Infrared three-machine synchronous automation device of dryer

文档序号:301234 发布日期:2021-11-26 浏览:32次 中文

阅读说明:本技术 烘干机红外线三机同步自动化装置 (Infrared three-machine synchronous automation device of dryer ) 是由 朱士勇 于 2021-09-01 设计创作,主要内容包括:本发明公开了烘干机红外线三机同步自动化装置,属于印染技术领域,包括底座、中空固定仓、第一伺服电缸和第二伺服电缸,所述中空固定仓内顶部两端均通过第二连接螺栓安装有红外陶瓷加热器,所述中空固定仓顶部两端和底部两端均焊接有竖板,其中两组所述竖板顶端一侧通过固定板和螺栓安装有第一伺服电缸,其中另两组所述竖板顶部一侧通过安装板和螺栓连接有第二伺服电缸。该新型能方便对布料进行一体化传输、红外线加热烘干和风机除尘,处理效率高,在烘干时,加热仓内底部可能会黏附污渍,本装置加热仓底部具备能方便拆卸的底板,能根据需要对底部进行有效清洁,适合广泛推广使用。(The invention discloses a dryer infrared three-machine synchronous automation device, which belongs to the technical field of printing and dyeing and comprises a base, a hollow fixed bin, a first servo electric cylinder and a second servo electric cylinder, wherein infrared ceramic heaters are respectively installed at two ends of the top in the hollow fixed bin through second connecting bolts, vertical plates are respectively welded at two ends of the top and two ends of the bottom of the hollow fixed bin, the first servo electric cylinder is installed at one side of the top ends of two groups of vertical plates through a fixed plate and bolts, and the second servo electric cylinder is connected at one side of the top of the other two groups of vertical plates through a mounting plate and bolts. This novel can conveniently carry out integration transmission, infrared heating stoving and fan dust removal to the cloth, the treatment effeciency is high, and when drying, the bottom can adhere the spot in the heated warehouses, and this device heated warehouses bottom possesses the bottom plate that can conveniently dismantle, can effectively clean the bottom as required, is fit for extensively using widely.)

1. Synchronous automation equipment of three machines of drying-machine infrared ray, including base (1), fixed storehouse of cavity (7), first servo electric jar (11) and second servo electric jar (12), its characterized in that: infrared ceramic heater (9) are all installed through second connecting bolt (8) at top both ends in fixed storehouse of cavity (7), riser (10) have all been welded at fixed storehouse of cavity (7) top both ends and bottom both ends, wherein two sets of riser (10) top one side is installed first servo electric jar (11) through fixed plate and bolt, and wherein in addition two sets of riser (10) top one side has servo electric jar of second (12) through mounting panel and bolted connection, the power take off end of first servo electric jar (11) and servo electric jar of second (12) is connected with first diaphragm (14) and second diaphragm (18) respectively.

2. The infrared three-machine synchronous automation device of the dryer according to claim 1, characterized in that: riser (26) have all been welded to first diaphragm (14) and second diaphragm (18) top one end, servo motor (13) are all installed through the bolt to riser (26) one end, the welding of first diaphragm (14) bottom has riser block (25), deflector roll (15) are installed through the rotation axis in riser block (25) one side.

3. The infrared three-machine synchronous automation device of the dryer according to claim 2, characterized in that: the power output end and one side of the rotating shaft of the servo motor (13) are both connected with chain wheels (16), and the chain wheels (16) are in transmission connection through chains (17).

4. The infrared three-machine synchronous automation device of the dryer according to claim 1, characterized in that: an air inlet groove (19) is formed in the top of the second transverse plate (18) in one group in a penetrating mode, and an ion fan (20) is installed at the position, corresponding to the air inlet groove (19), of the bottom of the second transverse plate (18) through screws.

5. The infrared three-machine synchronous automation device of the dryer according to claim 1, characterized in that: a preformed groove (21) is formed in the bottom of the hollow fixing bin (7), a bottom groove (22) is formed in the lower side of the preformed groove (21), and a bottom plate (24) is fixedly mounted on the outer side of the bottom groove (22) through a connecting screw (23).

6. The infrared three-machine synchronous automation device of the dryer according to claim 1, characterized in that: support column (3) have all been welded at fixed storehouse of cavity (7) bottom both ends, support column (3) bottom is connected with connection pad (4), connection pad (4) are connected fixedly through first connecting bolt (5) and base (1) top.

