CN115584716B - Portable multi-angle static pressure hammer for ramming earthen site - Google Patents

Portable multi-angle static pressure hammer for ramming earthen site Download PDF

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Publication number
CN115584716B
CN115584716B CN202211368094.9A CN202211368094A CN115584716B CN 115584716 B CN115584716 B CN 115584716B CN 202211368094 A CN202211368094 A CN 202211368094A CN 115584716 B CN115584716 B CN 115584716B
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China
Prior art keywords
static pressure
plate
rod
pressure hammer
base plate
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CN202211368094.9A
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CN115584716A (en
Inventor
李琦峰
党冰
任志翔
祁进财
徐志红
徐茂文
单文娟
喻昊
李江
党婷婷
颉军强
李宏霞
张艳
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Gansu Geology And Minerals Group Co ltd
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Gansu Geology And Minerals Group Co ltd
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    • EFIXED CONSTRUCTIONS
    • E02HYDRAULIC ENGINEERING; FOUNDATIONS; SOIL SHIFTING
    • E02DFOUNDATIONS; EXCAVATIONS; EMBANKMENTS; UNDERGROUND OR UNDERWATER STRUCTURES
    • E02D3/00Improving or preserving soil or rock, e.g. preserving permafrost soil
    • E02D3/02Improving by compacting
    • E02D3/046Improving by compacting by tamping or vibrating, e.g. with auxiliary watering of the soil

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  • Engineering & Computer Science (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Structural Engineering (AREA)
  • Agronomy & Crop Science (AREA)
  • Environmental & Geological Engineering (AREA)
  • Soil Sciences (AREA)
  • General Life Sciences & Earth Sciences (AREA)
  • Mining & Mineral Resources (AREA)
  • Paleontology (AREA)
  • Civil Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Placing Or Removing Of Piles Or Sheet Piles, Or Accessories Thereof (AREA)

Abstract

The invention discloses a portable multi-angle static pressure hammer for ramming earthen sites, which belongs to the technical field of building apparatuses and comprises a base plate, wherein a connecting plate is hinged above the base plate, a static pressure hammer is arranged on one side of the connecting plate far away from the base plate, through grooves are formed in the connecting plate in parallel, a first threaded rod is connected to the through grooves, an electric push rod is connected to the outer side of the first threaded rod, a connecting hoop is connected to one side of the electric push rod far away from the first threaded rod, and the connecting hoop is in sliding connection with the static pressure hammer. The portable multi-angle static pressure hammer for ramming the earthen site can be used for adjusting the angle of the static pressure hammer while enlarging the ramming area through the driving assembly, so that the slope is conveniently rammed in the ramming process of the earthen site, and the functionality of the device is improved.

