CN211079632U - Continuous multi-groove oil removal washing machine - Google Patents

Continuous multi-groove oil removal washing machine Download PDF

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Publication number
CN211079632U
CN211079632U CN201921955375.8U CN201921955375U CN211079632U CN 211079632 U CN211079632 U CN 211079632U CN 201921955375 U CN201921955375 U CN 201921955375U CN 211079632 U CN211079632 U CN 211079632U
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cloth
roller
spreading
fabric
washing
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CN201921955375.8U
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Chinese (zh)
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陈超
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Zhejiang Lianke Machinery Co ltd
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Zhejiang Lianke Machinery Co ltd
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Abstract

The utility model relates to the technical field of fabric washing and oil removal in a printing and dyeing process, in particular to a continuous multi-groove oil removal washing machine, which comprises a cloth feeding device, a plurality of washing boxes, an S roller traction box and a two-roller heavy padder; the cloth feeding device is used for automatically feeding cloth and expanding; the washing box body is continuously arranged along the cloth outlet direction of the cloth inlet device; the S-roller traction box bodies are arranged between every two adjacent washing box bodies; the two-roller heavy padder is arranged at the cloth outlet end of the tail end washing box body far away from the cloth feeding device. The utility model discloses an automatic mode of advancing cloth has practiced thrift the human cost to configuration through many washing boxes in succession has promoted the cleaning efficiency, can make up the configuration according to actual need, and unit configuration nature is good.

