A curbstone automatic stacking production line and a production method

By adopting a combined structure of carrying station, transmission station and palletizing station in the automated production line for curbstone palletizing, and using guide rails and power components to achieve stable transmission and vertical movement of curbstones, the problem of low efficiency in the existing technology is solved, and the palletizing efficiency and stability are improved.

CN116081319BActive Publication Date: 2026-02-06HANGZHOU WEIXING BUILDING MATERIALS MACHINE
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Patent Information

Application Number
CN202310269786.6
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-03-15
Publication Date
2026-02-06
Estimated Expiration
2043-03-15

AI Technical Summary

Technical Problem

Existing curbstone palletizing machines are inefficient due to their robotic gripping method, and require complex programming to change the trajectory, which is prone to errors and results in low palletizing efficiency.

Method used

It adopts a combined structure of carrying station, transmission station and palletizing station, and uses guide rails and power components to realize stable transmission and vertical movement of curb stones. The simple mechanical structure improves palletizing efficiency and avoids complicated program settings.

Benefits of technology

It achieves improved palletizing efficiency and stability with a simple mechanical structure, simplifies program settings, and ensures the stability and efficiency of curbstone palletizing.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application discloses a kind of road curbstone stacking automation production lines, including bearing station, stacking station, transmission station, transmission station includes transport conveyor, stacking station includes bottom plate, is set to the guide rail of cross setting on bottom plate, for driving guide rail rotation relative to bottom plate driving part, slidingly connected on guide rail and be guided by guide rail through base plate, for driving base plate movement along vertical direction relative to bottom plate power component, base plate is divided into four grid accommodating groove by guide rail, one of accommodating groove is aligned with the discharge end of transport conveyor, and accommodating groove is used to accommodate road curbstone.By using the above technical solution, multiple road curbstones can be buffered on the transmission station, and the four-grid accommodating groove can also accommodate more road curbstones at one time, increasing the stacking efficiency of road curbstones.The structure is simple, and complex program setting is not required, and the stacking is mainly realized by two power mechanical parts, which is more suitable for actual use.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of automatic stacking, in particular to a road curb stacking automatic production line and a production method. BACKGROUND

[0002] The existing road curb stacking machine generally uses a mechanical hand to grab the road curb discharged from the discharge port of the road curb production equipment to a predetermined position, and then stacks them one by one until the movement range of the mechanical hand in the vertical direction reaches the limit and cannot stack new road curbs on the original road curbs.

[0003] Since the mechanical hand grabbing and reciprocating motion both require a long time, the stacking efficiency is low. When a stack of road curbs is completed, if a new stack of road curbs is to be stacked, the original stack of road curbs needs to be removed in time because the trajectory of the mechanical hand is predetermined and the original road curbs cannot be removed, so the new stack of road curbs cannot start stacking.

[0004] Of course, a more complex program can be set to change the trajectory of the mechanical hand after it has completed stacking a stack of road curbs, and start a new road curb stacking beside the road curbs that have been stacked. However, the running program of the mechanical hand needs to be set more complexly, which is prone to errors. SUMMARY

[0005] In order to improve the stacking efficiency of road curbs under the premise of almost pure machinery, in a first aspect, the present application provides a road curb stacking automatic production line.

[0006] The present application provides the following technical solution:

[0007] A road curb stacking automatic production line, comprising a bearing station for receiving the discharge of a road curb production station, a stacking station for stacking road curbs, and a transmission station for receiving the bearing station and the stacking station, the bearing station comprising a bearing conveyor, the transmission station comprising a transportation conveyor, the stacking station comprising a bottom plate, a cross-shaped guide rail arranged on the bottom plate, a driving member for driving the guide rail to rotate relative to the bottom plate, a base plate slidingly connected to the guide rail and passing through the guide rail, a power assembly for driving the base plate to move relative to the bottom plate in the vertical direction, the base plate being divided into four accommodation grooves by the guide rail, one of the accommodation grooves being aligned with the discharge end of the transportation conveyor, and the accommodation grooves being used for accommodating road curbs; the transportation conveyor is provided with a guide rail for guiding the road curbs to align with the accommodation grooves.

