CN223226327U - A high-efficiency pulping machine - Google Patents

A high-efficiency pulping machine

Info

Publication number
CN223226327U
CN223226327U CN202422595208.4U CN202422595208U CN223226327U CN 223226327 U CN223226327 U CN 223226327U CN 202422595208 U CN202422595208 U CN 202422595208U CN 223226327 U CN223226327 U CN 223226327U
Authority
CN
China
Prior art keywords
roller
pulp
cloth
frame
slurry
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Active
Application number
CN202422595208.4U
Other languages
Chinese (zh)
Inventor
金花
刘朕
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Guangdong Shangcheng New Materials Co ltd
Original Assignee
Guangdong Shangcheng New Materials Co ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Guangdong Shangcheng New Materials Co ltd filed Critical Guangdong Shangcheng New Materials Co ltd
Priority to CN202422595208.4U priority Critical patent/CN223226327U/en
Application granted granted Critical
Publication of CN223226327U publication Critical patent/CN223226327U/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Landscapes

  • Paper (AREA)

Abstract

本实用新型涉及布料过浆技术领域,尤其涉及一种高效过浆机,包括:机架;过浆组件,过浆组件包括过浆辊和设置在机架上的浆料池,过浆辊位于浆料池内并与浆料池转动连接;送料组件,送料组件用于将布料送入浆料池并绕过过浆辊再伸出浆料池;挤压组件,挤压组件用于挤出过浆的布料中所含的浆液;引浆件,引浆件用于将挤压组件挤出的浆液收集并引导进入浆料池,使得浆液可以进行二次利用,节约耗材;干燥组件,包括多个热油辊,经挤压的布料依次绕过多个所述热油辊,过浆效率高。

The utility model relates to the technical field of cloth sizing, and in particular to a high-efficiency sizing machine, comprising: a frame; a sizing assembly, the sizing assembly comprising a sizing roller and a slurry pool arranged on the frame, the sizing roller being located in the slurry pool and being rotatably connected to the slurry pool; a feeding assembly, the feeding assembly being used to feed the cloth into the slurry pool and pass around the sizing roller and then extend out of the slurry pool; an extrusion assembly, the extrusion assembly being used to extrude slurry contained in the sized cloth; a slurry introducing member, the slurry introducing member being used to collect the slurry extruded by the extrusion assembly and guide it into the slurry pool, so that the slurry can be reused for a second time, thereby saving consumables; and a drying assembly comprising a plurality of hot oil rollers, the extruded cloth passes around the plurality of hot oil rollers in sequence, and the sizing efficiency is high.