Description

Portable multi-angle static pressure hammer for ramming earthen site
Technical Field
The invention relates to the technical field of building apparatuses, in particular to a portable multi-angle static pressure hammer for ramming earthen sites.
Background
The soil remains are ancient sites which take soil as main building materials and have historic, cultural and scientific values, the histories of the soil remains are relatively long, a large number of soil remains are damaged due to natural factors such as weathering, the soil remains need to be tamped for repairing the soil remains, so that the soil remains are tamped tightly, in the tamping process, due to the complexity of the inside of the soil remains, inclined parts such as tamped slopes are frequently formed, the manual rammer of a worker is required for performing the inclined operation for a long time, the technical requirements on the worker are extremely high, the working strength is too high, in addition, the rammer is relatively fragile due to the fact that the impact force generated in the working process is relatively large, the soil remains possibly collapse due to the fact that the impact force is too large, and due to the fact that the static pressure hammer is used for applying force to the hammer in the working process, the impact force is not generated in the tamping process, the soil remains are convenient to perform the tamping, but the soil remains are difficult to tamp due to the complexity of the soil remains and the fact that the static pressure of the inside of the soil remains is too large, the soil remains are difficult to perform the tamping operation in the market, and the large-scale soil remains are difficult to perform the heavy-down operation in the market.
Based on the above, the invention designs the portable multi-angle static pressure hammer for ramming the earthen site, so as to solve the problems.
Disclosure of Invention
The invention aims to provide a portable multi-angle static pressure hammer for ramming earthen sites, which aims to solve the problems in the background technology.
In order to solve the technical problems, the invention adopts the following technical scheme:
the utility model provides a portable earth site ramming is with multi-angle static pressure hammer, includes the base plate, the top of base plate articulates there is the connecting plate, one side that the base plate was kept away from to the connecting plate is provided with the static pressure hammer, and has parallel the division on the connecting plate, be connected with threaded rod one on the division, threaded rod one's outside is connected with electric putter, electric putter keeps away from threaded rod one's one side and is connected with the connecting hoop, connecting hoop and static pressure hammer sliding connection, the arc has all been seted up to the both sides of base plate, a plurality of spacing holes have been seted up on the arc, the inside of connecting plate is provided with buckle subassembly, buckle subassembly and spacing hole contact but not be connected, the same side that the connecting plate is located the static pressure hammer is provided with compensation subassembly, compensation subassembly is connected with static pressure hammer and arc respectively, the connecting plate is located compensation subassembly department and is connected with the mounting box.
Preferably, the buckle component comprises special-shaped grooves formed in two sides of the connecting plate, the inner cavities of the two special-shaped grooves are connected with guide wheels and fixed plates, the inner cavities of the special-shaped grooves are provided with connecting ropes, the lower ends of the connecting ropes penetrate through the fixed plates and are connected with movable plates, springs are connected between the movable plates and the fixed plates, and one side, far away from the springs, of each movable plate is connected with a convex key;
the connecting plate is characterized by further comprising a pull rod arranged at the top of the connecting plate, wherein the two ends of the pull rod extend into the special-shaped groove, and the top ends of the two connecting ropes are connected with the pull rod.
Preferably, both ends of the pull rod are connected with limiting blocks, and the pull rod is connected with two connecting ropes through the limiting blocks.
Preferably, the compensation assembly comprises two driving gears connected with the side surfaces of the connecting plates through rotating shafts, driven gears are meshed with the outer edges of the driving gears, rotating rods are connected with the side surfaces of the driven gears, connecting seats II are connected with the outer sides of the rotating rods, conical gears I are connected with the end portions of the rotating rods, conical gears II are meshed with the outer edges of the conical gears I, threaded rods II are connected with the upper portions of the conical gears II, the threaded rods II are connected with the outer sides of the connecting plates through connecting seats III, connecting pieces are connected between the two threaded rods II, sliding frames are connected onto the connecting pieces in a sliding mode, telescopic rods are fixed to the outer sides of the sliding frames, and fixing rings are fixed to the telescopic ends of the telescopic rods.
Preferably, a toothed ring is arranged on the outer side of the arc-shaped plate, and the toothed ring is meshed with the driving gear.
Preferably, the connecting plate is positioned on the same side of the static pressure hammer and is provided with a driving assembly, the driving assembly is connected with the end part of the first threaded rod, the driving assembly comprises a mounting plate arranged on the outer side of the connecting plate, a motor is connected above the mounting plate, and the output shaft of the motor is connected with a first driving wheel;
the connecting device comprises a mounting plate, and is characterized by further comprising two first connecting seats arranged below the mounting plate, a connecting rod is connected between the first connecting seats in a penetrating manner, two ends of the connecting rod are respectively connected with a first driven wheel and a second driving wheel, a belt I is sleeved between the first driven wheel and the first driving wheel, the end part of the first threaded rod is connected with a second driven wheel, and a belt II is sleeved between the second driving wheel and the second driven wheel.
