Timber polishing equipment
Technical Field
The utility model relates to the technical field of wood door production and processing, in particular to wood door polishing equipment.
Background
In the current wooden door manufacturing industry, the wooden door surface treatment process, particularly the polishing process, is one of the key links for determining the quality of the final product. The wooden door polishing device is a mechanical device which is specially used for polishing and polishing the surface of the wooden door.
At present, a series of limitations and efficiency bottlenecks exist in operation on wood door polishing equipment on the market, the polishing equipment requires operators to manually put the wood doors to the entrance of the equipment one by one before operation, this process not only consumes manpower, and higher requirements are put forward on the physical strength and accuracy of the operators, the wood doors are put to the entrance of the equipment, the wood doors are conveyed into the equipment by a conveying mechanism in the polishing equipment for polishing and grinding, after polishing and grinding are completed, the wood doors are pushed out from the exit of the polishing equipment, the next wood door is put in order at the entrance of the polishing equipment again manually, the feeding interval time of the wood door is controlled manually, the accurate control is often difficult, the unstable feeding rhythm can lead to the low working efficiency of the polishing equipment, because the equipment can be in an idle state in some time periods, the production efficiency of the whole polishing procedure is seriously influenced by the unbalanced production rhythm, and the whole process of wood door processing is dragged slowly.
Thus, the first and second substrates are bonded together, the application provides wood door polishing equipment for solving the technical problems.
Disclosure of utility model
Aiming at the defects of the prior art, the utility model aims to provide wood door polishing equipment.
The wooden door polishing device comprises a base, wherein a servo motor for providing a power source is arranged on the outer side wall of the base, a square block is fixedly connected to the inner side wall of the base, a rotating shaft penetrates through the square block, one end of the rotating shaft is fixedly connected with a first block, the power output end of the servo motor is connected with the power input end of the rotating shaft, the first block is sleeved on the outer side wall of the first rod, one end of the first block is connected with a spring, the spring is sleeved on the outer side wall of the first rod, the other end of the spring is connected with a rectangular plate, the rectangular plate is rotationally connected with a second block, the second block is sleeved on the outer side wall of the second rod, one end of the second rod is fixedly connected with a circular ring, the circular ring is sleeved on a long rod, two ends of the long rod are fixedly connected to the inner side wall of the base, automatic feeding of the wooden door polishing device is achieved, wooden doors are orderly placed at an inlet of a polishing machine one by one, and manpower consumption is avoided.
Preferably, the second block is fixedly connected with a folded plate, and the surface of the folded plate is fixedly connected with two cylinders for pushing out the wooden door from the storage rack.
Preferably, the connection point of the square block fixedly connected to the inner side wall of the base passes through the central axis of the inner side wall, and the length of the first rod is greater than half of the length of the long rod.
Preferably, a first opening is formed in one side, close to the conveyor belt, of the base, a storage rack used for storing a plurality of wooden doors is arranged on the base, a bottom opening is formed in the bottom of the storage rack, and two side openings are formed in two sides of the storage rack.
Preferably, the height of the side port is greater than the thickness of one wood door and less than the thickness of two wood doors, so that only one wood door can be pushed out of the side port onto the conveyor belt at a time.
Preferably, one side of base is provided with the conveyer belt that is used for carrying the timber that is released from the side opening, be provided with the burnishing machine that is used for polishing the timber of polishing on the conveyer belt, the exit of burnishing machine is provided with the brush that is used for sweeping away the dust that produces when polishing on the timber, has realized the polishing of timber.
Compared with the prior art, the utility model has the following beneficial effects:
1. According to the utility model, the first round block is rotated clockwise by the rotary shaft, the first rod is rotated clockwise, the second round block moves upwards on the second rod, the height of the round plate reaches the horizontal height of the bottommost wood plate in the storage rack, the round ring moves on the long rod towards the direction close to the first opening, the two round plates push the bottommost wood plate in the storage rack onto the conveying belt in order, and the wood plate is conveyed into the equipment for polishing and grinding, so that the technical effect of automatic feeding of the wood door polishing equipment is realized, and the problems that in the prior art, operators are required to place the wood doors at the inlet of the equipment one by one in order manually before operation of the polishing equipment are solved, the process consumes labor, and high requirements are put forward on the physical strength and accuracy of the operators.
2. According to the utility model, the rotating speed of the servo motor is set according to the polishing time of each wooden door in the polishing machine, the speed of pushing the wooden doors to the conveyor belt by two cylinders can be accurately controlled, and the technical effect of accurately controlling the feeding interval time of the wooden doors is achieved, so that the problems that in the prior art, the wooden doors are placed at the entrance of equipment, are conveyed into the equipment by the conveying mechanism in the polishing equipment to be polished and polished, after polishing and polishing are finished, the wooden doors are pushed out from the exit of the polishing equipment, the next wooden door is placed at the entrance of the polishing equipment in order by manpower, the feeding interval time of the wooden doors is controlled manually, the accurate control is difficult, the working efficiency of the polishing equipment is low due to the fact that the equipment is in an idle state in some time periods, the production efficiency of the whole polishing procedure is seriously influenced by the unbalanced production rhythm, and the whole process of wooden door processing is further slowed down are solved.
