Cloth singeing treatment system and cloth processing line

By setting up a buffer mechanism in the cloth burning treatment system and using a buffer wheel motor to control the falling of the cloth, the maintenance and repair of the system without stopping is achieved, and the problem of long-term shutdown in the existing technology is solved, which improves processing efficiency and reduces costs.

CN223214307UActive Publication Date: 2025-08-12FOSHAN FOISON TEXTILE CO LTD
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Patent Information

Application Number
CN202422563262.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-22
Publication Date
2025-08-12
Estimated Expiration
2034-10-22

AI Technical Summary

Technical Problem

The existing cloth wool treatment system requires long-term shutdown and maintenance, which affects processing efficiency and cost.

Method used

A buffer mechanism is provided at any position of the fabric inlet mechanism, drying mechanism, wool burning mechanism and lowering mechanism. The active rotating wheel is controlled by the buffer wheel motor, and the rotation of the buffer wheel is adjusted to make the cloth fall to the buffer receiving member, so that the system can be maintained and repaired without stopping.

Benefits of technology

It provides the ability to maintain and repair the system without shutdown, solving the efficiency and cost problems caused by long-term shutdown.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a cloth singeing treatment system and a cloth processing line. The cloth singeing treatment system comprises a buffer mechanism, a cloth feeding mechanism, a drying mechanism, a singeing mechanism and a cloth discharging mechanism, the cloth feeding mechanism, the drying mechanism, the singeing mechanism and the cloth discharging mechanism are sequentially arranged in the cloth conveying direction, and the buffering mechanism is arranged between any two. The buffer driving roller and the plurality of buffer driven rollers are rotationally mounted at different positions of the buffer frame respectively and are used for conveying cloth respectively; the driving rotating wheel is connected to the buffering driving roller; the output end of the buffering wheel motor is connected to the driving rotating wheel and used for driving the driving rotating wheel to rotate and driving the buffering driving roller to rotate. The buffer receiving part is mounted on the buffer frame; the buffer driving roller and the adjacent buffer driven roller form a buffer roller unit, and the formed buffer roller unit is located above the buffer receiving part; and the buffer receiving piece is used for receiving the cloth of the buffer receiving piece above. According to the scheme, the problem that an existing cloth singeing treatment system needs to be shut down for maintenance and repair for a long time is solved.
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Description

Technical Field

[0001] The utility model relates to the field of textile processing, in particular to a cloth singeing treatment system and a cloth processing line. Background Art

[0002] In textile processing, fabric undergoes surface treatment after pre-treatment to remove impurities from the fabric surface and improve its cleanliness. However, in existing fabric singeing systems, fabric is pulled and conveyed by a back-end device, resulting in uninterrupted and continuous fabric conveyance. This requires a complete system shutdown for repair or maintenance. While a localized system failure only requires a short repair, a complete shutdown significantly impacts processing efficiency and negatively impacts the company's processing costs. Utility Model Content

[0003] The purpose of the utility model is to provide a cloth singeing processing system, which can set a buffer mechanism at any position of the cloth feeding mechanism, the drying mechanism, the singeing mechanism and the cloth unloading mechanism, and can start the buffer wheel motor as needed. The buffer wheel motor controls the active rotating wheel, and by adjusting the rotation of the buffer active roller, the cloth can be dropped into the buffer receiving member, so that the cloth in the cloth singeing processing system is mainly temporarily stored in the buffer receiving member, and sufficient maintenance time can be provided without shutting down the system.

[0004] The utility model also provides a cloth processing line, which uses the above-mentioned cloth singeing processing system.