Description

Continuous multi-groove oil removal washing machine
Technical Field
The utility model relates to a fabric washing deoiling technical field among the printing and dyeing technology, concretely relates to continuous multislot deoiling rinsing machine.
Background
Before the dyeing process of the knitted fabric gray cloth, the next procedure can be carried out only by removing grease, cloth hair, impurities and the like on the surface of the fabric, and currently, the degreasing cleaning of the surface of the fabric is generally carried out by the following two methods: one method is to add a degreasing agent into a dye vat and carry out high-temperature water soaking and water washing, which wastes water resources and increases the process time; the other is oil removal cleaning by an oil removal water washing machine or other equipment, but the current oil removal water washing machine has the following defects: 1. the fabric feeding needs to be carried out in a manual mode, so that time and labor are wasted; 2. usually, only one machine works, the efficiency of oil removal and cleaning is low, the condition of incomplete cleaning often occurs, the cleaning needs to be carried out again, and the process time and the working procedures are increased; 3. the configuration is not high, and the fabric that washs the completion needs the manual work to accomodate, has increased the human cost.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a continuous multislot deoiling rinsing machine to reach high configuration nature, high efficiency, automatic abluent purpose of deoiling.
To achieve the above object, the present invention provides the following technical solutions: a continuous multi-groove oil removal washing machine comprises a cloth feeding device, a plurality of washing box bodies, an S-roller traction box body and a two-roller heavy padder; the fabric feeding device is sequentially provided with a width expanding rod, a first width expanding roller and a double width expanding roller device, the double width expanding roller device comprises a second width expanding roller and a third width expanding roller, the second width expanding roller and the third width expanding roller are respectively positioned on the upper surface and the lower surface of a fabric, and the first width expanding roller, the second width expanding roller and the third width expanding roller are used for controlling the fabric to advance and expanding the fabric; the washing box body is continuously arranged along the cloth outlet direction of the cloth inlet device; the S-roller traction box body is arranged between every two adjacent washing box bodies, and three traction rollers are arranged in the S-roller traction box body and are distributed in a triangular shape, so that the fabric alternately passes through the three traction rollers and then is in an S shape; the two-roller heavy padder is arranged at the cloth outlet end of the tail end washing box body far away from the cloth feeding device, and a fourth spreading roller and two rollers are arranged in the two-roller heavy padder and used for rolling and wringing the fabric.
The washing tank is arranged in the washing tank body, and the oil removing filter is arranged outside the washing tank body; a cloth beating roller is arranged in the rinsing bath, a detachable water tank is arranged above the cloth beating roller through a bracket, a cloth guide roller is arranged above the detachable water tank, and a spraying device is arranged above the cloth guide roller; an oil filter screen device is installed at an opening at the top of the detachable water tank, a water inlet pipe and a circulating water discharge pipe are installed on the detachable water tank, and the circulating water discharge pipe is connected with an oil removal filter; an upper water inlet and a lower water inlet are formed in the wall of the rinsing bath and are connected with a water outlet pipe of the oil removal filter through a pipeline and a circulating pump.
The washing tank is characterized in that the side plates on the two side faces of the detachable water tank are folded side plates, and folded grooves matched with the folded side plates are formed in the positions, corresponding to the folded side plates, on the inner wall of the washing tank.
The further arrangement is that the number of the washing boxes is 2-4.
The further arrangement is that the surfaces of the first spreading roller, the second spreading roller and the third spreading roller are welded with bilaterally symmetrical triangular steel wires.
The cloth feeding device is characterized in that a steam spraying device is arranged on the cloth feeding device, the steam spraying device comprises a liquid storage tank arranged at the bottom of the cloth feeding device and a plurality of straight spray pipes inserted into the bottom of the liquid storage tank, water liquid is stored in the liquid storage tank, and meshes are formed in the top of the liquid storage tank. Steam is sprayed into water liquid in the liquid storage tank through the straight spraying pipe to generate wet steam, and the wet steam is sprayed onto the fabric uniformly through meshes in the top of the liquid storage tank, so that the surface and the inside of the fabric are effectively wetted, and pre-wetting preparation is provided for subsequent feeding and water washing.
The cloth feeding device is characterized in that a cloth breakage preventing device is arranged behind the first spreading roller in the cloth feeding device, real-time detection is carried out on cloth feeding fabrics, and the cloth breakage preventing device plays a role in reminding operators and stopping protection when the fabrics fall or are broken; one side that is close to the cloth outlet end in the cloth feeding device is provided with photoelectric sensor, carries out real time monitoring and rectifies a deviation to the fabric through photoelectric sensor, lets the fabric get into the washing box with the mode placed in the middle and washes, avoids leading to the fabric to draw because of the fabric off tracking and splits.