[0008] By adopting the technical scheme, the transmission station can buffer multiple curb stones, and the four-grid accommodating groove can accommodate more curb stones at one time, so that the stacking efficiency of the curb stones is improved. Meanwhile, the vertical movement of the base plate can adjust the height relative to the conveying machine, so that when the conveying machine discharges, the discharged curb stones can move in parallel to the stacking station, so that the stacking is more stable. The guide rail is arranged to guide and limit the curb stones, so that the curb stones can be close to the guide rail after being conveyed, and the stacking is more stable. The structure is simple, and complex program setting is not required. The stacking is mainly realized by two power mechanical parts, and is more suitable for actual use.

[0009] Preferably, the stacking station comprises a running rail fixed to the ground, the running rail is located on both sides of the base plate and is slidingly connected to the base plate, a lead screw is arranged on the running rail to drive the base plate to move along the length direction of the running rail, and the length direction of the running rail is parallel to the discharging direction of the conveying machine; when the stacking machine moves to the base plate from the conveying machine, the base plate abuts against the discharging end of the conveying machine; when the guide rail needs to be rotated, the lead screw drives the base plate to move, so that the base plate is away from the discharging end of the conveying machine.

[0010] Preferably, when one of the accommodating grooves enters a curb stone, the driving motor drives the guide rail to rotate clockwise, so that the other accommodating groove is aligned with the discharging end of the conveying machine.

[0011] Preferably, the power assembly is arranged on both sides of the base plate, the power assembly comprises a lower chain wheel, an upper chain wheel, a chain connecting the upper chain wheel and the lower chain wheel, a power motor driving the lower chain wheel to rotate, one link of the chain is provided with a support plate, and the base plate is supported by the support plate.

[0012] Preferably, the driving part comprises a transmission rod rotatingly connected to the base plate, a driven bevel gear fixedly sleeved on the transmission rod, a driving bevel gear meshing with the driven bevel gear, and a driving motor driving the driving bevel gear to rotate, the driving motor is fixedly installed on the base plate, and the transmission rod is used to connect the guide rail and transmit power to the guide rail.

[0013] Preferably, the guide rail comprises a horizontal plate and a vertical plate, the horizontal plate and the vertical plate form a cross, a connecting groove in a polygonal shape is arranged on the lower end surface of the vertical plate, and the upper end cross section of the transmission rod is the same as the cross section of the connecting groove; when the transmission rod is inserted into the connecting groove, the driving force of the driving motor is transmitted to the guide rail.

[0014] Preferably, the lower end surface of the substrate is provided with a pulley, the substrate is provided with a through slot for the guide rail to pass through, the substrate is divided into four carrying units by the through slot, the carrying units are arranged in an inclined manner, the inclined directions of the four carrying units are distributed along the clockwise direction, and the carrying units are inclined towards the guide rail.

[0015] Preferably, the guide rail comprises a main plate and a side plate, the main plate is provided with an insertion slot, the side plate forms an insertion plate, when the insertion plate is inserted into the insertion slot, the main plate and the side plate form a cross, the bottom plate is provided with a driving cylinder for driving the side plate away from the main plate, the lower end surface of the main plate is provided with a sliding groove along the feeding direction of the curbstone, the sliding groove is connected to one end of the main plate, and the transmission rod is slidingly connected in the sliding groove and the cross section of the transmission rod is polygonal.

[0016] In a second aspect, the present application provides a production method of a curbstone stacking automation production line.

