Online post-pressing assembly

Through online rear press assembly, the problems of inconvenient mold replacement and single texture in the existing edge sealing strip embossing technology are solved, and the high-quality and diverse texture embossing of edge sealing strips are achieved, which improves the adaptability and efficiency of the production line.

CN119952957APending Publication Date: 2025-05-09SHANGHAI LINGDE MASCH CO LTD
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Patent Information

Application Number
CN202510217211.9
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-02-26
Publication Date
2025-05-09

AI Technical Summary

Technical Problem

The existing edge sealing embossing technology has inconvenient mold replacement, single texture and lack of flexibility, making it difficult to meet the market's demand for diversified decorative styles.

Method used

The online rear pressure assembly is adopted, including heating device, cold air shaping device, embossing device and traction device. The high-quality edge strip embossing is achieved through deep embossing components, auxiliary embossing components and conveying components, and different texture solutions can be quickly replaced.

Benefits of technology

It improves the flexibility and adaptability of the embossing process of edge sealing strips, ensures the clarity and uniformity of embossing, reduces the problem of lifting and trimming of the production line, and is suitable for mass production of high-quality edge sealing strips.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to an online post-pressing general assembly, which belongs to the technical field of edge band process equipment, and adopts the technical scheme that the online post-pressing general assembly comprises a heating device for heating an edge band to enable the edge band to be soft; the cold air shaping device is connected to the rear end of the heating device; the embossing device is arranged in the middle of the connection of the heating device and the cold air shaping device; the traction device is used for stretching and conveying the edge sealing strip; the embossing device comprises a deep embossing assembly, an auxiliary embossing assembly and a conveying assembly. The deep embossing assembly comprises a driving unit, a supporting unit and an embossing shaft, the driving unit is used for driving the supporting unit to move linearly, the supporting unit is arranged at the driving end of the driving unit, and the embossing shaft is arranged on one side of the supporting unit and used for achieving deep embossing.
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Description

Technical Field

[0001] The invention relates to the technical field of edge banding strip process equipment, and in particular to an online post-pressing assembly. Background Art

[0002] The aesthetics of edge banding directly affects the overall visual effect of the product. The texture on the surface of edge banding can not only enhance the decorative effect, but also provide certain anti-slip, anti-scratch and other functions. Therefore, the embossing process plays an important role in the production process of edge banding. The existing edge banding embossing technology mainly relies on fixed molds for mechanical embossing or hot embossing. Although it can achieve a certain degree of texture effect, it has problems such as inconvenience in changing molds, single texture and lack of flexibility.

[0003] In response to the market demand for diversified decorative styles, the texture design of edge banding needs to have higher variability to meet the personalized requirements of different application scenarios. For example, in different furniture styles, floor decoration or wall panel applications, users may want the texture of edge banding to be more delicate and three-dimensional, or to present specific imitation wood grain, imitation stone and other effects; therefore, how to improve the flexibility of edge banding embossing process so that it can quickly change different texture schemes while ensuring the clarity and uniformity of embossing is an important challenge facing the current industry.

[0004] In view of the above, the present application proposes an online post-pressing assembly to solve the above problems, making the pattern after negative pressure softer and reducing the situation of most existing exaggerated designs. Secondly, different compatible connection structures can be replaced based on different embossing requirements to improve the adaptability of the production line and reduce problems such as lifting and trimming of the production line. Summary of the invention

[0005] In view of the above situation, the present invention provides an online post-pressing assembly, which has significant advantages in embossing quality, applicability, cooling effect, equipment maintenance and cost control, and is suitable for mass production of high-quality edge banding strips.

