost, the increase of the weight of the tablecloth in the wet state, the increase of the burden of the workers, the need for the workers to place the tablecloth neatly, the decrease of the drying efficiency, the shrinkage of the tablecloth after drying, and the problem that the existing drying rack cannot stretch. To achieve the above-mentioned purpose, the tablecloth production drying adjustable drying rack is provided, which comprises a main support, two ends of the top of the main support are connected with an inner pushing assembly through penetration, the inner pushing assembly extends to one end of the top of the main support and is connected with a main motor through a shaft, the side surface of the connecting shaft of the inner pushing assembly and the main motor is sleeved with a connecting gear set, the lower side of the side surface of the main motor is fixedly connected with the side surface of the main support, the inner part of the top end of the main support is fixedly connected with a distributing assembly, the top of the distributing assembly is fixedly connected with an arc-shaped guard plate, the other end of the top of the main support is fixedly connected with a multi-tooth assembly through the extension of the inner pushing assembly, the middle part of the lower surface of the distributing assembly is fixedly connected with a pressing assembly, the lower surface of the pressing assembly is fixedly connected with two inclined slope drainage racks, the side opposite to the two inclined slope drainage racks is provided with an inclined surface structure, the two ends of the inclined surface of the two inclined slope drainage racks are provided with a side groove structure, the two sides of the opposite end of the two inclined slope drainage racks are fixedly connected with an upper pushing assembly, the lower surface of the upper pushing assembly is fixedly connected with a processing assembly, the side close to the main motor of the processing assembly is fixedly connected with two air blowing assemblies, the inner part of the lower surface of the processing assembly is fixedly connected with a sewage tank, the inner part of the two sides of the processing assembly is fixedly connected with a stretching assembly, the lower surface of the sewage tank is fixedly connected with a cloth conveying assembly, the connecting part of the cloth conveying assembly and the sewage tank is provided with a through opening structure, and the inner part of the cloth conveying assembly is also provided with a penetration opening structure. The cam is secured to the underside of the frame by a plurality of levers that are connected to the frame by a plurality of levers that are coupled to the frame by a plurality of levers that are coupled to the frame by a plurality of levers that are coupled to the frame by a plurality of levers that are coupled to the frame by a plurality of levers that are coupled to the frame by a plurality of levers. The connecting gear set includes a connecting main rotating tooth, the axis of the connecting main rotating tooth is sleeved on the side surface of the connection between the movable rotating rod and the main motor, the side surface of the connecting main rotating tooth is connected to a connecting gear through a connecting belt transmission, the connecting gear is fixedly connected to the connecting main rotating rod on the side close to the extrusion assembly, and the side surface of the connecting main rotating rod is sequentially connected to the connecting second gear, the connecting third gear and the connecting fourth gear, the side surface of the connecting second gear is meshed and connected to the connecting sub-gear, the interior of the connecting sub-gear is penetrated by the connecting sub-rod, and the side surface of the connecting sub-rod is sequentially connected to the connecting third gear and the connecting fourth gear, and the side surfaces of the two connecting three gears are connected to the connecting front gear through the connecting front belt transmission, and the side surfaces of the two connecting four gears are connected to the connecting rear gear through the connecting rear belt transmission.

[0006] Preferably, the main bracket includes a supporting frame, the upper surface of the supporting frame is fixedly connected to the lower surface of the cloth conveying assembly, four universal wheels are fixedly connected to the four corners of the lower surface of the supporting frame, two cross bars are connected through the top of the long rods at the four corners of the upper surface of the supporting frame, the two cross bars extend to the side surfaces of the two ends of the long rod of the supporting frame and are fixedly connected to triangular rods, and the side surface of the triangular rod close to the main motor is fixedly connected to a bracket, and one end of the top of the bracket is fixedly connected to the bottom of the side surface of the main motor.

[0007] Preferably, the inner pushing assembly comprises two movable rotating rods, the side surfaces of the two movable rotating rods are fixedly connected with two inner pushing rotating rods, the side surfaces of the two inner pushing rotating rods are provided as threaded surfaces, the side surfaces of the two movable rotating rods at opposite ends are sleeved with bevel gears, the lower sides of the two bevel gears at opposite sides are meshingly connected with bevel gears, the lower surfaces of the shaft centers of the bevel gears are fixedly connected with recessed blocks, the lower surfaces of the recessed blocks are fixedly connected to the middle portions of the upper surfaces of the arc-shaped protective plates, the upper surfaces of the recessed blocks protrude at both ends, the recessed blocks are sleeved at the opposite ends of the movable rotating rods, and the side surfaces of the two bevel gears are provided as sleeve structures.

[0008] Preferably, the material distributing assembly comprises two ramp frames, the two ends of the opposite sides of the two ramp frames are fixedly connected to the inner side walls of the two triangular rod inclined rods, the opposite sides of the two ramp frames are fixedly connected with reinforcing plates, the interiors of the reinforcing plates and the two ramp frames are provided as square through holes, the two sides of the two ramp frames are fixedly connected with four half-arc frames, the two half-arc frames at the same side of each of the two ramp frames form a group, four frosted rotating wheels are equidistantly arranged on the shaft rod side surfaces of the opposite sides of the two half-arc frames of the same group, and the side of each group of half-arc frames close to the multi-tooth assembly is fixedly connected with an extension rod.

[0009] Preferably, the multi-tooth assembly comprises a first rotating tooth, one end of the first rotating tooth is fixedly connected to the movable rotating rod, the two sides of the first rotating tooth are respectively meshingly connected with side rotating teeth, the lower side of the side surface of one of the side rotating teeth is meshingly connected with a right first rotating tooth, one end of the right first rotating tooth away from the inner pushing assembly is fixedly connected with a right second rotating tooth, the side surface of the right second rotating tooth is meshingly connected with a right double-sided tooth belt, the lower side of the inner wall of the right double-sided tooth belt is meshingly connected with a right connecting rotating tooth, the side surface of the right double-sided tooth belt is meshingly connected with a right third rotating tooth, one side of each of the two groups of right connecting rotating teeth and right third rotating teeth is fixedly connected with four extension rods, the lower side of the side surface of the right third rotating tooth is meshingly connected with a right fourth rotating tooth, one end of the right fourth rotating tooth close to the extrusion assembly is fixedly connected with a multi-tooth rod, the other end of the multi-tooth rod is fixedly connected to the middle portion of the extrusion assembly, the lower side of the side surface of the right fourth rotating tooth is meshingly connected with a right fifth rotating tooth, one end of the right fifth rotating tooth close to the extrusion assembly is fixedly connected with a multi-tooth long rod, the side surface of the multi-tooth long rod is penetratively connected with a linkage rotating tooth, the side surface of the linkage rotating tooth is drivingly connected with a transmission rotating tooth through a multi-tooth transmission belt, the shaft center of the other side rotating tooth is connected with a left first rotating tooth, the side surface of the left first rotating tooth is a left double-sided tooth belt, the other end of the inner wall of the left double-sided tooth belt is also drivingly connected with a right connecting rotating tooth, the outer side of the side surface of the left double-sided tooth belt is sequentially drivingly connected with a right third rotating tooth, a right fourth rotating tooth, a right fifth rotating tooth, a multi-tooth long rod, a linkage rotating tooth, a multi-tooth transmission belt and a transmission rotating tooth, and the inclination angles of the two transmission rotating teeth are opposite.

[0010] Preferably, the upper pushing assembly comprises a sun-shaped frame, transmission rotating gears are connected through at both ends of the sun-shaped frame near one side of the multi-tooth assembly, upper pushing protection frames are fixedly connected at both ends of the upper surface of the straight rod in the middle of the sun-shaped frame, and the opposite sides of the two upper pushing protection frames are fixedly connected at both sides of the inclined drainage frame, a plurality of upper pushing rotating rods are respectively equidistantly rotationally connected to the two hollow inner walls of the sun-shaped frame, the two upper pushing rotating rods at both ends of the sun-shaped frame are respectively fixedly connected to the two transmission rotating gears at the end near the multi-tooth assembly, toothed rotating rods are sleeved on the side surfaces of the plurality of upper pushing rotating rods, and upper pushing belts are sleeved on the side surfaces of the toothed rotating rods in the sun-shaped frame.

