Cutting device for producing artificial stone
Technical Field
The utility model relates to a cutting device for producing artificial stone.
Background
The existing artificial stone is required to be aligned and cut after being pressed and manufactured, and the cutting procedure of the massive artificial stone is manually participated at present, so that faults and dangers are easy to occur, and the cutting efficiency is low.
Disclosure of Invention
The utility model aims to solve the defects in the prior art and provides a cutting device for producing artificial stone.
In order to achieve the above purpose, the present utility model adopts the following technical scheme: the utility model provides a cutting device for producing rostone, includes feeding subassembly, ejection of compact subassembly, fixed material pay-off subassembly, support and cutting assembly, and the left end of support is equipped with feeding subassembly, and the right-hand member of support is equipped with ejection of compact subassembly, is located to be equipped with on the support of feeding subassembly's right-hand member fixed material pay-off subassembly that moves about on the support, is equipped with the cutting mouth on the support of fixed material pay-off subassembly's right-hand member, and the rear side of cutting mouth is equipped with the cutting subassembly that can rise and fall, and the both sides of cutting mouth are equipped with fixed material subassembly.
Further, the upper end face of the bracket is provided with a roller assembly, and the roller assembly penetrates through the upper end face of the bracket left and right and is not staggered with the cutting opening at the cutting opening.
Further, the feeding assembly and the discharging assembly respectively comprise a first bracket and a conveyor belt, the conveyor belt is arranged on the first bracket and works, and the conveyor belt of the feeding assembly conveys the artificial stone towards the bracket; the conveyor belt of the feeding assembly is back to the support to convey artificial stone, and the feeding assembly and the discharging assembly are connected with two ends of the roller assembly.
Further, the fixed material feeding subassembly is located cylinder subassembly both sides, the fixed material feeding subassembly includes the slide rail, the slider, control flexible cylinder, around flexible cylinder, bottom plate and roof, be located cylinder subassembly front side and be equipped with a left and right sides to the slide rail, the gomphosis sets up the slider on the slide rail, the left side of slide rail still is equipped with the flexible cylinder of controlling of one end and support fixing, the flexible axle connection slider of controlling flexible cylinder, drive slider removes in the slide rail, flexible cylinder around being equipped with on the slider, flexible cylinder's flexible axle around is towards cylinder subassembly rear side, flexible cylinder's flexible axle end around is equipped with the roof, cylinder subassembly rear side is equipped with the bottom plate, through controlling flexible cylinder, flexible cylinder around, the fixed jack of rostone on bottom plate and the roof work with cylinder subassembly and move towards the cutting opening.
Further, the material fixing assembly comprises two first front-back telescopic cylinders, a first bottom plate and a first top plate, wherein the first front-back telescopic cylinders are respectively arranged at the left end and the right end of the cutting opening and are parallel to the cutting direction of the cutting opening, the first front-back telescopic cylinders are located at the front side of the support, the fixed first bottom plate is arranged at the rear side of the support corresponding to the first front-back telescopic cylinders, and the first top plate is arranged on a telescopic shaft of the first front-back telescopic cylinders.
Further, the cutting assembly comprises a cutting support, a connecting rod, a supporting rod, a driving cylinder and a cutting device, wherein the cutting support is arranged on the rear side of a cutting opening, a base is arranged on the cutting support, one end of the connecting rod is rotatably connected to the base through a rotating shaft, the other end of the connecting rod is fixedly connected with the cutting device, a cutting knife of the cutting device is aligned to the cutting opening, the supporting rod is further arranged on the cutting support, one end of the driving cylinder is connected with the supporting rod, the other end of the driving cylinder is connected with the connecting rod to drive the connecting rod to rotate by taking the rotating shaft as a center, and the cutting device is driven to enter the cutting opening for cutting and keep away from the cutting opening.
Further, the rear side of support upper end is offered the cutting mouth of U type, and the opening direction of U type is towards cutting assembly.
Further, the upper end face control panel of the support controls the feeding assembly, the discharging assembly, the fixed material feeding assembly, the fixed material assembly and the cutting assembly to work.
Further, an inductor is arranged on the sliding block.
The beneficial effects of the utility model are as follows: the continuous conveyor belt structure is formed by the feeding component, the discharging component and the roller component, so that the cutting can be convenient and labor-saving; the fixed material feeding component and the fixed material component can fix the artificial stone and move; determining the length of the artificial stone through an inductor; the setting of cutting assembly can avoid manual operation cutting, reduces danger.
Drawings
Fig. 1 is a schematic diagram of the structure of the device.
Fig. 2 is a top view of the bracket.
Detailed Description
The technical solutions of the embodiments of the present utility model will be clearly and completely described below with reference to fig. 1-2 of the embodiments of the present utility model, and it is obvious that the described embodiments are only some embodiments of the present utility model, but not all embodiments.