[0006] An online post-pressing assembly, comprising:

[0007] A heating device, used to heat the edge banding to make it soft;

[0008] A cold air shaping device connected to the rear end of the heating device;

[0009] The embossing device is arranged in the middle of the connection between the heating device and the cold air setting device;

[0010] The traction device is used to stretch and transfer the edge banding strips;

[0011] Wherein, the embossing device comprises a deep embossing component, an auxiliary embossing component and a conveying component;

[0012] The deep embossing assembly comprises a driving unit, a supporting unit and an embossing shaft, wherein the driving unit is used to drive the supporting unit to move linearly, the supporting unit is arranged at the driving end of the driving unit, and the embossing shaft is arranged at one side of the supporting unit to realize deep embossing;

[0013] The auxiliary embossing assembly includes an arc-shaped shaft, an adjusting shaft and an auxiliary unit. One side of the arc-shaped shaft is adjustably rotatably arranged on the supporting unit. One side of the adjusting shaft is connected to the supporting unit, and the other side is connected to the auxiliary unit. The auxiliary unit is detachably arranged on the adjusting shaft and can perform linear motion along the direction of the arc-shaped shaft. The conveying assembly is located at the lower side of the deep embossing assembly and the auxiliary embossing assembly to assist the edge banding strip to work along the direction of motion.

[0014] Preferably, the cold air shaping device comprises a blowing system, an upper side plate and an air outlet;

[0015] The blowing system is used to achieve blowing;

[0016] The upper side plate is arranged on the upper side of the air outlet of the blowing system;

[0017] The air outlet is in the shape of thin strips, and a plurality of air outlets are arranged on the upper side plate at equal intervals.

[0018] Preferably, the driving unit comprises a support frame, a driving motor, a lead screw and a retaining rod;

[0019] The support frame is installed on the conveying assembly, and the support frame includes a top plate and a vertical plate, and the top plate and the vertical plate are connected in a T shape;

[0020] The driving motor is installed on the top plate;

[0021] The lead screw is arranged at the output end of the driving motor;

[0022] The retaining rod is connected to the lead screw through a ball bearing and can be driven by a motor to perform linear motion.

[0023] Preferably, the support unit comprises a linear slide rail, a fixture and a front side plate;

[0024] The linear slide rail is arranged on the vertical plate;

[0025] The clamp is arranged on the slide block of the linear slide rail;

[0026] The front side plate is arranged on a side of the fixture away from the linear slide rail.

[0027] Preferably, the arc-shaped shaft comprises a U-shaped support, a connecting rod, an inner groove and a rack;

[0028] The U-shaped support is detachably arranged on one side of the connecting rod by means of bolts;

[0029] The connecting rod is connected to the front side plate at one side away from the U-shaped support;

[0030] The inner groove is provided on the U-shaped support and the connecting rod;

[0031] The rack is arranged on one side of the inner cavity of the inner groove.

[0032] Preferably, the adjustment shaft comprises a fixing seat, a rotating rod, an extension rod and a short plate;

[0033] The fixing seat is installed at the bottom of one side surface of the front side plate;

[0034] The rotating rod is adjustable and rotatable on the fixed seat;

[0035] The extension rod is connected to a side of the rotating rod away from the fixing seat through a slideway;

[0036] The short plate can be rotatably arranged on the extension rod.

[0037] Preferably, the auxiliary unit comprises a shallow pressing shaft, a driver, a connecting column and a roller;

[0038] The shallow pressing shaft is used for shallow embossing;

[0039] The driver is arranged inside the shallow pressing shaft;

[0040] One end of the connecting column is connected to the output end of the driver, and the other end passes through one end of the shallow pressure shaft and is connected to the extension rod, and the middle part is clamped on one side of the shallow pressure shaft;

[0041] The roller is arranged on the surface of the connecting column passing through one side of the shallow pressing shaft.

[0042] Preferably, the roller is driven by a driver to move along the surface of the rack.

[0043] Preferably, the auxiliary unit further comprises an opening frame, a cleaning area, a rear plate, adhesive paper and a micro-extractor;

[0044] The opening frame is clamped on the arc-shaped shaft;

[0045] The cleaning area is arranged in the opening frame and is used for cleaning the embossing shaft;

[0046] The rear plate is detachably mounted on the opening frame;

[0047] The adhesive paper is arranged on the rear plate;

[0048] The micro air extractor is detachably mounted on one side of the opening frame.

