An automated production line for stone processing

By designing an automated stone processing production line, automated production of stone processing is realized, production efficiency and safety are improved, labor costs and land occupation demand are reduced, and production needs are adapted to multi-working production needs.

CN115946238BActive Publication Date: 2025-08-05GUANGDONG STONE CHAIN TECH DEV CO LTD
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Patent Information

Application Number
CN202211551071.1
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-12-05
Publication Date
2025-08-05
Estimated Expiration
2042-12-05

AI Technical Summary

Technical Problem

The existing stone processing production lines have low degree of automation and require a lot of manpower, high weight and inconvenient movement, resulting in low production efficiency and high risk of injury to personnel, and they are unable to cope with the production needs in multiple working conditions.

Method used

Design an automated production line for stone processing, including main line and auxiliary line. The main lines are arranged in sequence as type-based edge grinding, double-station water drilling upper cutting, coarse fine grinding, cleaning and conveying, bonding and splitting and packaging units. The auxiliary lines are multi-blade sawing machines and accessories supply units. Processing information is obtained through scanning codes and web interfaces to realize automated production.

Benefits of technology

It improves the degree of automation, saves labor costs, reduces the risk of personnel injury, and has a compact production line that saves land, can cope with different production requirements and improves production efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

An automated production line for stone processing comprises a main line and an auxiliary line, and is characterized in that the main line is sequentially divided into a typesetting and edging unit, a double-station water jet cutting unit, a coarse and fine grinding unit, a cleaning and conveying unit, a bonding and diversion unit, and a packaging unit; the auxiliary line is sequentially divided into a multi-blade saw machine and an accessories supply unit; the accessories supply unit is used to provide accessories to the bonding and diversion unit and the packaging unit; the device can meet the production needs of typesetting, cutting, grinding, drilling, cleaning, bonding and packaging, and improves the degree of automation, saves labor costs, improves production efficiency, reduces the risk of personal injury, and makes the overall production line more compact through reasonable layout, saves land costs, and can handle different production requirements in practice at the same time, further improving production efficiency.
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Description

Technical Field

[0001] The present invention relates to the field of stone processing and production, in particular to an automated stone processing production line. Background Art

[0002] During the stone processing and production process, the stone needs to be laid out, cut, polished, drilled, cleaned and other processes. In the existing technology, a large amount of work needs to be done manually, and the degree of automation is low, which affects production efficiency and requires a large amount of human resources. In addition, the weight of stone is often heavy and inconvenient to move. In the face of large-scale production, the risk of personal injury is increased; when faced with different production requirements, the existing stone processing production line cannot cope with the needs of simultaneous production of multiple working conditions, further affecting production efficiency. Summary of the Invention

[0003] The technical problem to be solved by the present invention is to provide an automated production line for stone processing, which can effectively solve the problems raised in the above-mentioned background technology.

[0004] In order to solve the above problems, the technical solution adopted by the present invention is: an automated production line for stone processing, including a main line and an auxiliary line, the main line is arranged in sequence into a typesetting and edging unit, a double-station water jet cutting unit, a coarse and fine grinding unit, a cleaning and conveying unit, a bonding and diversion unit, and a packaging unit; the auxiliary line is arranged in sequence into a multi-blade saw machine and an accessories supply unit; the accessories supply unit is used to provide accessories to the bonding and diversion unit and the packaging unit.

[0005] As a further preferred embodiment of the present invention, the typesetting and edging unit includes a glass knife cutting and labeling machine for typesetting, labeling and cutting, and a double-sided grinding device for edging; the glass knife cutting and labeling machine is provided with a conveying mechanism connected to one end of the double-sided grinding device; the other end of the double-sided grinding device is provided with a first flip mechanism, and is connected to the double-station water jet loading and cutting unit through the first flip mechanism.