Description

High-efficient thick liquid machine of crossing
Technical Field
The utility model relates to the technical field of cloth sizing, in particular to a high-efficiency sizing machine.
Background
The cloth needs to be subjected to a sizing process in the application production process, so that the cloth is kept in shape and prevented from being wrinkled, is easier to compound with other cloths, and is convenient for processing such as edge covering and cutting. The cloth is required to be dried after being soaked in the slurry, and the slurry carried in the cloth is extruded before being dried, so that the drying speed is improved. The patent with reference to publication number CN206783974U discloses a cloth pulp passing system, which comprises a transmission device, a pulp passing device, a cloth surface drying device and a cloth main drying device, wherein cloth is dried after sequentially passing through the pulp passing device, a flattening roller and the cloth surface drying device. Slurry extruded by the cloth on the flattening roller is not recycled, so that a large amount of slurry is wasted in the production process of the cloth. In addition, in the technology of the patent, the cloth is dried by a heating device at the bottom of the drying chamber, and the drying efficiency is low. Moreover, in the prior art, an electric heating roller is often adopted to dry the cloth after pulp passing, and the cloth is easy to damage due to uneven surface temperature of the electric heating roller, so that the drying speed of the cloth is low.
Disclosure of utility model
The utility model aims to provide a high-efficiency pulp passing machine which has the characteristics of capability of recycling pulp in cloth, secondary utilization and high pulp passing efficiency.
To achieve the purpose, the utility model adopts the following technical scheme:
a high efficiency pulper comprising:
a frame;
The pulp passing assembly comprises a pulp passing roller and a pulp pool arranged on the frame, and the pulp passing roller is positioned in the pulp pool and is rotationally connected with the pulp pool;
The feeding assembly is used for feeding cloth into the slurry tank, bypassing the slurry passing roller and extending out of the slurry tank;
An extrusion assembly for extruding excess slurry carried by the pulped cloth;
A slurry guide for collecting and guiding slurry extruded by the extrusion assembly into the slurry tank;
The drying assembly comprises a plurality of hot oil rollers, and the extruded cloth sequentially bypasses the hot oil rollers.
The feeding assembly comprises a cloth mounting roller, a tensioning mechanism and two guide rollers, wherein the cloth mounting roller, the tensioning mechanism and the two guide rollers are arranged on the frame, the cloth mounting roller is used for mounting a cloth roll, the tensioning mechanism is used for tensioning and guiding cloth before entering the slurry tank, and the two guide rollers are respectively positioned at the edges of two sides of the slurry tank.
The tensioning mechanism comprises a mounting frame, a sliding block and at least two tensioning rollers, wherein the mounting frame is fixed on the frame, one tensioning roller is rotationally connected with the mounting frame, the other tensioning roller is rotationally connected with the sliding block, the mounting frame is provided with a plurality of first mounting holes along the extending direction of the mounting frame, the sliding block is provided with a second mounting hole, and a bolt penetrates through the first mounting hole and the second mounting hole and is connected with a nut.
Further, the feeding assembly further comprises a plurality of spreading rollers rotatably connected with the frame, wherein the spreading rollers are located between the tensioning mechanism and the guide rollers, and the spreading rollers are close to the guide rollers.
Further, the extrusion assembly comprises a pulp extrusion roller, a power roller and a power mechanism, wherein the pulp extrusion roller and the power roller are both in rotary connection with the frame, a gap for passing cloth is formed between the pulp extrusion roller and the power roller, and the power mechanism is fixed on the frame and used for driving the power roller to rotate.
Further, the pulp extruding roller is arranged below the power roller, the pulp guiding piece is arranged below the pulp extruding roller, an opening is formed above the pulp guiding piece, and the pulp guiding piece is inclined downwards from one side close to the pulp extruding roller and is connected with the edge of the pulp pool.
Further, the drying component comprises a supporting frame, an oil conveying unit and a constant-temperature heating device;
The hot oil rollers are rotationally connected with the supporting frame, and cloth after water squeezing is wound on the hot oil rollers, wherein the hot oil rollers comprise inner roller bodies and outer roller bodies sleeved on the outer sides of the inner roller bodies, and oil storage cavities are formed between the inner roller bodies and the outer roller bodies;
The oil conveying unit is communicated with the constant-temperature heating device and is used for pumping hot oil into the oil storage cavity.
Further, the drying assembly further comprises a drying chamber, the supporting frame, the oil conveying unit and the hot oil rollers are all located in the drying chamber, and the drying chamber is provided with an access opening and a sealing door for sealing the access opening.
Further, the drying assembly further comprises a winding roller and a winding motor which are in transmission connection, the winding roller and the winding motor are both arranged on the supporting frame, and the winding roller is used for winding and gathering cloth dried by the hot oil roller.