[0049] Preferably, the cleaning area includes a ring conveyor line, a crawler belt and a cleaning brush;

[0050] The annular conveying line is arranged at the opening corresponding to the opening frame;

[0051] The crawler belt is arranged on the circular conveyor line, and one end of the crawler belt starting position is located on the left side of the upper end of the circular conveyor line, and the other end is located on the right side of the lower end of the circular conveyor line.

[0052] The above technical solution has the following beneficial effects:

[0053] (1) The device has significant advantages in embossing quality, applicability, cooling effect, equipment maintenance and cost control, and is suitable for mass production of high-quality edge banding strips.

[0054] (2) The device can be adjusted to meet the needs of embossing, increasing the adaptability of the equipment and the diversity of its use. BRIEF DESCRIPTION OF THE DRAWINGS

[0055] Figure 1 It is a schematic diagram of the overall structure of the present invention;

[0056] Figure 2 This is a schematic diagram of the air outlet structure of the present invention;

[0057] Figure 3 This is a schematic diagram of the structure of the drive unit of the present invention;

[0058] Figure 4 This is a schematic diagram of the structure of the adjusting shaft of the present invention;

[0059] Figure 5 This is a schematic diagram of the arc-shaped shaft structure of the present invention;

[0060] Figure 6 It is a schematic diagram of the structure of the driver of the present invention;

[0061] Figure 7 It is a schematic diagram of the opening frame structure of the present invention;

[0062] Figure 8 This is a schematic diagram of the rear plate structure of the present invention;

[0063] Fig. 9 This is a schematic diagram of the structure of the micro-exhauster of the present invention;

[0064] Fig.10 It is a three-dimensional schematic diagram of the structure 32302 of the present invention;

[0065] Fig.11 It is a schematic diagram of the planar structure of 32302 of the present invention.

[0066] In the figure:

[0067] 1. Heating device;

[0068] 2. Cold air shaping device; 21. Blowing system; 22. Upper side panel; 23. Air outlet;

[0069] 3. Embossing device; 31. Deep embossing assembly; 311. Driving unit; 3111. Support frame; 31111. Top plate; 31112. Vertical plate; 3112. Driving motor; 3113. Lead screw; 3114. Retaining rod; 312. Support unit; 3121. Linear guide rail; 3122. Clamp; 3123. Front side plate; 313. Embossing shaft;

[0070] 32. Auxiliary embossing assembly; 321. Arc shaft; 3211. U-shaped support; 3212. Connecting rod; 3213. Inner groove; 3214. Rack; 322. Adjusting shaft; 3221. Fixed seat; 3222. Rotating rod; 3223. Extension rod; 3224. Short board;

[0071] 323, auxiliary unit;

[0072] 3231, shallow pressure shaft; 3232, driver; 3233, connecting column; 3234, roller;

[0073] 32301, opening frame; 32302, cleaning area; 323021, circular conveyor line; 323022, crawler belt; 323023, cleaning brush; 32303, rear plate; 32304, adhesive paper; 32305, micro exhauster;

[0074] 33. Conveying components;

[0075] 4. Traction device. DETAILED DESCRIPTION

[0076] The above and other technical contents, features and effects of the present invention are described in detail below with reference to the attached Figures 1 to 11 It can be clearly presented in the detailed description of the embodiments that the structural contents mentioned in the following embodiments are all referenced to the drawings in the specification.

[0077] This application proposes an online post-pressing assembly, which is as follows:

[0078] For reference Figure 1-2 The present application is mainly completed by four parts, namely, a heating device 1, a cold air shaping device 2, an embossing device 3 and a pulling device 4. Through the steps of heating, embossing, cooling, pulling and the like, the consistency and high quality of the edge banding strip in shape, size and surface quality are ensured, so that it has good performance in subsequent applications.

[0079] For reference Figure 1-2 The heating device 1 is a common existing device and will not be described in detail in this application. It heats the raw material of the edge banding strip (such as thermoplastic plastic) to soften it or reach the optimal processing temperature; thereby making the material sufficiently flexible to facilitate subsequent molding and processing.