[0006] As a further preferred embodiment of the present invention, the double-sided edge grinding device includes a first double-sided edge grinding machine, a transfer and direction-adjusting mechanism, and a second double-sided edge grinding machine; one end of the first double-sided edge grinding machine is connected to the conveying mechanism, and the other end of the first double-sided edge grinding machine is connected to one end of the second double-sided edge grinding machine through the transfer and direction-adjusting mechanism; the other end of the second double-sided edge grinding machine is connected to the first flip mechanism.

[0007] As a further preferred embodiment of the present invention, the double-station water jet cutting unit includes a first water jet cutting station, a second water jet cutting station, a rock slab conveyor and an assembly line frame; one end of the assembly line frame is connected to the typesetting and edging unit, and the other end is connected to the coarse and fine grinding unit; the first water jet cutting station and the second water jet cutting station are symmetrically arranged on both sides of the assembly line frame; the rock slab conveyor is arranged above the first water jet cutting station, the second water jet cutting station and the assembly line frame for moving stone.

[0008] As a further preferred embodiment of the present invention, the coarse and fine grinding unit includes a coarse grinding hole mechanism and a fine grinding hole mechanism; one end of the coarse grinding hole mechanism is connected to the double-sided grinding device, and the other end of the coarse grinding hole mechanism is connected to one end of the fine grinding hole mechanism; the other end of the fine grinding hole mechanism is connected to the cleaning and conveying unit.

[0009] As a further preferred embodiment of the present invention, the cleaning and conveying unit includes a first turntable, a first cleaning machine, a second flip mechanism, a second turntable, a third turntable, a second cleaning machine and a fourth turntable; the first turntable, the first cleaning machine, the second flip mechanism, the second turntable, the third turntable, the second cleaning machine and the fourth turntable are arranged and docked in sequence, wherein the first turntable is also docked with the coarse and fine grinding unit, and the second turntable, the third turntable and the fourth turntable are docked with the bonding and diversion unit.

[0010] As a further preferred embodiment of the present invention, the bonding diversion unit includes a first bonding diversion mechanism and a second bonding diversion mechanism; the head end of the first bonding diversion mechanism is docked with the second turntable, and the tail end is docked with the third turntable; the head end of the second bonding diversion mechanism is docked with the fourth turntable, and the tail end is docked with the packaging unit.

[0011] As a further preferred embodiment of the present invention, the first bonding diversion mechanism is composed of a first diversion line frame, a bonding station, a merging line frame and a buckle edge grinding unit arranged in sequence; the first diversion line frame is the head end of the first bonding diversion mechanism; the buckle edge grinding group is the tail end of the first bonding diversion mechanism; the second bonding diversion mechanism includes a second diversion line frame and a bonding quality inspection station; the second diversion line frame is docked with the fourth turntable, and the bonding quality inspection station is docked with the packaging unit.

[0012] As a further preferred embodiment of the present invention, the packaging unit includes a roller conveyor line, a frame assembly machine, a third flip mechanism and a strapping mechanism; the roller conveyor line is docked with the bonding diversion unit, and the roller conveyor line is docked with the accessory supply unit.

[0013] As a further preferred embodiment of the present invention, the accessory supply unit includes a water-blocking buckle accessory mechanism, a frame protection accessory mechanism and an aluminum strip cutting mechanism; the water-blocking buckle accessory mechanism provides buckles to the bonding and diversion unit and water-blocking parts to the packaging unit; the frame protection accessory mechanism is docked with the packaging unit; and the aluminum strip cutting mechanism is docked with the bonding and diversion unit.