The technical scheme provided by the utility model can comprise the following beneficial effects:
The feeding assembly can send the cloth into the slurry pond to carry out slurry passing, then send the cloth to the extrusion assembly from the slurry pond, the extrusion assembly is used for extruding slurry contained in the cloth, the extruded slurry flows into the slurry pond again along the slurry guiding piece and is used for passing slurry to the cloth at the rear, the slurry can be reused, and consumable materials are saved. The extruded cloth bypasses a plurality of hot oil rollers to be dried, and the drying times are more, so that the cloth pulp passing efficiency is high.
Drawings
FIG. 1 is a schematic diagram of the structure of one embodiment of the present utility model;
FIG. 2 is a schematic view of the construction of the slurry tank, tensioning mechanism and slurry guide;
FIG. 3 is a schematic view of a drying chamber;
Fig. 4 is a cross-sectional view of a hot oil roll according to one embodiment of the present utility model.
Wherein, the
10. The device comprises a frame, 210, a slurry pool, 220, a slurry passing roller, 310, a cloth mounting roller, 320, a tensioning mechanism, 3210, a mounting rack, 32101, a first mounting hole, 3220, a sliding block, 32201, a second mounting hole, 3230, a tensioning roller, 330, a guide roller, 340, a spreading roller, 410, a slurry squeezing roller, 420, a power roller, 50, a slurry guiding piece, 610, a support frame, 620, an oil conveying unit, 630, a hot oil roller, 6310, an inner roller body, 6320, an outer roller body, 6330, an oil storage cavity, 6301, an oil inlet, 6302, an oil outlet, 6303, a drying chamber, 640 and a winding roller.
Detailed Description
Embodiments of the present utility model are described in detail below, examples of which are illustrated in the accompanying drawings, wherein like or similar reference numerals refer to like or similar elements or elements having like or similar functions throughout. The embodiments described below by referring to the drawings are illustrative only and are not to be construed as limiting the utility model.
In the description of the present utility model, it should be understood that the terms "longitudinal," "transverse," "upper," "lower," "front," "rear," "left," "right," "vertical," "horizontal," "top," "bottom," "inner," "outer," and the like indicate or are based on the orientation or positional relationship shown in the drawings, merely to facilitate description of the utility model and to simplify the description, and do not indicate or imply that the devices or elements referred to must have a particular orientation, be configured and operated in a particular orientation, and thus should not be construed as limiting the utility model. Furthermore, features defining "first", "second" may include one or more such features, either explicitly or implicitly, for distinguishing between the descriptive features, and not sequentially, and not lightly.
In the description of the present utility model, unless otherwise indicated, the meaning of "a plurality" is two or more.
In the description of the present utility model, unless explicitly stated or limited otherwise, the terms "mounted," "connected," and "connected" are to be construed broadly, and may be, for example, fixedly connected, detachably connected, or integrally connected, mechanically connected, electrically connected, directly connected, indirectly connected via an intervening medium, or in communication between two elements. The specific meaning of the above terms in the present utility model will be understood in specific cases by those of ordinary skill in the art.
An efficient pulper according to an embodiment of the utility model will be described below with reference to fig. 1 to 4.
The slurry tank 210 is fixed on the frame 10, the slurry tank 210 may be located in the middle of the frame 10, the opening of the slurry tank 210 may be disposed upwards, and the slurry tank 210 may be of a V-shaped tank structure. The pulp passing roller 220 is positioned in the pulp tank 210 and immersed in the pulp, the axis of the pulp passing roller 220 can be parallel to the length direction of the pulp tank 210, and two shaft ends of the pulp passing roller 220 are rotatably connected with the side wall of the pulp tank 210.
A feeding assembly may be provided on the frame 10, the feeding assembly being used for feeding the cloth in a direction perpendicular to the axis of the pulp passing roller 220. The feed assembly feeds cloth into the slurry tank 210 and submerges the cloth in the slurry, and the cloth, after passing around the slurry passing roller 220, extends from the slurry tank 210 and toward the press assembly.
The extrusion assembly extrudes and conveys the cloth after passing the thick liquid, at this moment, the thick liquid carried by the cloth after passing the thick liquid is extruded and flows back to the thick liquid pond 210 through the thick liquid guiding piece 50 for the thick liquid can carry out the reutilization, and a plurality of hot oil rollers are wound in proper order to the cloth after extrusion, and under the effect of hot oil rollers, the moisture carried by the cloth is evaporated rapidly, accelerates the drying of cloth.
As an alternative embodiment, referring to fig. 1 and 2, the feeding assembly includes a cloth mounting roller 310, a tensioning mechanism 320 and two guide rollers 330, both of which are provided on the frame 10, the cloth mounting roller 310 is used to mount a cloth roll, the tensioning mechanism 320 is used to tension and guide the cloth before entering the slurry tank 210, and the two guide rollers 330 are respectively located at both side edges of the slurry tank 210.