[0005] To achieve this purpose, the present invention adopts the following technical solutions:

[0006] A cloth singeing treatment system comprises: a buffer mechanism, a cloth feeding mechanism, a drying mechanism, a singeing mechanism and a cloth unloading mechanism;

[0007] The cloth feeding mechanism, drying mechanism, singeing mechanism and cloth unloading mechanism are sequentially arranged along the conveying direction of the cloth, and the buffer mechanism is arranged between any two of them;

[0008] The buffer mechanism includes: a buffer frame, a buffer driven roller, a buffer active roller, an active rotating wheel, a buffer wheel motor and a buffer receiving member;

[0009] The buffer active roller and multiple buffer driven rollers are rotatably installed at different positions of the buffer frame, and are respectively used to convey cloth; the active rotating wheel is coaxially connected to the buffer active roller; the output end of the buffer wheel motor is connected to the active rotating wheel, and is used to drive the active rotating wheel to rotate, thereby driving the buffer active roller to rotate; the buffer receiving member is installed on the buffer frame; the buffer active roller and its adjacent buffer driven rollers form a buffer roller unit, and the buffer roller unit is located above the buffer receiving member; the buffer receiving member is used to receive cloth from the buffer receiving member above.

[0010] Optimally, the buffer receiving member includes: a first stop section, a second stop section and a third stop section;

[0011] The lower end of the first segment is connected to the upper end of the second segment, the lower end of the second segment is connected to the lower end of the third segment, and the upper end of the third segment is higher than the upper end of the second segment; the buffer roller unit includes: the buffer active roller and at least three buffer driven rollers; the spatial position of the buffer roller unit is U-shaped.

[0012] Optimally, the buffer mechanism is arranged between the cloth feeding mechanism and the drying mechanism;

[0013] The drying mechanism comprises: a drying rack and a drying drum;

[0014] A plurality of drying cylinders are installed on the drying rack; a drying cavity for filling a heating medium or a cooling medium is provided inside the drying cylinder.

[0015] Optimally, the singeing mechanism includes, in sequence along the conveying direction of the cloth: a singeing device and a fire extinguishing device;

[0016] The singeing device and the fire extinguishing device are respectively provided with singeing guide rollers along the conveying direction of the cloth.

[0017] Optimally, it further includes: a water washing mechanism;

[0018] The cloth feeding mechanism, drying mechanism, singeing mechanism, washing mechanism and cloth unloading mechanism are sequentially arranged along the conveying direction of the cloth;

[0019] The water washing mechanism comprises: a water washing tank and a padder guide roller;

[0020] The water washing tank is used to hold cleaning liquid; a plurality of the padding guide rollers are installed in the water washing tank in an upper and lower distributed manner, and the cloth is wound around the plurality of the padding guide rollers.

[0021] Optimally, the number of the water washing tanks is at least 2.

[0022] Optimally, it further includes: a cleaning mechanism;

[0023] The cleaning mechanism is distributed between the drying mechanism and the singeing mechanism, and / or the cleaning mechanism is distributed between the singeing mechanism and the cloth lowering mechanism;

[0024] The cleaning mechanism includes: a cleaning frame, a cleaning guide roller and a brush member;

[0025] A plurality of cleaning guide rollers are installed on the cleaning frame; the brush pieces are arranged in pairs and are respectively installed on the cleaning frame so as to rotate relative to each other, and the two brush pieces rotate relative to each other until they are close to each other and respectively press against the front and back sides of the cloth.

[0026] Optimally, the singeing mechanism, the cleaning mechanism, the buffer mechanism and the washing mechanism are arranged in sequence along the conveying direction of the cloth.

[0027] Optimally, the cloth dropping mechanism includes: a cloth dropping device and a cloth rolling device;

[0028] The swing arm roller of the open-width cloth dropping device is used to drive the cloth to move against the cloth rolling device, and the cloth rolling device is used to roll up the cloth.

[0029] A cloth processing line is provided with the above-mentioned cloth singeing treatment system.