The device is further arranged in that a padder adjusting cloth pressing roller is arranged in the two-roller heavy padder, the padder adjusting cloth pressing roller comprises a cloth pressing roller, a rotating link mechanism, an adjusting limiting plate, an adjusting handle and an adjusting handle fixing bolt, the rotating link mechanism is parallel to the roller and is fixedly arranged in the two-roller heavy padder, two ends of the cloth pressing roller are arranged on the rotating link mechanism in parallel through a support, and the cloth pressing roller is positioned above a position between the fourth spreading roller and the roller close to the fourth spreading roller; the adjusting handle is arranged at the end part of the rotary connecting rod mechanism, the adjusting limiting plate is fixedly arranged on the side wall of the two-roller heavy padder, and the adjusting handle fixing bolt is used for fixing the handle on the adjusting limiting plate. The angle of wrap of the cloth pressing roller can be increased by adjusting the padder, the gap between the cloth pressing roller and the roller is reduced, the fabric edge expanding force or the edge curling degree is effectively increased, and meanwhile, the angle positioning of the cloth pressing roller is carried out through rotating the adjusting handle according to different fabrics, so that the proper distance between the fourth cloth pressing roller and the roller is reached, and the edge expanding effect of the fabrics is finally met.
The cloth discharging swing frame is arranged at the cloth discharging end of the two-roller heavy padder and comprises a swing rod, and the swing rod can move left and right along the cloth discharging swing frame; and the cloth outlet and arranging frame and the oscillating rod are provided with a plurality of cloth outlet guide rollers. Through the left-right swing of the swing lever, the washed fabrics can be uniformly and orderly placed in the cloth vehicle in an arc mode, and the transportation or the packaging treatment in the subsequent process is facilitated.
The cloth discharging and swinging frame is characterized in that a cooling and air spraying device is arranged at the front end of the swinging rod on the cloth discharging and swinging frame, the surface of the cloth discharging and swinging frame is cooled in an air spraying mode of the washed fabric, and the fabric is prevented from generating surface creases due to the difference between the internal temperature and the external temperature after the cloth is stacked.
Compared with the prior art, the utility model, its beneficial effect lies in:
1. the utility model discloses a continuous a plurality of washing boxes carry out washing and deoiling to the fabric, have greatly promoted the efficiency of washing deoiling.
2. The utility model discloses a cloth feeding device expands the width of cloth and advances cloth to the fabric, has replaced the artifical mode of advancing cloth, has practiced thrift the human cost to it is more reliable and more stable to advance cloth.
3. The unit configuration of the utility model is higher, the washing boxes with different quantities can be configured according to actual needs, and the cloth placing frame can be selected or not installed according to the next procedure, when the fabric needs to be transported and packaged, the fabric can be rapidly and uniformly and orderly stacked through the cloth placing frame, thereby being convenient for packaging and transportation; when the cloth placing frame is not installed, the fabric can directly enter the next working procedure.
Drawings
Fig. 1 is a schematic view of the overall structure of embodiment 1 of the present invention.
Fig. 2 is a schematic view of the overall structure of embodiment 2 of the present invention.
Fig. 3 is a schematic structural view of the cloth feeding device of the present invention.
Fig. 4 is the internal structure schematic diagram of the middle washing tank of the present invention.
Fig. 5 is a schematic side view of the middle washing tank of the present invention.
Fig. 6 is a schematic structural view of the S-roller traction box of the present invention.
Fig. 7 is a schematic structural view of a two-roller heavy padder of the present invention.
Fig. 8 is a schematic structural view of the cloth pressing roller of the middle padder of the present invention.
Fig. 9 is a schematic side view of the cloth pressing roller for adjusting the padder of the present invention.
In the figure: 1. a cloth feeding device 11, a spreading rod 12, a first spreading roller 13, a cloth breakage prevention device 14, a steam spraying device 141, a liquid storage tank 142, a straight spraying pipe 15, a double spreading roller device 151, a second spreading roller 152, a third spreading roller 16 and a photoelectric sensor; 2. the device comprises a washing box body, a washing tank 21, a washing tank 211, an upper water inlet 212, a lower water inlet 22, a detachable water tank 221, a water inlet pipe 222, a circulating water discharge pipe 23, a cloth beating roller 24, a cloth guide roller 25, a spraying device 26, an oil removing filter 27, an oil filter screen device 28, a circulating pump 29 and a bracket; 3. s roller traction box 31, traction roller; 4. two-roller heavy padder, 41, fourth spreading roller, 42, roller, 43, padder adjusting cloth pressing roller, 431, cloth pressing roller, 432, rotating link mechanism, 433, adjusting limit plate, 434, adjusting handle, 435, adjusting handle fixing bolt, 436 and bracket; 5. a cloth discharging and arranging frame 51, a swinging rod 52, a cloth discharging and guiding roller 53, a cloth vehicle 54 and a cooling and air injection device; 6. a fabric.
