Improved hydraulic hammering device
Technical Field
The utility model relates to the technical field of foundation pit construction, in particular to an improved hydraulic hammering device.
Background
The hydraulic hammering device is a piling machine which drives piles into the ground by utilizing the power of an excavator, the self weight and the pile weight, has the advantages of small noise, no pollution, small vibration and the like compared with the traditional piling hammer, meets the environmental protection requirement, and aims at the problems that the main structure body of the hydraulic hammering device used in the foundation pit construction process at present is large in quantity, difficult to move and transfer, and is not easy to fix due to structural vibration in the hammering process, and the hammering effect is unstable.
Disclosure of utility model
The improved hydraulic hammering device solves the problems that the hydraulic hammering device used in the foundation pit construction process at present is large in main structure body quantity, difficult to move and transfer, difficult to fix due to structural vibration in the hammering process and unstable in hammering effect.
In order to achieve the above purpose, the present utility model adopts the following technical scheme:
The utility model provides a hydraulic pressure hammering device of improvement, includes the removal base, removal base below is provided with the universal wheel, be provided with the supporting shoe on the removal base, the supporting shoe is knob driven screw thread rotating structure, removal base one side is connected and is provided with the location base, the location base is electric telescopic handle driven extension structure, be provided with the locating frame on the location base, the locating frame is motor driven combination formula screw thread transmission structure.
Preferably, universal wheels are symmetrically arranged below the movable base, a fixed vertical plate is fixedly arranged on the movable base, and a hydraulic cylinder is fixedly arranged on the fixed vertical plate.
Preferably, the hammering post is fixedly arranged below the hydraulic cylinder, the hammering block is fixedly arranged at the lower end of the hammering post, the first locating plates are fixedly arranged on two sides of the movable base, and the first thread grooves are formed in the first locating plates.
Preferably, the first thread groove penetrates through the threaded column, a knob is fixedly arranged at the upper end of the threaded column, a supporting block is fixedly arranged below the threaded column, and an anti-slip pad is wrapped below the supporting block.
Preferably, the mobile base both sides are fixed and are provided with first fixed plate, first fixed plate one side is fixed and is provided with electric telescopic handle, the fixed second fixed plate that is provided with in positioning base both sides, just second fixed plate and electric telescopic handle one end fixed connection.
Preferably, universal wheels are symmetrically arranged below the positioning base, a second positioning plate is fixedly arranged on one side of the positioning base, and a second thread groove is formed in the second positioning plate.
Preferably, the motor cavity is formed in the positioning base, the sliding groove is formed in the positioning base, and the bidirectional motor is fixedly arranged in the motor cavity.
Preferably, the two ends of the bidirectional motor are fixedly provided with threaded transmission rods, the threaded transmission rods are positioned in the sliding grooves, and driving blocks are movably arranged in the sliding grooves.
Preferably, a third thread groove is formed in the driving block, and the third thread groove is in threaded running fit with the threaded transmission rod.
Preferably, one end of the driving block penetrates through the positioning base to be fixedly provided with a positioning frame, an auxiliary wheel is rotatably arranged on the positioning frame, and the auxiliary wheel and the positioning frame are matched with the hammering column.
The beneficial effects of the utility model are as follows:
1. The device is through the universal wheel that removes base below symmetry and set up, under the effect of remove base both sides knob driven screw thread normal running fit's screw thread post, cooperation screw thread post below parcel formula is provided with the supporting shoe of slipmat, is favorable to the removal and the transportation of hammering device, and the support of being convenient for its main part when setting up is fixed, has strengthened its structural flexibility, and it is more convenient to use.
2. The device is through location base and removal pedestal connection complex electric telescopic handle, under the effect of the inside motor drive's of location base locating frame mutually supporting, the auxiliary wheel that rotates the setting on the cooperation locating frame is favorable to hammering space's size adjustment, and the location constraint when being convenient for hammering device to do has strengthened its structural stability, and the result of use is showing and is promoted.
In summary, according to the utility model, through the plurality of groups of universal wheels symmetrically arranged below the moving base and the positioning base, under the action of the supporting blocks provided with the anti-slip pads and wrapped by the screw threads driven by the knob in a running fit manner, the combined constraint positioning frame driven by the screw threads driven by the bidirectional motor is matched, so that the moving and transportation of the hammering device are facilitated, the supporting and fixing of the hammering device during the erection of the hammering device are facilitated, the structural flexibility and stability of the hammering device are enhanced, and the hammering device is more convenient to use.
Drawings
FIG. 1 is a schematic diagram of the general mechanism of the present utility model.
FIG. 2 is a schematic view of a motion base mechanism according to the present utility model.
FIG. 3 is a schematic view of a positioning base mechanism according to the present utility model.
