Disclosure of utility model
In order to make up for the defects, the utility model provides a perforating machine for repairing water leakage of a lobster culture ridge.
The technical scheme of the utility model is as follows:
a perforating machine for repairing water leakage of a lobster culture ridge, comprising:
The frame, the frame includes the installing support, installing support outside slidable mounting has bearing structure, be equipped with drive assembly in the installing support, drive assembly includes the power supply, the power supply is connected with the subassembly that punches through flexible transmission structure, the subassembly that punches includes control structure, the drill bit is installed in the rotation of control structure bottom, the drill bit is connected with flexible transmission structure, the power supply can drive the drill bit through flexible transmission structure and rotate, control structure is used for controlling the drill bit angle.
Preferably, the mounting bracket comprises a plurality of upright posts, guard plates are arranged at the upper end and the lower end of each upright post, and a plurality of movable wheels are arranged on the bottom surface of each guard plate below.
Preferably, the support structure comprises a sliding sleeve, the sliding sleeve is slidably mounted outside the upright post, and the side surface of the sliding sleeve is provided with a support rod through limited rotation of a rotating frame.
Preferably, a locking piece is arranged at the side surface of the sliding sleeve and symmetrical to the rotating frame, and the locking piece is used for limiting the sliding of the sliding sleeve.
Preferably, the drive assembly further comprises an energy supply assembly for providing the power source with the energy required for operation.
Preferably, the control structure comprises a mounting frame, a transmission shaft is rotatably arranged in the center of the mounting frame, the top of the transmission shaft is connected with the flexible transmission structure, and the drill bit is clamped and mounted at the bottom of the transmission shaft.
Preferably, the handles are symmetrically arranged on two sides of the top surface of the mounting frame.
Compared with the prior art, the utility model has the beneficial effects that:
The flexible transmission structure is used for connecting the power source and the punching assembly, so that the driving assembly and the punching assembly are separated, the change of the angle of the drill bit does not affect the power source, the drilling is convenient to achieve near water surface, the support rod is propped against the ground by reducing the height of the sliding sleeve, the movement of the frame in the process of punching is avoided, the angle of the drill bit can be conveniently controlled by arranging the control structure, the punching is convenient, and holes with different diameters can be drilled by replacing different types of drill bits.
Drawings
FIG. 1 is a schematic diagram of the overall structure of the present utility model;
FIG. 2 is a schematic view of the structure of the frame and the driving assembly according to the present utility model;
FIG. 3 is a schematic view of a support rod according to the present utility model;
Fig. 4 is a schematic structural diagram of a punching assembly according to the present utility model.
The meaning of each reference numeral in the figures is:
1. The device comprises a rack, 11, a guard board, 12, upright posts, 13, a movable wheel, 14, a sliding sleeve, 15, a rotating frame, 16, a supporting rod, 17, a clamping block, 18 and a locking piece;
2. A drive assembly; 21 parts of energy supply components, 22 parts of power sources, 23 parts of flexible shafts, 24 parts of limiting brackets, 25 parts of fixing plates;
3. 31 parts of punching assembly, 31 parts of mounting frame, 32 parts of handle, 33 parts of transmission shaft, 34 parts of drill bit, 35 parts of rotating shaft, 36 parts of limit sleeve.
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.
Example 1:
Referring to fig. 1-4, the present utility model is described in detail by the following embodiments:
a perforating machine for repairing water leakage of a lobster culture ridge, comprising:
The frame 1, frame 1 includes the installing support, and installing support outside slidable mounting has bearing structure, is equipped with drive assembly 2 in the installing support, and drive assembly 2 includes power supply 22, and power supply 22 is connected with punching assembly 3 through flexible transmission structure, and punching assembly 3 includes control structure, and control structure bottom rotates installs drill bit 34, and drill bit 34 is connected with flexible transmission structure, and power supply 22 can drive drill bit 34 rotation through flexible transmission structure, and control structure is used for controlling drill bit 34 angle.
The installing support includes a plurality of stand 12, and stand 12 upper and lower both ends are equipped with backplate 11, and the below backplate 11 bottom surface is equipped with a plurality of removal wheels 13.
The moving wheel 13 can be a universal wheel for the whole movement of the punch.
The punch assembly 3 may be placed on top of the upper guard plate 11.
The support structure comprises a sliding sleeve 14, the sliding sleeve 14 is slidably arranged outside the upright post 12, and a support rod 16 is arranged on the side surface of the sliding sleeve 14 in a limited rotation mode through a rotating frame 15.
