Intelligent batten curtain stringing system
The intelligent wood strip stringing system, which integrates conveying, feeding, length setting, grooving, and paper rope pressing processes, solves the problem of low processing efficiency in traditional wood strip stringing, realizes continuous production, and improves overall efficiency.
Patent Information
- Application Number
- CN202511748589.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-11-26
- Publication Date
- 2026-01-23
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
Traditional wooden strip curtain processing is inefficient, and the lack of complete equipment leads to discontinuous production.
Design an intelligent wood strip stringing system, including a conveying device, a feeding device, a length fixing device, a grooving device, and a paper pressing rope device, integrating the processes of wood strip feeding, length fixing, grooving, and paper pressing rope to form a continuous operation.
It improves the production efficiency of wood strip curtain processing and realizes continuous processing from feeding to discharging.
Smart Images

Figure CN121374776A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to a kind of intelligent wood strip string curtain systems. BACKGROUND
[0002] Building, decoration industry needs to use large wood board, and due to wood limit, there is no whole big board, and multiple wood strips are strung together, i.e. the same shape is closely arranged together, and a slot is opened on the top surface or bottom surface by cutting equipment, and then a paper rope is fixed in the slot, so that multiple wood strips are strung together to form a whole big board. However, the traditional wood strip stringing process is mostly manually operated, which not only takes a long time, but also has low production efficiency. Currently, there are some patents related to wood strip stringing process, but most of them only involve partial process equipment, such as slotting, stringing, etc., lack of complete machine equipment, and cannot realize continuous processing from feeding to discharging. Therefore, it is necessary to improve this technical problem. SUMMARY
[0003] The present application improves the existing problems in the prior art, i.e. the technical problem to be solved by the present application is to provide an intelligent wood strip stringing system.
[0004] In order to achieve the above purpose, the technical scheme adopted by the present application is: an intelligent wood strip stringing system, comprising a conveying device for conveying wood strips from left to right, an upper feeding device, a length setting device, a slotting device and a paper rope pressing device are sequentially arranged from left to right above the conveying device, the upper feeding device comprises a horizontally arranged feeding platform, an upper feeding pushing assembly is arranged above the feeding platform for pushing the wood strips to the right to the conveying device; the length setting device comprises a first feeding mechanism, a counting pushing mechanism, a second feeding mechanism and a blocking mechanism arranged in sequence from left to right, the first feeding mechanism and the second feeding mechanism are respectively used for placing a first end plate and a second end plate on the conveying device; the counting pushing mechanism comprises a moving seat driven by a pushing drive to move left and right, the bottom of the moving seat is provided with left and right distributed liftable pushing plates and detection members, the detection members detect the number of wood strips and a first end plate when the moving seat moves from right to left, and when the sum of the number of wood strips and the number of first end plates reaches a set value, the pushing plates move downward to the left side of the first end plate, and the pushing plates move with the moving seat from left to right, so that a first end plate, a plurality of wood strips and a second end plate are closely arranged together under the limiting of the blocking mechanism and abut against the blocking mechanism; the slotting device is used for opening a transversely through rope slot at the top of the first end plate, the plurality of wood strips and the second end plate; the paper rope pressing device is used for pressing the paper rope into the rope slot.
[0005] Further, the conveying device comprises two front and rear spaced apart transverse conveying chains, the two transverse conveying chains are synchronously rotated by a power assembly; the material blocking mechanism comprises a blocking plate vertically arranged between the two transverse conveying chains, the length of the blocking plate extends along the longitudinal direction, the blocking plate is driven to lift by a blocking lifting cylinder arranged below the blocking plate, the left side surface of the blocking plate is embedded with a pressure sensor for contacting the right side surface of the second end plate, the pressure sensor is electrically connected with the pushing driving part through a control unit, when the pressure detected by the pressure sensor reaches a set value, the control unit drives the pushing driving part to stop, so that the first end plate, the wood strips and the second end plate are closely arranged together.