[0017] In the present application, a production method of a curbstone stacking automation production line is provided, the stacking station is located below the ground, and the steps are as follows

[0018] S1, in the initial state, the upper surface of the substrate is in the same plane as the upper surface of the discharge end of the conveying conveyor;

[0019] S2, after the curbstone is discharged to the carrying station, the curbstone is conveyed to the conveying conveyor by the carrying station, and then conveyed to the containing groove through the discharge end of the conveying conveyor; the conveying conveyor can contain multiple curbstones at the same time in the feeding direction of the conveying conveyor;

[0020] S3, when one curbstone enters one of the containing grooves, the driving motor drives the guide rail to rotate clockwise so that another containing groove is aligned with the discharge end of the conveying conveyor, and the process is repeated until all the containing grooves are filled with curbstones;

[0021] S4, the power assembly drives the substrate to move to the position where the pulley is in the same plane as the ground, at this time the substrate is separated from the guide rail, the substrate is pushed to make the push plate separate from the support plate to leave the stacking station, and then a new substrate is pushed onto the support plate.

[0022] In a third aspect, the present application provides a production method of a curbstone stacking automation production line.

[0023] In the present application, a production method of a curbstone stacking automation production line is provided, the stacking station is located on the ground, and the steps are as follows

[0024] S1, after the curbstone is discharged to the carrying station, the curbstone is conveyed to the conveying conveyor by the carrying station, and then conveyed to the containing groove through the discharge end of the conveying conveyor; the conveying conveyor can contain multiple curbstones at the same time in the feeding direction of the conveying conveyor;

[0025] S2, when one of the containing grooves enters a curbstone, the driving motor drives the guide rail to rotate clockwise so that the other containing groove is aligned with the discharge end of the conveying conveyor, and the process is repeated until all containing grooves are filled with curbstones;

[0026] S3, the side plate moves in the horizontal direction to withdraw from the main plate, the push plate is separated from the stacking station by pushing the base plate, then the transmission rod slides out of the sliding groove, and then a new base plate is pushed into the support plate.

[0027] In summary, the present application has at least one of the following beneficial technical effects:

[0028] In the case of simple mechanical structure, the stacking efficiency is improved;

[0029] The stacking is more stable;

[0030] The stacked curbstone can be conveniently discharged from the stacking station. BRIEF DESCRIPTION OF DRAWINGS

[0031] Figure 1 is a top view of embodiment 1;

[0032] Figure 2 is a sectional view of embodiment 1 at the bearing unit;

[0033] Figure 3 is a sectional view of embodiment 1 at the transmission rod;

[0034] Figure 4 is a top view of embodiment 2;

[0035] Figure 5 is a sectional view of embodiment 2 at the main plate;

[0036] Figure 6 is a structural schematic view of the main plate in embodiment 2;

[0037] Figure 7 is a structural schematic view of the side plate in embodiment 2.

[0038] BRIEF DESCRIPTION OF DRAWINGS 1, bearing station; 2, conveying station; 3, stacking station; 4, bottom plate; 5, guide rail; 6, driving member; 7, base plate; 8, power assembly; 9, containing groove; 10, guide rail; 11, running track; 12, screw member; 13, lower sprocket; 14, upper sprocket; 15, chain; 16, support plate; 17, transmission rod; 18, driven bevel gear; 19, driving bevel gear; 20, driving motor; 21, cross plate; 22, vertical plate; 23, connecting groove; 24, bearing unit; 25, main plate; 26, side plate; 27, insertion slot; 28, insertion plate; 29, electromagnet; 30, driving cylinder; 31, sliding groove; 32, pushing cylinder. Embodiments

[0039] The application will be further described in detail below with reference to the accompanying drawings. Embodiments

[0040] As shown in Figure 1 , the embodiments of the application disclose a road curb stacking automation production line, which comprises a bearing station 1 for bearing the unloading of the road curb production station, a stacking station 3 for stacking the road curb, and a transmission station 2 for bearing the bearing station 1 and the stacking station 3. The bearing station 1 comprises a bearing conveyor, and the transmission station 2 comprises a transportation conveyor. The bearing station 1 and the transmission station 2 are arranged on the ground, and the stacking station 3 is arranged below the ground. Specifically, a foundation pit for accommodating the stacking station 3 can be excavated on the ground.

[0041] After the road curb is unloaded to the bearing station 1, it is transmitted to the transportation conveyor by the bearing station 1 and is transmitted to the stacking station 3 through the discharge end of the transportation conveyor. The transportation conveyor can accommodate multiple road curbs at the same time in the feeding direction to improve the stacking efficiency. After the stacking is completed, the road curb is lifted to the ground by the stacking station 3, and then the stacked road curb is pushed away from the stacking station 3.