The top of the support rod 16 is welded with a clamping block 17, the axis of the clamping block 17 is perpendicular to the rotating shaft of the support rod 16, and an included angle exists between the axis of the clamping block 17 and the axis of the support rod 16.
After the support rod 16 rotates upwards to a certain angle, the clamping block 17 abuts against the rotating frame 15, so that the support rod 16 is prevented from continuing to rotate upwards, and the maximum angle of the upward rotation of the support rod 16 is equal to the included angle between the axis of the clamping block 17 and the axis of the support rod 16.
A locking piece 18 is arranged at the side surface of the sliding sleeve 14 and symmetrical to the rotating frame 15, and the locking piece 18 is used for limiting the sliding of the sliding sleeve 14.
The locking piece 18 can be a position-adjustable fastening handle, the screw rod of the handle is in threaded connection with the sliding sleeve 14, the screw rod end of the handle penetrates through the sliding sleeve 14 and props against the upright post 12, and the distance between the screw rod top end of the handle and the upright post 12 can be changed by rotating the locking piece 18, so that the sliding sleeve 14 is locked or released
The drive assembly 2 further comprises an energy supply assembly 21, the energy supply assembly 21 being adapted to provide the power source 22 with the energy required for operation.
The energy supply assembly 21 may be a battery, the energy supply assembly 21 is connected to the power source 22 through a wire, and the power source 22 is a well-known motor.
The shield 11 can shield the power source 22 from above and below.
The control structure comprises a mounting frame 31, a transmission shaft 33 is rotatably arranged in the center of the mounting frame 31, the top of the transmission shaft 33 is connected with the flexible transmission structure, and a drill bit 34 is clamped and mounted at the bottom of the transmission shaft 33.
The flexible transmission structure comprises a flexible shaft 23, and the head of the flexible shaft 23 is clamped with the output shaft of the power source 22. The tail of the flexible shaft 23 is fixedly connected with the transmission shaft 33.
When the power source 22 works, the flexible shaft 23 can drive the transmission shaft 33 to rotate, so as to drive the drill bit 34 to rotate
A limiting bracket 24 is arranged below the head of the flexible shaft 23, the limiting bracket 24 is fixedly arranged on the top surface of the guard plate 11 below through screws, and the limiting bracket 24 is used for lifting the head of the flexible shaft 23.
The fixed plate 25 is fixedly arranged above the limiting support 24 through a screw, and the fixed plate 25 is matched with the limiting support 24 to wrap the head of the flexible shaft 23, so that the head is prevented from swinging when the flexible shaft 23 works.
The two sides of the top surface of the mounting frame 31 are symmetrically welded with grips 32.
The front side of the mounting frame 31 and between the grips 32 is rotatably provided with a limit sleeve 36 through a rotating shaft 35, the tail of the flexible shaft 23 passes through the limit sleeve 36 to be connected with the transmission shaft 33, and the limit sleeve 36 is used for preventing the tail from swinging when the flexible shaft 23 works.
The grip 32 is for an operator to grasp to control the angle and attitude of the drill bit 34.
When the operator uses the device, the moving wheel 13 is used to move the punching machine to the position where punching is needed.
After the locking piece 18 is unlocked in place, the sliding sleeve 14 is driven to slide downwards, the supporting rod 16 is controlled to rotate outwards until the bottom end of the supporting rod 16 abuts against the ground, and then the sliding sleeve 14 is continuously fixed by the locking piece 18.
According to the required drilling size, drill bits 34 with different specifications are selected, and the drill bits 34 are fixedly arranged at the bottom of the transmission shaft 33.
And then the tail part of the flexible shaft 23 passes through the limit sleeve 36 and is fixedly connected with the head part of the transmission shaft 33.
The position and posture of the drill 34 are adjusted by the grip 32 and the mounting frame 31, and the end of the drill 34 is aligned with the shrimp hole.
The power source 22 is controlled to work, and the power source 22 drives the transmission shaft 33 to rotate through the flexible shaft 23, so that the drill bit 34 is driven to rotate, and perforation is started.
The angle of the drill bit 34 may be controlled during the drilling process using the grip 32 and the mounting 31.
The foregoing has shown and described the basic principles, principal features and advantages of the utility model. It will be understood by those skilled in the art that the present utility model is not limited to the above-described embodiments, and that the above-described embodiments and descriptions are only preferred embodiments of the present utility model, and are not intended to limit the utility model, and that various changes and modifications may be made therein without departing from the spirit and scope of the utility model as claimed. The scope of the utility model is defined by the appended claims and equivalents thereof.