Artificial quartz stone conveying platform

By designing an artificial quartz stone feeding platform including frame, rotating shaft, flip plate and adjustment mechanism, the problem that the existing platform cannot tilt stack semi-finished products of artificial quartz stone sheets is solved, and the smooth tilt and stacking of semi-finished products is achieved, reducing difficulty and cost, and improving the functionality and safety of the platform.

CN119953841AActive Publication Date: 2025-05-09GUANGDONG BANNER NEW MATERIAL TECH
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Patent Information

Application Number
CN202510200390.5
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-02-24
Publication Date
2025-05-09
Estimated Expiration
2045-02-24

AI Technical Summary

Technical Problem

The existing transportation platforms cannot incline stack the semi-finished artificial quartz stone sheets, resulting in increased stacking difficulties and increased costs.

Method used

An artificial quartz stone material conveying platform was designed to achieve inclination and stacking of semi-finished products of artificial quartz stone sheets through components such as frames, rotating shafts, flip plates, and adjustment mechanisms. The platform provides power and support using push components, linkage components, elastic components, lift components and guide components to ensure smooth tilt and stacking of semi-finished products.

Benefits of technology

The smooth tilt and stacking of semi-finished artificial quartz stone sheets is achieved, reducing the difficulty and cost of stacking, and improving the functionality and safety of the transportation platform.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention provides an artificial quartz stone conveying platform, and belongs to the technical field of conveying platforms. The rotating shaft is rotationally connected between the inner walls of the frame body, the two ends of the rotating shaft extend to the two side ends of the frame body, the top of the rotating shaft is fixedly connected with a turning plate, and the top of the turning plate is fixedly connected with a fixed clamping block. It is guaranteed that a semi-finished product of a single artificial quartz stone plate inclines stably and uniformly, stable inclination of the artificial quartz stone conveying platform to the artificial quartz stone plate is achieved, the inclination capacity of the conveying platform to the semi-finished product of the artificial quartz stone plate is improved, the semi-finished product of the artificial quartz stone plate can be obliquely stacked on the material frame through the conveying platform, and the conveying efficiency is improved. And meanwhile, the artificial quartz stone plate semi-finished products are obliquely placed on the material frame, so that the oblique stacking cost of the artificial quartz stone plate semi-finished products is reduced.
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Description

Technical Field

[0001] The invention belongs to the technical field of material conveying platforms, and in particular relates to an artificial quartz stone material conveying platform. Background Art

[0002] Artificial quartz stone, referred to as quartz stone, is an artificial stone made of unsaturated polyester resin as adhesive, quartz sand and glass particles as main aggregates, and quartz powder as main filler. Its main components include more than about 90% quartz sand powder and about 10% resin, pigment and other auxiliary materials.

[0003] A conveyor platform is a platform system specially designed for material transportation. It can transport materials from one location to another. This platform is usually equipped with a conveyor belt, sprocket or other transmission device to achieve continuous or intermittent transportation of materials. Its main function is to improve production efficiency, save labor costs, and ensure the accuracy and safety of material transportation.

[0004] The authorization publication number "CN215844455U" records "an artificial quartz stone feeding platform, including a mounting plate, a driving shaft and a driven shaft movably connected between the mounting plates, a driving wheel installed on the driving shaft, a driven wheel installed on the driven shaft, and a conveyor belt installed between the driving wheel and the driven wheel. The beneficial effects achieved by the utility model are: by arranging a cleaning mechanism on the top of the feeding platform, a water tank and a small water pump are installed on the top plate of the cleaning mechanism, and a nozzle is installed in the mounting groove of the top plate, and the cleaning liquid in the water tank is sprayed through the nozzle through the small water pump onto the surface of the artificial quartz stone transported by the conveyor belt of the feeding platform, so that the surface of the artificial quartz stone can be effectively rinsed; side baffles are arranged on both sides of the bottom of the cleaning mechanism, and the cleaning mechanism is plugged into the slot on the mounting plate of the feeding platform through the side baffles. The cleaning mechanism is easy to install and disassemble, convenient for later maintenance, reasonable in structure, and improves the functionality of the feeding platform."

[0005] The above patent sets a cleaning mechanism on the top of the feeding platform, installs a water tank and a small water pump on the top plate of the cleaning mechanism, installs a nozzle in the mounting groove of the top plate, and uses the small water pump to spray the cleaning liquid in the water tank through the nozzle on the surface of the artificial quartz stone conveyed by the conveyor belt of the feeding platform, so as to effectively wash the surface of the artificial quartz stone; side baffles are set on both sides of the bottom of the cleaning mechanism, and the cleaning mechanism is connected with the slot on the mounting plate of the feeding platform through the side baffles. The cleaning mechanism is easy to install and disassemble, convenient for later maintenance, reasonable in structure, and improves the functionality of the feeding platform. However, on the production line of artificial quartz stone sheets, a single feeding platform can only be used as It is a mobile platform for finished products, semi-finished products and raw materials of artificial quartz stone slabs, and becomes a mobile device between points between processing processes in the production workshop. However, due to the large volume and high mass of a single piece of semi-finished artificial quartz stone slab, the existing transportation platform cannot tilt the semi-finished artificial quartz stone slabs. It is necessary to equip a stacker to tilt the semi-finished artificial quartz stone slabs on the material rack to reduce the site space occupied by the semi-finished artificial quartz stone slabs. However, the use of tilted stacking will increase the difficulty of stacking the semi-finished artificial quartz stone slabs, resulting in an increase in the cost of tilted stacking of semi-finished artificial quartz stone slabs. For this reason, we propose an artificial quartz stone feeding platform. Summary of the invention

[0006] The purpose of the present invention is to provide an artificial quartz stone conveying platform, aiming to increase the tilting ability of the transportation platform for artificial quartz stone slab semi-finished products, so that the transportation platform can tilt and stack the artificial quartz stone slab semi-finished products on the material rack, reduce the difficulty of stacking the artificial quartz stone slab semi-finished products, and tilt the artificial quartz stone slab semi-finished products on the material rack at the same time, thereby reducing the cost of tilting and stacking the artificial quartz stone slab semi-finished products.