Embodiment 1 refers to fig. 1-2, a cutting device for producing artificial stone, including feeding subassembly 2, ejection of compact subassembly 3, fixed material feeding subassembly 4, support 1 and cutting subassembly 5, the left end of support is equipped with feeding subassembly, and the right-hand member of support is equipped with ejection of compact subassembly, is equipped with the fixed material feeding subassembly that moves about on the support of the right-hand member of feeding subassembly on the support of being located, is equipped with cutting opening 6 on the support of the right-hand member of fixed material feeding subassembly, and the rear side of cutting opening is equipped with the cutting subassembly that can rise and fall, and the both sides of cutting opening are equipped with fixed material subassembly.
A cutting device for producing artificial stone is provided, wherein the upper end surface of a bracket is provided with a roller assembly 7, and the roller assembly penetrates through the upper end surface of the bracket left and right and is not staggered with the cutting opening at the cutting opening.
The cutting device for producing the artificial stone comprises a feeding component and a discharging component, wherein the feeding component and the discharging component respectively comprise a first bracket and a conveyor belt, the conveyor belt is arranged on the first bracket and works, and the conveyor belt of the feeding component conveys the artificial stone towards the bracket; the conveyor belt of the feeding assembly is back to the support to convey artificial stone, and the feeding assembly and the discharging assembly are connected with two ends of the roller assembly.
Cutting device for production rostone, the stationary feed assembly is located cylinder subassembly both sides, the stationary feed assembly includes slide rail 8, slider 9, control flexible cylinder 10, around flexible cylinder 11, bottom plate 12 and roof 13, be located cylinder subassembly front side and be equipped with a left and right sides to the slide rail, the gomphosis sets up the slider on the slide rail, the left side of slide rail still is equipped with the flexible cylinder of controlling that one end is fixed with the support, the flexible axle connection slider of flexible cylinder about, drive slider removes in the slide rail, be equipped with flexible cylinder around on the slider, flexible axle orientation cylinder subassembly rear side around flexible cylinder, flexible axle end of flexible cylinder is equipped with the roof around, cylinder subassembly rear side is equipped with the bottom plate, through controlling flexible cylinder, flexible cylinder around, the fixed jack of rostone on bottom plate and the roof work with cylinder subassembly and orientation cutting mouth remove.
The utility model provides a cutting device for producing rostone, the stationary ladle spare 24 includes two first front and back telescopic cylinder 14, first bottom plate 15 and first roof 16, and first front and back telescopic cylinder sets up respectively in the left and right sides of cutting the mouth and cuts the cutting direction parallel of mouth, and first front and back telescopic cylinder is located the support front side, and the support rear side that corresponds first front and back telescopic cylinder is equipped with fixed first bottom plate, is equipped with first roof on the telescopic shaft of first front and back telescopic cylinder.
The utility model provides a cutting device for producing rostone, cutting assembly includes cutting support 17, connecting rod 18, bracing piece 19, actuating cylinder 20 and cutting device 21, cutting support sets up the rear side at the cutting mouth, be equipped with base 25 on the cutting support, connecting rod one end is through pivot rotatable connection on the base, connecting rod other end fixed connection cutting device, cutting device's cutting knife aims at the cutting mouth, still be equipped with the bracing piece on the cutting support, actuating cylinder one end hub connection bracing piece, another end hub connection connecting rod drives the connecting rod and uses the pivot as central rotatory removal, drive cutting device gets into the cutting mouth cutting and keep away from the cutting mouth.
A cutting device for producing artificial stone is characterized in that a U-shaped cutting opening is formed in the rear side of the upper end of a support, and the opening direction of the U-shaped cutting opening faces a cutting assembly.
A cutting device for producing artificial stone comprises a support upper end surface control panel 22 for controlling the work of the feeding component, the discharging component, the fixed material feeding component, the fixed material component and the cutting component.
A cutting device for producing artificial stone is provided, wherein an inductor 23 is arranged on a slide block.
A cutting device for producing artificial stone is characterized in that a plurality of rollers of a roller assembly are connected with a motor through chains.
The utility model provides a cutting device for production rostone, send the stone material to the cylinder subassembly on because of the size reason of rostone, the feeding subassembly continues the pay-off to advance to get into the cylinder subassembly completely, the flexible cylinder drive first slider about the feed subassembly is to leftmost, top through flexible cylinder around with the rostone top to the bottom plate then carry the cutting mouth to fixed by the feed subassembly, the feed subassembly loosens after the cutting subassembly cuts, the cylinder subassembly will cut the rostone and send the discharge subassembly, circulation in proper order.
The present utility model is not limited to the above-mentioned embodiments, and any person skilled in the art, based on the technical solution of the present utility model and the inventive concept thereof, can be replaced or changed within the scope of the present utility model.