[0011] Preferably, the processing assembly comprises a door-shaped hollow frame, the inner walls of the upper surfaces of both ends of the door-shaped hollow frame are fixedly connected with two half-moon arc plates, the upper surface of the door-shaped hollow frame is fixedly connected to the lower surface of the sun-shaped frame, the middle portions of the inner walls of both ends of the door-shaped hollow frame are provided as sliding channels, eight resistance sliding rods are fixedly connected below the inner walls of both ends of the door-shaped hollow frame, a stirring motor is slidingly connected to the side surfaces of the eight resistance sliding rods, processing stirring rods are fixedly connected to the lower surfaces of the stirring motor, oval stirring plates are sleeved on the side surfaces of the eight processing stirring rods, and the other ends of the eight processing stirring rods are slidingly connected to the side surfaces of the resistance sliding rods at the bottom. The door type hollow frame is movably connected with two groups of air blowing assemblies on the side close to the connecting gear set, the air blowing assembly comprises two straight round rods, one end of the two straight round rods is fixedly connected to the side of the connecting front gear, the side surface of the other end of the straight round rod is sleeved with a short winding rod, the other end of the short winding rod is penetratively connected with a moving dial rod, the side surface of the moving dial rod is slidably connected with a needle returning dial rod, the top end of the needle returning dial rod is penetratively connected with a fixed winding rod, the other end of the two fixed winding rods is connected to the side surface of the door type hollow frame through an axle seat, the other end of the needle returning dial rod is penetratively connected with a lower swing rod, the other end side surface of the lower swing rod is sleeved with an upper swing rod, the top end of the upper swing rod is rotatably connected with an inner recessed frame, the top of the inner recessed frame is fixedly connected with a reciprocating tooth rod, the side opposite to the reciprocating tooth rod of the inner recessed frame is fixedly connected with a traction slide, the side surface of the traction slide is slidably connected with a positioning frame, the other end of the two positioning frames is fixedly connected to the side surface of the door type hollow frame, the upper surface of the reciprocating tooth rod is meshingly connected with a main reciprocating gear, the main reciprocating gear is axially connected with a secondary reciprocating gear on the side close to the door type hollow frame, the side surface of the secondary reciprocating gear is drivingly connected with a reciprocating transmission tooth through a reciprocating belt, the inner wall of the two ends of the reciprocating belt is drivingly connected with a reciprocating transmission tooth, the two reciprocating transmission teeth are fixedly connected with a linkage gear on the side close to the door type hollow frame, the side surface of the two linkage gears is drivingly connected with a driven gear through a short belt, the linkage gear and the driven gear are fixedly connected with a threaded rotating rod on the side close to the door type hollow frame, the two threaded rotating rods are a group, the side surface of each group of two threaded rotating rods is drivingly connected with a moving air bellow, the opposite side of the two moving air bellows is fixedly connected with a plurality of air inlets, the lower surface of the two moving air bellows is fixedly connected with two air fans, and the lower surface of the four air fans is fixedly connected with a movable sliding block, the inner part of the movable sliding block is slidably connected in the slide inside the door type hollow frame.

[0012] Preferably, the sewage tank comprises two connecting slide plates, the connecting slide plates are fixedly connected to the inside of the door type hollow frame, the inside of the two connecting slide plates is slidably connected with a hollow cleaning pull plate, the lower surface of the two connecting slide plates is fixedly connected with a drainage tank.

[0013] Preferably, the cloth conveying assembly comprises a work type frame, the upper surface of the straight rod in the middle of the work type frame is fixedly connected to the lower surface of the drainage tank, the straight rod in the middle of the work type frame is arranged to penetrate the drainage port, the side close to the connecting gear set of the work type frame is fixedly connected with a supporting plate, the upper surface of the supporting plate is fixedly connected with a conveying motor, the two ends of the conveying motor are both line-connected with an electric rotating box, the other end of the two electric rotating boxes is penetratively connected to one end of the work type frame, one end of the two electric rotating boxes is fixedly connected with a conveying rod, the two ends of the work type frame are equidistantly distributed with a plurality of conveying rods, and the side surface of the plurality of conveying rods is rotatably connected with a conveying belt.

[0014] Preferably, the use method of the adjustable drying frame for drying tablecloth production comprises the following steps: S1, hold the bracket and drag the supporting box, move the whole drying frame under the sliding of the universal wheel, after approaching the tablecloth dyeing pool, the staff directly takes out two pieces of tablecloth and puts them on the two inner push rods, the main motor shaft rotates and drives the movable rotating rod, the inner push rod close to the main motor rotates and drives the bevel gear at the same end to rotate, and then the bevel gear drives the bevel gear at the other end and the inner push rod to rotate, so that the two inner push rods keep rotating inward; S2, when the two inner push rods rotate inward, the two pieces of tablecloth on them respectively move along the arc surface of the arc-shaped guard plate to the slope frame on both sides, and fall along the hollow part in the middle of the slope frame, in the falling process, the movable rotating rod close to one end of the multi-tooth assembly drives the first rotating tooth to rotate, the two sides of the first rotating tooth respectively mesh to drive the two side rotating teeth to rotate, then the right side rotating tooth drives the bottom right rotating tooth to rotate, at this time, the left side rotating tooth and the right rotating tooth respectively drive the left rotating tooth and the right rotating tooth to rotate, at this time, the rotating left rotating tooth and the right rotating tooth respectively drive the two groups of right connecting rotating teeth and the right rotating tooth to rotate inward through the left double-sided tooth belt and the right double-sided tooth belt, and the four extension rods connected with the two groups of right connecting rotating teeth and the right rotating tooth drive the same group of sanding rotating wheels to rotate in the half-arc frame, the inward rotating sanding rotating wheels pull the tablecloth to move downward; S3, the downward moving tablecloth respectively enters the two extrusion rods, the connecting main rotating tooth on the side surface between the main motor and the movable rotating rod drives the connecting gear to rotate through the connecting belt, when the connecting gear rotates, the connecting main rotating rod rotates, the connecting two gears connected to the side surface of the connecting main rotating rod drive the connecting secondary gear and the connecting secondary rotating rod to rotate, when the connecting main rotating rod and the connecting secondary rotating rod rotate, the other end of the extrusion driving gear rotates, the two extrusion driving gears respectively drive the two extrusion double-sided tooth belts and the extrusion outer rotating teeth to rotate, when the two extrusion double-sided tooth belts rotate, the outer surface of the extrusion outer rotating teeth rotates, the four extrusion outer rotating teeth rotate inward in two groups, drive the same side of the extrusion transmission gear to rotate, and the four rotating extrusion transmission gears drive the extrusion linkage gears at the upper and lower ends to rotate synchronously through the extrusion belt, at the same time, the right rotating tooth below the two right rotating teeth drives the right rotating tooth to rotate, the multi-tooth long rod connected with the right rotating tooth drives the other end of the extrusion driving gear to rotate, here, when the two extrusion driving gears rotate, the steps of driving the extrusion rod by the connecting gear set are the same, the extrusion outer rotating teeth rotating in the same direction on both sides increase the extrusion force of the tablecloth entering the extrusion rod; S4, the tablecloth after extrusion falls into the top surface of the slope drainage frame, the tablecloth falls along the slope of the slope drainage frame, the extruded sewage flows out to the two end slots, the tablecloth after extrusion continues to fall into the corresponding direction of the push belt, since the two multi-tooth long rods are in a rotating state, the two linkage gears are also rotated, the rotating two linkage gears drive the transmission gear at the other end to rotate through the multi-tooth transmission belt, and the rotating two transmission gears rotate the push rod and the toothed rod, with the rotation of the toothed rod, the push belt is rotated, on the other hand, the connecting four gears on the side surface of the connecting main rod and the connecting auxiliary rod also drive the connecting rear gear to rotate through the connecting rear belt, and the two connecting rear gears strengthen the rotation of the push rod and the toothed rod, the slowly advancing push belt sends the tablecloth into the push protection frame, and the sewage along the slope drainage frame flows into the door-shaped hollow frame, and then falls into the drainage box and the I-shaped frame to be discharged, when stopping using, the hollow cleaning pull plate in the connecting slide plate is pulled out for cleaning to prevent clogging and sewage treatment cost. S5, after the half-moon arc plate arc surface reaches the two movable air boxes, the fan in the open state continuously dries the tablecloth through hot air, at this time, the two connecting three gears on the side surface of the connecting main rod and the connecting auxiliary rod rotate the connecting front gear through the connecting front belt, the two rotating connecting front gears drive the short winding rod through the straight circular rod, then, the rotating short winding rod drives the moving pull rod to rotate in the needle pull rod, wherein the fixed winding rod ensures that the top rotating position of the needle pull rod is unchanged, on the other hand, the bottom of the needle pull rod drives the lower swing rod and the upper swing rod to rotate, wherein the upper swing rod drives the reciprocating tooth rod to move between the two positioning frames in the inner concave frame, when the top of the reciprocating tooth rod engages to drive the main reciprocating gear to rotate, the rotating main reciprocating gear drives the auxiliary reciprocating gear to rotate, and the rotating auxiliary reciprocating gear drives the two end reciprocating transmission gears to rotate through the reciprocating belt, and the two end reciprocating transmission gears drive the linkage gear and the short belt to rotate, the driven gear at the bottom of the short belt also drives the threaded rotating rod to reciprocate, at the same time, the movable air box moves back and forth on the side surface of the threaded rotating rod, in the drying process, the tablecloth falls into the four elliptical pull plates, and according to the size of the tablecloth, the pull motor on the side surface of the resistance sliding rod is pulled to make the distance between the two elliptical pull plates close, when the pull motor starts, the two elliptical pull plates are pulled apart to stretch the tablecloth to the two sides, the stretched tablecloth falls into the conveying belt, and the conveying rod is driven to rotate after the conveying motor is started, and finally the rotating conveying belt pushes out the tablecloth.