[0030] Compared with the prior art, one of the above technical solutions has the following beneficial effects:

[0031] The present invention provides a cloth singeing treatment system, which can set a buffer mechanism at any position of the cloth feeding mechanism, drying mechanism, singeing mechanism and cloth unloading mechanism, and can start the buffer wheel motor as needed. The buffer wheel motor controls the active rotating wheel, and by adjusting the rotation of the buffer active roller, the cloth can be dropped into the buffer receiving member, so that the cloth in the cloth singeing treatment system is mainly temporarily stored in the buffer receiving member, and sufficient maintenance and repair time can be provided without shutting down the system, thereby solving the problem that the existing cloth singeing treatment system needs to be shut down for a long time for maintenance and repair. BRIEF DESCRIPTION OF THE DRAWINGS

[0032] Figure 1 This is a structural diagram of one embodiment of the cloth processing line proposed by the present invention;

[0033] Figure 2 It is a structural schematic diagram of one embodiment of the buffer mechanism proposed by the present invention.

[0034] in:

[0035] Buffer mechanism 1, cloth feeding mechanism 2, drying mechanism 3, singeing mechanism 4, cloth unloading mechanism 5; washing mechanism 6; cleaning mechanism 7; cloth 10;

[0036] Buffer frame 11, buffer driven roller 12, buffer active roller 13, active rotating wheel 14, buffer wheel motor 15, buffer receiving member 16; buffer roller unit 120; first gear section 161, second gear section 162, third gear section 163;

[0037] Drying rack 31, drying drum 32; singeing device 41, fire extinguishing device 42; singeing guide roller 411;

[0038] Open-width cloth dropping device 51, cloth winding device 52; water washing tank 61, padding guide roller 62;

[0039] Cleaning frame 71 , cleaning guide roller 72 , and brush member 73 . DETAILED DESCRIPTION

[0040] The following describes embodiments of the present invention in detail. Examples of the embodiments are shown in the accompanying drawings, wherein the same or similar reference numerals throughout represent the same or similar elements or elements having the same or similar functions. The embodiments described below with reference to the accompanying drawings are exemplary and are intended only to explain the present invention and are not to be construed as limiting the present invention.

[0041] In the description of the present invention, it should be understood that the terms "center", "longitudinal", "transverse", "length", "width", "thickness", "up", "down", "left", "right", "front", "back", "vertical", "horizontal", "top", "bottom", "inside", "outside", "inner end", "outer end", "axial", "radial", "circumferential" and the like indicate orientations or positional relationships based on the orientations or positional relationships shown in the accompanying drawings, and are only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as a limitation on the present invention. In addition, features defined as "first" or "second" may explicitly or implicitly include one or more such features, and are used to distinguish and describe features, without distinction of order or importance. In the description of the present invention, unless otherwise specified, "multiple" means more than two.

[0042] like Figure 1-2 A cloth singeing treatment system comprises: a buffer mechanism 1, a cloth feeding mechanism 2, a drying mechanism 3, a singeing mechanism 4 and a cloth unloading mechanism 5;

[0043] The cloth feeding mechanism 2, drying mechanism 3, singeing mechanism 4 and cloth unloading mechanism 5 are sequentially arranged along the conveying direction of the cloth, and the buffer mechanism 1 is arranged between any two of them;

[0044] The buffer mechanism 1 includes: a buffer frame 11, a buffer driven roller 12, a buffer active roller 13, an active rotating wheel 14, a buffer wheel motor 15 and a buffer receiving member 16;

[0045] The buffer active roller 13 and the plurality of buffer driven rollers 12 are rotatably installed at different positions of the buffer frame 11 and are respectively used to convey cloth; the active rotating wheel 14 is coaxially connected to the buffer active roller 13; the output end of the buffer wheel motor 15 is connected to the active rotating wheel 14, for driving the active rotating wheel 14 to rotate, thereby driving the buffer active roller 13 to rotate; the buffer receiving member 16 is installed on the buffer frame 11; the buffer active roller 13 and its adjacent buffer driven rollers 12 form a buffer roller unit 120, and the buffer roller unit 120 is located above the buffer receiving member 16; the buffer receiving member 16 is used to receive cloth from the buffer receiving member 16 above.