7. The infrared three-machine synchronous automation device of the dryer as claimed in claim 6, characterized in that: connecting pad (4) and support column (3) connect the corner and are provided with strengthening rib (6), the quantity of strengthening rib (6) specifically sets up to the multiunit and is circumference evenly distributed along the centre of a circle of connecting pad (4).

8. The infrared three-machine synchronous automation device of the dryer according to claim 1, characterized in that: the temperature controller (2) is installed through the mounting bracket to base (1) top one end, the electric power output of temperature controller (2) and the electric power input of infrared ceramic heater (9) constitute the electricity through the wire and are connected.

Technical Field

The invention belongs to the technical field of printing and dyeing, and particularly relates to an infrared three-machine synchronous automation device of a dryer.

Background

In the field of printing and dyeing, in order to dry printed and dyed cloth, three processes of cloth transmission, infrared heating drying and fan dedusting are needed, so that a three-machine synchronous automation device is very necessary.

The prior automatic device has the following defects: 1. the cloth can not be conveniently subjected to integrated transmission, infrared heating and drying and fan dust removal, and the treatment efficiency is low; 2. during drying, stains may adhere to the bottom in the heating bin, and the bottom of the conventional heating bin is not provided with a bottom plate which can be conveniently detached, so that the bottom cannot be effectively cleaned according to needs. Therefore, an infrared three-machine synchronous automation device of the dryer is provided.

Disclosure of Invention

The invention aims to provide an infrared three-machine synchronous automation device of a dryer so as to solve the problems in the background technology.

In order to achieve the purpose, the invention provides the following technical scheme: synchronous automation equipment of three machines of drying-machine infrared ray, including base, the fixed storehouse of cavity, first servo electric jar and the servo electric jar of second, infrared ceramic heater is all installed through second connecting bolt at the top both ends in the fixed storehouse of cavity, the riser has all been welded at the fixed storehouse top both ends of cavity and bottom both ends, wherein two sets of first servo electric jar is installed through fixed plate and bolt to riser top one side, and wherein two sets of in addition riser top one side has the servo electric jar of second through mounting panel and bolted connection, the power take off end of first servo electric jar and the servo electric jar of second is connected with first diaphragm and second diaphragm respectively.

Further, the riser is all welded to first diaphragm and second diaphragm top one end, servo motor is all installed through the bolt to riser one end, the welding of first diaphragm bottom has the riser, the deflector roll is installed through the rotation axis in riser one side.

Furthermore, the power output end of the servo motor and one side of the rotating shaft are connected with chain wheels, the chain wheels are connected in a chain transmission mode, the servo motor can conveniently drive the chain wheels to rotate during working, and therefore the chain can be used for driving the rotating shaft to rotate synchronously.

Furthermore, one of them group the air inlet duct has been seted up in the second diaphragm top is run through, there is the ion fan second diaphragm bottom and air inlet duct corresponding position through the screw, and the ion fan conveniently carries out the air inlet via the air inlet duct at the during operation, blows off wind through the lower extreme air outlet again, and contains a large amount of positive and negative ions in the wind that blows off, can effectively reduce the adhering to of cloth surface dust in a terminal time, keeps the cleanness on cloth surface.

Further, the preformed groove has been seted up to fixed storehouse bottom of cavity, the preformed groove downside is provided with the kerve, there is the bottom plate kerve the kerve outside through connecting screw fixed mounting, utilizes connecting screw convenience with bottom plate fixed mounting at kerve and preformed groove for the bottom plate can be dismantled, and the fixed storehouse bottom of cavity possesses the bottom plate that can conveniently dismantle, can dismantle the back cleanness to the bottom plate as required.

Furthermore, the support columns are welded at two ends of the bottom of the hollow fixed bin, the bottom of each support column is connected with a connection disc, and the connection discs are fixedly connected with the top of the base through first connection bolts.

Further, connection pad and support column connection corner are provided with the strengthening rib, the quantity of strengthening rib specifically sets up to the multiunit and is circumference evenly distributed along the centre of a circle of connection pad, utilizes the multiunit strengthening rib that is evenly distributed along the centre of a circle of connection pad, can effectively promote the bulk strength between support column and the connection pad.