[0080] For reference Figure 1-2 The edge banding strip passing through the heating device 1 is embossed by the embossing device 3 to form a pattern, and then enters the cold air shaping device 2 to solidify;

[0081] For further reference Figure 2 The cold air shaping device 2 includes a blowing system 21, an upper side plate 22 and an air outlet 23. The blowing system 21 is located at the lower end and is used to blow air toward the upper end. An upper side plate 22 is provided on the upper side thereof. The upper side plate 22 is flush with the output end of the embossing device 3 to receive the edge banding strip after output embossing. Secondly, in order to promote the stable cooling of the edge banding strip, a plurality of air outlets 23 are opened on the upper side plate 22. The air outlets 23 are equidistantly distributed on the upper side plate 22 in the shape of thin strips. The gaps between the plurality of air outlets 23 are small, so that the force of the wind blown upward is small and stable.

[0082] For reference Figure 3-4 Before entering the cold air setting device 2, it will pass through the embossing device 3 for embossing work, wherein the embossing device 3 includes a deep embossing component 31, an auxiliary embossing component 32 and a conveying component 33. The deep embossing component 31 is used for basic deep embossing work, the auxiliary embossing component 32 is used to assist the deep embossing component 31 to do some auxiliary work, and the conveying component 33 is used to push the edge banding strip from entering the embossing device 3 to do the embossing work.

[0083] It should be noted that the conveying component 33 is a relatively mature matching component in the existing technology in this field, and will not be described in detail in this application; it is used to achieve the function of assisting the edge banding strip to be pulled forward.

[0084] Among them, the deep embossing component 31 includes a driving unit 311, a supporting unit 312 and an embossing shaft 313. The driving unit 311 is used to drive the supporting unit 312 to move linearly. The supporting unit 312 is arranged at the driving end of the driving unit 311. The embossing shaft 313 is arranged on one side of the supporting unit 312 to achieve deep embossing.

[0085] For further information, please refer to Figure 3-4 ;

[0086] The driving unit 311 includes a support frame 3111, a driving motor 3112, a lead screw 3113 and a retaining rod 3114; the support frame 3111 is installed on the conveying assembly 33, the support frame 3111 includes a top plate 31111 and a vertical plate 31112, the top plate 31111 and the vertical plate 31112 are connected in a T shape, the driving motor 3112 is installed on the top plate 31111, the lead screw 3113 is arranged at the output end of the driving motor 3112, the retaining rod 3114 is connected to the lead screw 3113 through a ball, and can work linearly through the driving motor 3112; the lead screw 3113 is driven by the driving motor 3112 to rotate, and during the rotation process, the retaining rod 3114 is made to move linearly through the cooperation of the ball, thereby the support unit 312 connected to the bottom of the retaining rod 3114 can be adjusted up and down, thereby changing the gap between the embossing shaft 313 and the lower end flow edge banding strip, and the edge banding strips of various thicknesses can be adapted to work through adjustment;

[0087] The supporting unit 312 includes a linear slide 3121, a clamp 3122 and a front side plate 3123; the linear slide 3121 is arranged on the vertical plate 31112, the clamp 3122 is arranged on the slider of the linear slide 3121, and the front side plate 3123 is arranged on the side of the clamp 3122 away from the linear slide 3121; with the assistance of the linear slide 3121, the embossing shaft 313 can be driven to move up and down more stably during the driving operation of the driving motor 3112, and the clamp 3122 is clamped and fixed at the bottom of the surface of the retaining rod 3114, and is connected and fixed to the slider in the linear slide 3121. This clamp 3122 can be removed to drive the embossing shaft 313 to be disassembled synchronously when different embossing is required, so as to make further adjustments.

