High-precision flame-retardant foam cutting machine
Technical Field
The utility model relates to the field of cutting equipment, in particular to a high-precision flame-retardant foam cotton cutting machine.
Background
The automobile high-precision flame-retardant foam cotton has excellent flame retardant property, can effectively prevent flame from spreading, reduces fire risk, has good damping and sound insulation effects, can reduce engine noise and in-automobile noise, improves riding comfort, needs to be cut according to the use size requirement in the production and processing process, and is pushed to be cut when being cut, in order to avoid deviation of the automobile high-precision flame-retardant foaming cotton in the cutting process, the automobile high-precision flame-retardant foaming cotton can be limited, and because the automobile high-precision flame-retardant foaming cotton has certain flexibility, the automobile high-precision flame-retardant foaming cotton is easy to bulge and uneven after being pushed below a cutting knife, workers are required to drag the front end and the rear end of the automobile high-precision flame-retardant foaming cotton, so that the automobile high-precision flame-retardant foaming cotton is leveled and then cut, and the operation process is more laborious;
Therefore, it is necessary to provide a high-precision flame-retardant foam cotton cutter.
Disclosure of utility model
The utility model aims to provide a high-precision flame-retardant foaming cotton cutting machine so as to solve the problems in the background technology.
In order to achieve the above purpose, the present utility model provides the following technical solutions:
The high-precision flame-retardant foam cotton cutting machine comprises a cutting table, a cutting groove is formed in the top of the cutting table, a cutting mechanism is arranged on the top of the cutting table and can cut high-precision flame-retardant foam cotton, and a limiting mechanism is arranged on the top of the cutting table and can limit the high-precision flame-retardant foam cotton before cutting.
Preferably, the cutting mechanism comprises a first support, the first support is mounted at the top of the cutting table, a guide groove is formed in the top of the first support, a first screw is mounted on the inner side of the first support in a rotating mode, a first motor is mounted at one end of the first support, and the output end of the first motor is connected with the first screw.
Preferably, the movable seat is installed on the first screw in a threaded manner, the top of the movable seat is provided with the sliding plate through the bolt, the sliding plate is arranged in the guide groove in a sliding manner, and the bottom of the movable seat is provided with the blade through the bolt.
Preferably, the limiting mechanism comprises a first supporting plate, the first supporting plate is arranged at one side end of the cutting table, a second screw rod is rotatably arranged on the inner side of the first supporting plate, a second motor is further arranged on the first supporting plate, and the output end of the second motor is connected with the second screw rod.
Preferably, a second supporting plate is arranged at the other side end of the cutting table, a guide rod is arranged at the inner side of the second supporting plate, a first limiting plate is arranged on the guide rod in a sliding mode, and the other end of the first limiting plate is connected with a second screw rod in a threaded mode.
Preferably, a third supporting plate is fixedly arranged at the top of the first limiting plate, a first hydraulic rod is arranged at the top of the third supporting plate, and the output end of the first hydraulic rod is connected with the second limiting plate.
Preferably, a second bracket is further installed at the top of the cutting table, a second hydraulic rod is installed at the top of the second bracket, and the output end of the second hydraulic rod is connected with a third bracket.
Preferably, the inner side of the third bracket is rotatably provided with a supporting roller, the outer wall of the supporting roller is uniformly provided with a rubber plate, one end of the third bracket is provided with a third motor, and the output end of the third motor is connected with the supporting roller.
Additional aspects and advantages of the utility model will be set forth in part in the description which follows, and in part will be obvious from the description, or may be learned by practice of the utility model.
The beneficial effects are that:
Through setting up first limiting plate and second limiting plate respectively on the fire-retardant foaming cotton cutting bench of high accuracy, carry out spacingly to the front end of fire-retardant foaming cotton of high accuracy, stir the fire-retardant foaming cotton of high accuracy backward by highly adjustable rubber slab again, make the fire-retardant foaming cotton of high accuracy shakeout before the cutting, not only can carry out spacing cutting to the fire-retardant foaming cotton of high accuracy, still promote the fire-retardant foaming cotton shakeout cutting efficiency of high accuracy.