[0014] Compared with the prior art, the present invention provides an automated stone processing production line with the following beneficial effects:

[0015] The device can meet the production needs of typesetting, cutting, grinding, drilling, cleaning, bonding and packaging, and improves the degree of automation, saving labor costs while improving production efficiency and reducing the risk of personal injury. Through reasonable layout, the overall production line is more compact, saving land costs, and can handle different actual production requirements at the same time, further improving production efficiency. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 It is a schematic diagram of the overall structural layout of the present invention;

[0017] Figure 2 It is a schematic diagram of the layout of the typesetting and edging unit structure;

[0018] Figure 3 This is a partial structural diagram of the double-station water jet cutting unit;

[0019] Figure 4 It is a schematic diagram of the structural layout of the bonding diversion unit;

[0020] Figure 5 This is a schematic diagram of the structural layout of the accessories supply unit;

[0021] Figure 6 This is a schematic diagram of the packaging unit structure layout;

[0022] Among them: 1. Typesetting and edging unit, 1-1. Glass cutter labeling machine, 1-11. Conveying mechanism, 1-2. Double-edge grinding device, 1-21. First double-edge grinding machine, 1-22. Second double-edge grinding machine, 1-23. Transfer and direction adjustment mechanism, 1-3. First flip mechanism,

[0023] 2. Double-station water jet cutting unit, 2-1. First water jet cutting station, 2-2. Second water jet cutting station, 2-3. Rock plate conveyor, 2-31. Support frame, 2-311. Plate loader guide rail, 2-32. Plate loader pulley, 2-33. Lifting box, 2-4. Assembly line frame,

[0024] 3. Coarse and fine grinding unit, 3-1. Coarse hole grinding mechanism, 3-2. Fine hole grinding mechanism,

[0025] 4. Cleaning and conveying unit, 4-1. First turntable, 4-2. First cleaning machine, 4-3. Second flip mechanism, 4-4. Second turntable, 4-5. Third turntable, 4-6. Second cleaning machine, 4-7. Fourth turntable,

[0026] 5. Bonding diversion unit, 5-1. First bonding diversion mechanism, 5-11. First diversion line rack, 5-12. Bonding station, 5-13. Merging line rack, 5-14. Lower buckle edge grinding unit, 5-2. Second bonding diversion mechanism, 5-21. Second diversion line rack, 5-22. Bonding quality inspection station,

[0027] 6. Packaging unit, 6-1. Roller conveyor line, 6-2. Frame assembly machine, 6-3. Third flap mechanism, 6-4. Strapping mechanism,

[0028] 7. Multi-blade saw machine,

[0029] 8. Accessory supply unit, 8-1. Water-blocking buckle accessory mechanism, 8-2. Frame protection accessory mechanism, 8-3. Aluminum strip cutting mechanism. DETAILED DESCRIPTION

[0030] The technical solutions in the embodiments of the present invention will be clearly and completely described below in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, rather than all the embodiments.

[0031] Reference Figure 1 The present invention provides an automated stone processing production line, including a main line and an auxiliary line. The main line is sequentially divided into a typesetting and edging unit 1, a double-station water jet cutting unit 2, a coarse and fine grinding unit 3, a cleaning and conveying unit 4, a bonding and diversion unit 5, and a packaging unit 6; the auxiliary line is sequentially divided into a multi-blade saw machine 7 and an accessories supply unit 8; the accessories supply unit 8 is used to provide accessories to the bonding and diversion unit 5 and the packaging unit 6, and each device obtains processing information by scanning codes and web interfaces.

[0032] Reference Figure 2 As a further preferred embodiment of the present invention, the typesetting and edging unit 1 includes a glass knife cutting and labeling machine 1-1 for typesetting, labeling and cutting, and a double-sided grinding device 1-2 for grinding; the glass knife cutting and labeling machine 1-1 is provided with a conveying mechanism 1-11 connected to one end of the double-sided grinding device 1-2; the other end of the double-sided grinding device 1-2 is provided with a first flip mechanism 1-3, and is connected to the double-station water jet cutting unit 2 through the first flip mechanism 1-3.