[0046] The present invention provides a cloth singeing treatment system, which can set a buffer mechanism 1 at any position of the cloth feeding mechanism 2, the drying mechanism 3, the singeing mechanism 4 and the cloth unloading mechanism 5. The buffer wheel motor 15 can be started as needed, and the buffer wheel motor 15 controls the active rotating wheel 14. By adjusting the rotation of the buffer active roller 13, the cloth can be dropped to the buffer receiving member 16, and then the cloth in the cloth singeing treatment system is mainly temporarily stored in the buffer receiving member 16. Sufficient maintenance and repair time can be provided without shutting down the system, thereby solving the problem that the existing cloth singeing treatment system needs to be shut down for a long time for maintenance and repair.

[0047] Specifically, the cloth feeding mechanism 2, drying mechanism 3, singeing mechanism 4 and cloth unloading mechanism 5 of this solution are arranged in sequence; the cloth feeding mechanism 2 is used to provide a cloth feeding function for the cloth singeing treatment system, and can continuously input cloth into the system, and can be replaced by a well-known mechanism with a cloth feeding function. The drying mechanism 3 is used to dry the cloth, and can be replaced by a well-known mechanism with a cloth drying function as long as the moisture of the cloth can be removed. The singeing mechanism 4 is used to burn and remove impurities such as broken hair on the surface of the cloth, and can be replaced by a well-known mechanism with a cloth singeing function. The cloth unloading mechanism 5 can be replaced by a well-known mechanism with a cloth unloading function, and is used to output the cloth out of the system. It can generally have a traction function, and is used to continuously transport the cloth in the direction of the cloth unloading mechanism 5, such as Figure 1The direction of the arrow is the overall conveying direction of the cloth. In this solution, a buffer mechanism 1 is provided at any two positions of the cloth feeding mechanism 2, the drying mechanism 3, the singeing mechanism 4 and the cloth discharging mechanism 5, for example, between the cloth feeding mechanism 2 and the drying mechanism 3, between the drying mechanism 3 and the singeing mechanism 4, or between the singeing mechanism 4 and the cloth discharging mechanism 5; a buffer active roller 13 and a plurality of buffer driven rollers 12 are respectively installed on the buffer frame 11, and the buffer driven roller 12 mainly plays the role of receiving, tightening or outputting the cloth when conveying the cloth, and its actual distribution position can be determined according to the cloth processing situation; and a single or several buffer driven rollers 12 are adjacent to the buffer active roller 13, and "adjacent" here refers to a continuous single or multiple rollers in the cloth conveying direction, and the buffer active roller 13 located above the buffer receiving member 16 and its adjacent buffer driven roller 12 form a buffer roller unit 120; due to the buffer active roller 13 The output end of the buffer wheel motor 15 is directly or indirectly connected to the active rotating wheel 14 and connected to the active rotating wheel 14. This solution can control the output end of the buffer wheel motor 15 to rotate faster, so that the cloth feeding speed in the buffer roller unit 120 is greater than the overall cloth transmission speed of the cloth singeing treatment system, so that the cloth relaxes and sinks between the rollers of the buffer roller unit 120. The buffer receiving member 16 is located below the buffer roller unit 120 and can be used to support the cloth sinking from the upper buffer receiving member 16, and the cloth is continuously lowered to the buffer receiving member 16. When the buffer receiving member 16 receives a sufficient length of cloth, the mechanism between the buffer mechanism 1 and the cloth lowering mechanism 5 can operate normally, so that the mechanism between the buffer mechanism 1 and the cloth feeding mechanism 2 can be repaired, so that the front-end mechanism can be repaired and maintained without stopping the entire system. For example Figure 1 In the process, the buffer mechanism 1 is arranged between the cloth feeding mechanism 2 and the drying mechanism 3. When the cloth feeding mechanism 2 needs to change the cloth, a longer cloth can be reserved in the buffer receiving member 16. The output time of the cloth to the drying mechanism 3 can meet the time of replenishing the cloth, thereby realizing the replenishment of the required singed cloth without stopping the machine.