[0007] To achieve the above object, the present invention provides the following technical solutions:

[0008] Frame;

[0009] A rotating shaft, the rotating shaft is rotatably connected between the inner walls of the frame, and the two ends of the rotating shaft extend to the two side ends of the frame, the top of the rotating shaft is fixedly connected with a flap, the top of the flap is fixedly connected with a fixed clamping block, the top of the flap is provided with two movable grooves, and the two movable grooves are each provided with a lifting block, the top of the flap is provided with a clamping groove, and a movable clamping block is provided between the inner walls of the clamping groove; and

[0010] The adjusting mechanism is arranged between the frame and the flap, and the adjusting mechanism is connected with the movable clamping block and the two lifting blocks to move the movable clamping block and the two lifting blocks.

[0011] As a preferred solution of the present invention, the adjusting mechanism includes a pushing assembly, a connecting rod assembly, an elastic assembly, a lifting assembly and a guiding assembly. The lifting assembly is arranged at the bottom of the flap, and the lifting assembly is connected to two lifting blocks. The elastic assembly is arranged at the top of the flap, and the elastic assembly is connected to the movable clamping block. The connecting rod assembly is arranged between the inner walls of the frame, and the connecting rod assembly is connected to the flap. The pushing assembly is arranged between the inner walls of the frame, and the pushing assembly is connected to the connecting rod assembly.

[0012] As a preferred solution of the present invention, the elastic component includes a spring sleeve, an elastic rod, a reinforcing spring and a guide column, two guide columns are provided, the two guide columns are fixedly connected between the inner walls of the clamping groove, and the two guide columns pass through the movable clamping block, two spring sleeves are provided, the two spring sleeves are fixedly connected to the bottom of the flap, and the two spring sleeves are located on one side of the clamping groove, two elastic rods are provided, the two elastic rods are movably inserted between the inner walls of the two spring sleeves, two reinforcing springs are provided, the two reinforcing springs are sleeved on the circumferential surface of the two elastic rods, and the two reinforcing springs are located between the inner walls of the two spring sleeves.

[0013] As a preferred solution of the present invention, the lifting assembly includes a push rod, a reciprocating frame and a second electric push rod, two push rods are provided, the two push rods are fixedly connected to the side ends of the lifting block, the other ends of the two push rods are inserted into the flap, the extended ends of the two push rods extend between the inner walls of the clamping groove, and the two extended ends of the push rods are not connected to the clamping groove, the second electric push rod is fixedly connected to the bottom of the flap, the reciprocating frame is fixedly connected to the output end of the second electric push rod, and the reciprocating frame is connected to the two lifting blocks.

[0014] As a preferred scheme of the present invention, the pushing assembly includes a fixed plate, a slide rail, a limit groove, a screw rod, a rotating motor, a slider and a limit block. The fixed plate is fixedly connected between the inner walls of the frame, the slide rail is fixedly connected to the top of the fixed plate, and two limit grooves are provided. The two limit grooves are opened at two side ends of the slide rail, and the two limit grooves are communicated with the inner wall of the slide rail. The screw rod is rotatably connected between the inner walls of the slide rail, one end of the screw rod extends to the side end of the slide rail, the rotating motor is fixedly connected to the side end of the slide rail, the output end of the rotating motor is fixedly connected to the extending end of the screw rod, the slider is sleeved on the circumferential surface of the screw rod, the slider is located between the inner walls of the slide rail, and two limit blocks are provided. The two limit blocks slide between the inner walls of the two limit grooves, and the two limit blocks are connected to the slider.

[0015] As a preferred solution of the present invention, the connecting rod assembly includes a base frame, a sliding rod, a guide block, a counterweight block, a first adapter block, a push-pull rod and a second adapter block. The base frame is fixedly connected to the bottom of the flap, two sliding rods are provided, and the two sliding rods are fixedly connected between the inner walls of the base frame, the guide block is sleeved on the circumferential surface of the two sliding rods, the guide block slides between the inner walls of the base frame, the counterweight block is fixedly connected to the bottom of the guide block, and the counterweight block is located on the lower side of the base frame, the first adapter block is fixedly connected to the bottom of the guide block, the second adapter block is fixedly connected to the top of the slider, and the push-pull rod is rotatably connected between the first adapter block and the second adapter block through a hinge shaft.

[0016] As a preferred solution of the present invention, the guide assembly includes two hollow covers, arc grooves and eccentric sliders. There are two hollow covers, which are sleeved on the circumferential surfaces of the two extended ends of the rotating shaft, and the two hollow covers are fixedly connected to the two side ends of the frame. There are two arc grooves, which are opened at the two side ends of the hollow covers, and the two hollow covers are connected to the inner walls of the two eccentric sliders. There are two eccentric sliders, which are fixedly connected to the two extended ends of the rotating shaft, and the swinging ends of the two eccentric sliders slide between the inner walls of the two arc grooves.

[0017] As a preferred solution of the present invention, two accommodating grooves are provided on the top of the frame body, and the two accommodating grooves are located on both sides of the flipping groove, and two rotating wheels are rotatably connected between the inner walls of the two accommodating grooves, and two conveyor belts are sleeved on the circumferential surfaces of the four rotating wheels, and a fixing frame is fixedly connected to the bottom of the flap, and the fixing frame corresponds to the flipping groove up and down, and a dual-axis motor is fixedly connected to the top of the fixing frame, and the dual-axis motor is located between the inner walls of the flipping groove, and the two output ends of the dual-axis motor extend between the inner walls of the two accommodating grooves respectively, and the two output ends of the dual-axis motor are fixedly connected to the two rotating wheels, and two guide posts are provided on the top of the flap, and the two guide posts are located at the two side ends of the flipping groove, and rollers are rotatably connected between the inner walls of the two guide posts.

[0018] As a preferred solution of the present invention, a laser locator is installed at the side end of the fixed block, and the emission end of the laser locator extends to the inner wall of the fixed block.

[0019] As a preferred solution of the present invention, a mounting hole is formed through the top of the flap, a first electric push rod is fixedly connected to the bottom of the flap, and an output end of the first electric push rod extends between the inner walls of the mounting hole.