[0033] As a further preferred embodiment of the present invention, the double-sided edge grinding device 1-2 includes a first double-sided edge grinding machine 1-21, a transfer and direction adjustment mechanism 1-23 and a second double-sided edge grinding machine 1-22; one end of the first double-sided edge grinding machine 1-21 is docked with the conveying mechanism 1-11, and the other end of the first double-sided edge grinding machine 1-21 is connected to one end of the second double-sided edge grinding machine 1-22 through the transfer and direction adjustment mechanism 1-23; the other end of the second double-sided edge grinding machine 1-22 is connected to the first flip mechanism 1-3.

[0034] Reference Figure 3 As a further preferred embodiment of the present invention, the double-station water jet cutting unit 2 includes a first water jet cutting station 2-1, a second water jet cutting station 2-2, a rock plate conveyor 2-3 and an assembly line frame 2-4; one end of the assembly line frame 2-4 is connected to the typesetting edge grinding unit 1, and the other end is connected to the coarse and fine grinding unit 3; the first water jet cutting station 2-1 and the second water jet cutting station 2-2 are symmetrically arranged on both sides of the assembly line frame 2-4; the rock plate conveyor 2-3 is arranged between the first water jet cutting station 2-1, the second water jet cutting station 2-2 and the assembly line frame 2-4 Above, it is used to move stones. The first water jet cutting station 2-1 is provided with a five-axis water jet cutting machine; the second water jet cutting station 2-2 is provided with a three-axis water jet cutting machine; the rock slab conveyor 2-3 includes a supporting frame 2-31, a loader pulley 2-32 and a lifting box 2-33; the supporting frame 2-31 is provided with a loader guide rail 2-311, which is slidably connected to the loader pulley 2-32 through the loader guide rail 2-311; the lifting box 2-33 is arranged on the loader pulley 2-32, and the loader pulley 2-32 is equipped with a loader for moving stones.

[0035] refer to Figure 1 As a further preferred embodiment of the present invention, the coarse and fine grinding unit 3 includes a coarse grinding hole mechanism 3-1 and a fine grinding hole mechanism 3-2; one end of the coarse grinding hole mechanism 3-1 is connected to the double-sided grinding device 1-2, and the other end of the coarse grinding hole mechanism 3-1 is connected to one end of the fine grinding hole mechanism 3-2; the other end of the fine grinding hole mechanism 3-2 is connected to the cleaning and conveying unit 4.

[0036] As a further preferred embodiment of the present invention, the cleaning and conveying unit 4 includes a first turntable 4-1, a first cleaning machine 4-2, a second flip mechanism 4-3, a second turntable 4-4, a third turntable 4-5, a second cleaning machine 4-6 and a fourth turntable 4-7; the first turntable 4-1, the first cleaning machine 4-2, the second flip mechanism 4-3, the second turntable 4-4, the third turntable 4-5, the second cleaning machine 4-6 and the fourth turntable 4-7 are arranged and docked in sequence, wherein the first turntable 4-1 is also docked with the fine grinding mechanism 3-2, the second turntable 4-4 is docked with the first diversion line rack 5-11, the third turntable 4-5 is docked with the line rack on the lower buckle edge grinding unit 5-14, and the fourth turntable 4-7 is docked with the second diversion line rack 5-21.

[0037] Reference Figure 6 As a further preferred embodiment of the present invention, the packaging unit 6 includes a roller conveyor line 6-1, a frame assembly machine 6-2, a third flip mechanism 6-3 and a strapping mechanism 6-4; the roller conveyor line 6-1 is connected to the bonding quality inspection station 5-22, and the roller conveyor line 6-1 is connected to the frame accessory mechanism 8-2; the frame assembly machine 6-2 is a U-shaped frame assembly machine.

[0038] Reference Figure 5 As a further preferred embodiment of the present invention, the accessory supply unit 8 includes a water-blocking buckle accessory mechanism 8-1, a frame protection accessory mechanism 8-2 and an aluminum strip cutting mechanism 8-3; the water-blocking buckle accessory mechanism 8-1 provides buckles to the bonding station 5-12 and water-blocking parts to the packaging unit 6; the aluminum strip cutting mechanism 8-3 is docked with the bonding quality inspection station 5-22; the bonding station 5-12 and the bonding quality inspection station 5-22 are provided with robotic arms, and precise bonding is achieved by controlling the robotic arms.