In this embodiment, the cloth before passing the slurry is wound on the cloth mounting roller 310, the cloth mounting roller 310 may be suspended above the slurry tank 210 and the cloth mounting roller 310 is connected to the frame 10, the cloth is released from the cloth mounting roller 310 to extend downward, the cloth bypasses the tensioning mechanism 320 and extends to the bottom of the slurry tank 210, and the tensioning mechanism 320 may prevent the cloth from falling on the frame 10 after being released from the cloth mounting roller 310. The upper end edge of the slurry tank 210 is provided with a guide roller 330, the guide roller 330 can be rotationally connected with the frame 10, the guide roller 330 is used for guiding the cloth, the cloth is prevented from being scratched with the upper end edge of the slurry tank 210, and the cloth can bypass the guide roller 330 when extending into the slurry tank 210 or extending out from the slurry tank 210. The cloth loading roller 310, the guide roller 330 and the pulp passing roller 220 are parallel to each other.
As an alternative embodiment, referring to fig. 2, the tensioning mechanism 320 includes a mounting frame 3210, a slider 3220 and at least two tensioning rollers 3230, the mounting frame 3210 is fixed on the frame 10, one tensioning roller 3230 is rotatably connected with the mounting frame 3210, the other tensioning roller 3230 is rotatably connected with the slider 3220, the mounting frame 3210 is provided with a plurality of first mounting holes 32101 along the extending direction of the mounting frame 3210, the slider 3220 is provided with a second mounting hole 32201, and bolts pass through the first mounting holes 32101 and the second mounting holes 32201 and are connected with nuts.
In this embodiment, the mounting frame 3210 may extend upward. One of the tension rollers 3230 is relatively unchanged from the position of the mounting frame 3210, and the other tension roller 3230 is variable from the position of the mounting frame 3210, thereby changing the spacing between the two tension rollers 3230. The cloth is released from the cloth mounting roller 310 and then bypasses the two tension rollers 3230, and the tension degree of the cloth can be adjusted by changing the interval between the two tension rollers 3230, so that the operation is simple. The second mounting holes 32201 of the slider 3220 are aligned with the first mounting holes 32101 at different positions, and then bolts are passed through the first mounting holes 32101 and the second mounting holes 32201 and connected with nuts, so that the connection of the tension roller 3230 with the mounting frame 3210 can be completed.
In another embodiment, the frame 10 may be provided with a plurality of first connecting holes along the stretching direction of the cloth, the mounting frame 3210 is provided with a second connecting hole, and the mounting frame 3210 can be fixed at different positions of the frame 10 by aligning the second connecting hole with the first connecting hole at different positions and connecting the second connecting hole with bolts and nuts, so that the distance between the tensioning roller 3230 and the cloth mounting roller 310 can be adjusted to adjust the tensioning degree of the cloth.
As an alternative embodiment, referring to fig. 2, the feeding assembly further comprises a plurality of spreader rolls 340 rotatably connected to the frame 10, wherein the spreader rolls 340 are located between the tensioning mechanism 320 and the guide rolls 330, and the spreader rolls 340 are located adjacent to the guide rolls 330.
In the present embodiment, there is a distance between the tensioning mechanism 320 and the guide roller 330, and when the cloth extends from the tensioning mechanism 320 to the guide roller 330, the cloth may drop down, thereby affecting the cloth entering the slurry tank 210 for slurry passing. A plurality of cloth spreading rollers 340 are arranged between the tensioning mechanism 320 and the guide roller 330, and the cloth spreading rollers 340 have the functions of supporting and conveying cloth, so that the cloth can be conveniently stretched, and the phenomenon of folding the cloth can not occur.
As an alternative embodiment, referring to fig. 2, the pressing assembly includes a press roll 410, a power roll 420 and a power mechanism, wherein the press roll 410 and the power roll 420 are rotatably connected with the frame 10, a gap for passing cloth is formed between the press roll 410 and the power roll 420, and the power mechanism is fixed on the frame 10 and used for driving the power roll 420 to rotate.
In this embodiment, the power mechanism includes a wringing motor that is fixed to the frame 10. An operator can select the diameter of the wringing roller 410 according to the requirement, and the diameter of the power roller 420 is unchanged because the wheelbase between the wringing roller 410 and the power roller 420 is fixed, and the gap between the wringing roller 410 and the power roller 420 can be adjusted by adjusting the diameter of the wringing roller 410 so as to wring cloth with different thicknesses.
The diameter of the wringing rollers 410 may be adjusted by preparing different diameter wringing rollers 410 and mounting the different diameter wringing rollers 410 on the frame 10 as needed in some embodiments. In other embodiments, different turns of cloth tape are wound around the outside of the wringer roller 410 as desired, thereby changing the outer diameter of the wringer roller 410.