[0048] Optimally, the buffer receiving member 16 includes: a first block section 161, a second block section 162 and a third block section 163;

[0049] The lower end of the first block segment 161 is connected to the upper end of the second block segment 162 , the lower end of the second block segment 162 is connected to the lower end of the third block segment 163 , and the upper end of the third block segment 163 is higher than the upper end of the second block segment 162 ;

[0050] The buffer roller unit 120 includes: the buffer active roller 13 and at least three buffer driven rollers 12 ; the spatial position of the buffer roller unit 120 is U-shaped.

[0051] like Figure 1, the lower end of the first block section 161 is connected to the upper end of the second block section 162, the lower end of the second block section 162 is connected to the lower end of the third block section 163, and the upper end of the third block section 163 is higher than the upper end of the second block section 162; similarly, the buffer active roller 13 and at least three buffer driven rollers 12 are also U-shaped, so the cloth is U-shaped when passing through the four; the first block section 161, the second block section 162 and the third block section 163 are L-shaped or U-shaped; in this way, when the speed of the buffer active roller 13 in the buffer roller unit 120 is increased to make the transmission speed higher than the overall transmission speed of its rear end, the cloth will relax in the U-shaped section of the buffer roller unit 120, and then It falls into the buffer receiving part 16 with an L-shaped structure or a U-shaped structure. The L-shaped structure can block the cloth through the corresponding first block section 161 and the third block section 163 to prevent the cloth from escaping from the buffer receiving part 16; and since the cloth is U-shaped extended at the position of the buffer roller unit 120, the cloth can fall directly into the buffer receiving part 16; and after the front end completes the inspection or maintenance, the output end speed of the buffer wheel motor 15 can be reduced, and the speed of the buffer active roller 13 in the buffer roller unit 120 is reduced to make the transmission speed lower than the overall transmission speed of its rear end, so that the cloth can adaptively approach the buffer roller unit 120; in this way, the cloth is minimally affected during the inspection or maintenance.

[0052] Optimally, the buffer mechanism 1 is arranged between the cloth feeding mechanism 2 and the drying mechanism 3;

[0053] The drying mechanism 3 includes a drying rack 31 and a drying drum 32;

[0054] A plurality of drying cylinders 32 are installed on the drying rack 31 ; a drying cavity for filling a heating medium or a cooling medium is provided inside the drying cylinder 32 .

[0055] The number of drying drums 32 can be multiple, and each can be filled with a heating medium or a cooling medium as needed. For example, for the drying portion, hot oil or steam can be introduced into part of the drying chamber to fully heat the surface of the cloth, remove moisture from the cloth, or heat the cloth, or preheat it before singeing. For the cooling portion, water can be introduced into part of the drying chamber. Water has a lower temperature than hot oil or steam and can remove heat from the cloth, thereby allowing the cloth to be output at the optimal temperature to the next step.

[0056] Optimally, the singeing mechanism 4 includes, in sequence along the conveying direction of the cloth: a singeing device 41 and a fire extinguishing device 42;

[0057] The singeing device 41 and the fire extinguishing device 42 are respectively provided with singeing guide rollers 411 along the conveying direction of the cloth.

[0058] The singeing device 41 replaces a known singeing mechanism in textile processing, burning impurities on the surface of the cloth. Singeing can be performed by cutting, slicing, or through-singing. The fire extinguishing device 42 extinguishes the cloth, ensuring that the flames are completely extinguished to prevent accidents caused by the flames. The singeing device 41 and the fire extinguishing device 42 are each equipped with a singeing guide roller 411, which can be used to receive, tension, convey, and output the cloth.

[0059] Optimally, it further includes: a water washing mechanism 6;

[0060] The cloth feeding mechanism 2, drying mechanism 3, singeing mechanism 4, washing mechanism 6 and cloth unloading mechanism 5 are arranged in sequence along the conveying direction of the cloth;

[0061] The water washing mechanism 6 includes: a water washing tank 61 and a padder guide roller 62;

[0062] The water washing tank 61 is used to contain cleaning liquid; a plurality of the padding guide rollers 62 are installed in the water washing tank 61 in an upper and lower distribution, and the cloth is wound around the plurality of the padding guide rollers 62.