[0015] Compared with the prior art, the beneficial effects of the present application are: In the present application, the main support facilitates the movement of the device, the device is convenient to store, and one end of the main motor serves as the main power supply, which can optimize the device and cooperate with multiple gear structures to achieve energy saving and avoid the risk of electric leakage caused by multiple wiring.

[0016] In the application, through the internal structure of the inner pushing assembly, under the driving of the main motor, the two inner pushing rotating rods can be synchronously rotated inward under the rotation of the bevel gear, cooperate with the arc-shaped guard plate below the inner pushing assembly and the material distributing assembly, and synchronously heat, dry and transport two sets of tablecloths, so as to speed up the drying efficiency.

[0017] In the application, the inner pushing rotating rod driven by the inner pushing assembly connected with the main motor can drive the multi-tooth assembly and the connecting gear set to rotate respectively, and provide rotating power for the extruding assembly and the pushing assembly at the bottom of the material distributing assembly under the rotation of the two connecting gear assemblies, so as to save energy while keeping the movement synchronous, and control the drying time of the device below through the rotating efficiency of the main motor, and ensure the drying time in the movement process according to the length of the tablecloth.

[0018] In the application, the slope drainage frame can separate sewage, and the filter rod at the top of the sewage tank can avoid pipeline blockage and avoid the cleaning pressure caused by sewage turbulence, and the stretching assembly above the conveying assembly can stretch while drying, so as to avoid wrinkles of the tablecloth after drying and increase the inconvenience of subsequent processing. BRIEF DESCRIPTION OF DRAWINGS

[0019] Figure 1 It is a perspective view of the application; Figure 2 It is a perspective view of the application; Figure 3 It is a schematic view of the main support structure of the application; Figure 4 It is a schematic view of the arc-shaped guard plate and the material distributing assembly structure of the application; Figure 5 It is a schematic view of the material distributing assembly structure of the application; Figure 6 It is a schematic view of the inner pushing assembly structure of the application; Figure 7 It is a schematic view of the pushing assembly structure of the application; Figure 8 It is a schematic view of the multi-tooth assembly structure of the application; Figure 9 It is a schematic view of the connecting gear set structure of the application; Figure 10 It is a schematic view of the extruding assembly structure of the application; Figure 11 It is a schematic view of the lower half structure of the application; Figure 12 It is a schematic view of the air blowing assembly structure of the application; Figure 13 It is a schematic view of the processing assembly and the air blowing assembly structure of the application; Figure 14 The schematic view of the air blowing component amplification structure of the present application; Figure 15 The schematic view of the sewage tank structure of the present application.

[0020] In the figure: 1, main support; 101, bearing square; 102, universal wheel; 103, crossbar; 104, triangular rod; 105, bracket; 2, main motor; 3, inner pushing component; 301, movable rotating rod; 302, inner pushing rotating rod; 303, helical gear; 304, bevel gear; 305, concave block; 4, arc-shaped guard plate; 5, material distributing component; 501, reinforcing plate; 502, ramp frame; 503, half-arc frame; 504, frosted rotating wheel; 505, extension rod; 6, multi-tooth assembly; 601, first rotating tooth; 602, side rotating tooth; 603, right one rotating tooth; 604, right two rotating tooth; 605, right double-sided tooth belt; 606, right connecting rotating tooth; 607, right three rotating tooth; 608, right four rotating tooth; 609, multi-tooth rod; 6010, right five rotating tooth; 6011, left one rotating tooth; 6012, left double-sided tooth belt; 6013, multi-tooth long rod; 6014, linkage rotating tooth; 6015, multi-tooth transmission belt; 6016, transmission rotating tooth; 7, extrusion assembly; 701, rectangular frame; 702, fixed hollow frame; 703, extrusion driving tooth; 704, extrusion double-sided tooth belt; 705, extrusion outer rotating tooth; 706, extrusion transmission tooth; 707, extrusion belt; 708, extrusion linkage tooth; 709, extrusion rod; 7010, extrusion support; 8, connecting gear set; 801, connecting main rotating tooth; 802, connecting belt; 803, connecting one gear; 804, connecting main rotating rod; 805, connecting two gear; 806, connecting secondary gear; 807, connecting three gear; 808, connecting front belt; 809, connecting front gear; 8010, connecting four gear; 8011, connecting rear belt; 8012, connecting rear gear; 8013, connecting secondary rotating rod; 9, slope drainage frame; 10, upward pushing assembly; 1001, day-shaped frame; 1002, upward pushing protection frame; 1003, upward pushing rotating rod; 1004, toothed rotating rod; 1005, upward pushing belt; 11, processing assembly; 1101, door-shaped hollow frame; 1102, half-moon arc plate; 1103, resistance sliding rod; 1104, actuating motor; 1105, processing actuating rod; 1106, elliptical actuating plate; 12, sewage tank; 1201, drainage tank; 1202, connecting sliding plate; 1203, hollow cleaning pull plate; 13, air blowing assembly; 1301, straight circular rod; 1302, short winding rod; 1303, moving actuating rod; 1304, needle returning actuating rod; 1305, fixed winding rod; 1306, lower swing rod; 1307, upper swing rod; 1308, inner recess frame; 1309, traction sliding track; 1310, reciprocating tooth rod; 1311, positioning frame; 1312, main reciprocating gear; 1313, secondary reciprocating gear; 1314, reciprocating belt; 1315, reciprocating transmission tooth; 1316, linkage gear; 1317, short belt; 1318, driven gear; 1319, threaded rotating rod; 1320, moving bellows; 1321, air blower; 1322, movable sliding block; 14, stretching assembly; 15, cloth conveying assembly; 1501, work-shaped frame; 1502, supporting plate; 1503, conveying motor; 1504, electric rotating box; 1505, conveying rod; 1506, conveying belt. DETAILED DESCRIPTION

[0021] With reference to the drawings of the embodiments of the present application, the technical solutions in the embodiments of the present application will be described clearly and completely. Obviously, the described embodiments are only a part of the embodiments of the present application, rather than all the embodiments of the present application. Based on the embodiments of the present application, all the other embodiments obtained by those skilled in the art without creative work fall within the scope of the present application.