As an alternative embodiment, referring to fig. 2, the wringing roller 410 is positioned below the power roller 420, the pulp guide 50 is positioned below the wringing roller 410, the pulp guide 50 has an opening above, and the pulp guide 50 is inclined downward from a side near the wringing roller 410 and connected to the edge of the pulp tank 210.
In this embodiment, when the slurry in the cloth is extruded and dropped down, the wringing roller 410 is positioned below the cloth, and the phenomenon that the slurry flows along the axial direction of the wringing roller 410 to wet the wringing motor does not occur. Due to the upper opening of the pulp guide 50, the extruded pulp falls onto the pulp guide 50 by gravity and flows along the pulp guide 50 into the pulp tank 210. The pulp guiding member 50 comprises a bottom plate and a baffle 510, and the cross section of the pulp guiding member 50 is U-shaped.
As an alternative embodiment, referring to fig. 1, 3 and 4, the drying assembly includes a support frame 610, an oil delivery unit 620 and a constant temperature heating device;
the hot oil rollers 630 are rotatably connected with the supporting frame 610, and the cloth after water squeezing is wound on the hot oil rollers 630, wherein the hot oil rollers 630 comprise an inner roller body 6310 and an outer roller body 6320 sleeved outside the inner roller body 6310, and an oil storage cavity 6330 is formed between the inner roller body 6310 and the outer roller body 6320;
the two shaft ends of the hot oil roller 630 are respectively provided with an oil inlet 6301 and an oil outlet 6302, the oil inlet 6301 and the oil outlet 6302 are both communicated with the oil conveying unit 620, and the oil conveying unit 620 is communicated with the constant-temperature heating device and is used for pumping hot oil into the oil storage cavity 6330.
In this embodiment, the number of the hot oil rollers 630 may be 8 and may be divided into two groups, i.e., up and down, installed on the supporting frame 610, and the cloth may be wound on the hot oil rollers 630 along the S-shaped curve, so that the cloth may be fully spread to evaporate water vapor, and the cloth may be heated multiple times to accelerate drying of the cloth.
The constant temperature heating device can include a tank body and an electric heating pipe, and the electric heating pipe can be positioned at the periphery of the tank body and is used for heating oil by electric heating. The oil delivery unit 620 may include a pipe structure and an oil pump, wherein the oil pump pumps the hot oil in the constant temperature heating device and delivers the hot oil to the oil storage chamber 6330 through the pipe structure, and the hot oil circulates in the oil storage chamber 6330 and the pipe structure. The outer roller 6320 heats and toasts the cloth by the action of the hot oil.
The roll shafts at the two ends of the inner roll body 6310 extend out of the outer roll body 6320 and are rotatably connected with the support frame 610, oil through holes communicated with the oil storage cavity 6330 are formed in the roll shafts, and the oil inlet 6301 and the oil outlet 6302 are located on the roll shafts and are communicated with the oil conveying unit 620.
As an alternative embodiment, referring to fig. 3, the drying assembly further includes a drying chamber 6303, the support frame 610, the oil delivery unit 620, and the plurality of hot oil rollers 630 are all located within the drying chamber 6303, and the drying chamber 6303 is provided with an access opening and a sealing door for sealing the access opening.
In the present embodiment, the drying chamber 6303 forms a closed space, and the hot oil roller 630 is located in the drying chamber 6303 such that the air temperature in the drying chamber 6303 is high in order to dry the cloth in the drying chamber 6303. An operator can check the distribution condition in the drying chamber 6303 through the access opening. The drying chamber 6303 may prevent an operator from erroneously touching the hot oil roller 630, and thus, may prevent a safety accident.
As an alternative embodiment, referring to FIG. 3, the drying assembly further comprises a wind-up roller 640 and a wind-up motor which are in transmission connection, wherein the wind-up roller 640 and the wind-up motor are arranged on the supporting frame 610, and the wind-up roller 640 is used for winding and gathering cloth dried by the hot oil roller 630.
In this embodiment, the wind-up roller 640 and the wind-up motor are located at the outer side of the drying chamber 6303, and the wind-up roller 640 winds the dried cloth to drive the cloth to slide between the plurality of hot oil rollers 630.
Other components, etc. and operation of the efficient pulper according to embodiments of the utility model are known to those skilled in the art and will not be described in detail herein.
In the description herein, reference to the term "embodiment," "example," etc., means that a particular feature, structure, material, or characteristic described in connection with the embodiment or example is included in at least one embodiment or example of the utility model. In this specification, schematic representations of the above terms do not necessarily refer to the same embodiments or examples. Furthermore, the particular features, structures, materials, or characteristics described may be combined in any suitable manner in any one or more embodiments or examples.
Although embodiments of the present utility model have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made therein without departing from the spirit and scope of the utility model as defined by the appended claims and their equivalents.