[0006] Further, the pushing driving part comprises a transverse moving module vertically arranged above the middle part between the two transverse conveying chains, the moving seat is installed at the bottom of the moving end of the transverse moving module; the pushing plate is driven to lift by a pushing lifting cylinder vertically installed at the bottom of the moving seat; the detection part is a vertically arranged photoelectric sensor, the photoelectric sensor is electrically connected with the control unit.
[0007] Further, the first and second material placing mechanisms each comprise a vertical material groove, the vertical material groove of the first material placing mechanism is used for placing a plurality of first end plates stacked along the vertical direction, the vertical material groove of the second material placing mechanism is used for placing a plurality of second end plates stacked along the vertical direction, the lower end of the vertical material groove is provided with a pair of front and rear symmetrically distributed material placing supporting plates, the pair of material placing supporting plates are respectively slidably connected with the front and rear side walls of the vertical material groove, each material placing supporting plate is driven to move forward and backward by a material placing cylinder, when the pair of material placing supporting plates move away from each other, the bottom of the vertical material groove is opened.
[0008] Further, the material pushing assembly comprises two front and rear spaced apart pushing driving chains, the pushing driving chains are arranged transversely, three material pushing plates are uniformly distributed between the outer circumferential sides of the pushing driving chains in the circumferential direction, the material pushing plates are perpendicular to the pushing driving chains, the two pushing driving chains drive the three material pushing plates to rotate in the counterclockwise direction, when the material pushing plates rotate to the lower end of the pushing driving chains, the wood strips on the material pushing platform are pushed to move from left to right to the conveying device.
[0009] Further, the top of the material pushing platform is fixed with a material pushing supporting plate arranged transversely at the front end, the right end of the material pushing platform is provided with a downward inclined material falling guide plate, the material falling guide plate is beneficial to the wood strips on the material pushing platform to slide downward to the conveying device.
[0010] Further, the slotting device comprises an open-bottom protective box, a slotting drive shaft is longitudinally arranged at the lower end of the interior of the protective box, the slotting drive shaft is driven to rotate by a slotting power element, a slotting saw blade is installed at the front and rear ends of the slotting drive shaft respectively, and the lower ends of the slotting saw blades extend out of the open bottom of the protective box; a pair of left and right distributed scrap suction pipes are arranged at the front and rear ends of the protective box respectively, the scrap suction pipes are connected with a dust collector, the lower ends of the pair of scrap suction pipes extend below the open bottom of the protective box and are bent upwards to be close to the slotting saw blades.
[0011] Further, the paper rope pressing device comprises a pair of front and rear distributed paper rope conveying pipes, the top ports of the paper rope conveying pipes are provided for the entry of the paper rope, the lower ends of the paper rope conveying pipes are provided with upward bending sections, a pair of upper and lower distributed paper rope output rollers are arranged on the circumferential side walls of the upward bending sections, the paper rope passes between the pair of paper rope output rollers and is driven by the pair of paper rope output rollers to be output from the lower ports of the paper rope conveying pipes, the paper rope output from the paper rope conveying pipes falls into the rope placing groove, a rope pressing wheel for extending into the rope placing groove and pressing the paper rope downward is arranged on the right side of each paper rope conveying pipe, and the rope pressing wheel is liftable; a pair of front and rear distributed rope cutting knives are arranged on the right side of the lower port of the paper rope conveying pipe, and the pair of rope cutting knives are driven by a longitudinally arranged rope cutting cylinder to move towards each other to cut the paper rope.
[0012] Further, an upper glue groove is arranged on the right side of the pair of paper rope conveying pipes, a glue transition roller is arranged in the upper glue groove, a thread cylinder is arranged on the right side of the upper glue groove, the paper rope output from the thread cylinder passes through the upper glue groove and then passes below the glue transition roller, and then extends out of the left side wall of the upper glue groove, the paper rope extending out of the upper glue groove enters the paper rope conveying pipe after passing through a transition roller; a sensor for detecting the second end plate and the first end plate is arranged on the lower part of the upward bending section of the paper rope conveying pipe, the sensor is located on the left side of the lower port of the paper rope conveying pipe, and the sensor is electrically connected with the driving motors of the pair of paper rope output rollers and the rope cutting cylinder through a control unit, when the sensor detects the second end plate, the control unit controls the driving motors of the pair of paper rope output rollers to start, so that the pair of paper rope output rollers rotate and output the paper rope, and when the sensor does not detect the first end plate, the control unit controls the rope cutting cylinder to extend out, so that the pair of rope cutting knives move towards each other to cut the paper rope.