[0042] As shown in Figure 1 and Figure 2 , specifically, the stacking station 3 comprises a bottom plate 4, a guide rail 5 arranged on the bottom plate 4 and arranged in a cross shape, a driving member 6 for driving the guide rail 5 to rotate relative to the bottom plate 4, a base plate 7 slidably connected to the guide rail 5 and penetrated by the guide rail 5, and a power assembly 8 for driving the base plate 7 to move in the vertical direction relative to the bottom plate 4. The base plate 7 is divided into four accommodation grooves 9 by the guide rail 5, one of which is aligned with the discharge end of the transportation conveyor, and the accommodation grooves 9 are used for accommodating the road curb; the transportation conveyor is provided with a guide rail 10 for guiding the road curb to align with the accommodation groove 9.

[0043] As shown in Figure 2 and Figure 3 , the stacking station 3 further comprises a running track 11 for fixing to the ground, the running track 11 is located on both sides of the bottom plate 4 and is slidably connected to the bottom plate 4, the running track 11 is provided with a lead screw member 12 for driving the bottom plate 4 to move on the running track 11 in the length direction of the running track 11, and the length direction of the running track 11 is parallel to the discharge direction of the transportation conveyor.

[0044] When the stacking machine moves from the transportation conveyor to the base plate 7, the base plate 7 abuts against the discharge end of the transportation conveyor; when the guide rail 5 needs to be rotated, the lead screw member 12 drives the bottom plate 4 to move, so that the base plate 7 moves away from the discharge end of the transportation conveyor.

[0045] As shown in Figure 2 and Figure 3As shown, the power assembly 8 is provided with at least two and is located on both sides of the base plate 7, the power assembly 8 includes a lower sprocket 13, an upper sprocket 14, a chain 15 for connecting the upper sprocket 14 and the lower sprocket 13, a power motor for driving the lower sprocket 13 to rotate. One of the chain links of the chain 15 is provided with a support plate 16, and the base plate 7 is supported by the support plate 16.

[0046] As shown in the drawings, Figure 3 The driving member 6 includes a transmission rod 17 rotatably connected to the bottom plate 4, a driven bevel gear 18 fixedly sleeved on the transmission rod 17, a driving bevel gear 19 engaged with the driven bevel gear 18, and a driving motor 20 for driving the driving bevel gear 19 to rotate. The driving motor 20 is fixedly installed on the bottom plate 4, and the transmission rod 17 is used to connect and transmit power to the guide rail 5.

[0047] As shown in the drawings, Figure 1 And Figure 3 The center of the guide rail 5 coincides with the center of the base plate 7. The guide rail 5 includes a horizontal plate 21 and a vertical plate 22, and the horizontal plate 21 and the vertical plate 22 form a cross. The lower end surface of the vertical plate 22 is provided with a plurality of polygonal connection grooves 23, and the connection grooves 23 are located on the center line of the vertical plate 22. The upper end cross section of the transmission rod 17 is the same as the cross section of the connection groove 23. When the transmission rod 17 is inserted into the connection groove 23, the driving force of the driving motor 20 is transmitted to the guide rail 5.

[0048] As shown in the drawings, Figure 1 And Figure 2 The lower end surface of the base plate 7 is provided with a pulley, and the upper surface of the base plate 7 is provided with a through slot for the guide rail 5 to pass through. The base plate 7 is divided into four bearing units 24 by the through slot. The bearing units 24 are inclinedly arranged, the inclination directions of the four bearing units 24 are distributed along the clockwise direction, and the bearing units 24 are inclined towards the guide rail 5. The inclination direction of the bearing unit 24 can be understood by the arrow direction marked in Figure 1

[0049] The implementation steps of the embodiment of the present application are as follows:

[0050] S1, in the initial state, the upper surface of the base plate 7 is in the same plane as the upper surface of the discharge end of the conveying conveyor, one of the containing grooves 9 is aligned with the outlet of the conveying conveyor, and the base plate 7 abuts against the discharge end of the conveying conveyor;

[0051] S2, after the curbstone is discharged to the bearing station 1, it is conveyed to the conveying conveyor by the bearing station 1, and the conveying conveyor intermittently contains a plurality of curbstones in the feeding direction thereof;

[0052] S3, the curbstone is conveyed to the containing groove 9 through the discharge end of the conveying conveyor, and under the cooperation of the inclination of the bearing unit 24 and the movement direction of the conveying conveyor, the curbstone is stably conveyed to the predetermined position.​

[0053] S4, when one of the containing grooves 9 enters a curbstone, the screw rod 12 drives the bottom plate 4 to move, so that the base plate 7 is away from the discharge end of the conveying conveyor; the driving motor 20 drives the guide rail 5 to rotate clockwise so that the other containing groove 9 is aligned with the discharge end of the conveying conveyor;

[0054] S5, the screw rod 12 drives the bottom plate 4 to move, so that the base plate 7 is abutted to the discharge end of the conveying conveyor again;

[0055] S6, transported into the containing groove 9 through the discharge end of the conveying conveyor, so repeat until the base plate 7 is stacked with a layer of curbstone;

[0056] S7, the base plate 7 is driven to descend by the power assembly 8, so that the upper end surface of the curbstone in the containing groove 9 is in the same plane with the upper surface of the discharge end of the conveying conveyor, and the next round of feeding is started;

[0057] S8, the steps S4-S7 are repeated until all the containing grooves 9 are filled with curbstone; the feeding by rotating and descending can make the center of gravity of the curbstone on the whole base plate 7 more stable, so that the curbstone can be stably stacked on the base plate 7;

[0058] S9, the base plate 7 is driven upward by the power assembly 8 to the same plane with the ground, at this time the base plate 7 is separated from the guide rail 5, the base plate 7 is pushed away from the support plate 16 to leave the stacking station 3, and a new base plate 7 is pushed into the support plate 16, so that the stacking efficiency of the curbstone is improved by the simple mechanical mechanism.

[0059] Further, the curbstone stacking automatic production line further comprises a pushing cylinder 32 arranged on one side of the base plate 7 and used for pushing the base plate 7 away from the stacking station 3 until all the pulleys on the base plate 7 move to the ground. Embodiment

[0060] The difference between the embodiment 2 and the embodiment 1 is that, as shown in Figure 4 and Figure 5 , the stacking station 3 is located on the ground. As shown in Figure 6 and Figure 7 , the guide rail 5 comprises a main plate 25 and a side plate 26, the main plate 25 is provided with a slot 27, and the slot 27 is arranged in two and distributed above and below. The side plate 26 is C-shaped to form a plug-in plate 28. As shown in Figure 4 , when the plug-in plate is inserted into the slot, the main plate 25 and the side plate 26 form a cross. The bottom plate 4 is provided with a driving cylinder 30 for driving the side plate 26 to leave the main plate 25, and the piston rod of the driving cylinder 30 is provided with an electromagnet 29. The guide rail 5 is made of metal, and the connection and separation between the driving cylinder 30 and the guide rail 5 are controlled by the electromagnet 29. As shown in Figure 4 and Figure 5As shown, the lower end surface of the main plate 25 is provided with a chute 31 along the feeding direction of the curbstone, the chute 31 is communicated with one end of the main plate 25, and the transmission rod 17 is slidingly connected in the chute 31 and the cross section of the transmission rod 17 is polygonal.