Further, the temperature controller is installed through the mounting bracket to base top one end, the electric power output of temperature controller constitutes the electricity with infrared ceramic heater's electric power input end through the wire and is connected.

Compared with the prior art, the invention has the beneficial effects that:

1. the invention relates to an infrared three-machine synchronous automatic device of a dryer, a servo motor conveniently drives a chain wheel to rotate when in work, so that a rotating shaft can be driven by a chain to synchronously rotate, a guide roller is further driven to rotate, the vertical heights of a first transverse plate and a second transverse plate can be conveniently adjusted by adjusting a first servo electric cylinder and a second servo electric cylinder, so that cloth can be conveniently clamped and conveyed, the cloth can be conveniently and infrared-heated when passing through a hollow fixed bin by an infrared ceramic heater, so that the cloth can be dried, an ion fan conveniently enters air through an air inlet groove when in work and blows out air through an air outlet at the lower end, and the blown-out air contains a large amount of positive and negative ions, so that the adhesion of dust on the surface of the cloth can be effectively reduced within one time, the surface of the cloth can be kept clean, and the guide roller, the infrared ceramic heater and the ion fan are used, can conveniently carry out integration transmission, infrared heating stoving and fan dust removal to the cloth, the treatment effeciency when drying the cloth promotes greatly.

2. According to the infrared three-machine synchronous automation device for the dryer, the bottom plate is conveniently and fixedly arranged in the bottom groove and the reserved groove through the connecting screws, so that the bottom plate can be detached, the bottom of the hollow fixing bin is provided with the bottom plate which can be detached conveniently, and the bottom plate can be cleaned after being detached as required.

Drawings

FIG. 1 is a schematic top view of an infrared three-machine synchronous automation device of a dryer according to the present invention.

FIG. 2 is a schematic diagram of a bottom plate of the infrared three-machine synchronous automation device of the dryer of the present invention.

FIG. 3 is a schematic diagram of a support column and a connection disc of the infrared three-machine synchronous automation device of the dryer of the invention.

Fig. 4 is a schematic diagram of a detailed structure of a position a of the infrared three-machine synchronous automation device of the dryer of the present invention.

In the figure: 1. a base; 2. a temperature controller; 3. a support pillar; 4. a connecting disc; 5. a first connecting bolt; 6. reinforcing ribs; 7. a hollow fixed bin; 8. a second connecting bolt; 9. an infrared ceramic heater; 10. a vertical plate; 11. a first servo electric cylinder; 12. a second servo electric cylinder; 13. a servo motor; 14. a first transverse plate; 15. a guide roller; 16. a sprocket; 17. a chain; 18. a second transverse plate; 19. an air inlet groove; 20. an ion blower; 21. reserving a groove; 22. a bottom groove; 23. a connecting screw; 24. a base plate; 25. a vertical block; 26. a vertical plate.

Detailed Description

The technical solution in the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present invention. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.

As shown in fig. 1-4, synchronous automation equipment of three machines of drying-machine infrared ray, including base 1, the fixed storehouse of cavity 7, first servo electric jar 11 and the servo electric jar 12 of second, infrared ceramic heater 9 is all installed through second connecting bolt 8 at the top both ends in the fixed storehouse of cavity 7, riser 10 has all been welded at the fixed storehouse of cavity 7 top both ends and bottom both ends, wherein two sets of first servo electric jar 11 is installed through fixed plate and bolt to riser 10 top one side, wherein another two sets of riser 10 top one side has the servo electric jar 12 of second through mounting panel and bolted connection, the power take off end of first servo electric jar 11 and the servo electric jar 12 of second is connected with first diaphragm 14 and second diaphragm 18 respectively.

Wherein, first diaphragm 14 and second diaphragm 18 top one end all have welded riser 26, servo motor 13 is all installed through the bolt to riser 26 one end, the welding of first diaphragm 14 bottom has riser 25, deflector roll 15 is installed through the rotation axis in riser 25 one side.

In this embodiment, as shown in fig. 1, the guide roller 15 is installed by using a rotating shaft, so that the guide roller 15 can rotate around the guide roller 15.

Wherein, the power take off end and the rotation axis one side of servo motor 13 all are connected with sprocket 16, connect through chain 17 transmission between the sprocket 16.