[0013] Further, the conveying device further comprises a pair of front and rear spaced machine tables, a stepped portion is arranged on the upper part of one end of the pair of machine tables, the side surface of the stepped portion of the pair of machine tables is used for limiting the front and rear ends of the wood strips, a groove is arranged on the stepped surface of the stepped portion, and a horizontal conveying chain is arranged in the groove.
[0014] Compared with the prior art, the present invention has the following advantages: The present invention is reasonably designed and integrates wood strip feeding, length setting, grooving and paper pressing rope into one unit to form a continuous operation and effectively improve production efficiency. Attached Figure Description
[0015] Figure 1 This is a schematic diagram of the main structure of an embodiment of the present invention; Figure 2 This is a top view of the structure of an embodiment of the present invention; Figure 3 This is a top view schematic diagram of the feeding device in an embodiment of the present invention; Figure 4 This is a schematic diagram of the main structure of the feeding device in an embodiment of the present invention; Figure 5 This is a right-side structural schematic diagram of the feeding device in an embodiment of the present invention; Figure 6 This is a front view schematic diagram of the counting and pushing mechanism in an embodiment of the present invention; Figure 7 This is a side view schematic diagram of the counting and pushing mechanism in an embodiment of the present invention; Figure 8 This is a top cross-sectional view of the first feeding mechanism and the second feeding mechanism in an embodiment of the present invention; Figure 9 This is a side cross-sectional schematic diagram of the first feeding mechanism and the second feeding mechanism in an embodiment of the present invention; Figure 10 yes Figure 1 Schematic diagram of AA section in the middle; Figure 11 This is a schematic diagram of the front cross-sectional structure of the grooving device in an embodiment of the present invention; Figure 12 This is a top view cross-sectional structural diagram of the grooving device in an embodiment of the present invention; Figure 13 This is a schematic diagram of the front view of the paper-pressing rope device in an embodiment of the present invention; Figure 14 This is a partial top view cross-sectional schematic diagram of the paper-pressing rope device in an embodiment of the present invention; Figure 15 This is a top view schematic diagram of the paper rope conveying tube in an embodiment of the present invention; Figure 16 This is a schematic diagram of the working state of the length-fixing device in an embodiment of the present invention. Figure 1 ; Figure 17 This is a schematic diagram of the working state of the length-fixing device in an embodiment of the present invention. Figure 2 . Detailed Implementation
[0016] The application will be described in further detail below with reference to the drawings and specific embodiments.
[0017] In the description of the present application, it should be understood that the terms "longitudinal", "transverse", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer" and the like indicate the orientation or positional relationship shown in the drawings based on the orientation or positional relationship shown in the drawings, and are only for the convenience of describing the present application, and do not indicate or imply that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation of the present application.
[0018] It should be noted that the left-right direction described below is the transverse direction, and the front-rear direction is the longitudinal direction.
[0019] As shown in the drawings, Figures 1-17 The intelligent wood strip string curtain system of the present application comprises a conveying device 1 for conveying longitudinally arranged wood strips 2 from left to right, an upper feeding device 3, a length setting device 4, a slotting device 5 and a paper rope pressing device 6 are sequentially arranged above the conveying device 1 from left to right, the upper feeding device 3 comprises a horizontally arranged upper feeding platform 7, the wood strips are longitudinally placed on the upper feeding platform 7 by manual operation, and the wood strips are distributed left and right along the upper feeding platform; an upper feeding pushing assembly 8 is arranged above the upper feeding platform 7 for pushing the wood strips 2 to the right to the conveying device; the length setting device 4 comprises a first feeding mechanism 9, a counting pushing mechanism 10, a second feeding mechanism 11 and a blocking mechanism 12 sequentially arranged from left to right, the first feeding mechanism 9 and the second feeding mechanism 11 are respectively used for placing a first end plate 13 and a second end plate 14 on the conveying device 1; the counting pushing mechanism 10 comprises a moving seat 15 driven by a pushing driving member to move left and right, the bottom of the moving seat 15 is provided with left and right distributed liftable pushing plates 16 and detection members, the detection members detect the number of wood strips 2 and a first end plate 13 when the moving seat 15 moves from right to left, when the sum of the number of wood strips 2 and the number of first end plates 13 reaches a set value, the pushing plates 16 move downward to the left side of the first end plate 13, the pushing plates 16 move from left to right with the moving seat 15, so that a first end plate 13, a plurality of wood strips 2 and a second end plate 14 are tightly arranged together under the limiting of the blocking mechanism and abut against the blocking mechanism, achieving length setting; the slotting device 5 is used for forming transversely through rope slots at the top of the first end plate, the plurality of wood strips and the second end plate; the paper rope pressing device 6 is used for pressing a paper rope 17 into each rope slot.