[0039] As a specific embodiment 1 of the present invention, refer to Figure 1-6 The main production process is as follows:

[0040] S1: The raw material stone is put into the glass knife cutting and labeling machine 1-1. The glass knife cutting and labeling machine 1-1 uses a suction cup to load the stone, and performs real-time typeset according to the size set according to the production requirements, and affixes a label on the stone. The label is marked with a barcode, and the production requirement information can be obtained by scanning the barcode. The stone is cut and broken according to the production requirements. After completion, the stone is conveyed to the first double-sided edging machine 1-21 through the conveying mechanism 1-11, and the remaining material generated after cutting is transported to the auxiliary line.

[0041] S2: After the stone is sent to the first double-sided edging machine 1-21, the code is scanned to identify the processing information on the stone, and the edging width is adjusted to grind both sides of the stone. After completion, the stone is rotated 90 degrees through the transfer and direction adjustment mechanism 1-23 and transferred to the second double-sided edging machine 1-22 to grind the other two sides of the stone. After completion, the material is discharged to the first flip mechanism 1-3.

[0042] S3: The first flipping mechanism 1-3 flips the stone, and after flipping, the stone arrives on the assembly line frame 2-4 of the double-station water jet cutting unit 2.

[0043] S4: The stone flows to the rock slab conveyor 2-3 through the assembly line frame 2-4, and the code is scanned to obtain the processing information on the stone. If the stone does not need to be cut with holes, the stone is continued to be conveyed to the coarse and fine grinding unit 3; if the stone needs to be cut with holes, whether a 45-degree cut is required depends on the processing requirements. If necessary, the stone is picked up by the rock slab conveyor 2-3 and conveyed to the first water jet cutting station 2-1 for cutting. If not, it is conveyed to the second water jet cutting station 2-2 for cutting. After the above cutting process is completed, the stone is picked up by the rock slab conveyor 2-3 and placed on the assembly line frame 2-4, and the stone is continued to be conveyed to the coarse and fine grinding unit 3.

[0044] S5: The coarse and fine grinding unit 3 identifies whether the stone has holes to be ground based on the processing information marked on the stone. If there are no holes on the stone, the stone is discharged to the first turntable 4-1; if there are holes on the stone, the coarse grinding hole mechanism 3-1 is started, and the stone is coarsely ground by finding the edge of the basin hole. After grinding is completed, it flows to the fine grinding hole mechanism 3-2, and then the fine grinding hole mechanism 3-2 obtains the processing information marked on the stone. If the processing of the stone does not require the installation of an under-counter basin, the stone is discharged to the first turntable 4-1. If the processing of the stone requires the installation of an under-counter basin, the stone is finely ground by finding the edge of the basin hole. After fine grinding is completed, the stone is discharged to the first turntable 4-1.

[0045] S6: The first turntable 4-1 rotates in the direction to transfer the stone to the first cleaning machine 4-2 to complete the cleaning, heating and air-drying process, and then transfer the stone to the second flip mechanism 4-3 for flipping and discharge to the second turntable 4-4.

[0046] S7: Scan the code to obtain processing information and determine whether the stone needs to be glued with lower fasteners; if the lower fasteners do not need to be glued, the stone will flow to the second cleaning machine 4-6; if the lower fasteners need to be glued, the second turntable 4-4 will be rotated to make the stone flow to the first bonding diversion mechanism 5-1 for bonding of the lower fasteners. After the bonding is completed, the lower fasteners will be polished by the lower fastener edge grinding unit 5-14. After completion, the stone will flow to the second cleaning machine 4-6 through the third turntable 4-5.