[0022] Please refer to Figures 1 to 15 The present application provides a technical solution: a drying adjustable drying rack for tablecloth production, comprising a main support 1, two ends of the top of the main support 1 are connected through an inner pushing assembly 3, the inner pushing assembly 3 extends to one end of the top of the main support 1 and is connected with a main motor 2 through a shaft, the side surface of the connecting shaft of the inner pushing assembly 3 and the main motor 2 is sleeved with a connecting gear set 8, and the lower side of the side surface of the main motor 2 is fixedly connected with the side of the main support 1, the inside of the top end of the main support 1 is fixedly connected with a distributing assembly 5, the top of the distributing assembly 5 is fixedly connected with an arc-shaped guard plate 4, the other end of the top of the main support 1 to which the inner pushing assembly 3 extends is fixedly connected with a multi-tooth assembly 6, the middle of the lower surface of the distributing assembly 5 is fixedly connected with a squeezing assembly 7, the lower surface of the squeezing assembly 7 is fixedly connected with two inclined drainage racks 9, the side opposite to the inclined surfaces of the two inclined drainage racks 9 is provided with an inclined surface structure, the two ends of the inclined surfaces of the two inclined drainage racks 9 are provided with edge groove structures, the two sides of the opposite end of the two inclined drainage racks 9 are fixedly connected with an upper pushing assembly 10, the lower surface of the upper pushing assembly 10 is fixedly connected with a processing assembly 11, the side of the processing assembly 11 close to the main motor 2 is fixedly connected with two air blowing assemblies 13, the inside of the lower surface of the processing assembly 11 is fixedly connected with a sewage tank 12, the inside of the two sides of the processing assembly 11 is fixedly connected with a stretching assembly 14, the lower surface of the sewage tank 12 is fixedly connected with a cloth conveying assembly 15, the connection between the cloth conveying assembly 15 and the sewage tank 12 is provided with a through opening structure, and the inside of the cloth conveying assembly 15 is also provided with a through opening structure; The extrusion assembly 7 comprises a rectangular box 701, the upper surface of the rectangular box 701 is fixedly connected to the middle part of the lower surface of the reinforcing plate 501, the lower part of the two end side surfaces of the rectangular box 701 is fixedly connected with a fixed hollow frame 702, eight opposite extrusion supports 7010 are fixedly connected to the upper surfaces of the two sides of the fixed hollow frame 702, and four extrusion supports 7010 are located on the same side of the fixed hollow frame 702 and two extrusion supports 7010 form a group, and six circular frame structures are arranged on the opposite side of each group of extrusion supports 7010, three circular frame structures are fixedly connected to the side surface of the extrusion support 7010, the middle part circular frame of the eight extrusion supports 7010 is axially penetrated and connected with an extrusion outer gear 705 and an extrusion transmission gear 706, and the side surface of the eight extrusion transmission gears 706 is drivingly connected with an extrusion linkage gear 708 through the inner walls of the upper and lower ends of the extrusion belt 707, the shaft centers of the opposite sides of each group of extrusion transmission gears 706 and extrusion linkage gears 708 are fixedly connected with an extrusion rod 709, the side surface of the extrusion outer gear 705 is drivingly connected to the side surface of another extrusion outer gear 705 in the same group through an extrusion double-sided tooth belt 704, the other end of the inner wall of the extrusion double-sided tooth belt 704 is meshingly connected with an extrusion driving gear 703, and the two extrusion driving gears 703 are axially connected to one end of the rectangular box 701. The connecting gear set 8 comprises a connecting main gear 801, the shaft center of the connecting main gear 801 is sleeved on the side surface of the connecting part between the movable rotating rod 301 and the main motor 2, the side surface of the connecting main gear 801 is drivingly connected with a connecting gear I 803 through a connecting belt 802, the side of the connecting gear I 803 close to the extrusion assembly 7 is fixedly connected with a connecting main rotating rod 804, and the side surface of the connecting main rotating rod 804 is sequentially penetrated and connected with a connecting gear II 805, a connecting gear III 807 and a connecting gear IV 8010, the side surface of the connecting gear II 805 is meshingly connected with a connecting gear II 806, the inside of the connecting gear II 806 is penetrated and connected with a connecting gear II rotating rod 8013, and the side surface of the connecting gear II rotating rod 8013 is sequentially penetrated and connected with the connecting gear III 807 and the connecting gear IV 8010, and the side surfaces of the two connecting gear IIIs 807 are drivingly connected with a connecting front gear 809 through a connecting front belt 808, and the side surfaces of the two connecting gear IVs 8010 are drivingly connected with a connecting rear gear 8012 through a connecting rear belt 8011.

[0023] The main support 1 comprises a supporting square box 101, the upper surface of the supporting square box 101 is fixedly connected to the lower surface of the cloth conveying assembly 15, four universal wheels 102 are fixedly connected to the lower surface of the supporting square box 101, two cross bars 103 are penetratedly connected to the inner top of the long rods of the four corners of the upper surface of the supporting square box 101, the side surface of the triangular rod 104 fixedly connected to the two ends of the cross bars 103 extends to the side surface of the long rod of the supporting square box 101, the side surface of the triangular rod 104 close to the main motor 2 is fixedly connected with a bracket 105, and one end of the top of the bracket 105 is fixedly connected below the side surface of the main motor 2.

[0024] The inner pushing assembly 3 comprises two movable rotating rods 301, the side surface of the two movable rotating rods 301 is fixedly connected with two inner pushing rotating rods 302, the side surface of the two inner pushing rotating rods 302 is provided as a threaded surface, the side surface of the movable rotating rod 301 of the opposite end of the two inner pushing rotating rods 302 is sleeved with a bevel gear 303, the lower surface of the opposite side of the two bevel gears 303 is meshingly connected with a bevel gear 304, the lower surface of the shaft center of the bevel gear 304 is fixedly connected with a recessed block 305, the lower surface of the recessed block 305 is fixedly connected to the upper surface of the middle part of the arc-shaped guard plate 4, the upper surface of the recessed block 305 protrudes from the opposite end, and the side surface of the outer part of the two bevel gears 303 is provided as a sleeve structure.

[0025] The distributing assembly 5 comprises two slope frames 502, the two ends of the opposite sides of the two slope frames 502 are fixedly connected to the inner side walls of the two inclined rods of the triangular rod 104, the opposite side of the two slope frames 502 is fixedly connected with a reinforcing plate 501, the inner part of the reinforcing plate 501 and the two slope frames 502 is provided as a square through hole, the two sides of the two slope frames 502 are fixedly connected with four half-arc frames 503, the two half-arc frames 503 on the same side of the slope frame 502 are a group, the shaft side surface of the opposite side of the two half-arc frames 503 of the same group is equidistantly distributed with four frosted rotating wheels 504, and the shaft close to the multi-tooth assembly 6 of each group of half-arc frames 503 is fixedly connected with an extension rod 505.

[0026] The multi-tooth assembly 6 comprises a first rotating tooth 601 fixedly connected at the shaft center of one end of the movable rotating rod 301, and the two sides of the first rotating tooth 601 are respectively meshingly connected with side rotating teeth 602, and the lower side surface of one of the side rotating teeth 602 is meshingly connected with a right first rotating tooth 603, the shaft center of one end of the right first rotating tooth 603 away from the inner pushing assembly 3 is fixedly connected with a right second rotating tooth 604, the side surface of the right second rotating tooth 604 is meshingly connected with a right double-sided tooth belt 605, the lower inner wall of the right double-sided tooth belt 605 is meshingly connected with a right connecting rotating tooth 606, the side surface of the right double-sided tooth belt 605 is meshingly connected with a right third rotating tooth 607, and one side of the two groups of right connecting rotating teeth 606 and right third rotating teeth 607 are fixedly connected with four extension rods 505, the lower side surface of the right third rotating tooth 607 is meshingly connected with a right fourth rotating tooth 608, the shaft center of one end of the right fourth rotating tooth 608 close to the extrusion assembly 7 is fixedly connected with a multi-tooth rod 609, the other end of the multi-tooth rod 609 is fixedly connected to the upper middle part of the extrusion assembly 7, the lower side surface of the right fourth rotating tooth 608 is meshingly connected with a right fifth rotating tooth 6010, the shaft center of one side of the right fifth rotating tooth 6010 close to the extrusion assembly 7 is fixedly connected with a multi-tooth long rod 6013, the side surface of the multi-tooth long rod 6013 is penetratingly connected with a linkage rotating tooth 6014, the side surface of the linkage rotating tooth 6014 is drivingly connected with a driving rotating tooth 6016 through a multi-tooth transmission belt 6015, and the shaft center of the other side rotating tooth 602 is shaft-connected with a left first rotating tooth 6011, the side surface of the left first rotating tooth 6011 is a left double-sided tooth belt 6012, and the other end of the inner wall of the left double-sided tooth belt 6012 is also drivingly connected with the right connecting rotating tooth 606, and the outer side of the side surface of the left double-sided tooth belt 6012 is sequentially drivingly connected with the right third rotating tooth 607, the right fourth rotating tooth 608, the right fifth rotating tooth 6010, the multi-tooth long rod 6013, the linkage rotating tooth 6014, the multi-tooth transmission belt 6015 and the driving rotating tooth 6016, and the inclination angles of the two driving rotating teeth 6016 are opposite.

[0027] The upper pushing assembly 10 comprises a sun-shaped frame 1001, the two ends of one side of the sun-shaped frame 1001 close to the multi-tooth assembly 6 are penetratingly connected with the driving rotating teeth 6016, the upper surfaces of the two ends of the straight rod in the middle of the sun-shaped frame 1001 are fixedly connected with upper pushing protective frames 1002, and the opposite sides of the two upper pushing protective frames 1002 are fixedly connected to the two sides of the inclined drainage frame 9, the two hollow inner walls of the sun-shaped frame 1001 are respectively equidistantly rotatingly connected with a plurality of upper pushing rotating rods 1003, and the two upper pushing rotating rods 1003 at the two ends of the sun-shaped frame 1001 are respectively fixedly connected with the two driving rotating teeth 6016 at one end close to the multi-tooth assembly 6, the side surfaces of the plurality of upper pushing rotating rods 1003 are sleeved with toothed rotating rods 1004, and the side surfaces of the plurality of toothed rotating rods 1004 inside the sun-shaped frame 1001 are sleeved with upper pushing belts 1005.