[0020] In the embodiment, the conveying device 1 comprises two front and rear spaced transverse conveying chains 18, which are synchronously rotated by a power assembly; the conveying device 1 further comprises a pair of front and rear spaced workbenches 19, one end of each of the workbenches 19 is provided with a stepped portion 20, the stepped portion 20 of each of the workbenches 19 is used for limiting the front and rear ends of the wood strips 2, and the stepped surface of the stepped portion 20 is provided with a groove 21, in which the transverse conveying chain 18 is arranged, and the top of the transverse conveying chain 18 is flush with the stepped surface of the stepped portion 20, as shown in Figure 10 . When working, the wood strips fall on the stepped surface of the stepped portion of the workbenches, and the front and rear ends of the wood strips are in contact with the two transverse conveying chains respectively, and the wood strips are horizontally conveyed from left to right by the two transverse conveying chains.
[0021] In the embodiment, as shown in Figure 10 , the material blocking mechanism 12 comprises a material blocking plate 22 vertically arranged between the two transverse conveying chains 18, the length of the material blocking plate 22 extends in the longitudinal direction, the material blocking plate 22 is driven to lift by a material blocking lifting cylinder 23 arranged below the material blocking plate 22, and a pressure sensor 24 for contacting the right side surface of the second end plate 14 is embedded in the left side surface of the material blocking plate 22, the pressure sensor protrudes to the left side of the material blocking plate, and the pressure sensor 24 is electrically connected with the material pushing driving member through a control unit (such as PLC), when the pressure detected by the pressure sensor 24 reaches a set value, the control unit drives the material pushing driving member to stop, so that the first end plate 13, the wood strips 2 and the second end plate 14 are tightly close to each other. When working, the material pushing plate pushes a first end plate, a plurality of wood strips and a second end plate to move to the right, the right end surface of the second end plate is in contact with the pressure sensor, as the material pushing plate continues to move to the right, the first end plate, the wood strips and the second end plate are close to each other, at this time, the pressure sensor bears more and more rightward pressure, when the pressure reaches the set value, it proves that the first end plate, the wood strips and the second end plate are in the tightly close state, the material pushing driving member stops, so that the material pushing plate no longer continues to move to the right, and the fixed length is completed, as shown in Figure 16 , 17 .
[0022] In the embodiment, as shown in Figure 6 , 7As shown, the pushing driving member includes a transverse moving module 25 (such as a ball screw pair) arranged transversely above the middle of the two transverse conveying chains 18, and the moving seat 15 is installed at the bottom of the moving end of the transverse moving module 25, which drives the moving seat to move left and right; the pushing plate 16 is driven to move up and down by a pushing lifting cylinder 26 installed vertically at the bottom of the moving seat 15; the detection member is a vertically arranged photoelectric sensor 27, which is electrically connected with the control unit, and the control unit has a counting module, and the photoelectric sensor moves to the left, and the counting is increased by one every time a piece of wood strip is detected, and finally the first end plate is detected; when the set count value is reached, the pushing plate is located at the left side of the first end plate at this time, the pushing lifting cylinder drives the pushing plate to move downward, and finally the moving seat drives the pushing plate to move right, the pushing plate pushes the first end plate to move right, and the first end plate pushes the wood strip to move.