Detailed Description
In order to make the objects, technical solutions and advantages of the present invention more clearly understood, the present invention is further specifically described below by way of embodiments and with reference to the accompanying drawings.
Example 1
The continuous multi-groove oil removal rinsing machine of the embodiment, as shown in fig. 1, comprises a cloth feeding device 1, three rinsing boxes 2 and a two-roller heavy padder 4 which are sequentially arranged, wherein an S-roller traction box 3 is arranged between every two adjacent rinsing boxes 2, after a fabric 6 enters from the cloth feeding device 1, the fabric is sequentially subjected to oil removal rinsing through the three rinsing boxes 2, and finally, the fabric is discharged after being pricked by the two-roller heavy padder 4.
As shown in fig. 3, the cloth feeding device 1 is provided with a spreader bar 11, a first spreader roll 12, a cloth breakage preventing device 13, a steam spraying device 14, a double spreader roll device 15, and a photoelectric sensor 16 in this order along the cloth feeding direction.
Wherein the spreader bar 11 plays a role of preliminary spreading and spreading to prevent the fabric 6 from twisting or running.
The first spreading roller 12 is driven by a motor and is used for further spreading the fabric 6 and effectively performing edge spreading effect on the surface edge curling of the fabric 6. The first spreading roll 12 has triangular wires welded to its surface symmetrically, and when the first spreading roll 12 rotates, the friction force from the middle to the outside is generated on the surface of the fabric 6 to spread the fabric 6 outwards.
The cloth breakage preventing device 13 is used for detecting the fabric 6 in real time, and can play a role in reminding an operator and stopping protection when the fabric 6 breaks and falls or is cleaned until the tail of the fabric 6 breaks.
The steam spraying device 14 comprises a liquid storage tank 141 arranged at the bottom of the cloth feeding device 1 and three straight spraying pipes 142 inserted into the bottom of the liquid storage tank 141, a small amount of water liquid is stored in the liquid storage tank 141, and meshes are formed in the top of the liquid storage tank 141; the bottom of the straight spraying pipe 142 is provided with waist-shaped holes towards the side and sprays steam into the water liquid to generate wet steam, and the wet steam is uniformly sprayed on the fabric 6 through the meshes at the top of the liquid storage box 141 to effectively wet the surface and the inside of the fabric 6, so that pre-wetting preparation is provided for subsequent feeding and water washing.
The double spreading roller device 15 comprises a second spreading roller 151 and a third spreading roller 152, wherein the second spreading roller 151 and the third spreading roller 152 are respectively positioned on the upper surface and the lower surface of the fabric 6, and generate spreading and stretching effects on the front surface and the back surface of the fabric 6; the second and third expander rolls 151 and 152 have a structure and shape similar to those of the first expander roll 12, and triangular wires are welded to the surfaces thereof in bilateral symmetry.
Photoelectric sensor 16 sets up in advancing the position that is close to the end of cloth in cloth device 1, carries out real time monitoring and rectifies a deviation to fabric 6 through photoelectric sensor 16, lets fabric 6 wash in getting into washing box 2 with the mode placed in the middle, avoids leading to fabric 6 to draw because of the off tracking of fabric 6 and splits.
In the embodiment, as shown in fig. 4-5, a washing tank 21 is arranged in the washing tank 2, and an oil removing filter 26 is arranged outside the washing tank 2; a cloth beating roller 23 is arranged in the rinsing bath 21, a detachable water tank 22 is arranged above the cloth beating roller 23 through a bracket 29, a cloth guide roller 24 is arranged above the detachable water tank 22, and a spraying device 25 is arranged above the cloth guide roller 24. The cloth beating roller 23 and the cloth guide roller 24 are driven by an external motor to realize the conduction and cleaning of the fabric. The fabric 6 enters from one side of the washing box body 2 and then is sprayed and washed through the spraying device 25, the fabric 6 washed through the spraying device 25 enters the lower end of the washing tank 21 along a gap between the washing tank 21 and the detachable water tank 22 under the driving of the cloth guide roller 24, and then is washed through the cloth beating roller 23.
In this embodiment, the side plates on the two side surfaces of the detachable water tank 22 are folded side plates, the inner wall of the rinsing tank 21 is provided with folded grooves matched with the folded side plates at positions corresponding to the folded side plates, and the cross section of a gap between the rinsing tank 21 and the detachable water tank 22 can be wavy or zigzag, so that the fabric 6 can collide with and scour away rinsing liquid added with an auxiliary agent when passing through the gap, and the auxiliary agent can better permeate into the fabric 6. The number of the rinsing tanks 21 in the rinsing tank body 2 can be set to two, so that the fabric 6 is rinsed twice in the same rinsing tank body 2, and the cleaning efficiency is improved.
