Edging device for core material of color steel sandwich plate
Technical Field
The utility model relates to the technical field of core material edging, in particular to a core material edging device for a color steel sandwich plate.
Background
The utility model provides a various steel sandwich panel core edging device is a special equipment that is used for various steel sandwich panel production field, mainly used carries out edging to the core of various steel sandwich panel and handles. The device grinds and trims the edges of the core material to ensure accurate dimension and smooth edges and prevent secondary pollution of the foam material to the environment.
But because the middle layer of the color steel sandwich plate is usually a high polymer heat insulation inner core, such as a foam material. Although the material has good heat insulation performance, the plasticity of the material is poor, particularly at the edges and corners, the edge grinding device is difficult to smooth grind, and therefore, the color steel sandwich plate core material edge grinding device is provided for solving the problems.
Disclosure of utility model
In order to make up for the defects, the utility model provides an edging device for a core material of a color steel sandwich plate, and aims to solve the problem that the edges and corners of the core material of the color steel sandwich plate are difficult to polish in the prior art.
In order to achieve the above purpose, the present utility model adopts the following technical scheme:
The utility model provides a various steel sandwich panel core edging device, includes the platform board, the top fixedly connected with two supporting shoes of platform board, the top fixedly connected with motor of platform board, the drive end fixedly connected with gear two of motor, the top fixedly connected with compression post of platform board, the top fixedly connected with compression spring of compression post, the inboard rotation of two supporting shoes is connected with gear one, the inside rotation of gear one is connected with the spliced pole, the left side fixedly connected with spliced pole of spliced pole, the outside fixedly connected with spin ball of spliced pole, the outside rotation of spin ball is connected with the spliced pole one, the outside fixedly connected with hollow post of rotary block one, the top fixedly connected with workstation of hollow post, the outside sliding connection of workstation has the supporting bench, the top fixedly connected with working block of supporting bench, the right side fixedly connected with of working block is polished ball, the outside fixedly connected with of supporting bench carries out the upset subassembly with the core;
as a further description of the above technical solution:
The turnover assembly comprises two support columns, wherein an electric guide rail I is fixedly connected to the inner side of the support column, a T-shaped groove I is formed in the electric guide rail I, a sliding block is connected to the electric guide rail I in a sliding mode, a sleeve column is fixedly connected to the top of the sliding block, two blocking columns are fixedly connected to the top of the sliding block, a telescopic column is fixedly connected to the inner side of the sliding block, a rotating block II is fixedly connected to the outer side of the telescopic column, a spring sleeve is fixedly connected to the outer side of the sleeve column, an electric guide rail II is fixedly connected to the bottom of the electric guide rail I, a T-shaped groove II is formed in the electric guide rail II, a clamping column is connected to the inner side of the electric guide rail II in a sliding mode, two clamping blocks are fixedly connected to the outer side of the clamping column, a reversing block I is fixedly connected to the outer side of the telescopic column, and a sucker is fixedly connected to the bottom of the telescopic column;
as a further description of the above technical solution:
The top of the extrusion spring is fixedly connected to the inside of the hollow column, and the outside of the compression column is slidingly connected to the inside of the hollow column;
as a further description of the above technical solution:
The right part of one support column is fixedly connected to the left side of the working block, and the outer part of the spring sleeve is rotationally connected to the top of the second rotating block;
as a further description of the above technical solution:
The outer part of the sliding block slides in the first T-shaped groove, and the outer part of the clamping column slides in the second T-shaped groove;
as a further description of the above technical solution:
The top of the first reversing block is connected to the bottom of the sliding block in a sliding way, and the top of the second reversing block is connected to the bottom of the sliding block in a sliding way;
as a further description of the above technical solution:
the outer parts of the rotating columns are rotatably connected to the inner parts of the two supporting blocks, and the right side of the platform plate is fixedly connected to the left side of one supporting column;
as a further description of the above technical solution:
the bottom of the second rotating block is connected to the top of the sliding block in a sliding mode, and the grinding ball is spherical.
The utility model has the following beneficial effects:
1. In the utility model, the gear drives the rotating column to rotate, the connected connecting column rotates immediately, and when the rotating column rotates, the rotating ball is movably connected with the rotating block I on the hollow column, so that the hollow column rotates 180 degrees and moves up and down, and the edges of the core material on the workbench can be polished.