[0028] The processing assembly 11 comprises a door-shaped hollow frame 1101, the inner walls of the upper surfaces of both ends of the door-shaped hollow frame 1101 are fixedly connected with two half-moon arc plates 1102, the upper surface of the door-shaped hollow frame 1101 is fixedly connected with the lower surface of the day-shaped frame 1001, the middle parts of the inner walls of both ends of the door-shaped hollow frame 1101 are sliding ways, the lower parts of the inner walls of both ends of the door-shaped hollow frame 1101 are fixedly connected with eight resistance sliding rods 1103, the side surfaces of the eight resistance sliding rods 1103 are slidingly connected with a pushing motor 1104, the lower surfaces of the pushing motor 1104 are fixedly connected with processing pushing rods 1105, the side surfaces of the eight processing pushing rods 1105 are sleeved with elliptical pushing plates 1106, and the other ends of the eight processing pushing rods 1105 are slidingly connected with the side surfaces of the resistance sliding rods 1103 at the bottom; The door type hollow frame 1101 is movably connected with two groups of air blowing assemblies 13 near one side of the connecting gear set 8. The air blowing assembly 13 comprises two straight round rods 1301, one end of each of the two straight round rods 1301 is fixedly connected to one side of the connecting front gear 809, the side surface of the other end of the straight round rod 1301 is sleeved with a short winding rod 1302, the other end of the short winding rod 1302 penetrates and is connected with a moving dial rod 1303, the side surface of the moving dial rod 1303 is slidably connected with a needle returning dial rod 1304, the top end of the needle returning dial rod 1304 penetrates and is connected with a fixed winding rod 1305, the other end of the two fixed winding rods 1305 is connected with the side surface of the door type hollow frame 1101 through an axle seat, the other end of the needle returning dial rod 1304 penetrates and is connected with a lower swing rod 1306, the other end of the lower swing rod 1306 is sleeved with an upper swing rod 1307 on the side surface, one end of the top of the upper swing rod 1307 is rotatably connected with an inner recessed frame 1308, the top of the inner recessed frame 1308 is fixedly connected with a reciprocating toothed rod 1310, one side of the inner recessed frame 1308 opposite to the reciprocating toothed rod 1310 is fixedly connected with a traction slide 1309, the side surface of the traction slide 1309 is slidably connected with a positioning frame 1311, the other end of the two positioning frames 1311 is fixedly connected with the side surface of the door type hollow frame 1101, the upper surface of the reciprocating toothed rod 1310 is meshingly connected with a main reciprocating gear 1312, the main reciprocating gear 1312 is connected with a secondary reciprocating gear 1313 through a shaft near one side of the door type hollow frame 1101, the side surface of the secondary reciprocating gear 1313 is drivingly connected with a reciprocating transmission tooth 1315 through a reciprocating belt 1314, the inner walls at both ends of the reciprocating belt 1314 are drivingly connected with the reciprocating transmission tooth 1315, and the two reciprocating transmission teeth 1315 are fixedly connected with a linkage gear 1316 near one side of the door type hollow frame 1101, the side surfaces of the two linkage gears 1316 are drivingly connected with a driven gear 1318 through a short belt 1317, the linkage gears 1316 and the driven gear 1318 are fixedly connected with a threaded rotating rod 1319 near one side of the door type hollow frame 1101, the four threaded rotating rods 1319 are in two groups, the side surfaces of each group of two threaded rotating rods 1319 are drivingly connected with a moving bellows 1320, a plurality of air inlets are fixedly connected to one side of the two moving bellows 1320, the lower surfaces of the two moving bellows 1320 are fixedly connected with two air pumps 1321, and the lower surfaces of the four air pumps 1321 are fixedly connected with movable sliding blocks 1322, the inner portions of the movable sliding blocks 1322 are slidably connected in the slides in the inner portions of the door type hollow frame 1101 at both ends.

[0029] The sewage tank 12 comprises two connecting slide plates 1202, the connecting slide plates 1202 are fixedly connected in the inner portion of the door type hollow frame 1101, the inner portions of the two connecting slide plates 1202 are slidably connected with hollow cleaning pull plates 1203, and the lower surfaces of the two connecting slide plates 1202 are fixedly connected with a drainage tank 1201.

[0030] The cloth conveying assembly 15 comprises a work frame 1501, the upper surface of the middle straight rod of the work frame 1501 is fixedly connected to the lower surface of the drainage tank 1201, the middle straight rod of the work frame 1501 is arranged to penetrate the drainage port, the side of the work frame 1501 close to the connecting gear set 8 is fixedly connected with a supporting plate 1502, the upper surface of the supporting plate 1502 is fixedly connected with a conveying motor 1503, the two ends of the conveying motor 1503 are both linearly connected with an electric rotating box 1504, the other ends of the two electric rotating boxes 1504 are connected to one end of the work frame 1501 in a penetrating mode, one end of each of the two electric rotating boxes 1504 is fixedly connected with a conveying rod 1505, a plurality of conveying rods 1505 are equidistantly distributed at the two ends of the work frame 1501, and the side surface of each of the plurality of conveying rods 1505 is rotationally connected with a conveying belt 1506.

[0031] A method for using the adjustable drying rack for tablecloth production, comprising the following steps: S1, hold the bracket 105 and drag the supporting square frame 101, under the sliding of the universal wheel 102, move the whole drying rack, after approaching the tablecloth dyeing pool, the staff directly takes out two pieces of tablecloth and lays them on the two inner push rods 302, when the main motor 2 rotates, the movable rotating rod 301 rotates, the inner push rod 302 close to the main motor 2 rotates, drives the bevel gear 304 to drive the other end of the bevel gear 304 and the inner push rod 302 to rotate, so that the two inner push rods 302 keep rotating inward; S2, when the two inner push rods 302 rotate inward, the two pieces of tablecloth on the upper surface are respectively along the arc surface of the arc-shaped guard plate 4 to the slope frame 502 on both sides, and fall along the hollow part in the middle of the slope frame 502, in the falling process, the movable rotating rod 301 close to one end of the multi-tooth assembly 6 drives the first rotating tooth 601 to rotate, wherein the two sides of the first rotating tooth 601 are respectively engaged to drive the two side rotating teeth 602 to rotate, then the right side rotating tooth 602 drives the bottom right rotating tooth 603 to rotate, at this time, the left side rotating tooth 602 and the right rotating tooth 603 respectively drive the left rotating tooth 6011 and the right rotating tooth 604 to rotate, at this time, the left rotating tooth 6011 and the right rotating tooth 604 rotate respectively through the left double-sided tooth belt 6012 and the right double-sided tooth belt 605 to drive the two groups of right connecting rotating teeth 606 and the right rotating tooth 607 to rotate inward, and the four extension rods 505 connected with the two groups of right connecting rotating teeth 606 and the right rotating tooth 607 drive the same group of sanding rotating wheels 504 to rotate in the half-arc frame 503, the inward rotating sanding rotating wheel 504 pulls the tablecloth to move downward; S3, the lower tablecloth into two extrusion rod 709, respectively, located between the main motor 2 and the side surface of the movable rotating connecting main gear 801 by connecting belt 802 drive connection gear 803 rotation, while the connection gear 803 rotation will let the connection of the main shaft 804 rotation, through the connection of the main shaft 804 side surface of the connection of the two gear 805 drive connection of the secondary gear 806 and the connection of the secondary shaft 8013 rotation, when the connection of the main shaft 804 and the connection of the secondary shaft 8013 rotation, will let the other end of the extrusion of the driving tooth 703 rotation, rotating two extrusion of the driving tooth 703 respectively drive two extrusion of the double-sided tooth belt 704 and extrusion of the outer gear 705 rotation, in two extrusion of the double-sided tooth belt 704 rotation will let the outside surface of the extrusion of the outer gear 705 rotation, four extrusion of the outer gear 705 two a group of inward rotation, and drive the same side of the extrusion of the transmission gear 706 rotation, and four rotating extrusion of the transmission gear 706 through the extrusion of the belt 707 transmission connection of the upper and lower ends of the extrusion of the linkage gear 708 synchronous rotation, at the same time, located below the two right three gear 607 right four gear 608 drive right five gear 6010 rotation, with the right five gear 6010 connection of the multi-tooth long rod 6013 drive the other end of the extrusion of the driving tooth 703 rotation, here two extrusion of the driving tooth 703 rotation with the same step as the connection of the gear set 8 drive extrusion of the rod 709, both sides of the same direction of the extrusion of the outer gear 705 increase the tablecloth into the extrusion of the rod 709 extrusion force; S4, the extruded tablecloth falls into the top surface of the slope drainage frame 9, the tablecloth along the slope of the slope drainage frame 9 falls in the process, the extruded sewage respectively to both ends of the edge groove, the extruded tablecloth continues to fall into the corresponding direction of the push belt 1005, because two multi-tooth long rod 6013 in the rotating state, will let two linkage gear 6014 also rotate, and rotating two linkage gear 6014 through the multi-tooth transmission belt 6015 drive the other end of the transmission gear 6016 rotation, and rotating two transmission gear 6016 will let the push rod 1003 and the toothed shaft 1004 rotation, with the toothed shaft 1004 rotation push the push belt 1005 rotation, on the other hand, the connection of the main shaft 804 and the connection of the secondary shaft 8013 side surface of the connection of the four gear 8010 also through the connection of the rear belt 8011 drive connection of the rear gear 8012 rotation, and two connection of the rear gear 8012 strengthen the push rod 1003 and the toothed shaft 1004 rotation, slowly push the push belt 1005 into the push frame 1102, while along the slope of the slope drainage frame 9 edge groove sewage into the door type hollow frame 1101, then in turn fall into the drainage tank 1201 and the work type frame 1501 discharge, when stop using, pull out the connection of the slide plate 1202 in the hollow cleaning pull plate 1203, to clean, prevent clogging and sewage treatment cost; S5, through the half month arc plate 1102 arc surface to reach two mobile bellows 1320, the fan 1321 in the open state is constantly through the hot air to dry the tablecloth, at this time, the two connecting three gear 807 on the side surface of the connecting main rotating rod 804 and the connecting vice rotating rod 8013 is rotated by the connecting front gear 809 driven by the connecting front belt 808, the two connecting front gears 809 are rotated by the straight circular rod 1301 to drive the short winding rod 1302, then, the short winding rod 1302 is rotated by the moving rod 1303 in the needle return rod 1304, wherein the fixed winding rod 1305 ensures that the top of the needle return rod 1304 does not change, on the other hand, the bottom of the needle return rod 1304 drives the lower swing rod 1306 and the upper swing rod 1307 to rotate, wherein the upper swing rod 1307 drives the reciprocating tooth rod 1310 to move inside the two positioning frames 1311 in the inner recess frame 1308, when the top of the reciprocating tooth rod 1310 is engaged to drive the main reciprocating gear 1312 to rotate, the main reciprocating gear 1312 is rotated to drive the vice reciprocating gear 1313, and when the vice reciprocating gear 1313 is rotated, the reciprocating transmission teeth 1315 at both ends are rotated by the reciprocating belt 1314, and the reciprocating transmission teeth 1315 at both ends are rotated to drive the linkage gear 1316 and the short belt 1317, the driven gear 1318 at the bottom of the short belt 1317 is also rotated to drive the threaded rotating rod 1319 to reciprocate, at the same time, the movable bellows 1320 moves back and forth on the side surface of the threaded rotating rod 1319, in the drying process, the tablecloth falls into the four oval push plates 1106, and according to the size of the tablecloth, the push motor 1104 on the side surface of the resistance sliding rod 1103 is pulled to make the distance between the two oval push plates 1106 in the same group close, when the push motor 1104 starts, the two oval push plates 1106 are stretched to the two sides, the stretched tablecloth falls into the conveying belt 1506, and the conveying rod 1505 is rotated by the starting of the conveying motor 1503, and finally the conveying belt 1506 pushes the tablecloth out.