Claims (9)

1. An efficient pulp-passing machine, characterized by comprising the following steps:
a frame;
The pulp passing assembly comprises a pulp passing roller and a pulp pool arranged on the frame, and the pulp passing roller is positioned in the pulp pool and is rotationally connected with the pulp pool;
The feeding assembly is used for feeding cloth into the slurry tank, bypassing the slurry passing roller and extending out of the slurry tank;
the extrusion assembly is used for extruding excessive slurry carried by the slurry cloth;
A slurry guide for collecting and guiding slurry extruded by the extrusion assembly into the slurry tank;
The drying assembly comprises a plurality of hot oil rollers, and the extruded cloth sequentially bypasses the hot oil rollers.
2. The efficient pulp grinder of claim 1, wherein the feeding assembly comprises a cloth mounting roller, a tensioning mechanism and two guide rollers, wherein the cloth mounting roller, the tensioning mechanism and the two guide rollers are all arranged on the frame, the cloth mounting roller is used for mounting a cloth roll, the tensioning mechanism is used for tensioning and guiding cloth before entering the pulp tank, and the two guide rollers are respectively arranged at two side edges of the pulp tank.
3. The efficient pulp grinder of claim 2, wherein the tensioning mechanism comprises a mounting frame, a sliding block and at least two tensioning rollers, the mounting frame is fixed on the frame, one tensioning roller is rotatably connected with the mounting frame, the other tensioning roller is rotatably connected with the sliding block, the mounting frame is provided with a plurality of first mounting holes along the extending direction of the mounting frame, the sliding block is provided with a second mounting hole, and a bolt penetrates through the first mounting holes and the second mounting holes and is connected with a nut.
4. The efficient pulp grinder of claim 2, wherein the feed assembly further comprises a plurality of spreader rolls rotatably coupled to the frame, the spreader rolls being positioned between the tensioning mechanism and the guide rolls, the spreader rolls being adjacent the guide rolls.
5. The efficient pulp passing machine according to claim 1, wherein the extrusion assembly comprises a pulp extrusion roller, a power roller and a power mechanism, the pulp extrusion roller and the power roller are both rotatably connected with the frame, a gap for passing cloth is reserved between the pulp extrusion roller and the power roller, and the power mechanism is fixed on the frame and used for driving the power roller to rotate.
6. The efficient pulp grinder of claim 5, wherein the pulp extruding roller is positioned below the power roller, the pulp guiding member is positioned below the pulp extruding roller, an opening is formed above the pulp guiding member, and the pulp guiding member is inclined downwards from one side close to the pulp extruding roller and is connected with the edge of the pulp tank.
7. The efficient pulp grinder of claim 1, wherein the drying assembly comprises a support frame, an oil delivery unit, and a constant temperature heating device;
The hot oil rollers are rotationally connected with the supporting frame, and cloth after water squeezing is wound on the hot oil rollers, wherein the hot oil rollers comprise inner roller bodies and outer roller bodies sleeved on the outer sides of the inner roller bodies, and oil storage cavities are formed between the inner roller bodies and the outer roller bodies;
The oil conveying unit is communicated with the constant-temperature heating device and is used for pumping hot oil into the oil storage cavity.
8. The efficient pulp grinder of claim 7, wherein the drying assembly further comprises a drying chamber, wherein the support frame, the oil delivery unit and the plurality of hot oil rollers are all located in the drying chamber, and wherein the drying chamber is provided with an access opening and a sealing door for sealing the access opening.
9. The efficient pulp grinder of claim 7, further comprising a winding roller and a winding motor which are in transmission connection, wherein the winding roller and the winding motor are arranged on the supporting frame, and the winding roller is used for winding and gathering cloth dried by the hot oil roller.
CN202422595208.4U 2024-10-28 2024-10-28 A high-efficiency pulping machine Active CN223226327U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202422595208.4U CN223226327U (en) 2024-10-28 2024-10-28 A high-efficiency pulping machine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202422595208.4U CN223226327U (en) 2024-10-28 2024-10-28 A high-efficiency pulping machine