2. According to the utility model, the first electric guide rail is started to drive the sliding block to move left and right, the second electric guide rail drives the clamping block to move back and forth, when the sliding block moves right, the first reversing block is blocked by the clamping block and rotates clockwise by 90 degrees to enter the clamping column, at the moment, the sliding block moves right to left, the clamping block also moves back and forth, the second reversing block is blocked by the clamping block and rotates clockwise by 90 degrees, and at the moment, the core material adsorbed by the sucking disc completes 180-degree rotation overturning.
Drawings
FIG. 1 is a schematic perspective view of an edging device for a core material of a color steel sandwich panel according to the utility model;
fig. 2 is a schematic structural diagram of a hollow column of the color steel sandwich panel core material edging device provided by the utility model;
FIG. 3 is a schematic diagram of a spring housing of the color steel sandwich panel core edging device according to the present utility model;
fig. 4 is a schematic structural diagram of a sucker of the color steel sandwich plate core material edging device provided by the utility model;
Fig. 5 is a schematic structural view of an extrusion spring of the color steel sandwich panel core edging device provided by the utility model.
Legend description:
1. The device comprises a platform plate, a supporting block, a first gear, a second rotating column, a 5 connecting column, a 6 rotating ball, a 7 rotating block, a first 8 hollow column, a 9 workbench, a 10 supporting table, a 11 supporting column, a 12 electric guide rail, a first 13T-shaped groove, a 14 sliding block, a 15 sleeve column, a 16 spring sleeve, a 17 blocking column, a 18 telescopic column, a 19 rotating block, a second 20 electric guide rail, a 21T-shaped groove, a 22 clamping column, a 23 clamping block, a 24 reversing block, a 25 reversing block, a second 26 sucker, a 27 compressing column, a 28 pressing spring, a 29, a working block, a30 grinding ball, a 31 motor, a 32 gear and a second gear.
Detailed Description
The following description of the embodiments of the present utility model will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present utility model, but not all embodiments. All other embodiments, which can be made by those skilled in the art based on the embodiments of the utility model without making any inventive effort, are intended to be within the scope of the utility model.
Referring to fig. 1, 2 and 5, the edge grinding device for the core material of the steel sandwich plate provided by the utility model comprises a platform plate 1, wherein the platform plate 1 is designed to serve as a bearing driving source, the top of the platform plate 1 is fixedly connected with two supporting blocks 2, the supporting blocks 2 are designed to serve as supporting and fixing driving sources, the top of the platform plate 1 is fixedly connected with a motor 31, the motor 31 is designed to serve as a driving source, the driving end of the motor 31 is fixedly connected with a gear II 32, the gear II 32 is designed to serve as transmission power, the top of the platform plate 1 is fixedly connected with a compression column 27, the compression column 27 is designed to serve as a clamping spring for transmitting pressure to adapt to different thicknesses, the top of the compression column 27 is fixedly connected with a compression spring 28, the compression spring 28 is designed to serve as elastic buffer, the inner sides of the two supporting blocks 2 are rotatably connected with a gear I3, the gear I3 is designed to serve as power, the inner rotary column 4 is designed to serve as transmission gear I3, the left side of the rotary column 4 is fixedly connected with a connecting column 5, and the connecting column 5 is designed to serve as a core plate for transmitting power.
The outside fixedly connected with ball 6 of spliced pole 5, the here design ball 6 is as nimble operation transmission rotation power in different angles and the direction, the outside rotation of ball 6 is connected with rotating block one 7, the here design rotating block one 7 is as the motion of stable ball 6, the outside fixedly connected with hollow post 8 of rotating block one 7, the here design hollow post 8 needs to have sufficient intensity and stability, the top fixedly connected with workstation 9 of hollow post 8, the here design workstation 9 is as providing the platform for edging operation, the outside sliding connection of workstation 9 has brace table 10, the here design brace table 10 is as providing the space for edging material, the top fixedly connected with workstation 29 of brace table 10, the here design workstation 29 is as ensureing high-efficient operation, the right side fixedly connected with grinding ball 30 of workstation 29, the here design ball 30 is as the key part that directly contacts and carries out the grinding with the battenboard edge, the outside fixedly connected with of brace table 10 will core material carries out the upset subassembly.