[0047] S8: The second cleaning machine 4-6 further cleans the stone, heats and dries it, and then transfers the stone to the second bonding and diversion mechanism 5-2 through the fourth turntable 4-7.

[0048] S9: The second bonding and diversion mechanism 5-2 identifies the processing information on the stone, and performs the processes of bonding aluminum strips, bonding discs and quality inspection on the stone according to the processing requirements, and then discharges the stone to the packaging unit 6 after completion.

[0049] S10: The packaging unit 6 customizes wooden frames according to the actual size of the stones, bundles and packages the stones, and forms finished products after completion.

[0050] As a specific embodiment 2 of the present invention: Figure 1-6 The production process of the auxiliary line is as follows:

[0051] A1: Put the raw stone or processing waste material on the multi-blade saw machine 7, and the multi-blade saw machine 7 cuts and trims it into the front water retaining part, the rear water retaining part and the lower fastener.

[0052] A2: The front water barrier, the rear water barrier and the lower fastener are then edged and finely cut according to the production size by the water barrier edge grinding machine and the water barrier fine cutting machine provided in the water barrier lower fastener accessory mechanism 8-1. After completion, the lower fastener is transported to the bonding station 5-12, and the front water barrier and the rear water barrier are transported to the packaging unit 6.

[0053] A3: Place aluminum material on the aluminum strip cutting mechanism 8-3, cut aluminum strips of corresponding sizes according to production requirements, and after cutting, transport the aluminum strips to the bonding quality inspection station 5-22.

[0054] The technical features of the above-mentioned embodiments can be combined arbitrarily. In order to make the description concise, not all possible combinations of the technical features in the above-mentioned embodiments are described. However, as long as there is no contradiction in the combination of these technical features, they should be considered to be within the scope of this specification.

[0055] The above-described embodiments merely illustrate several implementations of the present invention, and while their descriptions are relatively specific and detailed, they should not be construed as limiting the scope of the patent. It should be noted that a person skilled in the art would be able to make numerous variations and improvements without departing from the spirit of the present invention, all of which fall within the scope of protection of the present invention. Therefore, the scope of protection of the patent for this invention shall be determined by the appended claims.

Claims

1. A stone processing automated production line, comprising a main line and an auxiliary line, characterized in that: The main line is sequentially divided into a typesetting and edging unit (1), a double-station water jet plate cutting unit (2), a coarse and fine grinding unit (3), a cleaning and conveying unit (4), a bonding and diversion unit (5), and a packaging unit (6); the auxiliary line is sequentially divided into a multi-blade saw (7) and an accessory supply unit (8); the accessory supply unit (8) is used to provide accessories to the bonding and diversion unit (5) and the packaging unit (6); The typesetting and edge grinding unit (1) comprises a glass cutter labeling machine (1-1) for typesetting, labeling and cutting, and a double-sided grinding device (1-2) for edge grinding; the glass cutter labeling machine (1-1) is provided with a conveying mechanism (1-11) connected to one end of the double-sided grinding device (1-2); the other end of the double-sided grinding device (1-2) is provided with a first flip mechanism (1-3), and is connected to the double-station water jet cutting unit (2) via the first flip mechanism (1-3); The cleaning and conveying unit (4) comprises a first turntable (4-1), a first cleaning machine (4-2), a second flap mechanism (4-3), a second turntable (4-4), a third turntable (4-5), a second cleaning machine (4-6) and a fourth turntable (4-7); the first turntable (4-1), the first cleaning machine (4-2), the second flap mechanism (4-3), the second turntable (4-4), the third turntable (4-5), the second cleaning machine (4-6) and the fourth turntable (4-7) are sequentially arranged and docked, wherein the first turntable (4-1) is also docked with the coarse and fine grinding unit (3), and the second turntable (4-4), the third turntable (4-5) and the fourth turntable (4-7) are docked with the bonding and diversion unit (5); The bonding and diversion unit (5) comprises a first bonding and diversion mechanism (5-1) and a second bonding and diversion mechanism (5-2); the first end of the first bonding and diversion mechanism (5-1) is connected to the second turntable (4-4), and the tail end is connected to the third turntable (4-5); the second end of the second bonding and diversion mechanism (5-2) is connected to the fourth turntable (4-7), and the tail end is connected to the packaging unit (6); The first bonding diversion mechanism (5-1) is composed of a first diversion line frame (5-11), a bonding station (5-12), a merging line frame (5-13) and a buckle edge grinding unit (5-14) arranged in sequence; the first diversion line frame (5-11) is the head end of the first bonding diversion mechanism (5-1); the buckle edge grinding unit (5-14) is the tail end of the first bonding diversion mechanism (5-1); the second bonding diversion mechanism (5-2) includes a second diversion line frame (5-21) and a bonding quality inspection station (5-22); the second diversion line frame (5-21) is connected to the fourth turntable (4-7), and the bonding quality inspection station (5-22) is connected to the packaging unit (6).