[0032] The basic principles, main features and advantages of the present application are shown and described above. Those skilled in the art should understand that the present application is not limited to the above-mentioned embodiments, and the above-mentioned embodiments and descriptions in the specification are only preferred examples of the present application and are not intended to limit the present application. Without departing from the spirit and scope of the present application, various changes and improvements can be made to the present application, and these changes and improvements all fall within the scope of the claimed present application. The scope of protection of the present application is defined by the appended claims and their equivalents.

Claims

1. An adjustable drying rack for drying tablecloths for production, comprising a main bracket (1), characterized in that: The two ends of the top of the main bracket (1) are connected with an inner push component (3), and the inner push component (3) extends to the top of the main bracket (1) and is connected to the main motor (2) at one end thereof, and the side surface of the inner push component (3) and the connecting shaft of the main motor (2) are sleeved with a connecting gear set (8), and the lower side surface of the main motor (2) is fixedly connected to the side of the main bracket (1), and the top of the main bracket (1) is fixedly connected to a material distribution component (5), and the top of the material distribution component (5) is fixedly connected to an arc-shaped guard plate (4), and the other end of the inner push component (3) extending to the top of the main bracket (1) is fixedly connected to a multi-tooth component (6), and the middle of the lower surface of the material distribution component (5) is fixedly connected to an extrusion component (7), and the lower surface of the extrusion component (7) is fixedly connected to two slope drainage racks (9), and the two slope drainage racks (9) The opposite side is set as a slope structure, and the two ends of the slope of the two slope drainage racks (9) are set as side groove structures, the two sides of the opposite end of the two slope drainage racks (9) are fixedly connected with the push-up components (10), the lower surface of the push-up components (10) is fixedly connected with the processing component (11), the side of the processing component (11) close to the main motor (2) is fixedly connected with two blower components (13), the interior of the lower surface of the processing component (11) is fixedly connected with the sewage tank (12), the interior of the two sides of the processing component (11) is fixedly connected with the stretching component (14), the lower surface of the sewage tank (12) is fixedly connected with the cloth conveying component (15), and the connection between the cloth conveying component (15) and the sewage tank (12) is set as a through-opening structure, and the interior of the cloth conveying component (15) is also set as a through-opening structure; The extrusion assembly (7) includes a rectangular frame (701), the upper surface of the rectangular frame (701) is fixedly connected to the middle of the lower surface of the reinforcing plate (501), and fixed hollow frames (702) are fixedly connected below the side surfaces of both ends of the rectangular frame (701). The fixed hollow frames (702) are located on the upper surfaces of both sides of the rectangular frame (701) and are fixedly connected to eight oppositely standing extrusion brackets (7010), and four extrusion brackets (7010) are located on the same side of the fixed hollow frame (702) and two extrusion brackets (7010) form a group. At the same time, each group of extrusion brackets (7010) is provided with six circular frame structures on the opposite side. The side surfaces of the extrusion brackets (7010) are fixedly connected to three circular frame structures. The eight extrusion brackets (7010) are fixedly connected to the upper surfaces of the fixed hollow frames (702) on both sides of the rectangular frame. 10) The middle circular frame is respectively connected to the extrusion outer rotating teeth (705) and the extrusion transmission teeth (706) through the axis, and the side surfaces of the eight extrusion transmission teeth (706) are transmission-connected to the extrusion linkage teeth (708) at the upper and lower inner walls of the extrusion belt (707). An extrusion rod (709) is fixedly connected to the axis center on the opposite side of each group of extrusion transmission teeth (706) and extrusion linkage teeth (708). The side surface of the extrusion outer rotating teeth (705) is transmission-connected to the side surface of another extrusion outer rotating teeth (705) in the same group through the extrusion double-sided toothed belt (704). The other end of the inner wall of the extrusion double-sided toothed belt (704) is meshedly connected to the extrusion active teeth (703), and the two extrusion active teeth (703) are both axially connected to one end of the rectangular frame (701); The connecting gear set (8) includes a connecting main rotating tooth (801), the axis of the connecting main rotating tooth (801) is sleeved on the side surface of the connection between the movable rotating rod (301) and the main motor (2), the side surface of the connecting main rotating tooth (801) is connected to a connecting gear (803) through a connecting belt (802), the connecting gear (803) is fixedly connected to a connecting main rotating rod (804) on a side close to the extrusion component (7), and the side surface of the connecting main rotating rod (804) is sequentially connected to a connecting gear (805), a connecting gear (807) and a connecting gear (8010). The side surface of the second connecting gear (805) is meshedly connected with the connecting sub-gear (806), the interior of the connecting sub-gear (806) is penetrated by the connecting sub-rotating rod (8013), and the side surface of the connecting sub-rotating rod (8013) is penetrated and connected with the connecting third gear (807) and the connecting fourth gear (8010) in sequence, and the side surfaces of the two connecting third gears (807) are both connected to the connecting front gear (809) through the connecting front belt (808), and the side surfaces of the two connecting fourth gears (8010) are both connected to the connecting rear gear (8012) through the connecting rear belt (8011).

2. The adjustable drying rack for tablecloth production according to claim 1, characterized in that: The main bracket (1) includes a supporting frame (101), the upper surface of the supporting frame (101) is fixedly connected to the lower surface of the cloth conveying assembly (15), four universal wheels (102) are fixedly connected to the four corners of the lower surface of the supporting frame (101), two cross bars (103) are connected through the top of the long rods at the four corners of the upper surface of the supporting frame (101), the two cross bars (103) extend to the side surfaces of the two ends of the long rod of the supporting frame (101), and are fixedly connected to the triangular rods (104), and the side surface of the triangular rod (104) close to the side of the main motor (2) is fixedly connected to the bracket (105), and one end of the top of the bracket (105) is fixedly connected to the bottom of the side surface of the main motor (2).

3. The adjustable drying rack for drying tablecloths according to claim 2, characterized in that: The inner push assembly (3) includes two movable rotating rods (301), the side surfaces of the two movable rotating rods (301) are fixedly connected to the two inner push rotating rods (302), and the side surfaces of the two inner push rotating rods (302) are both set as threaded surfaces, the side surfaces of the movable rotating rods (301) at the opposite ends of the two inner push rotating rods (302) are both sleeved with helical gears (303), and the lower surfaces of the opposite sides of the two helical gears (303) are meshed and connected with bevel gears (304), and the lower surfaces of the bevel gears (304) at the axis are fixedly connected with a concave block (305), the lower surface of the concave block (305) is fixedly connected to the middle part of the upper surface of the arc-shaped guard plate (4), and the protruding ends of the upper surface of the concave block (305) are sleeved on the opposite ends of the movable rotating rod (301), and the outer sides of the side surfaces of the two helical gears (303) are set as sleeve structures.