[0088] It should be noted that a group of driving units 311 and supporting units 312 are connected to both sides of an embossing shaft 313; the two groups of driving units 311 and supporting units 312 work synchronously to drive the connected embossing shaft 313 to move up and down; at the same time, in order to facilitate multiple groups of embossing work in a limited space, there are multiple groups of embossing devices 3, which work in the front and back, and the vertical plate 31112 is located in the middle of the top plate 31111 and is connected to form a T-shape, which can facilitate the front and back areas to be set with embossing devices 3; and the embossing devices 3 in the front and back areas do not correspond to each other, and are all located on the side of the corresponding side embossing device 3 on one side. This setting can avoid the situation where adjacent sections of the embossing device 3 collide with each other during movement during the setting, and secondly, it can also reduce the manufacturing volume of the equipment accordingly, effectively reducing the manufacturing cost of the equipment.

[0089] For reference Figure 3-6 In order to assist the deep embossing component 31 in its work, the auxiliary embossing component 32 is further optimized to support the deep embossing component 31 in doing some auxiliary work, so as to enable the auxiliary deep embossing component 31 to complete the embossing work more effectively.

[0090] In the setting, the auxiliary embossing component 32 includes an arc-shaped shaft 321, an adjustment shaft 322 and an auxiliary unit 323. One side of the arc-shaped shaft 321 is adjustable and rotatable and is set on the support unit 312. One side of the adjustment shaft 322 is connected to the support unit 312, and the other side is connected to the auxiliary unit 323. The auxiliary unit 323 is detachably set on the adjustment shaft 322 and can perform linear movement along the direction of the arc-shaped shaft 321. The conveying component 33 is located at the lower side of the deep embossing component 31 and the auxiliary embossing component 32 to assist the edge banding strip to work along the movement direction.

[0091] For further information, please refer to Figure 3-6 ;

[0092] The arc shaft 321 includes a U-shaped support 3211, a connecting rod 3212, an inner groove 3213 and a rack 3214; the U-shaped support 3211 is detachably arranged on one side of the connecting rod 3212 by bolts, and the side of the connecting rod 3212 away from the U-shaped support 3211 is connected to the front side plate 3123, the inner groove 3213 is arranged on the U-shaped support 3211 and the connecting rod 3212, and the rack 3214 is arranged on one side of the inner cavity of the inner groove 3213; through the detachable setting between the U-shaped support 3211 and the connecting rod 3212, the connected auxiliary unit 323 can be removed and replaced with a device that is more suitable for embossing conditions for dedicated use, the inner groove 3213 is used to assist the auxiliary unit 323 connected in the inner groove 3213 to move along a fixed direction, and the rack 3114 is used to reduce various problems such as reverse sliding when the auxiliary unit 323 moves in the inner groove 3213, and plays a role of limiting the movement.

[0093] It should be noted that the connection position between the connecting rod 3212 and the front side plate 3123 needs to be manually adjusted and rotated with the help of external tools. When rotation is not required, the position is fixed and does not need to be rotated.

[0094] The adjusting shaft 322 includes a fixed seat 3221, a rotating rod 3222, an extension rod 3223 and a short plate 3224; the fixed seat 3221 is installed at the bottom of one side surface of the front side plate 3123, the rotating rod 3222 is adjustable and rotatable on the fixed seat 3221, the extension rod 3223 is connected to the side of the rotating rod 3222 away from the fixed seat 3221 through a slide, and the short plate 3224 is rotatable on the extension rod 3223; the fixed seat 3221 supports the rotation of the rotating rod 3222 and other structures, and the rotating rod 3222 rotates with the fixed seat 3221 according to the rotation requirements. 221 is connected with a change, and the extension rod 3223 is connected with the auxiliary unit 323 along the length of the long rotating rod 3222. When the auxiliary unit 323 changes, the required connection length will change. At this time, the required length can be achieved by changing the connection of the extension rod 3223; and the short plate 3224 is used to form a connection with the connecting rod 3212 through the short plate 3224 when the auxiliary unit 323 moves to the highest position along the inner groove 3213, so as to fix the position of the auxiliary unit 323 and enable the auxiliary unit 323 to be located at a high position for work.

[0095] The auxiliary unit 323 is configured as a detachable device and can be changed according to different embossing conditions.