Publications (1)

Publication Number Publication Date
CN223226327U true CN223226327U (en) 2025-08-15

Family

ID=96691006

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202422595208.4U Active CN223226327U (en) 2024-10-28 2024-10-28 A high-efficiency pulping machine

Country Status (1)

Country Link
CN (1) CN223226327U (en)

Similar Documents

Publication Publication Date Title
CN213328249U (en) Textile fabric dehumidification flattening device
CN214469883U (en) Fabric drying and dehumidifying device for clothing production line
CN223226327U (en) A high-efficiency pulping machine
CN215063489U (en) Dryer is used in production of fragrant four sides of nylon bullet
CN114808528A (en) Aramid paper forming device capable of preventing bubbles and wrinkles and using method thereof
CN213142464U (en) Sizing apparatus is used in fabrics production
CN112095269A (en) Fabric pre-shrinking machine for textile
CN218486480U (en) PVDC coating hot air drying device
CN219494718U (en) Textile processing drying structure capable of being heated uniformly
CN216409667U (en) Efficient dewatering device for fabric
CN220704195U (en) Drying box for production of composite impregnated paper
CN221825813U (en) Drying device of sizing machine
CN210262320U (en) A cloth dehydration device
CN221325038U (en) Household sofa fabric processing device
CN116815419B (en) A non-woven fabric production process
CN222027345U (en) A drying device for polyester regenerated PET fiber tow
CN222861784U (en) Dewatering device of water-jet loom for producing polyester cloth
CN221724813U (en) A raw material drying device for producing forming net monofilament
CN223376262U (en) Cloth drying-machine is used in weaving processing
CN223807544U (en) Low-temperature drying box for processing chemical fiber net
CN223869745U (en) Fabric drying equipment
CN217654240U (en) A kind of drying device for non-slip composite non-woven fabric
CN224202093U (en) A fabric sizing machine drying device
CN211650969U (en) Cloth drying equipment of weaving usefulness
CN217952993U (en) Quick drying device is used in gauze production

Legal Events

Date Code Title Description
GR01 Patent grant
GR01 Patent grant