[0020] Compared with the prior art, the present invention has the following beneficial effects:

[0021] 1. In this scheme, when the flip plate and the semi-finished product of a single artificial quartz stone slab are tilted, the rotating motor is powered on and started, and the output end of the rotating motor drives the screw rod to rotate, and the screw rod pushes the slider to reciprocate in the slide rail through the sliding cooperation with the slider, and the slider reciprocates to push and pull the connecting rod assembly, providing power for the tilting of the flip plate and the semi-finished product of the single artificial quartz stone slab. At the same time, the self-locking property of the screw rod and the slider is utilized to ensure that the tilting movement of the semi-finished product of the single artificial quartz stone slab is stable and uniform, so that the artificial quartz stone feeding platform can tilt the artificial quartz stone slab smoothly, and the tilting ability of the transportation platform for the semi-finished artificial quartz stone slab is increased, so that the transportation platform can tilt the semi-finished artificial quartz stone slab on the material rack, reducing the difficulty of stacking the semi-finished artificial quartz stone slab, and at the same time, the semi-finished artificial quartz stone slab is tilted and placed on the material rack, reducing the cost of tilting and stacking the semi-finished artificial quartz stone slab.

[0022] 2. In the present scheme, during the clamping process of the semi-finished product of a single artificial quartz stone slab, the output end of the second electric push rod is extended and retracted, and the second electric push rod pushes and pulls the reciprocating frame, and the reciprocating frame pulls the lifting block to move in the two movable grooves, so that the two lifting blocks move between the fixed clamping block and the flap, and the two lifting blocks are close to one side of the semi-finished product of the single artificial quartz stone slab to assist in clamping the semi-finished product of the single artificial quartz stone slab. When the two lifting blocks are aligned with the fixed clamping block, one side of the semi-finished product of the single artificial quartz stone slab is pushed out from the fixed clamping block, and at the same time, the two lifting blocks push the two push rods close to the movable clamping block, and the two push rods are close to the movable clamping block, and the two push rods push the movable clamping block to reset, thereby releasing the clamping restriction on the semi-finished product of the single artificial quartz stone slab, and facilitating the rapid removal of the semi-finished product of the single artificial quartz stone slab.

[0023] 3. In this scheme, during loading, two conveyor belts push the semi-finished products of artificial quartz slabs to move in one direction on the top of the frame. First, the movable clamp lifts one end of the semi-finished products of artificial quartz slabs, and then the semi-finished products of artificial quartz slabs move between the fixed clamp and the movable clamp. Then, one end of the semi-finished products of artificial quartz slabs approaches and is inserted between the inner walls of the fixed clamp. Finally, two reinforcing springs push the movable clamp close to the movable groove, so that the fixed clamp and the movable clamp restrict the horizontal movement of the semi-finished products of a single artificial quartz slab, so as to realize the shedding of the semi-finished products of a single artificial quartz slab, thereby ensuring that the semi-finished products of a single artificial quartz slab will not fall off, break or be damaged when tilted, thereby improving the safety of the artificial quartz conveying platform when tilting the artificial quartz slabs.

[0024] 4. In this scheme, the guide block is used to support and fix the first adapter block and the counterweight block. The counterweight block changes the center of gravity of the semi-finished artificial quartz stone slab and the flap by moving, reducing the possibility of the semi-finished artificial quartz stone slab falling off due to the shift of the center of gravity during the tilting process, and at the same time offsets the vibration caused by the instantaneous fall of the semi-finished artificial quartz stone slab and the instantaneous reduction of the flap load, avoiding severe friction between the semi-finished artificial quartz stone slab and the flap, preventing surface wear of the semi-finished artificial quartz stone slab, and improving the finished product rate of artificial quartz stone slabs.

[0025] 5. In this scheme, when loading the top of the flap, the double-axis motor is powered on and started, and the two output ends of the double-axis motor drive the two wheels to rotate. The two wheels drive the two conveyor belts to roll through rotation, and the two conveyor belts then drive the other two wheels to rotate. The two conveyor belts are used to roll and drive the semi-finished artificial quartz stone sheet materials to move unidirectionally on the top of the fixed plate, so that the semi-finished artificial quartz stone sheet materials move between the fixed clamp block and the movable clamp block, thereby realizing the rapid loading of the semi-finished artificial quartz stone sheet materials to the artificial quartz stone feeding platform. BRIEF DESCRIPTION OF THE DRAWINGS

[0026] The accompanying drawings are used to provide a further understanding of the present invention and constitute a part of the specification. Together with the embodiments of the present invention, they are used to explain the present invention and do not constitute a limitation of the present invention. In the accompanying drawings:

[0027] Figure 1 This is a first-view stereoscopic image of an artificial quartz stone feeding platform of the present invention;

[0028] Figure 2 A second perspective stereoscopic image of an artificial quartz stone feeding platform of the present invention;

[0029] Figure 3 It is a first half cross-sectional view of an artificial quartz stone feeding platform of the present invention;

[0030] Figure 4 This invention discloses an artificial quartz stone feeding platform. Figure 3 A magnified image of point A;

[0031] Figure 5 It is a second half cross-sectional view of an artificial quartz stone feeding platform of the present invention;

[0032] Figure 6 It is a third half-section view of an artificial quartz stone feeding platform of the present invention;

[0033] Figure 7 It is a fourth half-section view of an artificial quartz stone feeding platform of the present invention;

[0034] Figure 8 This is an exploded view of an artificial quartz stone feeding platform of the present invention;

[0035] Fig. 9 A half-section diagram of a clamping mechanism and a guide assembly of an artificial quartz stone feeding platform of the present invention;

[0036] Fig.10 This invention discloses an artificial quartz stone feeding platform. Fig. 9 A magnified view of point B;

[0037] Fig.11 This invention discloses an artificial quartz stone feeding platform. Fig. 9 Enlarged view of point C;

[0038] Fig.12 This is an exploded view of a push assembly and a connecting rod assembly of an artificial quartz stone feeding platform of the present invention.