Drawings
FIG. 1 is a side view of a high precision flame retardant foam cutting machine;
FIG. 2 is a block diagram of a high precision flame retardant foam cotton cutter;
FIG. 3 is a schematic view of the installation of a rubber plate in a high-precision flame-retardant foam cotton cutter;
fig. 4 is a schematic diagram of the connection of the movable seat in the high-precision flame-retardant foam cotton cutting machine.
In the figure, 1, a cutting table; 11, a cutting groove, 2, a cutting mechanism, 21, a first bracket, 22, a guide groove, 23, a first motor, 24, a first screw, 25, a movable seat, 26, a sliding plate, 27, a blade, 3, a limiting mechanism, 31, a first supporting plate, 311, a second screw, 312, a second motor, 32, a second supporting plate, 321, a guide rod, 33, a first limiting plate, 34, a third supporting plate, 341, a first hydraulic rod, 342, a second limiting plate, 35, a second bracket, 36, a second hydraulic rod, 361, a third bracket, 37, a supporting roller, 371, a rubber plate, 372 and a third motor.
Detailed Description
Embodiments of the present utility model are described in detail below, examples of which are illustrated in the accompanying drawings, wherein like or similar reference numerals refer to like or similar elements or elements having like or similar functions throughout. The embodiments described below by referring to the drawings are illustrative only and are not to be construed as limiting the utility model.
As in fig. 1-4;
The high-precision flame-retardant foam cotton cutting machine comprises a cutting table 1, wherein the cutting table 1 is used for supporting high-precision flame-retardant foam cotton to cut, a cutting groove 11 is formed in the top of the cutting table 1, a blade is convenient to move in the cutting groove 11, a cutting mechanism 2 is arranged on the top of the cutting table 1, and the cutting mechanism 2 can cut the high-precision flame-retardant foam cotton;
Further, the cutting mechanism 2 comprises a first bracket 21, the first bracket 21 is arranged at the top of the cutting table 1, the first bracket 21 is used for supporting and installing a first screw 24 and a first motor 23, a guide groove 22 is formed in the top of the first bracket 21, the guide groove 22 is used for guiding and sliding the slide plate 26, the first screw 24 is rotatably arranged at the inner side of the first bracket 21, the first screw 24 is rotated to drive a movable seat 25 to horizontally move, one end of the first bracket 21 is provided with the first motor 23, the output end of the first motor 23 is connected with the first screw 24, the first motor 23 is used for driving the first screw 24 to rotate, a movable seat 25 is threadedly arranged on the first screw 24 to move, the movable seat 25 is driven to move, the movable seat 25 is guided and moved through the slide plate 26, the top of the movable seat 25 is installed on the slide plate 26 through a bolt, the slide plate 26 is slidably arranged in the guide groove 22, the bottom of the movable seat 25 is installed on the slide plate 27 through the bolt, the bottom of the slide plate 27 is inserted into the cutting groove 11 and slides in the cutting groove 11, and moves through the blade 27, and the high-precision flame-retardant foam cutting table 1 is cut;
Further, the limit mechanism 3 comprises a first supporting plate 31, the first supporting plate 31 is installed at one side end of the cutting table 1, the first supporting plate 31 is used for supporting and installing a second screw 311 and a second motor 312, the second screw 311 is rotatably installed at the inner side of the first supporting plate 31, the second motor 312 is a speed reducing motor, the second motor 312 drives the second screw 311 to rotate, the second screw 311 drives the first limit plate 33 to move, the output end of the second motor 312 is connected with the second screw 311, the second supporting plate 32 is installed at the other side end of the cutting table 1, the second supporting plate 32 is used for supporting and installing a guide rod 321, the guide rod 321 is used for guiding and moving the first limit plate 33, the first limit plate 33 is slidably installed on the guide rod 321, the position of the first limit plate 33 is adjusted, therefore, the high-precision flame-retardant foam cotton is limited, the distance between the blade 27 and the first limit plate 33 is measured in advance, the front end of the high-precision flame-retardant foam cotton is abutted against the first limit plate 33 to limit the first limit plate 33, the high-precision flame-retardant foam cotton is guaranteed to be limited, the other end of the high-precision flame-retardant foam cotton is enabled to be connected with the first limit plate 33, the second support plate is used for supporting and the first limit plate is used for supporting and fixing the first limit plate 33, the top of the first limit plate is connected with the second limit plate 341 through a third supporting plate 34, the first limit plate 34, and the second limit plate is used for supporting and a third limit plate 34 is fixedly arranged at the top limit plate 341, and is connected with the first limit plate, and a limit plate 341 is used for limiting and a third limit plate, and is used for limiting and a limit rod, and has a limit rod, and a limit device;