[0023] As shown in the embodiment, Figure 8 , 9 As shown, the first feeding mechanism 9 and the second feeding mechanism 11 each include a vertical material groove 28, the vertical material groove 28 of the first feeding mechanism 9 is used for placing a plurality of first end plates 13 stacked along the vertical direction, and the vertical material groove 28 of the second feeding mechanism 11 is used for placing a plurality of second end plates 24 stacked along the vertical direction, the lower end of the vertical material groove 28 is provided with a pair of front and rear symmetrically distributed feeding supporting plates 29, the feeding supporting plates 29 are horizontally arranged, and a pair of feeding supporting plates 29 are respectively slidably connected with the longitudinal grooves of the front and rear side walls of the vertical material groove 28, each feeding supporting plate 29 is driven by a feeding cylinder 30 to move forward and backward, and when a pair of feeding supporting plates 29 move away from each other, the bottom opening of the vertical material groove 28 is opened. In the normal state, a pair of feeding supporting plates extend into the vertical material groove and support the stacked end plates, when the lower end plate is needed, a pair of feeding supporting plates move away from each other to open the bottom opening of the vertical material groove, and the end plates in the vertical material groove fall into the conveying device by gravity.
[0024] As shown in the embodiment, Figures 3-5 As shown, the feeding pushing assembly includes two front and rear spaced feeding driving chains 31, the feeding driving chains 31 are arranged transversely, and three feeding pushing plates 32 are uniformly distributed between the outer circumferential sides of the feeding driving chains 31 in the circumferential direction, the feeding pushing plates 32 are perpendicular to the feeding driving chains 31, and the two feeding driving chains 31 drive the three feeding pushing plates 32 to rotate in the counterclockwise direction, and the feeding pushing plates 32 push the wood strips 2 on the feeding platform 7 to move from left to right onto the conveying device 1 when the feeding pushing plates 32 rotate to the lower end of the feeding driving chains 31. When working, a plurality of wood strips are placed on the feeding platform by manual operation, the three feeding pushing plates rotate counterclockwise under the driving of the feeding driving chains, and when the feeding pushing plates rotate to above the left end of the feeding platform, they are in a vertical state, and then the feeding pushing plates move linearly from left to right, and the feeding pushing plates push the wood strips on the feeding platform to move from left to right.
[0025] In this embodiment, as shown in Figure 3 , 5 The top of the feeding platform 7 is fixed with a feeding rest plate 33 arranged horizontally behind the front end. When the wooden strips are placed on the feeding platform by hand, the front end of the wooden strips is in contact with the feeding rest plate, so that the wooden strips are placed in a longitudinal state.
[0026] In this embodiment, as shown in Figure 3 , 4 The right end of the feeding platform 7 is provided with a downwardly inclined feeding guide plate 34, which facilitates the downward sliding of the wooden strips on the feeding platform 7 to the conveying device 1, improving the stability of the wooden strips falling.
[0027] In this embodiment, as shown in Figure 11 , 12 The slotting device 5 includes a protective box body 35 with an open bottom. A slotting drive shaft 36 is arranged longitudinally at the lower end inside the protective box body 35. The slotting drive shaft 36 is driven to rotate by a slotting power member. The slotting power member includes a slotting motor 37 vertically installed at the top inside the protective box body 35. The output shaft of the slotting motor 37 extends downwardly and is connected to the slotting drive shaft 36 through a transmission member 38 to drive the slotting drive shaft to rotate. The front and rear ends of the slotting drive shaft 36 are each provided with a slotting saw blade 39. The slotting drive shaft drives the slotting saw blades at both ends to rotate. The lower end of the slotting saw blade 39 extends out of the open bottom of the protective box body 35 to be in contact with the end plate and the top of the wooden strip to realize slotting processing and form a rope slot.
[0028] In this embodiment, as shown in Figure 11 , 12 A pair of left and right distributed debris suction pipes 40 are arranged at the front and rear ends of the protective box body 35. The debris suction pipes 40 are connected to a dust collector. The lower ends of the pair of debris suction pipes 40 extend below the open bottom of the protective box body 35 and are bent upwardly close to the slotting saw blades 39. By arranging the debris suction pipes at the left and right sides of each slotting saw blade, the debris can be sucked away during the slotting process.