4. The adjustable drying rack for drying tablecloths according to claim 3, characterized in that: The material dividing assembly (5) comprises two ramp frames (502), the two ends of the two ramp frames (502) on opposite sides are fixedly connected to the inner side walls of the oblique rods of the two triangular rods (104), the opposite sides of the two ramp frames (502) are fixedly connected to a reinforcement plate (501), and the interiors of the reinforcement plate (501) and the two ramp frames (502) are both set as square through-openings, and four semi-arc frames (503) are fixedly connected to both sides of the two ramp frames (502), and the eight semi-arc frames (503) are located on the same side of the ramp frame (502) as a group, and four grinding wheels (504) are equidistantly distributed on the side surfaces of the shafts of the two semi-arc frames (503) on the opposite sides of the same group, and an extension rod (505) is fixedly connected to the side of the shaft of each group of semi-arc frames (503) close to the multi-tooth assembly (6).

5. The adjustable drying rack for drying tablecloths according to claim 4, characterized in that: The multi-tooth assembly (6) includes a first rotating tooth (601), the axis of the first rotating tooth (601) is fixedly connected to one end of the movable rotating rod (301), the two sides of the first rotating tooth (601) are respectively meshed with side rotating teeth (602), and the lower side surface of one of the side rotating teeth (602) is meshed with a right first rotating tooth (603), the axis of the right first rotating tooth (603) is fixedly connected to the end away from the inner pushing assembly (3), the side surface of the right second rotating tooth (604) is meshed with a right double-sided toothed belt (605), and the The lower portion of the inner wall of the right double-sided toothed belt (605) is meshedly connected with a right connecting tooth (606), the side surface of the right double-sided toothed belt (605) is meshedly connected with a right three-turn tooth (607), and one side of the two groups of right connecting teeth (606) and the right three-turn tooth (607) are fixedly connected to four extension rods (505), the lower portion of the side surface of the right three-turn tooth (607) is meshedly connected with a right four-turn tooth (608), the right four-turn tooth (608) is fixedly connected to a multi-tooth rod (609) at the axis near one end of the extrusion assembly (7), and the other end of the multi-tooth rod (609) is fixedly connected to Above the middle of the extrusion assembly (7), the right four-turn gear (608) is meshedly connected to the right five-turn gear (6010) below the side surface. The right five-turn gear (6010) is fixedly connected to a multi-toothed long rod (6013) at the axis center of one side of the extrusion assembly (7). The side surface of the multi-toothed long rod (6013) is penetrated and connected to a linkage tooth (6014). The side surface of the linkage tooth (6014) is connected to a transmission tooth (6016) through a multi-toothed transmission belt (6015). The axis center of the other side tooth (602) is axially connected to a left one-turn gear ( 6011), the side surface of the left first rotating tooth (6011) is provided with a left double-sided toothed belt (6012), and the other end of the inner wall of the left double-sided toothed belt (6012) is similarly transmission-connected with a right connecting rotating tooth (606), and the outer side surface of the side surface of the left double-sided toothed belt (6012) is sequentially transmission-connected with a right third rotating tooth (607), a right fourth rotating tooth (608), a right fifth rotating tooth (6010), a multi-tooth long rod (6013), a linkage rotating tooth (6014), a multi-tooth transmission belt (6015) and a transmission rotating tooth (6016), and the inclination angles of the two transmission rotating teeth (6016) are opposite.

6. The adjustable drying rack for tablecloth production according to claim 5, characterized in that: The push-up assembly (10) includes a sun-shaped frame (1001), and the two ends of the sun-shaped frame (1001) close to the multi-tooth assembly (6) are connected with transmission gears (6016). The two ends of the upper surface of the straight rod in the middle of the sun-shaped frame (1001) are fixedly connected with push-up protection frames (1002), and the opposite sides of the two push-up protection frames (1002) are fixedly connected to the two sides of the slope drainage frame (9). The two hollow inner walls of the sun-shaped frame (1001) are respectively A plurality of upward push-up rotating rods (1003) are equidistantly connected for rotation, and the two upward push-up rotating rods (1003) at both ends of the sun-shaped frame (1001) are fixedly connected to two transmission rotating teeth (6016) at one end close to the multi-tooth component (6), and the side surfaces of the plurality of upward push-up rotating rods (1003) are sleeved with toothed rotating rods (1004), and the side surfaces of the plurality of toothed rotating rods (1004) located inside the sun-shaped frame (1001) are sleeved with upward push belts (1005).

7. The adjustable drying rack for tablecloth production and drying according to claim 6, characterized in that: The processing assembly (11) comprises a door-shaped hollow frame (1101), the inner walls of the upper surfaces at both ends of the door-shaped hollow frame (1101) are fixedly connected to two half-moon arc plates (1102), the upper surface of the door-shaped hollow frame (1101) is fixedly connected to the lower surface of the sun-shaped frame (1001), and the middle parts of the inner walls at both ends of the door-shaped hollow frame (1101) are provided with slideways, eight resistance slide bars (1103) are fixedly connected below the inner walls at both ends of the door-shaped hollow frame (1101), and the side surfaces of the eight resistance slide bars (1103) are slidably connected to the toggle motor (1104), the lower surface of the toggle motor (1104) is fixedly connected to the processing lever (1105), and the side surfaces of the eight processing lever bars (1105) are sleeved with an elliptical toggle plate (1106), and the other ends of the eight processing lever bars (1105) are slidably connected to the side surface of the resistance slide bar (1103) at the bottom; The door-shaped hollow frame (1101) is movably connected to two groups of air blowing assemblies (13) on one side close to the connecting gear group (8). The air blowing assemblies (13) include two straight round rods (1301). One end of each of the two straight round rods (1301) is fixedly connected to one side of the connecting front gear (809). A short winding rod (1302) is sleeved on the side surface of the other end of the straight round rod (1301). The other end of the short winding rod (1302) is connected to a moving lever (1303) through the other end. The side surface of the moving lever (1303) is slidably connected to a return needle lever (1304). The top end of the return needle lever (1304) is connected to a fixed winding rod (1305). The other ends of the two fixed winding rods (1305) are connected to the shaft seat. The backstitch lever (1304) is connected to the side surface of the door-shaped hollow frame (1101), and the other end of the backstitch lever (1304) is connected to the lower swing lever (1306). The other end of the side surface of the lower swing lever (1306) is sleeved with the upper swing lever (1307). One end of the top of the upper swing lever (1307) is rotatably connected to the inner concave frame (1308). The top of the inner concave frame (1308) is fixedly connected to the reciprocating gear rod (1310). The side of the inner concave frame (1308) opposite to the reciprocating gear rod (1310) is fixedly connected to the traction slideway (1309). The side surface of the traction slideway (1309) is slidably connected to the positioning frame (1311). The other ends of the two positioning frames (1311) are fixedly connected to the side of the door-shaped hollow frame (1101). The upper surface of the reciprocating gear rod (1310) is meshedly connected with a main reciprocating gear (1312), and the main reciprocating gear (1312) is connected to a secondary reciprocating gear (1313) on a side close to the door-shaped hollow frame (1101). The side surface of the secondary reciprocating gear (1313) is connected to a reciprocating transmission tooth (1315) through a reciprocating belt (1314), and the inner walls of both ends of the reciprocating belt (1314) are connected to the reciprocating transmission tooth (1315), and the two reciprocating transmission teeth (1315) are fixedly connected to a linkage gear (1316) on one side close to the door-shaped hollow frame (1101). The side surfaces of the two linkage gears (1316) are connected to the driven gear (1316) through a short belt (1317). 18), the linkage gear (1316) and the driven gear (1318) are fixedly connected to a threaded rotating rod (1319) on one side close to the door-shaped hollow frame (1101), the four threaded rotating rods (1319) are grouped into two, and the side surfaces of the two threaded rotating rods (1319) in each group are transmission-connected to a movable bellows (1320), the two movable bellows (1320) are fixedly connected to a plurality of air outlets on opposite sides, and the lower surfaces of the two movable bellows (1320) are fixedly connected to two fans (1321), and the lower surfaces of the four fans (1321) are fixedly connected to movable sliders (1322), and the interior of the movable sliders (1322) is slidably connected to the slideways inside the two ends of the door-shaped hollow frame (1101).