Drawings
The accompanying drawings, which are included to provide a further understanding of the utility model and are incorporated in and constitute a part of this specification, illustrate embodiments of the utility model and together with the description serve to explain the utility model and do not constitute a limitation on the utility model. In the drawings:
FIG. 1 is a schematic view of the overall structure of the present utility model;
FIG. 2 is a schematic diagram of a first block in the present utility model;
FIG. 3 is a schematic view of a storage rack according to the present utility model;
fig. 4 is a schematic structural view of a cylinder in the present utility model.
1. A base; 2, a servo motor, 3, a square block, 4, a first block, 5, a first rod, 6, a spring, 7, a right angle plate, 8, a second block, 9, a second rod, 10, a circular ring, 11, a long rod, 12, a folded plate, 13, a cylinder, 14, a first opening, 15, a storage rack, 16, a bottom opening, 17, a side opening, 18, a conveyor belt, 19, a polishing machine, 20 and a brush.
Detailed Description
As shown in fig. 1-4, the utility model provides a wooden door polishing device, which comprises a base 1, wherein a servo motor 2 for providing a power source is arranged on the outer side wall of the base 1, a square block 3 is fixedly connected on the inner side wall of the base 1, a rotating shaft penetrates through the square block 3, one end of the rotating shaft is fixedly connected with a first block 4, the power output end of the servo motor 2 is connected with the power input end of the rotating shaft, the first block 4 is sleeved on the outer side wall of a first rod 5, one end of the first block 4 is connected with one end of a spring 6, the spring 6 is sleeved on the outer side wall of the first rod 5, the other end of the spring 6 is connected with a right angle plate 7, the right angle plate 7 is rotationally connected with a second block 8, the second block 8 is sleeved on the outer side wall of a second rod 9, one end of the second rod 9 is fixedly connected with a circular ring 10, the circular ring 10 is sleeved on a long rod 11, two ends of the long rod 11 are fixedly connected on the inner side wall of the base 1, automatic feeding of the polishing device is realized, wooden doors are orderly placed at the entrance of a polishing machine 19 one by one, and manpower is avoided;
The connection point of the square 3 fixedly connected to the inner side wall of the base 1 passes through the central axis of the inner side wall, and the length of the first rod 5 is longer than half of the length of the long rod 11;
a folded plate 12 is fixedly connected to the second block 8, and two cylinders 13 for pushing out the wooden doors from the storage rack 15 are fixedly connected to the surface of the folded plate 12;
A first opening 14 is formed in one side, close to the conveyor belt 18, of the base 1, a storage rack 15 for storing a plurality of wooden doors is arranged on the base 1, a bottom opening 16 is formed in the bottom of the storage rack 15, and two side openings 17 are formed in two sides of the storage rack 15;
The height of the side opening 17 is larger than the thickness of one wooden door and smaller than the thickness of two wooden doors, so that only one wooden door can be pushed out from the side opening 17 to the conveyor belt 18 each time;
One side of the base 1 is provided with a conveyor belt 18 for conveying the wooden door pushed out from the side opening 17, the conveyor belt 18 is provided with a polishing machine 19 for polishing and polishing the wooden door, and the outlet of the polishing machine 19 is provided with a brush 20 for sweeping dust generated during polishing on the wooden door, so that the wooden door is polished and polished;
According to the length of time that each timber was polished in the burnishing machine 19, set up servo motor 2's rotational speed, can accurate control two cylinders 13 push away timber to the speed on the conveyer belt 18, realize accurate technical effect of controlling the pay-off interval time of timber, thereby solve the timber that exists in the prior art and put to the entrance of burnishing machine 19, carry polishing by the transport mechanism in the polishing equipment in the burnishing machine 19, after polishing finish, the timber is pushed out from the exit of burnishing machine 19, the next timber is neatly put in the entrance of burnishing machine 19 again by the manual work, the pay-off interval time of manual control timber often is difficult to accomplish accurate accuse, unstable pay-off rhythm can lead to polishing equipment's work efficiency to be low, because equipment can be in idle state in certain period, unbalanced production rhythm seriously influences the production efficiency of whole polishing process, and then drag the problem of the whole progress of timber processing slowly;
The servo motor 2 is driven by a rotating shaft, the rotating shaft rotates the first block 4 clockwise, the first rod 5 rotates clockwise, the second block 8 moves upwards on the second rod 9, the height of a cylinder 13 on the folded plate 12 reaches the horizontal height of the bottommost wood board in the storage rack 15, the ring 10 moves on the long rod 11 towards the direction close to the first opening 14, the ring 10 moves to one end of the long rod 11 close to the first opening 14, and the two cylinders 13 push the bottommost wood board in the storage rack 15 to the conveyor belt 18 in order and convey the wood board to the polishing machine 19 for polishing;
The pivot continues clockwise rotation one number piece 4, one number pole 5 clockwise rotation, two number pieces 8 are down-shifted on two number poles 9, cylinder 13 on the folded plate 12 highly descends, ring 10 moves to the direction of keeping away from one number mouth 14 on stock 11, ring 10 moves to the one end of stock 11 keeping away from one number mouth 14, the pivot continues clockwise rotation one number piece 4, one number pole 5 clockwise rotation, two number pieces 8 upwards move on two number poles 9, cylinder 13 on folded plate 12 highly reaches the level of the plank of bottom in storage rack 15, ring 10 moves to the direction that is close to one number mouth 14 on stock 11, ring 10 moves to the one end that stock 11 is close to one number mouth 14, two cylinders 13 regularly push up a plank of the bottom in the storage rack 15 to the conveyer 18, be carried in the burnishing machine 19 and polish, the cycle is reciprocal, realize the technical effect of automatic feeding of polishing equipment, thereby the polishing equipment that exists in the prior art is the operation is more accurate to the order of putting the plank that the operation is required to the operation of order personnel one by one, the order is not put to the order of the manual requirement of the personnel, moreover, the manual labor is required to be more than the manual operation is put to the personnel.