[0029] In this embodiment, as shown in Figures 13-15As shown, the paper rope pressing device 6 comprises a pair of front and rear distributed paper rope conveying pipes 41 corresponding to the positions of the rope slot, the top port of the paper rope conveying pipe 41 is beneficial to the entry of the paper rope, the lower end of the paper rope conveying pipe 41 is provided with an upward bending section 42, the circumferential wall of the upward bending section 42 is provided with a pair of upper and lower distributed paper rope output rollers 43, the paper rope passes between the pair of paper rope output rollers 43 and is driven by the pair of paper rope output rollers 43 to be output from the lower port of the paper rope conveying pipe 41, the paper rope output from the paper rope conveying pipe 41 falls into the rope slot, the right side of each paper rope conveying pipe 41 is provided with a rope pressing wheel 44 for extending into the rope slot and pressing the paper rope downward, the rope pressing wheel 44 is driven to lift and fall by the rope pressing cylinder (not shown in the figure) vertically arranged above the rope pressing wheel. The lifting and falling of the rope pressing wheel realizes the rope pressing operation.
[0030] In the embodiment, as shown in the figure, Figure 14 The right side of the lower port of the paper rope conveying pipe 41 is provided with a pair of front and rear distributed rope cutting knives 45, the pair of rope cutting knives 45 are driven to move towards each other by the longitudinally arranged rope cutting cylinder, so as to cut the paper rope.
[0031] In the embodiment, as shown in the figure, Figures 13-15 The right side of the pair of paper rope conveying pipes 41 is provided with a glue applying groove 46, the glue applying groove 46 is provided with a glue applying transition roller 47, the right side of the glue applying groove 46 is provided with a thread drum 48, the paper rope 17 is wound outside the thread drum, the paper rope 17 output from the thread drum 48 passes the glue applying groove 46 and then passes below the glue applying transition roller 47, and then extends from the left side wall of the glue applying groove 46, the paper rope 17 extending from the glue applying groove 46 enters the paper rope conveying pipe 41 after passing a transition roller 49, that is, the paper rope is first glued in the glue applying groove and then enters the paper rope conveying pipe.
[0032] In the embodiment, as shown in the figure, Figure 13 The lower part of the upward bending section of the paper rope conveying pipe 41 is provided with a sensor 50 for detecting the second end plate 14 and the first end plate 13, the sensor 50 is located at the left side of the lower port of the paper rope conveying pipe 41, the sensor 50 is electrically connected with the driving motor of the pair of paper rope output rollers 43 and the rope cutting cylinder through the control unit, when the sensor 50 detects the second end plate 14, the control unit controls the driving motor of the pair of paper rope output rollers 43 to start, so that the pair of paper rope output rollers rotate and output the paper rope, and the rope output starts. When the sensor 50 does not detect the first end plate 13, the control unit controls the rope cutting cylinder to extend, so that the pair of rope cutting knives move towards each other to cut the paper rope. It should be noted that the sensor also adopts an optical sensor, when the second end plate is detected, the count is increased by 1, when the next wooden strip is detected, the count is increased by 1, and so on, when the count reaches the set value, the first end plate is detected at this time, which proves that the paper rope output can be ended, and the paper rope needs to be cut.
[0033] In the embodiment, the right side of the conveying device 1 is provided with a receiving platform 51, which receives the finished wood board after the curtain is closed. The receiving platform is driven by a scissor lift to lift, so that the finished wood board is stacked, and then the forklift carries the whole away.
[0034] The present application integrates wood strip feeding, length setting, slotting and paper rope pressing into one, forming continuous operation and effectively improving production efficiency.
[0035] If the present application discloses or involves parts or structural members fixedly connected to each other, unless otherwise stated, the fixed connection can be understood as: detachable fixed connection (such as bolt or screw connection), and also can be understood as: non-detachable fixed connection (such as riveting, welding), of course, the mutually fixed connection can also be replaced by an integral structure (such as using casting process to integrally form), except that it is obviously impossible to use integral forming process.