Referring to fig. 1, fig. 3 and fig. 4, the turnover assembly includes two support columns 11, where the support columns 11 are designed as bearing assemblies, an electric guide rail one 12 is fixedly connected to the inner side of the support columns 11, where the electric guide rail one 12 is designed as a movement driving assembly, a T-shaped slot one 13 is formed in the electric guide rail one 12, where the T-shaped slot one 13 is designed as a movement path, a sliding block 14 is slidably connected to the inner side of the electric guide rail one 12, where the sliding block 14 is designed as a bearing assembly, a sleeve 15 is fixedly connected to the top of the sliding block 14, where the sleeve 15 is designed to have good stability and wear resistance so as to ensure that loosening or wear cannot occur during long-term use, two blocking columns 17 are fixedly connected to the top of the sliding block 14, where the blocking columns 17 are designed as a rotation limiting track, and a telescopic column 18 is fixedly connected to the inner side of the sliding block 14, where the telescopic column 18 is designed as a driving core material to move.
The outer fixedly connected with the rotating block II 19 of telescopic column 18, design the rotating block II 19 here is as guaranteeing the stationarity and the precision of rotation, the outside fixedly connected with spring housing 16 of cover post 15, design spring housing 16 here is as providing buffering and support, restraint telescopic column 18's rotation, electric guide rail II 20 of bottom fixedly connected with of electric guide rail I12, design electric guide rail II 20 is as removing the actuating assembly, T-shaped groove II 21 has been seted up to electric guide rail II 20's inside, design T-shaped groove II 21 is as the removal route, electric guide rail II's inside sliding connection has screens post 22, design screens post 22 is as restricting the scope in the upset process here, the outside fixedly connected with two screens piece 23 of screens post 22, design screens post 22 need consider its size and shape, avoid switching-over piece 24 and the inside of screens post 22, telescopic column 18's outside fixedly connected with switching-over piece 24 here, design switching-over piece 24 is as driving telescopic column 18 rotation 90 degrees, telescopic column 18's outside fixedly connected with two screens 25 are as driving the telescopic column 18, design is that the telescopic column 26 is as sucking disc 18 rotates, the telescopic column 26 is as sucking disc is designed for sucking disc 18.
When the edge angle of the core material needs to be polished, the motor 31 starts to drive the gear II to rotate, so that the gear I3 drives the rotating column 4 to rotate, the connected connecting column 5 rotates to drive the rotating ball 6 movably connected with the rotating block I7 and arranged on the connecting column 5 to rotate, high-efficiency power transmission is ensured, unbalance phenomenon in high-speed rotation is avoided, abrasion can be reduced due to movable connection design, the service life of equipment is prolonged, the hollow column 8 is controlled to rotate by 180 degrees and move up and down, the extrusion spring 28 in the hollow column 8 is connected with the rotating block I7 and the workbench 9 to store and release energy, buffering is provided for the edging process, and the edges on one side of the core material on the workbench 9 are polished by the polishing balls 30.
When the core material needs to be overturned, the telescopic column 18 controls the sucker 26 to absorb the core material, the electric guide rail I12 drives the sliding block 14 to move rightwards, the electric guide rail II 20 drives the clamping column 22 to move backwards, the reversing block I24 rotates 90 degrees clockwise to enter the clamping column 22 under the blocking of the clamping block 23 before the telescopic column 18 enters the clamping column 22, when the electric guide rail I12 drives the sliding block 14 to move leftwards, the electric guide rail II 20 drives the clamping column 22 to move forwards, the reversing block II 25 rotates 90 degrees clockwise to leave the clamping column 22 under the blocking of the clamping block 23 before the telescopic column 18 leaves the clamping column 22, the reversing block I24 and the reversing block II 25 drive the telescopic column 18 to rotate 180 degrees at the moment, and the lifting of the sucker 26 is controlled through telescopic movement of the core material absorbed by the sucker 26, so that the core material is absorbed or released.
It should be noted that the foregoing description is only a preferred embodiment of the present utility model, and although the present utility model has been described in detail with reference to the foregoing embodiments, it should be understood that modifications, equivalents, improvements and modifications to the technical solution described in the foregoing embodiments may occur to those skilled in the art, and all modifications, equivalents, and improvements are intended to be included within the spirit and principle of the present utility model.