8. The adjustable drying rack for tablecloth production according to claim 7, characterized in that: The sewage tank (12) comprises two connecting slide plates (1202), the connecting slide plates (1202) being fixedly connected to the interior of the door-shaped hollow frame (1101), the interiors of the two connecting slide plates (1202) being slidably connected to a hollow cleaning pull plate (1203), and the lower surfaces of the two connecting slide plates (1202) being fixedly connected to the drainage tank (1201).

9. The adjustable drying rack for tablecloth production and drying according to claim 8, characterized in that: The cloth conveying assembly (15) includes a work frame (1501), the upper surface of the straight rod in the middle of the work frame (1501) is fixedly connected to the lower surface of the drainage box (1201), and the straight rod in the middle of the work frame (1501) is set to pass through the drainage outlet, and the side of the work frame (1501) close to the connecting gear set (8) is fixedly connected to a support plate (1502), and the upper surface of the support plate (1502) is fixedly connected to a conveying motor (1503). Both ends of the transmission motor (1503) are connected to the electric transfer box (1504), the other ends of the two electric transfer boxes (1504) are connected to one end of the work frame (1501), and one end of the two electric transfer boxes (1504) is fixedly connected to the conveying rod (1505), and multiple conveying rods (1505) are evenly distributed at both ends of the work frame (1501), and the side surfaces of the multiple conveying rods (1505) are rotatably connected to the conveying belt (1506).

10. A method for using the adjustable drying rack for tablecloth production according to claim 9, comprising the following steps: S1. Hold the bracket (105) and drag the supporting frame (101). The entire drying rack moves under the sliding of the universal wheel (102). When the rack is near the tablecloth dyeing pool, the staff directly fishes out two tablecloths and places them on the two inner push rods (302). When the main motor (2) shaft rotates, the movable rod (301) is driven to rotate. The inner push rod (302) rotating near the main motor (2) drives the bevel gear (303) at the same end to rotate. Then, the bevel gear (304) drives the bevel gear (303) and the inner push rod (302) at the other end to rotate, so that the two inner push rods (302) keep rotating inward. S2. As the two inward-pushing rotating rods (302) rotate inward, the two tablecloths placed on the top respectively move along the arc surface of the arc-shaped guard plate (4) into the ramp frame (502) on both sides, and fall along the hollow part in the middle of the ramp frame (502). During the falling process, the movable rotating rod (301) near one end of the multi-tooth assembly (6) drives the first rotating tooth (601) to rotate, wherein the two sides of the first rotating tooth (601) respectively engage and drive the two side rotating teeth (602) to rotate, and then the side rotating tooth (602) on the right drives the bottom right rotating tooth (603) to rotate, and at this time the side rotating tooth (602) on the left and The right first rotating gear (603) drives the left first rotating gear (6011) and the right second rotating gear (604) to rotate respectively. At this time, the rotating left first rotating gear (6011) and the right second rotating gear (604) drive the two groups of right connecting rotating gears (606) and the right third rotating gear (607) to rotate inwards through the left double-sided toothed belt (6012) and the right double-sided toothed belt (605) respectively. The four extension rods (505) connected to the two groups of right connecting rotating gears (606) and the right third rotating gear (607) drive the frosted rotating wheels (504) of the same group to rotate in the semi-arc frame (503). The frosted rotating wheels (504) rotating inwards pull the tablecloth downwards. S3. The tablecloth that moves downward enters the two extrusion rods (709) respectively, wherein the main rotating tooth (801) located on the side surface between the main motor (2) and the movable rotating rod (301) rotates and drives the connecting gear (803) to rotate through the connecting belt (802). When the connecting gear (803) rotates, the connecting main rotating rod (804) rotates. The connecting gear (805) that runs through the side surface of the connecting main rotating rod (804) drives the connecting sub-gear (806) and the connecting sub-rotating rod (8013) to rotate. When the connecting main rotating rod (804) and the connecting sub-rotating rod (8013) rotate, the extrusion active tooth (703) at the other end rotates. The two rotating extrusion active teeth (703) respectively drive the two extrusion double-sided toothed belts (704) and the extrusion outer rotating tooth (705) to rotate. When the two extrusion double-sided toothed belts (704) rotate, the extrusion active teeth (703) at the other end rotate. When the gears are in motion, the extrusion outer rotating gears (705) on the outer surface are rotated. The four extrusion outer rotating gears (705) are rotated inward in groups of two, and drive the extrusion transmission gears (706) on the same side to rotate. The four rotating extrusion transmission gears (706) are connected to the extrusion linkage gears (708) at the upper and lower ends via the extrusion belt (707) to rotate synchronously. At the same time, the right four-turn gear (608) located below the two right three-turn gears (607) drives the right five-turn gear (6010) to rotate. The multi-toothed long rod (6013) connected to the right five-turn gear (6010) drives the extrusion active gear (703) at the other end to rotate. Here, when the two extrusion active gears (703) rotate, the steps are the same as the steps of the connecting gear set (8) driving the extrusion rod (709). The extrusion outer rotating gears (705) rotating in the same direction on both sides increase the extrusion force of the tablecloth entering the extrusion rod (709). S4. The squeezed tablecloth falls onto the top surface of the sloped drainage rack (9). As the tablecloth falls along the slope of the sloped drainage rack (9), the squeezed sewage flows out to the side grooves at both ends. The squeezed tablecloth continues to fall onto the push-up belt (1005) in the corresponding direction. Since the two multi-toothed long rods (6013) are in a rotating state, the two linked rotating teeth (6014) will also rotate. The rotating two linked rotating teeth (6014) drive the transmission rotating teeth (6016) at the other end to rotate through the multi-toothed transmission belt (6015). The rotating two transmission rotating teeth (6016) will cause the push-up rotating rod (1003) and the toothed rotating rod (1004) to rotate. As the toothed rotating rod (1004) rotates, the push-up belt (1005) is pushed to rotate. On the other hand, the linked rotating teeth (6014) will rotate. The four connecting gears (8010) connected to the side surfaces of the main rotating rod (804) and the connecting auxiliary rotating rod (8013) also drive the connecting rear gear (8012) to rotate through the connecting rear belt (8011), and the two connecting rear gears (8012) strengthen the rotation of the upper push rotating rod (1003) and the toothed rotating rod (1004). The slowly advancing upper push belt (1005) sends the tablecloth into the upper push guard frame (1102), and the sewage along the side groove of the slope drainage rack (9) flows into the door-shaped hollow rack (1101), and then falls into the drainage box (1201) and the work-shaped rack (1501) in turn for discharge. When it is out of use, the hollow cleaning pull plate (1203) in the connecting slide plate (1202) is pulled out for cleaning to prevent blockage and sewage treatment costs; S5. After passing through the arc surface of the half-moon arc plate (1102) and reaching the two movable bellows (1320), the blower (1321) that remains turned on continuously dries the tablecloth through hot air. At this time, the two connecting three gears (807) located on the side surface of the connecting main rotating rod (804) and the connecting auxiliary rotating rod (8013) rotate through the connecting front belt (808) to connect the connecting front gear (809). The rotating two connecting front gears (809) both drive the short winding rod (1302) to rotate through the straight round rod (1301). Then, the rotating short winding rod (1302) drives the moving The lever (1303) rotates in the return needle lever (1304), wherein the fixed surrounding rod (1305) ensures that the top rotation position of the return needle lever (1304) remains unchanged. On the other hand, the bottom of the return needle lever (1304) drives the lower swing rod (1306) and the upper swing rod (1307) to rotate, wherein the upper swing rod (1307) drives the reciprocating gear rod (1310) located inside the two positioning frames (1311) to move in the inner concave frame (1308). When the top of the reciprocating gear rod (1310) engages, it drives the main reciprocating gear (1312) to rotate, and the rotating main reciprocating gear ( 1312) drives the secondary reciprocating gear (1313) to rotate, and when the secondary reciprocating gear (1313) rotates, the reciprocating transmission teeth (1315) at both ends are driven to rotate through the reciprocating belt (1314), and the reciprocating transmission teeth (1315) rotating at both ends drive the linkage gear (1316) and the short belt (1317) to rotate. Similarly, the driven gear (1318) located at the bottom of the short belt (1317) drives the threaded rotating rod (1319) to reciprocate, and at the same time, the movable bellows (1320) moves back and forth on the side surface of the threaded rotating rod (1319). During the process, the tablecloth falls into the four elliptical shifting plates (1106), and the shifting motor (1104) on the side surface of the resistance slide bar (1103) is pulled according to the size of the tablecloth, so that the distance between the two elliptical shifting plates (1106) in the same group is shortened. When the shifting motor (1104) starts to start, the two elliptical shifting plates (1106) are stretched to the sides. The stretched tablecloth falls onto the conveying belt (1506). After the conveying motor (1503) starts, it drives the conveying rod (1505) to rotate, and finally the rotating conveying belt (1506) pushes the tablecloth out.