[0036] In addition, the terms used to represent the position relationship or shape in any of the technical solutions disclosed in the present application include the approximate, similar or close state or shape, unless otherwise stated.
[0037] Any component provided by the present application can be assembled from multiple individual components, or can be a single component manufactured by integral forming process.
[0038] Finally, it should be noted that: the above examples are only used to illustrate the technical solutions of the present application and not to limit it; although the present application has been described in detail with reference to the preferred embodiments, those skilled in the art should understand that: the specific embodiments of the present application can be modified or some technical features can be replaced by equivalent; without departing from the spirit of the technical scheme of the present application, it should be covered in the technical scheme range of the present application claimed by the present application.
Claims
1. A smart slat string curtain system comprising a conveyor for conveying slats from left to right, characterized in that: The upper part of the conveying device is sequentially provided with a feeding device, a length setting device, a slotting device and a paper rope pressing device from left to right, the feeding device comprises a horizontally arranged feeding platform, an upper feeding pushing assembly is arranged above the feeding platform and used for pushing the wood strips to the right to the conveying device; the length setting device comprises a first feeding mechanism, a counting pushing mechanism, a second feeding mechanism and a blocking mechanism sequentially arranged from left to right, the first feeding mechanism and the second feeding mechanism are respectively used for placing a first end plate and a second end plate on the conveying device; the counting pushing mechanism comprises a moving seat driven by a pushing driving member to move left and right, the bottom of the moving seat is provided with left and right distributed liftable pushing plates and detection members, the detection members detect the number of wood strips and a first end plate when the moving seat moves from right to left, when the sum of the number of wood strips and the number of first end plates reaches a set value, the pushing plates move downward to the left side of the first end plate, the pushing plates move with the moving seat from left to right, so that a first end plate, a plurality of wood strips and a second end plate are tightly arranged together under the limiting of the blocking mechanism and abut against the blocking mechanism; the slotting device is used for forming transversely through rope slots at the top of the first end plate, the plurality of wood strips and the second end plate; the paper rope pressing device is used for pressing the paper rope into the rope slot.
2. The smart stick string shade system of claim 1, wherein: The conveying device comprises two front and rear spaced transverse conveying chains, the two transverse conveying chains are driven to rotate synchronously by a power assembly; the blocking mechanism comprises a blocking plate vertically arranged between the two transverse conveying chains, the length of the blocking plate extends along the longitudinal direction, the blocking plate is driven to lift by a blocking lifting cylinder arranged below the blocking plate, a pressure sensor for contacting the right side surface of the second end plate is embedded in the left side surface of the blocking plate, the pressure sensor is electrically connected with the pushing driving member through a control unit, when the pressure detected by the pressure sensor reaches a set value, the control unit drives the pushing driving member to stop, so that the first end plate, the plurality of wood strips and the second end plate are tightly arranged together.
3. The smart stick string shade system of claim 2, wherein: The pushing driving member comprises a transverse moving module vertically arranged above the middle part of the two transverse conveying chains, the moving seat is installed at the bottom of the moving end of the transverse moving module; the pushing plate is driven to lift by a pushing lifting cylinder vertically installed at the bottom of the moving seat; the detection member is a vertically arranged photoelectric sensor, the photoelectric sensor is electrically connected with the control unit.
4. The smart stick string shade system of claim 1, wherein: The first feeding mechanism and the second feeding mechanism each comprise a vertical feeding groove, the vertical feeding groove of the first feeding mechanism is used for placing a plurality of first end plates stacked along the vertical direction, the vertical feeding groove of the second feeding mechanism is used for placing a plurality of second end plates stacked along the vertical direction, the lower end of the vertical feeding groove is provided with a pair of front and rear symmetrically distributed feeding supporting plates, the front and rear sides of the vertical feeding groove are respectively slidably connected with the feeding supporting plates, each feeding supporting plate is driven to move forward and backward by a feeding cylinder, when the feeding supporting plates move away from each other, the bottom of the vertical feeding groove is opened.