2. The stone processing automated production line according to claim 1, characterized in that: The double-sided edge grinding device (1-2) comprises a first double-sided edge grinding machine (1-21), a transfer and direction adjustment mechanism (1-23), and a second double-sided edge grinding machine (1-22); one end of the first double-sided edge grinding machine (1-21) is connected to the conveying mechanism (1-11), and the other end of the first double-sided edge grinding machine (1-21) is connected to one end of the second double-sided edge grinding machine (1-22) via the transfer and direction adjustment mechanism (1-23); the other end of the second double-sided edge grinding machine (1-22) is connected to the first flap mechanism (1-3).

3. The stone processing automated production line according to claim 1, characterized in that: The double-station water jet cutting unit (2) comprises a first water jet cutting station (2-1), a second water jet cutting station (2-2), a rock plate conveyor (2-3) and an assembly line frame (2-4); one end of the assembly line frame (2-4) is connected to the typesetting edge grinding unit (1), and the other end is connected to the coarse and fine grinding unit (3); the first water jet cutting station (2-1) and the second water jet cutting station (2-2) are symmetrically arranged on both sides of the assembly line frame (2-4); the rock plate conveyor (2-3) is arranged above the first water jet cutting station (2-1), the second water jet cutting station (2-2) and the assembly line frame (2-4) for moving stone.

4. The automated stone processing production line according to claim 1, characterized in that: The coarse and fine grinding unit (3) comprises a coarse grinding hole mechanism (3-1) and a fine grinding hole mechanism (3-2); one end of the coarse grinding hole mechanism (3-1) is connected to the double-sided grinding device (1-2), and the other end of the coarse grinding hole mechanism (3-1) is connected to one end of the fine grinding hole mechanism (3-2); the other end of the fine grinding hole mechanism (3-2) is connected to the cleaning and conveying unit (4).

5. The stone processing automated production line according to claim 1, characterized in that: The packaging unit (6) comprises a roller conveyor line (6-1), a frame assembly machine (6-2), a third flap mechanism (6-3) and a strapping mechanism (6-4); the roller conveyor line (6-1) is docked with the bonding and diversion unit (5), and the roller conveyor line (6-1) is docked with the accessory supply unit (8).

6. The automated stone processing production line according to claim 1, characterized in that: The accessory supply unit (8) comprises a water-blocking buckle accessory mechanism (8-1), a frame protection accessory mechanism (8-2), and an aluminum strip cutting mechanism (8-3); the water-blocking buckle accessory mechanism (8-1) provides a buckle to the bonding and diversion unit (5) and provides a water-blocking component to the packaging unit (6); the frame protection accessory mechanism (8-2) is connected to the packaging unit (6); and the aluminum strip cutting mechanism (8-3) is connected to the bonding and diversion unit (5).

Citation Information

Patent Citations

  • Automatic production line for stone machining

    CN218985285U