Preferably, a handle is connected to a side surface of the base plate.
Preferably, a bottom plate is arranged below the base plate, travelling wheels are arranged below the bottom plate, a hydraulic rod is arranged above the bottom plate, and the telescopic end of the hydraulic rod is fixed with the bottom of the bottom plate.
Compared with the prior art, the invention has the following beneficial effects:
1) According to the invention, the driving assembly is arranged, so that when the driving assembly drives the first threaded rod to rotate, the static pressure hammer can be driven to move left and right on the connecting plate, the ramming area of the static pressure hammer is enlarged, the working efficiency of the device is further improved, the situation that a worker needs to repeatedly move the static pressure hammer is avoided, and the manpower waste is reduced.
2) According to the invention, the tamping angle of the static pressure hammer can be adjusted by arranging the arc plate, the limiting hole and the buckle assembly, so that the tamping angle of the static pressure hammer can be automatically adjusted while the tamping area of the device is further improved, the device can adapt to tamping works of different terrains, and the practicability of the device is improved.
3) According to the invention, by arranging the compensation component, the device can automatically adjust the height of the static pressure hammer when the ramming angle of the static pressure hammer 3 is adjusted, so that the distance between the static pressure hammer and the earthen site slope is controlled within a proper range, the influence on the earthen site slope caused by too close distance is avoided, and the ramming effect of the device when ramming the earthen site is improved.
4) In summary, the device can also adjust the angle of the static pressure hammer while enlarging the ramming area through the driving component, thereby being convenient for ramming the slope in the soil site ramming process and improving the functionality of the device.
Drawings
FIG. 1 is a schematic diagram of the overall structure of the present invention;
FIG. 2 is a partial cross-sectional view of the overall structure of the present invention;
FIG. 3 is an enlarged view of the structure of FIG. 2A in accordance with the present invention;
FIG. 4 is a schematic view of an arcuate plate structure of the present invention;
FIG. 5 is a partial schematic view of a connection plate structure according to the present invention;
FIG. 6 is an enlarged view of the structure of FIG. 5B in accordance with the present invention;
FIG. 7 is a partial cross-sectional view of a connection plate structure of the present invention;
fig. 8 is an enlarged view of the structure of fig. 7 at C in accordance with the present invention.
The reference numerals in the figures illustrate: 1. a substrate; 2. a connecting plate; 3. a static pressure hammer; 4. a through groove; 5. a first threaded rod; 6. an electric push rod; 7. a connecting hoop; 8. a drive assembly; 81. a mounting plate; 82. a motor; 83. a first driving wheel; 84. a first connecting seat; 85. a connecting rod; 86. a driven wheel I; 87. a driving wheel II; 88. a first belt; 89. a driven wheel II; 810. a second belt; 9. an arc-shaped plate; 10. a limiting hole; 11. a clasp assembly; 111. a special-shaped groove; 112. a guide wheel; 113. a fixing plate; 114. a connecting rope; 115. a movable plate; 116. a spring; 117. a convex key; 118. a pull rod; 1181. a limiting block; 12. a compensation component; 121. a toothed ring; 122. a drive gear; 123. a driven gear; 124. a rotating lever; 125. a second connecting seat; 126. a first conical gear; 127. a second bevel gear; 128. a second threaded rod; 129. a third connecting seat; 1210. a connecting piece; 1211. a sliding frame; 1212. a telescopic rod; 1213. a fixing ring; 13. a mounting box; 14. a handle; 15. a walking wheel; 16. a bottom plate; 17. and a hydraulic rod.
Detailed Description
Examples: referring to fig. 1 to 8, a portable multi-angle static pressure hammer for ramming a earthen site comprises a base plate 1, wherein a connecting plate 2 is hinged above the base plate 1, a static pressure hammer 3 is arranged on one side, away from the base plate 1, of the connecting plate 2, through grooves 4 are formed in parallel on the connecting plate 2, a threaded rod 5 is connected to the through grooves 4, an electric push rod 6 is connected to the outer side of the threaded rod 5, a connecting hoop 7 is connected to one side, away from the threaded rod 5, of the electric push rod 6, the connecting hoop 7 is in sliding connection with the static pressure hammer 3, arc plates 9 are arranged on two sides of the base plate 1, a plurality of limiting holes 10 are formed in the arc plates 9, a buckling component 11 is arranged inside the connecting plate 2, the buckling component 11 is in contact with the limiting holes 10 but not connected, a compensation component 12 is arranged on the same side, of the connecting plate 2, the compensation component 12 is connected with the static pressure hammer 3 and the arc plates 9, a mounting box 13 is connected to the connecting plate 2, a handle 14 is connected to the side of the base plate 1, a bottom plate 16 is arranged below the base plate 16, a travelling wheel 15 is arranged below the base plate 16, and a hydraulic rod 17 is arranged above the bottom plate 16, and the hydraulic rod 17 is fixed at the bottom of the hydraulic rod 17.
Specifically, firstly, the device is moved to a designated area, the static pressure hammer 3 is controlled to tamp the ground, when the slope is tamped, the buckle component 11 is controlled to limit the arc plate 9, then the connecting plate 2 is rotated, the connecting plate 2 drives the static pressure hammer to deflect a certain angle, so that the slope is tamped conveniently, the compensating component 12 can lift the static pressure hammer 3 by a corresponding distance when the connecting plate 2 is rotated, the static pressure hammer 3 is prevented from being close to the slope of the earthen site due to the change of the angle of the static pressure hammer 3, so that the tamping is influenced, and meanwhile, as the tamping is continuously carried out, the hydraulic rod 17 is controlled to stretch, so that the device is moved to a higher distance, and the ramming of the earthen site elevation is facilitated.