Fig. 4 is a schematic view of a positioning frame mechanism according to the present utility model.
Reference numeral 1 in the figure, moving the base; 2, a positioning base, 3, a fixed vertical plate, 4, a hydraulic cylinder, 5, a hammering column, 6, a hammering block, 7, an electric telescopic rod, 8, a universal wheel, 9, a threaded column, 10, a knob, 11, a supporting block, 12, an anti-skid pad, 13, a first fixing plate, 14, a first positioning plate, 15, a first threaded groove, 16, a second fixing plate, 17, a second positioning plate, 18, a second threaded groove, 19, a positioning frame, 20, an auxiliary wheel, 21, a bidirectional motor, 22, a threaded transmission rod, 23, a driving block, 24, a sliding groove, 25, a motor cavity, 26 and a third threaded groove.
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.
Referring to fig. 1-4, an improved hydraulic hammering device is shown, universal wheels 8 are symmetrically arranged below a moving base 1, a fixed vertical plate 3 is fixedly arranged on the moving base 1, a hydraulic oil cylinder 4 is fixedly arranged on the fixed vertical plate 3, hammering columns 5 are fixedly arranged below the hydraulic oil cylinder 4, hammering blocks 6 are fixedly arranged at the lower ends of the hammering columns 5, first positioning plates 14 are fixedly arranged at two sides of the moving base 1, first thread grooves 15 are formed in the first positioning plates 14, thread columns 9 penetrate through the first thread grooves 15, knobs 10 are fixedly arranged at the upper ends of the thread columns 9, supporting blocks 11 are fixedly arranged below the thread columns 9, anti-slip mats 12 are wrapped below the supporting blocks 11, universal wheels 8 are symmetrically arranged below the positioning base 2, second positioning plates 17 are fixedly arranged on one side of the positioning base 2, second thread grooves 18 are formed in the second positioning plates 17, under the action of the thread columns 9 which are in threaded rotation fit and are driven by the two sides of the moving base 1, supporting blocks 11 are wrapped below the supporting blocks 12 are arranged under the thread columns 9, and the supporting blocks are convenient to use and convenient to install, and the device is convenient to use.
Referring to fig. 1-3, a first fixing plate 13 is fixedly arranged at two sides of a moving base 1, an electric telescopic rod 7 is fixedly arranged at one side of the first fixing plate 13, a second fixing plate 16 is fixedly arranged at two sides of a positioning base 2, the second fixing plate 16 is fixedly connected with one end of the electric telescopic rod 7, a motor cavity 25 is formed inside the positioning base 2, a sliding groove 24 is formed inside the positioning base 2, a bidirectional motor 21 is fixedly arranged inside the motor cavity 25, threaded transmission rods 22 are fixedly arranged at two ends of the bidirectional motor 21, the threaded transmission rods 22 are located inside the sliding groove 24, a driving block 23 is movably arranged inside the sliding groove 24, a third threaded groove 26 is formed inside the driving block 23, a positioning frame 19 is fixedly arranged at one end of the driving block 23 in a penetrating manner through the positioning base 2, an auxiliary wheel 20 is rotatably arranged on the positioning frame 19, the auxiliary wheel 20 and the positioning frame 19 are matched with a column hammering 5, the electric telescopic rod 7 matched with the positioning base 1 through the connection of the positioning base 2, the auxiliary wheel 20 is matched with the hammering frame 19 under the action of the mutual matching positioning frame 19 driven by the bidirectional motor 21 inside the positioning base 2, the auxiliary wheel 20 is convenient for adjusting the size of the auxiliary device, and the size of the auxiliary device is remarkably stable in the lifting and stable.
When the hammer device is used, the hammering device is moved to a datum plane to be constructed through universal wheels 8 symmetrically arranged below the moving base 1 and the positioning base 2, further under the action of an electric telescopic rod 7 fixedly arranged between the first fixing plate 13 and the second fixing plate 16 according to the construction range of a foundation pit to be constructed, the hammering range between the moving base 1 and the positioning base 2 is adjusted to a proper size, then the knob 10 is rotated, the threaded column 9 is in threaded rotation fit with the first positioning plate 14 and the second positioning plate 17, the supporting block 11 fixedly arranged below the threaded column 9 is provided with an anti-skid pad 12 and is in contact with the ground, the purpose of structural erection of the hammering device is achieved, and then under the action of a hammering column 5 fixedly provided with a hammering block 6 at one end driven by a hydraulic cylinder 4 on the moving base 1, a positioning frame 19 provided with an auxiliary wheel 20 in a rotation manner driven by a bidirectional motor 21 is matched with the inside the positioning base 2, so that the hammering column 5 is used stably and rapidly hammering, and the purpose of foundation pit construction is achieved.
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.