[0063] Washing tank 61 is equipped with a padder guide roller 62, which guides the cloth as it passes through the washing tank 61. The cleaning liquid in washing tank 61 contacts the cloth, removing impurities from the cloth's surface and transferring them into the liquid phase. Padding guide roller 62 replaces the guide rollers used in the padder. As the wet open-width cloth passes through the two nipples, it is ejected, along with the compressed air, as water droplets, from the surface of the cloth. This achieves high dehydration efficiency, thereby removing moisture from the cloth.

[0064] Optimally, the number of the water washing tanks 61 is at least 2.

[0065] When the number of washing tanks 61 is greater, the cleaning ability of the cloth is improved and the impurity removal effect is best.

[0066] Optimally, it further comprises: a cleaning mechanism 7;

[0067] The cleaning mechanism 7 is distributed between the drying mechanism 3 and the singeing mechanism 4, and / or the cleaning mechanism 7 is distributed between the singeing mechanism 4 and the cloth lowering mechanism 5;

[0068] The cleaning mechanism 7 includes a cleaning frame 71, a cleaning guide roller 72 and a brush member 73;

[0069] The plurality of cleaning guide rollers 72 are mounted on the cleaning frame 71 ; the brush members 73 are arranged in pairs and are mounted on the cleaning frame 71 so as to rotate relative to each other. The two brush members 73 rotate relative to each other until they are close to each other and respectively press against the front and back sides of the cloth.

[0070] The cleaning mechanism 7 is used to remove hair and dust from the surface of the cloth; specifically, a plurality of cleaning guide rollers 72 are installed on the cleaning frame 71 for receiving, tightening, conveying and outputting the cloth; the brush members 73 are arranged in pairs on the cleaning frame 71, and the two brush members 73 can rotate relative to each other, that is, at least one brush member 73 is rotatable, and can be rotated by a known mechanism with a driving rotation function (such as a motor). When the brush member 73 rotates to be close to the cloth, the brush member 73 can be against the front and back sides of the cloth, thereby scraping and cleaning the impurities on the surface of the cloth, thereby maintaining the surface cleanliness of the cloth. In particular, the cleaning mechanism 7 can be arranged at the front and / or rear end of the singeing mechanism 4, and can roughly remove larger impurities before the singeing process, and can remove impurities remaining in the coal hair after the singeing process, thereby improving the singeing effect.

[0071] Optimally, the singeing mechanism 4, the cleaning mechanism 7, the buffer mechanism 1 and the washing mechanism 6 are arranged in sequence along the conveying direction of the cloth.

[0072] One of the buffer mechanisms 1 of the present solution can also be arranged at the middle and rear end of the cloth singeing treatment system, and the specific preferred position is between the cleaning mechanism 7 and the washing mechanism 6; the cloth is just in the position after the cleaning treatment and before the washing treatment, so the cloth can be temporarily buffered after cleaning, so that the singeing mechanism 4 and the cleaning mechanism 7 can be inspected or maintained without stopping the machine.

[0073] Optimally, the cloth dropping mechanism 5 includes: a cloth dropping device 51 and a cloth rolling device 52;

[0074] The swing arm roller of the open-width cloth dropping device 51 is used to drive the cloth to move to the cloth rolling device 52, and the cloth rolling device 52 is used to roll up the cloth.

[0075] The open-width cloth dropping device 51 is a well-known textile unloading mechanism, which is used to continuously drop the cloth in an open width through its swinging arm roller; and the cloth will fall directly to the cloth winding device 52, which only needs to rotate continuously to automatically wind up the cloth.

[0076] A cloth processing line is provided with the above-mentioned cloth singeing treatment system.

[0077] Although the embodiments of the present invention have been shown and described, those skilled in the art will appreciate that various changes, modifications, substitutions and variations may be made to the embodiments without departing from the principles and purpose of the present invention, and that the scope of the present invention is defined by the claims and their equivalents.