Further, the second support 35 is further installed at the top of the cutting table 1, the second support 35 is used for supporting and installing the second hydraulic rod 36, as shown in fig. 1, one end of the second support 35 is provided with a switch electric cabinet, electric components in the device are electrically connected respectively, and control start and stop are performed on the electric components, the second hydraulic rod 36 is installed at the top of the second support 35, the second hydraulic rod 36 is used for driving the third support 361 to lift, the output end of the second hydraulic rod 36 is connected with the third support 361, the third support 361 is used for supporting and lifting the rubber plate 371, the supporting roller 37 is installed in a rotating mode on the inner side of the third support 361, the supporting roller 37 rotates and drives the rubber plate 371 to rotate, the rubber plate 371 is evenly installed on the outer wall of the supporting roller 37, as shown in fig. 3, four groups of rubber plates 371 are evenly installed, the rubber plate 371 is stirred backwards through the rubber plate 371, the high-precision flame-retardant foam is flattened before cutting, then the third motor 372 is driven to rotate to be shown in fig. 3, the two groups of rubber plates 371 are used for limiting the high-precision flame-retardant foam, finally the high-speed-retardant foam is reduced, the output by the motor 361 is connected with the third motor 372, and finally the third motor 372 is connected with the third motor 37, and the third end of the third motor 372 is connected with the third end 37.
The working principle of the utility model is as follows: the second motor 312 drives the second screw 311 to rotate to drive the first limiting plate 33 to move to the adjusting position, a measuring tool is used to measure the distance between the first limiting plate 33 and the blade 27, the first limiting plate 33 is moved to the required distance, high-precision flame-retardant foam is placed on the cutting table 1, the high-precision flame-retardant foam is pushed, the front end of the high-precision flame-retardant foam is propped against the first limiting plate 33 to limit the cutting precision of the high-precision flame-retardant foam, the first hydraulic rod 341 pushes down the second limiting plate 342 to press the front end of the high-precision flame-retardant foam through the second limiting plate 342, the third motor 372 drives the supporting roller 37 and the rubber plate 371 to rotate, the second hydraulic rod 36 pushes down the third bracket 361 to enable the rubber plate 371 to descend to adjust the height, the high-precision flame-retardant foam is stirred backwards through the rubber plate 371 to be flattened before cutting, then the third motor 372 drives the rubber plate 371 to rotate to be shown in fig. 3, the two groups of rubber plates 371 lower the high-precision flame-retardant foam is pushed down by the high-retardant foam motor to ensure the cutting precision, finally the first hydraulic rod 341 pushes down to limit the front end of the high-precision flame-retardant foam, the first hydraulic rod 23 drives the first hydraulic rod 24 to drive the first hydraulic rod 24 to move to the blade 25 to move to the sliding seat 25, the sliding seat 25 moves to the sliding seat 25, and the sliding seat 25 moves the sliding seat 25 to the sliding seat 25, and the third motor is arranged in the sliding seat 25, and the sliding seat 25 moves the sliding seat 25.
Although the utility model has been described hereinabove with reference to embodiments, various modifications thereof may be made and equivalents may be substituted for elements thereof without departing from the scope of the utility model. In particular, the features of the disclosed embodiments may be combined with each other in any manner as long as there is no structural conflict, and the exhaustive description of these combinations is not given in this specification merely for the sake of omitting the descriptions and saving resources. Therefore, it is intended that the utility model not be limited to the particular embodiment disclosed, but that the utility model will include all embodiments falling within the scope of the appended claims.