[0039] In the figure: 1, frame; 2, fixed plate; 3, flip groove; 4, receiving groove; 5, fixed frame; 6, double-axis motor; 7, rotating wheel; 8, conveyor belt; 9, roller; 10, rotating shaft; 11, flip plate; 12, mounting hole; 13, first electric push rod; 14, bottom frame; 15, slide bar; 16, guide block; 17, counterweight block; 18, first transfer block; 19, push-pull rod; 20, slide rail; 21, limit groove; 22, screw rod; 23 , rotating motor; 24, slider; 25, limit block; 26, second adapter block; 27, hollow cover; 28, arc groove; 29, eccentric slider; 30, movable groove; 31, fixed block; 32, lifting block; 33, push rod; 34, reciprocating frame; 35, second electric push rod; 36, clamping groove; 37, spring sleeve; 38, elastic plug rod; 39, movable clamping block; 40, laser locator; 41, strengthening spring; 42, guide column. DETAILED DESCRIPTION

[0040] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.

[0041] Example 1

[0042] Reference Figure 1 - Fig.12 , an artificial quartz stone feeding platform, comprising:

[0043] Frame 1;

[0044] A rotating shaft 10, the rotating shaft 10 is rotatably connected between the inner walls of the frame 1, and the two ends of the rotating shaft 10 extend to the two side ends of the frame 1, the top of the rotating shaft 10 is fixedly connected with a flap 11, the top of the flap 11 is fixedly connected with a fixed clamping block 31, the top of the flap 11 is provided with two movable grooves 30, and the two movable grooves 30 are both provided with lifting blocks 32, the top of the flap 11 is provided with a clamping groove 36, and a movable clamping block 39 is provided between the inner walls of the clamping groove 36; and

[0045] The adjusting mechanism is disposed between the frame 1 and the flap 11 , and is connected to the movable clamping block 39 and the two lifting blocks 32 , so as to move the movable clamping block 39 and the two lifting blocks 32 .

[0046] In the present invention, the frame 1 is used to support the fixed rotating shaft 10, two rollers 9, four rotating wheels 7 and the adjusting mechanism. The rotating shaft 10 is used to support the fixed flap 11. The fixed clamping block 31 is used to clamp the semi-finished product and the finished product of the artificial quartz stone sheet. The two movable grooves 30 are used to accommodate two lifting blocks 32. The two lifting blocks 32 clamp the semi-finished products of the artificial quartz stone sheet by moving toward the movable clamping block 39. The clamping groove 36 is used to accommodate the movable clamping block 39 and two guide columns 42. The movable clamping block 39 is used to block the movement of the semi-finished product of the artificial quartz stone sheet so that the semi-finished product of the artificial quartz stone sheet moves in one direction. The adjusting mechanism is connected to the movable clamping block 39 and the two lifting blocks 32 to move the movable clamping block 39 and the two lifting blocks 32.

[0047] The adjusting mechanism includes a pushing assembly, a connecting rod assembly, an elastic assembly, a lifting assembly and a guiding assembly. The lifting assembly is arranged at the bottom of the flap 11, and the lifting assembly is connected to the two lifting blocks 32. The elastic assembly is arranged at the top of the flap 11, and the elastic assembly is connected to the movable clamping block 39. The connecting rod assembly is arranged between the inner walls of the frame 1, and the connecting rod assembly is connected to the flap 11. The pushing assembly is arranged between the inner walls of the frame 1, and the pushing assembly is connected to the connecting rod assembly.

[0048] In the present invention, the lifting assembly is used to push the two lifting blocks 32 to move in the two movable grooves 30, the elastic assembly is used to push the movable clamping block 39 to approach the fixed clamping block 31, the connecting rod assembly is used to push the flap 11 and the semi-finished product of the artificial quartz stone slab to tilt, and the pushing assembly is used to provide power for the tilting of the semi-finished product of the artificial quartz stone slab.

[0049] The elastic component includes a spring sleeve 37, an elastic rod 38, a reinforcing spring 41 and a guide column 42. Two guide columns 42 are provided, and the two guide columns 42 are fixedly connected between the inner walls of the clamping groove 36, and the two guide columns 42 pass through the movable clamping block 39. Two spring sleeves 37 are provided, and the two spring sleeves 37 are fixedly connected to the bottom of the flap 11, and the two spring sleeves 37 are located on one side of the clamping groove 36. Two elastic rods 38 are provided, and the two elastic rods 38 are movably inserted between the inner walls of the two spring sleeves 37. Two reinforcing springs 41 are provided, and the two reinforcing springs 41 are sleeved on the circumferential surface of the two elastic rods 38, and the two reinforcing springs 41 are located between the inner walls of the two spring sleeves 37.

[0050] In the present invention, two guide posts 42 are used to support the sliding of the movable clamping block 39. When loading, the movable clamping block 39 is close to the movable groove 30 to lift one end of the semi-finished product of the artificial quartz stone sheet. When adding materials, the movable clamping block 39 and the fixed clamping block 31 and the two lifting blocks 32 clamp and fix the semi-finished product of the artificial quartz stone sheet. The two spring sleeves 37 are used to accommodate two elastic insertion rods 38 and two reinforcing springs 41. The two elastic insertion rods 38 push the movable clamping block 39 to reciprocate in the clamping groove 36 by sliding with the two spring sleeves 37. The two reinforcing springs 41 are used to push the movable clamping block 39 close to the fixed clamping block 31. When loading, the two conveyor belts 8 push the semi-finished product of the artificial quartz stone sheet to the top of the frame 1. During the one-way movement, the movable clamp block 39 first lifts one end of the semi-finished product of the artificial quartz stone slab, and then the semi-finished product of the artificial quartz stone slab moves between the fixed clamp block 31 and the movable clamp block 39, and then one end of the semi-finished product of the artificial quartz stone slab approaches and is inserted between the inner walls of the fixed clamp block 31, and finally the two reinforcing springs 41 push the movable clamp block 39 to approach the movable groove 30, so that the fixed clamp block 31 and the movable clamp block 39 restrict the horizontal movement and clamping of the semi-finished product of a single artificial quartz stone slab, so as to realize the shedding of the semi-finished product of a single artificial quartz stone slab, thereby ensuring that the semi-finished product of a single artificial quartz stone slab will not fall off, break or be damaged when it is tilted, thereby improving the safety of the artificial quartz stone conveying platform when tilting the artificial quartz stone slab.