[0061] The implementation steps of the embodiment of the present application are as follows:

[0062] S1, in the initial state, the upper surface of the base plate 7 is in the same plane as the upper surface of the discharge end of the conveying conveyor, one of the containing grooves 9 is aligned with the outlet of the conveying conveyor, the base plate 7 abuts against the discharge end of the conveying conveyor, and the drive cylinder 30 is not connected with the side plate 26;

[0063] S2, after the curbstone is discharged to the bearing station 1, it is conveyed to the conveying conveyor by the bearing station 1, and the conveying conveyor intermittently contains multiple curbstones in the feeding direction;

[0064] S3, conveyed into the containing groove 9 through the discharge end of the conveying conveyor, under the cooperation of the inclination of the bearing unit 24 and the movement direction of the conveying conveyor, the curbstone is stably conveyed to the designated position with the two sides abutting against the guide rail 5;

[0065] S4, when one curbstone enters one of the containing grooves 9, the lead screw 12 drives the bottom plate 4 to move, so that the base plate 7 moves away from the discharge end of the conveying conveyor, and the drive motor 20 drives the guide rail 5 to rotate clockwise so that the other containing groove 9 is aligned with the discharge end of the conveying conveyor;

[0066] S5, the lead screw 12 drives the bottom plate 4 to move, so that the base plate 7 abuts against the discharge end of the conveying conveyor again;

[0067] S6, conveyed into the containing groove 9 through the discharge end of the conveying conveyor, and the process is repeated until the base plate 7 is stacked with a layer of curbstone;

[0068] S7, the base plate 7 is lowered by the power assembly 8, so that the upper end surface of the curbstone in the containing groove 9 is in the same plane as the upper surface of the discharge end of the conveying conveyor, and the next round of feeding is started;

[0069] S8, repeat steps S4-S7 until all containing grooves 9 are filled with curbstones; by rotating and descending, the center of gravity of the curbstones on the entire base plate 7 is more stable, so that the curbstones can be stably stacked on the base plate 7;

[0070] S9, the drive cylinder 30 is connected with the side plate 26 by the electromagnet 29, and the side plate 26 is moved away from the main plate 25 in the horizontal direction by the drive cylinder 30;

[0071] S10, by pushing the substrate 7 so that the push plate away from the stacking station 3, at this time the transmission rod 17 slip off the chute 31, and then in the support plate 16 on the new substrate 7 can be pushed in.

[0072] The embodiments of the present application are preferred embodiments of the present application, not limited to the protection scope of the present application, therefore: any equivalent changes made according to the structure, shape, principle of the present application should be covered within the protection scope of the present application.

Claims

1. A curbside stone automatic production line, characterized in that: The application relates to a roadstone production line, which comprises a bearing station (1) for receiving roadstone production station discharging, a stacking station (3) for stacking roadstones, and a transmission station (2) for receiving the bearing station (1) and the stacking station (3), the bearing station (1) comprises a bearing transmission machine, the transmission station (2) comprises a conveying transmission machine, the stacking station (3) comprises a bottom plate (4), cross-shaped guide rails (5) arranged on the bottom plate (4), a driving member (6) for driving the guide rails (5) to rotate relative to the bottom plate (4), a base plate (7) slidably connected to the guide rails (5) and penetrated by the guide rails (5), a power assembly (8) for driving the base plate (7) to move along the vertical direction relative to the bottom plate (4), the base plate (7) is divided into four containing grooves (9) by the guide rails (5), one containing groove (9) is aligned with the discharging end of the conveying transmission machine, and the containing grooves (9) are used for containing roadstones; the conveying transmission machine is provided with guide rails (10) for guiding roadstones to align with the containing grooves (9). The driving member (6) comprises a transmission rod (17) rotatably connected to the bottom plate (4), and the transmission rod (17) is used for connecting with the guide rails (5) and transmitting force to the guide rails (5). The guide rails (5) comprise a main plate (25) and a side plate (26), the main plate (25) is provided with an insertion groove (27), the side plate (26) forms an insertion plate (28), when the insertion plate (28) is inserted into the insertion groove (27), the main plate (25) and the side plate (26) form a cross, the bottom plate (4) is provided with a driving cylinder (30) for driving the side plate (26) to move away from the main plate (25), the lower end surface of the main plate (25) is provided with a sliding groove (31) along the roadstone feeding direction, the sliding groove (31) is communicated with one end of the main plate (25), and the transmission rod (17) is slidably connected in the sliding groove (31) and the cross section of the transmission rod (17) is polygonal.