[0096] In one implementation, reference may be made to Figure 5-9 , the auxiliary unit 323 is set as a device for assisting embossing; it includes a shallow pressing shaft 3231, a driver 3232, a connecting column 3233 and a roller 3234; the shallow pressing shaft 3231 is used for shallow embossing, the driver 3232 is arranged inside the shallow pressing shaft 3231, one end of the connecting column 3233 is connected to the output end of the driver 3232, and the other end passes through one end of the shallow pressing shaft 3231 and is rotatably connected to the extension rod 3223, wherein the middle part is clamped on one side of the shallow pressing shaft 3231, and the roller 3234 is arranged on the surface of the connecting column 3233 passing through one side of the shallow pressing shaft 3231; the pressure of the shallow pressing shaft 3231 is shallower than that of the embossing shaft 313, and is used for first embossing After the embossing shaft 313 presses negative pressure to produce a pattern, the embossed pattern also has lines, which is more vivid than the pattern obtained by the negative pressure of the embossing shaft 313 (for example, a complex pattern route is pressed out by the shallow embossing shaft 3231, and then the pattern is pressed out by the embossing shaft 313, each part of the pattern will have a more beautiful texture, and the lines are also lighter, and the pattern is more beautiful and not exaggerated). When the driver 3232 is driven, it will drive the connecting column 3233 to rotate. When the connecting column 3233 rotates, the roller 3234 fixedly connected to the surface will also rotate synchronously. At this time, the roller 3234 and the rack 3214 adapt to the movement and move along the direction of the rack 3214 to change the degree of negative pressure.

[0097] To further explain, the shallow pressing shaft 3231 is snap-fitted into the connecting column 3233, and is connected to two groups of arc shafts 321 and the adjusting shaft 322 in one group of shallow pressing shafts 3231. Therefore, when supporting the shallow pressing shaft 3231 to be connected to the arc shaft 321, two connecting columns 3233 are provided. The connecting columns 3233 are connected to the driver 3232 and are fixed synchronously through rollers 3234. The driver 3232 located in the shallow pressing shaft 3231 is fixed synchronously. At this time, when embossing is working, the shallow pressing shaft 3231 is assisted by the conveying assembly 33 to rotate on the connecting column 3233, but it will not drive the driver 3232 and its connecting column 3233 to rotate synchronously.

[0098] In another embodiment, the auxiliary unit 323 is configured as a cleaning device for cleaning dirt on the surface of the embossing shaft 313, which includes an opening frame 32301, a cleaning area 32302, a back plate 32303, an adhesive paper 32304 and a micro-exhaust fan 32305. The opening frame 32301 is snap-connected to the arc shaft 321, the cleaning area 32302 is arranged in the opening frame 32301 for cleaning the embossing shaft 313, the back plate 32303 is detachably arranged on the opening frame 32301, the adhesive paper 32304 is arranged on the back plate 32303, and the micro-exhaust fan 32305 is detachably arranged on one side of the opening frame 32301; first adjust the opening frame 32301 to the highest point of the inner groove 3213, and connect it through the short plate 3224 The opening frame 32301 is fixed, and rollers are retained on both sides thereof, which cooperate with the rack to reduce the overall rotation caused by the rotation of the rollers after being fixed. At the gap where one set of edge banding strips work and meet another set of edge banding strips, the cleaning area 32302 starts to work. During work, the embossed shaft 313 cooperates with the cleaning area 32302 to pause and rotate to complete the overall cleaning work. When cleaning, the micro-exhaust fan 32305 starts to work synchronously to absorb the cleaned dirt into the opening frame 32301, and can adhere the dirt through the adhesive paper 32304 to reduce the situation of dirt falling out. Secondly, during use, the adhesive paper 32304 becomes non-sticky after adhering to a large amount of dirt, and can fall into the receiving groove at the bottom of the rear plate 32303 (refer to Figure 8 ); When cleaning, take out the back plate 32303, replace the adhesive paper 32304, and clean the dirt on the bottom of the back plate 32303.