[0051] The lifting assembly includes a push rod 33, a reciprocating frame 34 and a second electric push rod 35. Two push rods 33 are provided. The two push rods 33 are fixedly connected to the side ends of the lifting block 32. The other ends of the two push rods 33 are inserted into the flap 11. The extended ends of the two push rods 33 extend between the inner walls of the clamping groove 36, and the extended ends of the two push rods 33 are not connected to the clamping groove 36. The second electric push rod 35 is fixedly connected to the bottom of the flap 11. The reciprocating frame 34 is fixedly connected to the output end of the second electric push rod 35, and the reciprocating frame 34 is connected to the two lifting blocks 32.

[0052] In the present invention, the two push rods 33 slide in the frame body 1, and the two push rods 33 are used to support and fix the two lifting blocks 32. At the same time, the two push rods 33 are also used to offset the extrusion force of the two reinforcing springs 41, push the movable clamping block 39 away from the fixed clamping block 31, and release the clamping restriction on the semi-finished product of the single artificial quartz stone plate. The second electric push rod 35 pushes the reciprocating frame 34 to reciprocate through the contraction of the output end. The reciprocating frame 34 is used to pull the two lifting blocks 32 to move in the movable groove 30. In the process of clamping the semi-finished product of the single artificial quartz stone plate, the output end of the second electric push rod 35 is extended and retracted, and the second electric push rod 35 pushes and pulls the reciprocating frame 34, and the reciprocating frame 34 pulls the lifting blocks 32 between the two movable The two lifting blocks 32 move in the groove 30, so that the two lifting blocks 32 move between the fixed clamping block 31 and the flap 11, and the two lifting blocks 32 are close to one side of the semi-finished product of the single artificial quartz stone slab to assist in clamping the semi-finished product of the single artificial quartz stone slab. When the two lifting blocks 32 are aligned with the fixed clamping block 31, one side of the semi-finished product of the single artificial quartz stone slab is pushed out from the fixed clamping block 31. At the same time, the two lifting blocks 32 push the two push rods 33 close to the movable clamping block 39, and the two push rods 33 push the movable clamping block 39 to reset, thereby releasing the clamping restriction on the semi-finished product of the single artificial quartz stone slab, and facilitating the rapid removal of the semi-finished product of the single artificial quartz stone slab.

[0053] The pushing assembly includes a fixed plate 2, a slide rail 20, a limiting groove 21, a screw rod 22, a rotating motor 23, a slider 24 and a limiting block 25. The fixed plate 2 is fixedly connected between the inner walls of the frame 1, the slide rail 20 is fixedly connected to the top of the fixed plate 2, two limiting grooves 21 are provided, the two limiting grooves 21 are opened at the two side ends of the slide rail 20, the two limiting grooves 21 are both connected to the inner wall of the slide rail 20, the screw rod 22 is rotatably connected between the inner walls of the slide rail 20, one end of the screw rod 22 extends to the side end of the slide rail 20, the rotating motor 23 is fixedly connected to the side end of the slide rail 20, the output end of the rotating motor 23 is fixedly connected to the extended end of the screw rod 22, the slider 24 is sleeved on the circumferential surface of the screw rod 22, the slider 24 is located between the inner walls of the slide rail 20, and two limiting blocks 25 are provided, the two limiting blocks 25 slide between the inner walls of the two limiting grooves 21, and the two limiting blocks 25 are both connected to the slider 24.

[0054] In the present invention, the fixed plate 2 is used to support the fixed slide rail 20, the slide rail 20 is used to accommodate the screw rod 22 and the slider 24, and the slide rail 20 is used to support the fixed rotating motor 23. The two limit grooves 21 are used to accommodate the sliding of the two limit blocks 25. The screw rod 22 pushes the slider 24 to reciprocate in the slide rail 20 by sliding with the slider 24. The rotating motor 23 is used to drive the screw rod 22 to rotate, and the slider 24 is used to drive the second adapter block 26 to reciprocate. The limit block 25 guides and limits the movement of the slider 24 by sliding with the two limit grooves 21. When the flip plate 11 and the semi-finished product of a single artificial quartz stone plate are tilted, the rotating motor 23 is powered on and started, and the output end of the rotating motor 23 drives the screw rod 22 to rotate. 22 pushes the slider 24 to reciprocate in the slide rail 20 by sliding cooperation with the slider 24. The slider 24 reciprocates to push and pull the connecting rod assembly, providing power for the tilting of the flap 11 and the semi-finished product of a single artificial quartz stone slab. At the same time, the self-locking property of the screw rod 22 and the slider 24 is utilized to ensure that the tilting movement of the semi-finished product of a single artificial quartz stone slab is stable and uniform, thereby realizing the smooth tilting of the artificial quartz stone conveying platform on the artificial quartz stone slab, increasing the tilting ability of the transportation platform on the semi-finished artificial quartz stone slab, so that the transportation platform can tilt and stack the semi-finished artificial quartz stone slab on the material rack, reducing the difficulty of stacking the semi-finished artificial quartz stone slab, and at the same time, the semi-finished artificial quartz stone slab is tilted and placed on the material rack, reducing the cost of tilting and stacking the semi-finished artificial quartz stone slab.

[0055] The connecting rod assembly includes a base frame 14, a sliding rod 15, a guide block 16, a counterweight block 17, a first adapter block 18, a push-pull rod 19 and a second adapter block 26. The base frame 14 is fixedly connected to the bottom of the flap 11. Two sliding rods 15 are provided. The two sliding rods 15 are fixedly connected between the inner walls of the base frame 14. The guide block 16 is sleeved on the circumferential surface of the two sliding rods 15. The guide block 16 slides between the inner walls of the base frame 14. The counterweight block 17 is fixedly connected to the bottom of the guide block 16. The counterweight block 17 is located on the lower side of the base frame 14. The first adapter block 18 is fixedly connected to the bottom of the guide block 16. The second adapter block 26 is fixedly connected to the top of the slider 24. The push-pull rod 19 is rotatably connected between the first adapter block 18 and the second adapter block 26 through a hinge shaft.