5. The smart tassel cord system of claim 1, wherein: The feeding and pushing assembly comprises two front and rear spaced pushing driving chains, which are arranged transversely, and three feeding push plates are evenly distributed in the circumferential direction between the outer circumferential sides of the pushing driving chains, the feeding push plates are perpendicular to the pushing driving chains, and the two pushing driving chains drive the three feeding push plates to rotate in the counterclockwise direction, and the feeding push plates push the wood strips on the feeding platform to move from left to right to the conveying device when the feeding push plates rotate to the lower ends of the pushing driving chains.
6. The smart stick string shade system of claim 1 or 5, wherein: The top front end of the feeding platform is fixed with a feeding backrest arranged transversely, and the right end of the feeding platform is provided with a downwardly inclined discharging guide plate, which facilitates the wood strips on the feeding platform to slide downward to the conveying device.
7. The smart tassel cord system of claim 1, wherein: The slotting device comprises an open-bottom protective box body, a slotting driving shaft is arranged longitudinally at the lower end of the interior of the protective box body, the slotting driving shaft is driven to rotate by a slotting power element, slotting saw blades are arranged at the front and rear ends of the slotting driving shaft, and the lower ends of the slotting saw blades extend out of the open bottom of the protective box body; a pair of left and right distributed scrap suction pipes are arranged at the front and rear ends of the protective box body, the scrap suction pipes are connected with a dust collector, the lower ends of the pair of scrap suction pipes extend below the open bottom of the protective box body and are upwardly bent to be close to the slotting saw blades.
8. The smart tassel cord system of claim 1, wherein: The paper rope device comprises a pair of front and rear distributed paper rope conveying pipes, the top ports of the paper rope conveying pipes facilitate the entry of the paper rope, the lower ends of the paper rope conveying pipes are provided with upwardly bent sections, a pair of upper and lower distributed paper rope output rollers are arranged on the circumferential side walls of the upwardly bent sections, the paper rope passes between the pair of paper rope output rollers and is driven by the pair of paper rope output rollers to be output from the lower ports of the paper rope conveying pipes, the paper rope output from the paper rope conveying pipes falls into the rope placing groove, a rope pressing wheel for extending into the rope placing groove and pressing the paper rope downward is arranged on the right side of each paper rope conveying pipe, and the rope pressing wheel is liftable; a pair of front and rear distributed rope cutting knives are arranged on the right side of the lower port of the paper rope conveying pipe, and the pair of rope cutting knives are driven by a longitudinally arranged rope cutting cylinder to move towards each other to cut the paper rope.
9. The smart stick string shade system of claim 8, wherein: A glue applying groove is arranged on the right side of the pair of paper rope conveying pipes, a glue applying transition roller is arranged in the glue applying groove, a bobbin is arranged on the right side of the glue applying groove, the paper rope output from the bobbin passes through the glue applying groove and then passes below the glue applying transition roller, and then extends out of the left side wall of the glue applying groove, the paper rope extending out of the glue applying groove enters the paper rope conveying pipe after passing through a transition roller; a sensor for detecting the second end plate and the first end plate is arranged on the upwardly bent section of the paper rope conveying pipe, the sensor is located on the left side of the lower port of the paper rope conveying pipe, and the sensor is electrically connected with the driving motors of the pair of paper rope output rollers and the rope cutting cylinder through a control unit, when the sensor detects the second end plate, the control unit controls the driving motors of the pair of paper rope output rollers to start, so that the pair of paper rope output rollers rotate and output the paper rope, and when the sensor does not detect the first end plate, the control unit controls the rope cutting cylinder to extend out, so that the pair of rope cutting knives move towards each other to cut the paper rope.
10. The smart tassel cord system of claim 2, wherein: The conveying device further comprises a pair of front and rear spaced-apart tables, the upper part of the adjacent end of the pair of tables is provided with a stepped portion, the stepped portion side of the pair of tables is used for limiting the front and rear ends of the wood strips, the stepped surface of the stepped portion is provided with a groove, a transverse conveying chain is arranged in the groove, and the top of the transverse conveying chain is flush with the stepped surface of the stepped portion.