In this embodiment, as shown in fig. 1, the servo motor 13 is operated to conveniently drive the chain wheel 16 to rotate, so that the chain 17 can be used to drive the rotating shaft to rotate synchronously.

An air inlet groove 19 is formed in the top of one group of the second transverse plates 18 in a penetrating mode, and an ion fan 20 is installed at the position, corresponding to the air inlet groove 19, of the bottom of the second transverse plates 18 through screws.

In this embodiment, as shown in fig. 1, the ion blower 20 is convenient to supply air through the air inlet duct 19 during operation, and blows out the air through the lower air outlet, and the blown-out air contains a large amount of positive and negative ions, so that the adhesion of dust on the surface of the cloth can be effectively reduced in a period of time, and the surface of the cloth can be kept clean.

A preformed groove 21 is formed in the bottom of the hollow fixed bin 7, a bottom groove 22 is formed in the lower side of the preformed groove 21, and a bottom plate 24 is fixedly mounted on the outer side of the bottom groove 22 through a connecting screw 23.

In this embodiment, as shown in fig. 2, the bottom plate 24 is conveniently and fixedly installed in the bottom groove 22 and the preformed groove 21 by using the connecting screw 23, so that the bottom plate 24 can be detached, the bottom of the hollow fixing bin 7 is provided with the bottom plate 24 which can be detached conveniently, and the bottom plate 24 can be detached and cleaned as required.

Support columns 3 are welded at two ends of the bottom of the hollow fixed bin 7, connecting discs 4 are connected to the bottoms of the support columns 3, and the connecting discs 4 are fixedly connected with the top of the base 1 through first connecting bolts 5.

In this embodiment, as shown in fig. 1 and 3, the base 1 and the supporting column 3 are conveniently connected and fixed by the first connecting bolt 5 and the connecting disc 4.

Wherein, connection pad 4 and support column 3 connect the corner and be provided with strengthening rib 6, the quantity of strengthening rib 6 specifically sets up to the multiunit and is circumference evenly distributed along the centre of a circle of connection pad 4.

In this embodiment, as shown in fig. 1 and 3, the overall strength between the supporting column 3 and the connecting disc 4 can be effectively improved by using the plurality of groups of reinforcing ribs 6 which are uniformly distributed along the circle center of the connecting disc 4.

The temperature controller 2 is installed at one end of the top of the base 1 through an installation frame, and an electric power output end of the temperature controller 2 is electrically connected with an electric power input end of the infrared ceramic heater 9 through a lead.

In this embodiment, as shown in fig. 1, the temperature controller 2 is used to adjust and control the heating temperature of the infrared ceramic heater 9.

It should be noted that, the invention is a dryer infrared three-machine synchronous automation device, when in operation, the servo motor 13 conveniently drives the chain wheel 16 to rotate when in operation, thereby the chain 17 can be used for driving the rotating shaft to synchronously rotate, further the guide roller 15 is driven to rotate, then the vertical height of the first transverse plate 14 and the second transverse plate 18 can be conveniently adjusted by adjusting the first servo electric cylinder 11 and the second servo electric cylinder 12, thereby the cloth can be conveniently clamped and transmitted, the infrared ceramic heater 9 is used for conveniently heating the cloth when the cloth passes through the hollow fixed bin 7, thereby the cloth can be dried, the ion fan 20 conveniently enters air through the air inlet slot 19 when in operation, the air is blown out through the air outlet at the lower end, and the blown air contains a large amount of positive and negative ions, thereby the attachment of dust on the surface of the cloth can be effectively reduced in one time, keep the cleanness on cloth surface, through deflector roll 15, infrared ceramic heater 9 and ion fan 20, can conveniently carry out integration transmission to the cloth, infrared heating is dried and the fan removes dust, the treatment effeciency when drying the cloth promotes greatly, utilize connecting screw 23 to conveniently with bottom plate 24 fixed mounting in kerve 22 and reserve groove 21, make bottom plate 24 can dismantle, 7 bottoms in the fixed storehouse of cavity possess can conveniently dismantle bottom plate 24, can dismantle the back cleanness to bottom plate 24 as required.

Although embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that changes, modifications, substitutions and alterations can be made in these embodiments without departing from the principles and spirit of the invention, the scope of which is defined in the appended claims and their equivalents.

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