[0056] In the present invention, the base frame 14 is used to accommodate two sliding rods 15 and a guide block 16. The two sliding rods 15 are used to support the sliding of the guide block 16. The guide block 16 is used to support and fix the first adapter block 18 and the counterweight block 17. The counterweight block 17 changes the center of gravity of the semi-finished artificial quartz stone slab and the flap 11 by moving, thereby reducing the possibility of the semi-finished artificial quartz stone slab falling off due to the center of gravity shift during the tilting process, and at the same time offsets the vibration caused by the semi-finished artificial quartz stone slab falling off and the instantaneous reduction of the load-bearing of the flap 11, thereby avoiding severe friction between the semi-finished artificial quartz stone slab and the flap 11, preventing the surface wear of the semi-finished artificial quartz stone slab, and improving the yield of the artificial quartz stone slab.

[0057] The guide assembly includes two hollow covers 27, an arc groove 28 and an eccentric slider 29. There are two hollow covers 27, which are sleeved on the circumferential surfaces of the two extended ends of the rotating shaft 10, and the two hollow covers 27 are fixedly connected to the two side ends of the frame 1. There are two arc grooves 28, which are opened at the two side ends of the hollow covers 27. The two hollow covers 27 are connected to the inner walls of the two eccentric sliders 29. There are two eccentric sliders 29, which are fixedly connected to the two extended ends of the rotating shaft 10, and the swinging ends of the two eccentric sliders 29 slide between the inner walls of the two arc grooves 28.

[0058] In the present invention, the two hollow covers 27 are used to accommodate the two eccentric sliders 29 and the two extended ends of the rotating shaft 10, and the two arc grooves 28 are used to accommodate the sliding of the two eccentric sliders 29. The two eccentric sliders 29 limit the tilt angle of the flap 11 and the semi-finished artificial quartz stone sheet material by sliding cooperation with the two arc grooves 28, so as to avoid the semi-finished artificial quartz stone sheet material from tilting due to the excessive tilt angle of the semi-finished artificial quartz stone sheet material, thereby avoiding the safety hazard of the artificial quartz stone sheet material conveying platform tipping over, and improving the safety of the artificial quartz stone sheet material conveying platform.

[0059] Two receiving grooves 4 are provided on the top of the frame body 1, and the two receiving grooves 4 are located on both sides of the flip groove 3. Two rotating wheels 7 are rotatably connected between the inner walls of the two receiving grooves 4, and two conveyor belts 8 are sleeved on the circumferential surfaces of the four rotating wheels 7. A fixing frame 5 is fixedly connected to the bottom of the flap 11, and the fixing frame 5 corresponds to the flip groove 3 up and down. A dual-axis motor 6 is fixedly connected to the top of the fixing frame 5, and the dual-axis motor 6 is located between the inner walls of the flip groove 3. The two output ends of the dual-axis motor 6 extend to between the inner walls of the two receiving grooves 4 respectively, and the two output ends of the dual-axis motor 6 are fixedly connected to the two rotating wheels 7. Two guide columns 42 are provided on the top of the flap 11, and the two guide columns 42 are located at the two side ends of the flip groove 3. Rollers 9 are rotatably connected between the inner walls of the two guide columns 42.

[0060] In the present invention, the two receiving grooves 4 are used to accommodate the two conveyor belts 8 and the four rotating wheels 7, the four rotating wheels 7 are used to drive the two conveyor belts 8 to rotate, the fixing frame 5 is used to support and fix the double-axis motor 6, the double-axis motor 6 is used to drive two of the four rotating wheels 7 to rotate, the two guide pillars 42 are used to accommodate the two rollers 9 to rotate, the two rollers 9 support the semi-finished artificial quartz stone sheet material by rotating, and the tops of the two rollers 9 are slightly higher than the movable clamping block 39, when the material is loaded on the top of the flap 11, the double-axis is powered on to start the double-axis. Motor 6, two output ends of the dual-axis motor 6 drive two wheels 7 to rotate, and the two wheels 7 drive two conveyor belts 8 to roll through rotation, and the two conveyor belts 8 then drive the other two wheels 7 to rotate, and the two conveyor belts 8 are used to roll and drive the semi-finished artificial quartz stone sheet material to move unidirectionally on the top of the fixed plate 2, so that the semi-finished artificial quartz stone sheet material moves to between the fixed clamping block 31 and the movable clamping block 39, so as to realize the rapid loading of the semi-finished artificial quartz stone sheet material to the artificial quartz stone feeding platform.

[0061] A laser locator 40 is installed at the side end of the fixed block 31 , and the emission end of the laser locator 40 extends to the inner wall of the fixed block 31 .

[0062] In the present invention, the laser locator 40 is used to emit infrared laser to the semi-finished artificial quartz stone sheet material between the fixed clamp block 31 and the movable clamp block 39, detect the exact position of the semi-finished artificial quartz stone sheet material in real time, and provide trigger data for the start of various motors and push rods in the artificial quartz stone feeding platform.

[0063] A mounting hole 12 is formed through the top of the flap 11 , and a first electric push rod 13 is fixedly connected to the bottom of the flap 11 . The output end of the first electric push rod 13 extends between the inner walls of the mounting hole 12 .

[0064] In the present invention, the mounting hole 12 is used to accommodate the output end of the first electric push rod 13, and the first electric push rod 13 is used to push the semi-finished artificial quartz stone sheet material from between the fixed clamp block 31 and the movable clamp block 39. During the inclined unloading process, the output end of the first electric push rod 13 pushes the semi-finished artificial quartz stone sheet material from the movable clamp block 39, the fixed clamp block 31 and the two lifting blocks 32, so that the semi-finished artificial quartz stone sheet material falls onto the docking rack to achieve rapid unloading.