[0099] For reference Fig. 9 The micro-exhaust fan 32305 can be disassembled and installed in the opening frame 32301. An isolation net and isolation cotton are arranged in sequence on the side facing the inner cavity of the opening frame 32301, which are used to reduce the inconvenience of extracting dirt and collecting and sorting it. The isolation net and isolation cotton can be cleaned after daily disassembly, which can increase the service life of the micro-exhaust fan 32305.

[0100] For further information, please refer to Figure 10-11 ;

[0101] The cleaning area 32302 includes a circular conveyor line 323021, a crawler belt 323022 and a cleaning brush 323023; the circular conveyor line 323021 is arranged at the opening corresponding to the opening frame 32301, and the crawler belt 323022 is arranged on the circular conveyor line 323021, and one end of the starting position of the crawler belt 323022 is located on the left side of the upper end of the circular conveyor line 323021, and the other end is located on the right side of the lower end of the circular conveyor line 323021. This connection design relationship can be conveniently used in both circulation and reciprocation; when the circular conveyor line 323021 is driven, the crawler belt 323022 is driven to circulate or reciprocate, and the cleaning brush 323023 is used to sweep during the reciprocating process, and the two cleaning brushes 323023 are arranged up and down in height, and their added height is adapted to the height of the circular conveyor line 323021, which can make the cleaning more complete.

[0102] In controlling the rotation and pause of the embossing shaft 313, the embossing shaft 313 can be lowered to form friction with the rotating wheel of the bottom conveying assembly 33, and the rotation and pause work can be controlled by friction rotation;

[0103] For maintenance, it is only necessary to replace the cleaning brush 323023, and the sucked dust enters from the hollow position in the middle of the annular conveyor line 323021. The annular conveyor line 323021 is an existing mature technology and will not be described in detail in this application.

[0104] After the embossing device 3 works, it is cooled by the cold air shaping device 2 and then stretched or transmitted by the traction device 4 to ensure that it continues to the next step of processing or packaging at a specified speed and direction; its traction device 4 is a mature technology in this field and is not described in detail in this application.

[0105] The above description is only for illustrating the present invention. It should be understood that the present invention is not limited to the above embodiments, and various variations that conform to the concept of the present invention are within the protection scope of the present invention.

Claims

1. An online post-pressing assembly, characterized in that: include, A heating device (1) is used to heat the edge banding to make it soft; A cold air shaping device (2) connected to the rear end of the heating device (1); The embossing device (3) is arranged in the middle of the connection between the heating device (1) and the cold air shaping device (2); A traction device (4) is used to stretch and transfer the edge banding strip; Wherein, the embossing device (3) comprises a deep embossing component (31), an auxiliary embossing component (32) and a conveying component (33); The deep embossing component (31) comprises a driving unit (311), a supporting unit (312) and an embossing shaft (313); the driving unit (311) is used to drive the supporting unit (312) to move linearly; the supporting unit (312) is arranged at the driving end of the driving unit (311); and the embossing shaft (313) is arranged at one side of the supporting unit (312) to achieve deep embossing; The auxiliary embossing component (32) comprises an arc-shaped shaft (321), an adjusting shaft (322) and an auxiliary unit (323); one side of the arc-shaped shaft (321) is adjustable and rotatably arranged on the support unit (312); one side of the adjusting shaft (322) is connected to the support unit (312), and the other side is connected to the auxiliary unit (323); the auxiliary unit (323) is detachably arranged on the adjusting shaft (322) and can perform linear movement along the direction of the arc-shaped shaft (321); the conveying component (33) is located at the lower side of the deep embossing component (31) and the auxiliary embossing component (32) and is used to assist the edge banding strip to work along the movement direction.

2. The online post-pressing assembly according to claim 1 is characterized in that: The cold air shaping device (2) comprises an air blowing system (21), an upper side plate (22) and an air outlet (23); The blowing system (21) is used to achieve blowing; The upper side plate (22) is arranged on the upper side of the air outlet port of the blowing system (21); The air outlets (23) are in the shape of thin strips, and a plurality of the air outlets are equidistantly distributed on the upper side plate (22).