When the servo motor 2 rotates, the power output end of the servo motor 2 can rotate to penetrate through the square 3 and is fixedly connected with the first block 4, so that a transmission shaft of the servo motor 2 rotates in the square 3 and drives the fixedly connected first block 4 to rotate along the rotation direction of the transmission shaft, and as the first rod 5 is slidingly inserted into the first block 4, the first block 4 also integrally rotates with the transversely arranged first rod 5 when the first block 4 rotates, but because the interval between bottom openings 16 at the bottom of the storage rack 15 is fixed, when the first block 4 drives the first rod 5 to rotate, and when the first rod 5 rotates to the side close to the bottom of the storage rack 15, the limit of the space between the bottom of the storage rack 15 and the first block 4 is recovered, the first rod 5 is inserted into the first block 4, so that the rotation of the first block 4 and the first rod 5 is not limited, at the moment, the first rod 5 can do telescopic circular motion, the second block 8 and the circular ring 10 can only move from left to right at the bottom of the storage rack 15 under the limiting action of the long rod 11 on the circular ring 10, the degree of shrinkage of the first rod 5 in the first block 4 is limited, the first rod 5 can slide from left to right at the bottom of the storage rack 15 while shrinking, and two cylinders 13 connected through folded plates 12 are driven to be singly pushed out from left to right at the bottom of the wooden door storage rack 15 from the bottom of the bottom opening 16;
When the first rod 5 moves in the direction away from the bottom of the storage rack, the first rod is reset from the first block 4 under the rebound action of the spring, so that the ring 10 is reset on the long rod 11 and drives the folded plate 12 and the cylinder 13 to reset, and the next pushing of the wooden door is performed;
when the rod 5 stretches out and draws back circular motion, the end of the rod 5 connected with the block 8 is also used for driving the block 8 to slide up and down on the rod 9, and the rod 9 is also used for driving the rod 5 and the block 8 to transversely and reciprocally displace the circular ring 10 on the long rod 11.
It should be noted that the rotation of the servomotor 2 is divided into two steps:
One step is to rotate 180 degrees in the clockwise direction from the left horizontal position as the starting point;
In the process, the first rod 5 stretches out of the right end of the first block 4 in the first block 4 and extrudes the spring 6 through the right angle plate 7 and the left side of the first block 4, the first rod 5 drives the second block 8 connected through the right angle plate 7 to slide on the upper end of the second rod 9 along with the second block, the circular ring 10 slides on the long rod 11 from left to right, the wooden door is discharged through the folded plate 12 and the cylinder 13, when the first rod 5 reaches the vertical position, the contraction length of the first rod 5 in the first block 4 reaches the maximum position, and the first rod 5 returns under the action of the spring when the first rod 5 continuously rotates;
The second step is to rotate 180 degrees clockwise from the right horizontal position as the starting point to reach the position of the starting point of the first step;
In the process, one end of the first rod 5 connected with the second block 8 slides from right to left, keeps consistent with the limiting effect in the first step, and is combined with the expansion and contraction in the first block 4 along with the rotation of the first rod 5, so that the second block 8 drives the circular ring 10 to slide from right to left on the surface of the long rod 11, and the reciprocating effect is realized.
The foregoing description is only a preferred embodiment of the present utility model, and is not intended to limit the utility model in any way, and those skilled in the art may easily implement the present utility model as shown in the drawings and described above, but many modifications, adaptations and variations of the present utility model using the above disclosed technical matters will be equivalent to the embodiments of the present utility model without departing from the scope of the present utility model, and meanwhile, any equivalent changes, adaptations and variations of the above embodiments according to the essential technology of the present utility model are all within the scope of the technical matters of the present utility model.