[0065] A method for using an artificial quartz stone feeding platform comprises the following steps:

[0066] S1. Loading:

[0067] The semi-finished artificial quartz stone sheet material moves from the side end of the frame 1 to the top of the frame 1, the double-axis motor 6 is powered on and started, and the two output ends of the double-axis motor 6 drive two of the four wheels 7 to rotate, and the two wheels 7 drive the two conveyor belts 8 to roll, and the two conveyor belts 8 then drive the other two wheels 7 to rotate, and the two conveyor belts 8 drive the semi-finished artificial quartz stone sheet material to move unidirectionally on the top of the frame 1, and the movable clamping block 39 lifts one end of the semi-finished artificial quartz stone sheet material, and the semi-finished artificial quartz stone sheet material moves between the fixed clamping block 31 and the movable clamping block 39, and one end of the semi-finished artificial quartz stone sheet material is close to and plugged into the inner wall of the fixed clamping block 31 The two reinforcing springs 41 push the movable clamping block 39 to approach the semi-finished product of the artificial quartz slab, and the laser locator 40 detects that the semi-finished product of the artificial quartz slab is approaching, and the second electric push rod 35 is powered on, and the output end of the second electric push rod 35 extends to push the reciprocating frame 34, and the reciprocating frame 34 pushes the two lifting blocks 32, and the two lifting blocks 32 approach one side of the semi-finished product of the single artificial quartz slab to assist in clamping the semi-finished product of the single artificial quartz slab, so that the fixed clamping block 31 and the movable clamping block 39 and the two lifting blocks 32 can clamp and restrict the semi-finished product of the single artificial quartz slab horizontally, so as to realize the loading of the semi-finished product of the artificial quartz slab;

[0068] S2, Sheet tilt:

[0069] After the semi-finished artificial quartz stone sheet is loaded, the rotating motor 23 is powered on to start the rotating motor 23, and the output end of the rotating motor 23 drives the screw rod 22 to rotate. The screw rod 22 pushes and pulls the second adapter block 26 through the sliding cooperation with the slider 24. The output end of the second adapter block 26 pushes the first adapter block 18, and the first adapter block 18 drives the guide block 16 and the counterweight block 17 to move. The guide block 16 slides between the inner walls of the base frame 14 through the sliding cooperation with the two slide bars 15. When the guide block 16 is close to the rotating shaft 10 and the counterweight block 17 is located at the bottom of the rotating shaft 10, the push-pull rod 19 still pushes the first adapter block 18, the guide block 16 and the base frame 14, and the base frame 14 drives the flap 11, the rotating shaft 10, the fixed block 31, the movable clamping block 39, the two second electric push rods 35, the elastic component, the lifting component and the semi-finished artificial quartz stone sheet material to tilt, so that the fixed block 31 is connected to the material rack chassis placed on the side of the frame body 1. At the same time, when the rotating shaft 10, the flap 11 and the semi-finished artificial quartz stone sheet material are tilted, the rotating shaft 10 drives the two eccentric sliders 29 to deflect. The two eccentric sliders 29 limit the tilt angle limit of the rotating shaft 10, the flap 11 and the semi-finished artificial quartz stone sheet material through sliding cooperation with the two arc grooves 28, so as to realize the tilting of the semi-finished artificial quartz stone sheet material;

[0070] S3, stripping:

[0071] After the fixed block 31 is connected to the chassis of the rack 1, the second electric push rod 35 is powered on, and the output end of the second electric push rod 35 extends to push the reciprocating frame 34, and the reciprocating frame 34 pulls the two lifting blocks 32 to lift in the two movable grooves 30, and the two lifting blocks 32 are aligned with the fixed block 31. At the same time, the two lifting blocks 32 lift the single artificial quartz stone sheet semi-finished product and the two push rods 33, and the two push rods 33 push the movable clamping block 39 upward to offset the squeezing of the two reinforcing springs 41, and release the movable clamping block 39 from the single artificial quartz stone sheet semi-finished product The laser locator 40 detects that the two lifting blocks 32 are aligned with the fixed block 31, and the first electric push rod 13 is powered on to start the output end of the first electric push rod 13. The output end of the first electric push rod 13 pushes the single artificial quartz stone slab semi-finished product out from the fixed block 31 and the top of the two lifting blocks 32, so that the single artificial quartz stone slab semi-finished product falls off from between the fixed block 31 and the movable clamping block 39, which is convenient for employees to push the artificial quartz stone slab semi-finished products to be tilted and stacked on the material rack, thereby realizing the removal of the artificial quartz stone slabs.

[0072] Finally, it should be noted that the above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. Although the present invention has been described in detail with reference to the aforementioned embodiments, those skilled in the art can still modify the technical solutions described in the aforementioned embodiments or replace some of the technical features therein by equivalents. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present invention shall be included in the protection scope of the present invention.

Claims

1. An artificial quartz stone feeding platform, characterized in that: include; Frame (1); A rotating shaft (10), the rotating shaft (10) is rotatably connected between the inner walls of the frame (1), and the two ends of the rotating shaft (10) extend to the two side ends of the frame (1), the top of the rotating shaft (10) is fixedly connected with a flap (11), the top of the flap (11) is fixedly connected with a fixed clamping block (31), the top of the flap (11) is provided with two movable grooves (30), and the two movable grooves (30) are each provided with a lifting block (32), the top of the flap (11) is provided with a clamping groove (36), and a movable clamping block (39) is provided between the inner walls of the clamping groove (36); and An adjusting mechanism is arranged between the frame (1) and the flap (11), and is connected to the movable clamping block (39) and the two lifting blocks (32) to move the movable clamping block (39) and the two lifting blocks (32).

2. The artificial quartz stone feeding platform according to claim 1, characterized in that: The adjusting mechanism comprises a pushing assembly, a connecting rod assembly, an elastic assembly, a lifting assembly and a guiding assembly; the lifting assembly is arranged at the bottom of the flap (11), and the lifting assembly is connected to two lifting blocks (32); the elastic assembly is arranged at the top of the flap (11), and the elastic assembly is connected to a movable clamping block (39); the connecting rod assembly is arranged between the inner walls of the frame (1), and the connecting rod assembly is connected to the flap (11); the pushing assembly is arranged between the inner walls of the frame (1), and the pushing assembly is connected to the connecting rod assembly.