An oil filter screen device 27 is installed at the opening at the top of the detachable water tank 22, and the oil filter screen device 27 is a stainless steel filter screen and can be used for filtering the washing liquid cleaned by the spraying device 25 for the first time. The side wall of the detachable water tank 22 is provided with a water inlet pipe 221 and a circulating water discharge pipe 222, the circulating water discharge pipe 222 is connected with the oil removing filter 26, and the washing water in the detachable water tank 22 is input into the oil removing filter 26 for oil removal. Seted up last inlet 211 and lower water inlet 212 on the wall of wash bowl 21, go up inlet 211 and lower water inlet 212 and all pass through pipeline and circulating pump 28 and deoiling filter 26's water piping connection, in the circulating water through twice filterable gets into wash bowl 21 through first water inlet 211 and second water inlet 212, realized the cyclic utilization of washing liquid, can also wash out abluent fabric 6 on the roller 23 of beating simultaneously, promote the cleaning efficiency. When the circulating water is insufficient, the circulating water can be added into the detachable water tank through the water inlet pipe 221.
In order to more effectively pull the fabric 6 forward, two S-roller pulling boxes 3 are alternately arranged between the three washing boxes 2, as shown in FIG. 6, three pulling rollers 31 are arranged in the S-roller pulling boxes 3 and are distributed in a triangular shape, so that the fabric 6 alternately passes through the three pulling rollers 31 and then is in an S shape. The three drawing rolls 31 draw the fabric 6 backward, and the S-shaped arrangement thereof can also play an effective anti-slip and anti-doffing role when the tension is unstable.
In this embodiment, the two-roll heavy padder 4 is disposed at the cloth outlet end of the last washing tank 2, as shown in fig. 7, a fourth spreading roll 41 and two rolls 42 are disposed in the two-roll heavy padder 4, and the fabric 6 passes through between the two rolls 42 after being spread by the fourth spreading roll 41 to be squeezed and watered.
As a preferable scheme, as shown in fig. 8-9, in this embodiment, a padder adjusting cloth pressing roller 43 is disposed above a gap between the fourth spreading roller 41 and a roller 42 closest to the fourth spreading roller 41, the padder adjusting cloth pressing roller 43 includes a cloth pressing roller 431, a rotating link mechanism 432, an adjusting limit plate 433, an adjusting handle 434 and an adjusting handle fixing bolt 435, the rotating link mechanism 432 is fixedly disposed in the two-roller heavy padder 4 in parallel with the roller 42, two ends of the cloth pressing roller 431 are disposed in parallel on the rotating link mechanism 432 through a bracket 436, the adjusting handle 434 is disposed at an end of the rotating link mechanism 432, and can drive the rotating link mechanism 432 to rotate, so as to drive the cloth pressing roller 431 to rotate around the rotating link mechanism 432; the adjusting limit plate 433 is fixedly disposed on a sidewall of the two-high mangle 4, and when the cloth pressing roller 431 is adjusted to a target angle by rotating the adjusting handle 434, the adjusting handle 434 is fixed on the adjusting limit plate 433 by the adjusting handle fixing latch 435. The padder adjusts the cloth pressing roller 43 to increase the wrap angle of the fourth spreading roller 41, reduce the gap between the fourth spreading roller 41 and the roller 42, effectively increase the edge expanding force or the edge curling degree of the fabric 6, and simultaneously, according to different fabrics 6, the angle positioning of the cloth pressing roller 431 is carried out by rotating the adjusting handle 434, so that a proper distance between the fourth spreading roller 41 and the roller 42 is achieved, and the edge expanding effect of the fabric 6 is finally met.
In this embodiment, the fabric 6 is directly fed to the next process after being subjected to water binding by the two-roll heavy padder 4.
Example 2
The difference between the continuous multi-groove oil removal washing machine of this embodiment and embodiment 1 is that the fabric 6 in this embodiment is not directly fed to the next process after being washed, but is transported or packaged before being fed to the next process.
As shown in fig. 2, in this embodiment, a cloth discharging swing frame 5 is further disposed at a cloth discharging end of the two-roll heavy padder 4, a swing rod 51 capable of moving left and right along the cloth discharging swing frame 5 is disposed on the cloth discharging swing frame 5, a plurality of cloth discharging guide rollers 52 are disposed on the cloth discharging swing frame 5 and the swing rod 51, and a cloth trolley 53 is disposed below the cloth discharging swing frame 5. Through the left-right swing of the swing lever 51, the washed fabric 6 can be evenly and orderly placed in the cloth vehicle 53 in an arc mode, and the transportation or the packaging treatment in the subsequent process is facilitated.
In the embodiment, the cooling and air injecting device 54 is arranged at the front end of the swinging rod 51 on the cloth discharging and cloth placing frame 5, and the surface of the washed fabric 6 is cooled in an air injecting mode, so that the fabric 6 is prevented from generating surface creases due to the difference between the internal temperature and the external temperature after the cloth is placed and stacked.
Another difference between this embodiment and embodiment 1 is that the number of the washing tanks 2 is two and the number of the S-roll drawing tanks 3 is one in this embodiment, and the two washing tanks 2 are located therebetween.
The above embodiments are only for illustrating the technical concept and features of the present invention, and the purpose of the embodiments is to enable people skilled in the art to understand the contents of the present invention and to implement the present invention, which cannot limit the protection scope of the present invention. All equivalent changes and modifications made according to the spirit of the present invention should be covered by the protection scope of the present invention.