3. The online post-pressing assembly according to claim 1 is characterized in that: The driving unit (311) comprises a support frame (3111), a driving motor (3112), a lead screw (3113) and a retaining rod (3114); The support frame (3111) is installed on the conveying assembly (33), and the support frame (3111) comprises a top plate (31111) and a vertical plate (31112), and the top plate (31111) and the vertical plate (31112) are connected in a T shape; The driving motor (3112) is installed on the top plate (31111); The lead screw (3113) is arranged at the output end of the driving motor (3112); The retaining rod (3114) is connected to the lead screw (3113) via a ball bearing and can be driven by a motor (3112) to work linearly.

4. The online post-pressing assembly according to claim 3 is characterized in that: The support unit (312) comprises a linear slide rail (3121), a clamp (3122) and a front side plate (3123); The linear slide rail (3121) is arranged on the vertical plate (31112); The clamp (3122) is arranged on a slide block of the linear slide rail (3121); The front side plate (3123) is arranged on a side of the clamp (3122) away from the linear slide rail (3121).

5. The online post-pressing assembly according to claim 1, characterized in that: The arc-shaped shaft (321) comprises a U-shaped support (3211), a connecting rod (3212), an inner groove (3213) and a rack (3214); The U-shaped support (3211) is detachably mounted on one side of the connecting rod (3212) by means of bolts; The side of the connecting rod (3212) away from the U-shaped support (3211) is connected to the front side plate (3123); The inner groove (3213) is provided on the U-shaped support (3211) and the connecting rod (3212); The rack (3214) is arranged on one side of the inner cavity of the inner groove (3213).

6. The online post-pressing assembly according to claim 1, characterized in that: The adjusting shaft (322) comprises a fixing seat (3221), a rotating rod (3222), an extending rod (3223) and a short plate (3224); The fixing seat (3221) is installed at the bottom of one side surface of the front side plate (3123); The rotating rod (3222) is rotatably arranged on the fixing seat (3221); The extension rod (3223) is connected to a side of the rotating rod (3222) away from the fixing seat (3221) via a slideway; The short plate (3224) can be rotatably disposed on the extension rod (3223).

7. The online post-pressing assembly according to claim 6, characterized in that: The auxiliary unit (323) includes a shallow pressing shaft (3231), a driver (3232), a connecting column (3233) and a roller (3234); The shallow pressing shaft (3231) is used for shallow embossing; The driver (3232) is arranged inside the shallow pressing shaft (3231); One end of the connecting column (3233) is connected to the output end of the driver (3232), and the other end passes through one end of the shallow pressure shaft (3231) and is connected to the extension rod (3223), and the middle part is clamped on one side of the shallow pressure shaft (3231); The roller (3234) is arranged on the surface of the connecting column (3233) passing through the side of the shallow pressing shaft (3231).

8. The online post-pressing assembly according to claim 5 or 7, characterized in that: The roller (3234) is driven by a driver (3232) to move along the surface of the rack (3214).

9. The online post-pressing assembly according to claim 1, characterized in that: The auxiliary unit (323) further includes an opening frame (32301), a cleaning area (32302), a rear plate (32303), adhesive paper (32304) and a micro exhauster (32305); The opening frame (32301) is clamped on the arc-shaped shaft (321); The cleaning area (32302) is arranged in the opening frame (32301) and is used to clean the embossing shaft (313); The rear plate (32303) is detachably mounted on the opening frame (32301); The adhesive paper (32304) is arranged on the rear plate (32303); The micro air extractor (32305) can be detachably mounted on one side of the opening frame (32301).

10. The online post-pressing assembly according to claim 9, characterized in that: The cleaning area (32302) includes a ring conveyor line (323021), a crawler belt (323022) and a cleaning brush (323023); The annular conveying line (323021) is arranged corresponding to the opening of the opening frame (32301); The crawler belt (323022) is arranged on the circular conveyor line (323021), and one end of the starting position of the crawler belt (323022) is located on the left side of the upper end of the circular conveyor line (323021), and the other end is located on the right side of the lower end of the circular conveyor line (323021).