2. The curbstone automatic stacking production line according to claim 1, characterized in that: The stacking station (3) comprises a running track (11) for being fixed on the ground, the running track (11) is located on both sides of the bottom plate (4) and is slidably connected to the bottom plate (4), the running track (11) is provided with a lead screw member (12) for driving the bottom plate (4) to move along the length direction of the running track (11), and the length direction of the running track (11) is parallel to the discharging direction of the conveying transmission machine; when the roadstones move from the conveying transmission machine to the base plate (7), the base plate (7) abuts against the discharging end of the conveying transmission machine; when the guide rails (5) need to rotate, the lead screw member (12) drives the bottom plate (4) to move, so that the base plate (7) moves away from the discharging end of the conveying transmission machine.

3. The curbstone automatic stacking production line according to claim 2, characterized in that: When one of the containing grooves (9) enters a roadstone, the driving motor (20) drives the guide rails (5) to rotate clockwise, so that another containing groove (9) is aligned with the discharging end of the conveying transmission machine.

4. The curbside stone automatic stacking production line according to claim 3, characterized in that: The power assembly (8) is provided with at least two and is respectively located on both sides of the base plate (7), the power assembly (8) includes a lower chain wheel (13), an upper chain wheel (14), a chain (15) for connecting the upper chain wheel (14) and the lower chain wheel (13), a power motor for driving the lower chain wheel (13) to rotate, one of the chain (15) links is provided with a support plate (16), and the base plate (7) is supported by the support plate (16).

5. The curbside stone automatic stacking production line according to claim 4, characterized in that: The driving member (6) further includes a driven bevel gear (18) fixedly sleeved on the transmission rod (17), a driving bevel gear (19) engaged with the driven bevel gear (18), and a driving motor (20) for driving the driving bevel gear (19) to rotate, wherein the driving motor (20) is fixedly installed on the bottom plate (4).

6. A production method of a curbstone automatic production line, characterized by: The curbstone stacking automatic production line of claim 5 is used, and the stacking station (3) is located below the ground, and the steps are as follows S1, in the initial state, the upper surface of the base plate (7) is in the same plane as the upper surface of the discharge end of the conveying conveyor; S2, after the curbstone is discharged to the bearing station (1), it is conveyed to the conveying conveyor by the bearing station (1), and is conveyed into the containing groove (9) through the discharge end of the conveying conveyor; the conveying conveyor can contain multiple curbstones at intervals in the feeding direction; S3, when one curbstone enters one of the containing grooves (9), the driving motor (20) drives the guide rail (5) to rotate clockwise to align the other containing groove (9) with the discharge end of the conveying conveyor, and the process is repeated until all the containing grooves (9) are filled with curbstones; S4, the power assembly (8) drives the base plate (7) to move to the position where the pulley is located in the same plane as the ground, at this time the base plate (7) is separated from the guide rail (5), the push plate is separated from the support plate (16) by pushing the base plate (7) to leave the stacking station (3), and a new base plate (7) is pushed into the support plate (16).

7. A method of producing a curbstone automated production line, characterized by: The curbstone stacking automatic production line of claim 6 is used, and the stacking station (3) is located on the ground, and the steps are as follows S1, after the curbstone is discharged to the bearing station (1), it is conveyed to the conveying conveyor by the bearing station (1), and is conveyed into the containing groove (9) through the discharge end of the conveying conveyor; the conveying conveyor can contain multiple curbstones at intervals in the feeding direction; S2, when one curbstone enters one of the containing grooves (9), the driving motor (20) drives the guide rail (5) to rotate clockwise to align the other containing groove (9) with the discharge end of the conveying conveyor, and the process is repeated until all the containing grooves (9) are filled with curbstones; S3, the side plate (26) moves along the horizontal direction to remove the main plate (25), the push plate is separated from the stacking station (3) by pushing the base plate (7), at this time the transmission rod (17) slides off the sliding groove (31), and then a new base plate (7) is pushed into the support plate (16).

Citation Information

Patent Citations

  • Stacking device

    CN109516221A