Claims

1. A cloth singeing treatment system, characterized in that: include: Buffer mechanism, cloth feeding mechanism, drying mechanism, singeing mechanism and cloth unloading mechanism; The cloth feeding mechanism, drying mechanism, singeing mechanism and cloth unloading mechanism are sequentially arranged along the conveying direction of the cloth, and the buffer mechanism is arranged between any two of them; The buffer mechanism includes: a buffer frame, a buffer driven roller, a buffer active roller, an active rotating wheel, a buffer wheel motor and a buffer receiving member; The buffer active roller and multiple buffer driven rollers are rotatably installed at different positions of the buffer frame, and are respectively used to convey cloth; the active rotating wheel is coaxially connected to the buffer active roller; the output end of the buffer wheel motor is connected to the active rotating wheel, and is used to drive the active rotating wheel to rotate, thereby driving the buffer active roller to rotate; the buffer receiving member is installed on the buffer frame; the buffer active roller and its adjacent buffer driven rollers form a buffer roller unit, and the buffer roller unit is located above the buffer receiving member; the buffer receiving member is used to receive cloth from the buffer receiving member above.

2. A cloth singeing treatment system according to claim 1, characterized in that: The buffer receiving member includes: a first stop section, a second stop section and a third stop section; The lower end of the first segment is connected to the upper end of the second segment, the lower end of the second segment is connected to the lower end of the third segment, and the upper end of the third segment is higher than the upper end of the second segment; the buffer roller unit includes: the buffer active roller and at least three buffer driven rollers; the spatial position of the buffer roller unit is U-shaped.

3. A cloth singeing treatment system according to claim 1, characterized in that: The buffer mechanism is arranged between the cloth feeding mechanism and the drying mechanism; The drying mechanism comprises: a drying rack and a drying drum; A plurality of drying cylinders are installed on the drying rack; a drying cavity for filling a heating medium or a cooling medium is provided inside the drying cylinder.

4. A cloth singeing treatment system according to claim 1, characterized in that: The singeing mechanism includes, in sequence along the conveying direction of the cloth: a singeing device and a fire extinguishing device; The singeing device and the fire extinguishing device are respectively provided with singeing guide rollers along the conveying direction of the cloth.

5. A cloth singeing treatment system according to any one of claims 1 to 4, characterized in that: Also includes: Water washing mechanism; The cloth feeding mechanism, drying mechanism, singeing mechanism, washing mechanism and cloth unloading mechanism are sequentially arranged along the conveying direction of the cloth; The water washing mechanism comprises: a water washing tank and a padder guide roller; The water washing tank is used to hold cleaning liquid; a plurality of the padding guide rollers are installed in the water washing tank in an upper and lower distributed manner, and the cloth is wound around the plurality of the padding guide rollers.

6. A cloth singeing treatment system according to claim 5, characterized in that: The number of the water washing tanks is at least 2.

7. The cloth singeing treatment system according to claim 5, characterized in that: Also includes: cleaning agencies; The cleaning mechanism is distributed between the drying mechanism and the singeing mechanism, and / or the cleaning mechanism is distributed between the singeing mechanism and the cloth lowering mechanism; The cleaning mechanism includes: a cleaning frame, a cleaning guide roller and a brush member; A plurality of cleaning guide rollers are installed on the cleaning frame; the brush pieces are arranged in pairs and are respectively installed on the cleaning frame so as to rotate relative to each other, and the two brush pieces rotate relative to each other until they are close to each other and respectively press against the front and back sides of the cloth.

8. A cloth singeing treatment system according to claim 7, characterized in that: The singeing mechanism, the cleaning mechanism, the buffer mechanism and the washing mechanism are arranged in sequence along the conveying direction of the cloth.

9. The cloth singeing treatment system according to claim 1, characterized in that: The cloth dropping mechanism includes: a cloth dropping device and a cloth rolling device; The swing arm roller of the open-width cloth dropping device is used to drive the cloth to move against the cloth rolling device, and the cloth rolling device is used to roll up the cloth.

10. A cloth processing line, characterized in that: A cloth singeing processing system according to any one of claims 1 to 9 is provided.