3. The artificial quartz stone feeding platform according to claim 2, characterized in that: The elastic component comprises a spring sleeve (37), an elastic insertion rod (38), a reinforcing spring (41) and a guide column (42). Two guide columns (42) are provided. The two guide columns (42) are fixedly connected between the inner walls of the clamping groove (36), and the two guide columns (42) penetrate the movable clamping block (39). Two spring sleeves (37) are provided. The two spring sleeves (37) are fixedly connected to the bottom of the flap (11), and the two spring sleeves (37) are located on one side of the clamping groove (36). Two elastic insertion rods (38) are provided. The two elastic insertion rods (38) are movably inserted between the inner walls of the two spring sleeves (37). Two reinforcing springs (41) are provided. The two reinforcing springs (41) are sleeved on the circumferential surfaces of the two elastic insertion rods (38), and the two reinforcing springs (41) are located between the inner walls of the two spring sleeves (37).

4. The artificial quartz stone feeding platform according to claim 3, characterized in that: The lifting assembly includes a push rod (33), a reciprocating frame (34) and a second electric push rod (35). Two push rods (33) are provided. The two push rods (33) are fixedly connected to the side ends of the lifting block (32). The other ends of the two push rods (33) are inserted into the flap (11). The extended ends of the two push rods (33) extend between the inner walls of the clamping groove (36), and the extended ends of the two push rods (33) are not connected to the clamping groove (36). The second electric push rod (35) is fixedly connected to the bottom of the flap (11). The reciprocating frame (34) is fixedly connected to the output end of the second electric push rod (35), and the reciprocating frame (34) is connected to the two lifting blocks (32).

5. The artificial quartz stone feeding platform according to claim 4, characterized in that: The pushing assembly comprises a fixed plate (2), a slide rail (20), a limiting groove (21), a screw rod (22), a rotating motor (23), a slider (24) and a limiting block (25); the fixed plate (2) is fixedly connected between the inner walls of the frame (1); the slide rail (20) is fixedly connected to the top of the fixed plate (2); two limiting grooves (21) are provided, and the two limiting grooves (21) are opened at two side ends of the slide rail (20); the two limiting grooves (21) are both connected to the inner wall of the slide rail (20); the screw rod (22) is rotatably connected to the inner wall of the slide rail (20); The inner walls of the slide rail (20) are connected to each other, one end of the screw rod (22) extends to the side end of the slide rail (20), the rotating motor (23) is fixedly connected to the side end of the slide rail (20), the output end of the rotating motor (23) is fixedly connected to the extended end of the screw rod (22), the slider (24) is sleeved on the circumferential surface of the screw rod (22), the slider (24) is located between the inner walls of the slide rail (20), two limit blocks (25) are provided, the two limit blocks (25) slide between the inner walls of the two limit grooves (21), and the two limit blocks (25) are connected to the slider (24).

6. The artificial quartz stone feeding platform according to claim 5, characterized in that: The connecting rod assembly comprises a base frame (14), a sliding rod (15), a guide block (16), a counterweight block (17), a first adapter block (18), a push-pull rod (19) and a second adapter block (26); the base frame (14) is fixedly connected to the bottom of the flap (11); two sliding rods (15) are provided, and the two sliding rods (15) are fixedly connected between the inner walls of the base frame (14); the guide block (16) is sleeved on the circumferential surface of the two sliding rods (15); The block (16) slides between the inner walls of the base frame (14), the counterweight block (17) is fixedly connected to the bottom of the guide block (16), the counterweight block (17) is located on the lower side of the base frame (14), the first adapter block (18) is fixedly connected to the bottom of the guide block (16), the second adapter block (26) is fixedly connected to the top of the slider (24), and the push-pull rod (19) is rotatably connected between the first adapter block (18) and the second adapter block (26) through a hinge shaft.

7. The artificial quartz stone feeding platform according to claim 6, characterized in that: The guide assembly comprises two hollow covers (27), an arc groove (28) and an eccentric slider (29). There are two hollow covers (27), which are sleeved on the circumferential surfaces of the two extended ends of the rotating shaft (10), and the two hollow covers (27) are fixedly connected to the two side ends of the frame (1). There are two arc grooves (28), which are opened at the two side ends of the hollow covers (27). The two hollow covers (27) are connected to the inner walls of the two eccentric sliders (29). There are two eccentric sliders (29), which are fixedly connected to the two extended ends of the rotating shaft (10), and the swinging ends of the two eccentric sliders (29) slide between the inner walls of the two arc grooves (28).

8. The artificial quartz stone feeding platform according to claim 7, characterized in that: The frame body (1) is provided with two receiving grooves (4) at the top, the two receiving grooves (4) are located on both sides of the turning groove (3), two rotating wheels (7) are rotatably connected between the inner walls of the two receiving grooves (4), and two conveyor belts (8) are sleeved on the circumferential surfaces of the four rotating wheels (7). The bottom of the flap (11) is fixedly connected with a fixing frame (5), the fixing frame (5) corresponds to the turning groove (3) up and down, the top of the fixing frame (5) is fixedly connected with a double-axis motor (6), the double-axis motor (6) is located between the inner walls of the turning groove (3), the two output ends of the double-axis motor (6) respectively extend between the inner walls of the two receiving grooves (4), and the two output ends of the double-axis motor (6) are fixedly connected to the two rotating wheels (7), the top of the flap (11) is provided with two guide pillars (42), the two guide pillars (42) are located at the two side ends of the turning groove (3), and rollers (9) are rotatably connected between the inner walls of the two guide pillars (42).

9. The artificial quartz stone feeding platform according to claim 8, characterized in that: A laser locator (40) is installed at the side end of the fixed card block (31), and the emission end of the laser locator (40) extends to the inner wall of the fixed card block (31).

10. The artificial quartz stone feeding platform according to claim 8, characterized in that: A mounting hole (12) is formed through the top of the flap (11), and a first electric push rod (13) is fixedly connected to the bottom of the flap (11), wherein the output end of the first electric push rod (13) extends between the inner walls of the mounting hole (12).

Citation Information

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