Claims (10)

1. The utility model provides a continuous multislot deoiling rinsing machine which characterized in that includes:
the fabric spreading device comprises a fabric feeding device, wherein a spreading rod, a first spreading roller and a double spreading roller device are sequentially arranged on the fabric feeding device, the double spreading roller device comprises a second spreading roller and a third spreading roller, the second spreading roller and the third spreading roller are respectively positioned on the upper surface and the lower surface of a fabric, and the first spreading roller, the second spreading roller and the third spreading roller are used for controlling the fabric to advance and spreading and unfolding the fabric;
the washing box bodies are continuously arranged along the cloth outlet direction of the cloth inlet device;
the S-roller traction box body is arranged between every two adjacent washing box bodies, and three traction rollers are arranged in the S-roller traction box body and are distributed in a triangular shape, so that the fabric alternately passes through the three traction rollers and then is in an S shape; and
and the two-roller heavy padder is arranged at the cloth outlet end of the tail end washing box body far away from the cloth feeding device, and a fourth spreading roller and two rollers are arranged in the two-roller heavy padder.
2. The continuous multi-groove oil-removing washing machine as claimed in claim 1, wherein a washing groove is arranged in the washing box body, and an oil-removing filter is arranged outside the washing box body; a cloth beating roller is arranged in the rinsing bath, a detachable water tank is arranged above the cloth beating roller through a bracket, a cloth guide roller is arranged above the detachable water tank, and a spraying device is arranged above the cloth guide roller; an oil filter screen device is installed at an opening at the top of the detachable water tank, a water inlet pipe and a circulating water discharge pipe are installed on the detachable water tank, and the circulating water discharge pipe is connected with an oil removal filter; an upper water inlet and a lower water inlet are formed in the wall of the rinsing bath and are connected with a water outlet pipe of the oil removal filter through a pipeline and a circulating pump.
3. The continuous multi-groove oil-removing washing machine as claimed in claim 2, wherein the side plates on the two side surfaces of the detachable water groove are folded side plates, and the inner wall of the washing groove corresponding to the folded side plates is provided with folded grooves matched with the folded side plates.
4. The continuous multi-groove oil-removing water washing machine as claimed in claim 1 or 2, wherein the number of the washing tank bodies is 2-4.
5. The continuous multi-groove oil-removing washing machine as claimed in claim 1, wherein the first spreading roller, the second spreading roller and the third spreading roller are welded with bilateral-symmetric triangular steel wires on the surface.
6. The continuous multi-groove oil-removing washing machine as claimed in claim 1, wherein the cloth-feeding device is provided with a steam-spraying device, the steam-spraying device comprises a liquid storage tank arranged at the bottom of the cloth-feeding device and a plurality of straight spraying pipes inserted into the bottom of the liquid storage tank, water is stored in the liquid storage tank, and the top of the liquid storage tank is provided with meshes.
7. The continuous multi-groove oil-removing washing machine as claimed in claim 1, wherein a cloth-breaking preventing device is arranged in the cloth-feeding device behind the first spreading roller; and a photoelectric sensor is arranged on one side of the cloth feeding device close to the cloth outlet end.
8. The continuous multi-groove oil-removing washing machine according to claim 1, wherein a padder adjusting cloth-pressing roller is arranged in the two-roller heavy padder, the padder adjusting cloth-pressing roller comprises a cloth-pressing roller, a rotating link mechanism, an adjusting limit plate, an adjusting handle and an adjusting handle fixing bolt, the rotating link mechanism is fixedly arranged in the two-roller heavy padder in parallel with the roller, two ends of the cloth-pressing roller are arranged on the rotating link mechanism in parallel through a bracket, and the cloth-pressing roller is positioned above the fourth spreading roller and the roller close to the fourth spreading roller; the adjusting handle is arranged at the end part of the rotary connecting rod mechanism, the adjusting limiting plate is fixedly arranged on the side wall of the two-roller heavy padder, and the adjusting handle fixing bolt is used for fixing the handle on the adjusting limiting plate.
9. The continuous multi-groove oil-removing washing machine as claimed in claim 1, wherein a cloth-discharging swinging frame is arranged at the cloth-discharging end of the two-roller heavy padder, the cloth-discharging swinging frame comprises a swinging rod, and the swinging rod can move left and right along the cloth-discharging swinging frame; and the cloth outlet and arranging frame and the oscillating rod are provided with a plurality of cloth outlet guide rollers.
10. The continuous multi-groove oil-removing washing machine as claimed in claim 9, wherein a cooling air-jet device is arranged at the front end of the swing rod on the cloth-discharging swing frame.
CN201921955375.8U 2019-11-13 2019-11-13 Continuous multi-groove oil removal washing machine Active CN211079632U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201921955375.8U CN211079632U (en) 2019-11-13 2019-11-13 Continuous multi-groove oil removal washing machine

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Application Number Priority Date Filing Date Title
CN201921955375.8U CN211079632U (en) 2019-11-13 2019-11-13 Continuous multi-groove oil removal washing machine

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Publication Number Publication Date
CN211079632U true CN211079632U (en) 2020-07-24

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CN201921955375.8U Active CN211079632U (en) 2019-11-13 2019-11-13 Continuous multi-groove oil removal washing machine

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110777493A (en) * 2019-11-13 2020-02-11 浙江联科机械有限公司 Continuous multi-groove oil removal washing machine

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110777493A (en) * 2019-11-13 2020-02-11 浙江联科机械有限公司 Continuous multi-groove oil removal washing machine

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