Through setting up buckle subassembly 11 for connecting plate 2 can realize the upset together with static pressure hammer 3, thereby can independently adjust the ramming angle of static pressure hammer 3, make the device when can replace artifical handheld static pressure hammer 3 to tamp, can also tamp the work to the earth site slope of different slopes, improved the performance of the device.
Further, because the angle of the static pressure hammer 3 needs to be adjusted and then supported by manpower, the buckle assembly 11 is arranged to fix the static pressure hammer, the buckle assembly 11 comprises special-shaped grooves 111 which are formed on two sides of the connecting plate 2, guide wheels 112 and fixed plates 113 are fixed in the inner cavities of the two special-shaped grooves 111, connecting ropes 114 are arranged in the inner cavities of the special-shaped grooves 111, the lower ends of the connecting ropes 114 penetrate through the fixed plates 113 and are fixedly connected with movable plates 115, springs 116 are fixedly connected between the movable plates 115 and the fixed plates 113, and convex keys 117 are fixedly connected to one sides of the movable plates 115, which are far away from the springs 116; the pull rod 118, 188 including setting up in connecting plate 2 top both ends all extend to in the dysmorphism groove 111, and the top of two connecting ropes 114 all is connected with pull rod 118, wherein, in order to prevent pull rod 118 and connecting plate 2 from taking place to break away from in the in-process of pulling, the both ends of pull rod 118 all are connected with stopper 1181, and pull rod 118 is fixed with two connecting ropes 114 through stopper 1181.
Specifically, when the pull rod 118 is pulled upwards, the pull rod 118 drives the connecting rope 114 to move upwards through the limiting block 1181, so that the connecting rope 114 drives the movable plate 115 to move in the moving process, the movable plate 115 drives the convex key 117 to move towards the special-shaped groove 111, at the moment, the convex key 117 is separated from the limiting hole 10 formed in the arc plate 9, meanwhile, the spring 116 is compressed due to the fact that the distance between the fixed plate 113 and the movable plate 115 is reduced, after the connecting plate 2 is rotated to a required angle, the acting force on the pull rod 118 is removed, at the moment, the spring 116 pushes the movable plate 115 outwards, so that the movable plate 115 pushes the convex key 117 to enter the corresponding limiting hole 10, and the angle of the static pressure hammer 3 is adjusted.
Through setting up buckle subassembly 11 for the device can be after adjusting ramming angle, fixes the position of connecting plate 2, thereby avoids the manual work to support connecting plate 2, has reduced staff's intensity of labour.
Further, the compensation component 12 includes two driving gears 122 connected with the side of the connection board 2 through a rotating shaft, the outer edges of the driving gears 122 are meshed with driven gears 123, the side of the driven gears 123 is connected with a rotating rod 124, the outer side of the rotating rod 124 is connected with a connecting seat two 125, the end of the rotating rod 124 is connected with a first conical gear 126, the outer edge of the first conical gear 126 is meshed with a second conical gear 127, a second threaded rod 128 is connected above the second conical gear 127, the second threaded rod 128 is connected with the outer side of the connection board 2 through a third connecting seat 129, a connecting piece 1210 is connected between the two second threaded rods 128, a sliding frame 1211 is slidingly connected on the connecting piece 1210, a telescopic rod 1212 is fixed on the outer side of the sliding frame 1211, a fixed ring 1213 is fixed on the telescopic end of the telescopic rod 1212, and the fixed ring 1213 is connected to the outer side of the 3, wherein in order to conveniently drive the driving gears 122 to rotate, the static pressure hammer 3 can be moved according to the overturning angle of the connection board 2, so that the bottom end of the static pressure hammer 3 is always on the same horizontal line when the connection board 2 is overturned, a toothed ring 121 is arranged on the outer side of the arc 9, and the toothed ring 121 is meshed with the driving gear 122.
Specifically, when the connecting plate 2 is rotated, the toothed ring 121 on the arc plate 9 drives the driving gear 122 on the connecting plate 2 to rotate, so that the driven gear 123 drives the bevel gear 126 to rotate, and the bevel gear 127 drives the threaded rod two 128 to rotate, at this time, the connecting piece 1210 moves upwards along the threaded rod two 128, so that the fixed ring 1213 drives the static pressure hammer 3 to move upwards, and the impact on the ramming work of the soil site slope due to the fact that the static pressure hammer 3 is closer to the slope after the angle of the static pressure hammer 3 is adjusted is avoided.
Through setting up compensation component 12 for the device can be when the ramming angle of adjusting static pressure hammer 3, can the automatic adjustment static pressure hammer 3 height, thereby make the distance control between static pressure hammer 3 and the earth ruined slope in suitable range, thereby avoid because the distance is too near, lead to causing the influence to earth ruined slope, and then improved the device and rammed the effect when ramming earth ruined.
Furthermore, since the static pressure hammer 3 can only perform ramming operation on one line, workers need to repeatedly move the device to perform area operation, so that the working efficiency is reduced, the driving assembly 8 comprises a mounting plate 81 arranged on the outer side of the connecting plate 2, a motor 82 is connected above the mounting plate 81, and a first driving wheel 83 is connected to an output shaft of the motor 82; the belt type automatic transmission device further comprises two first connecting seats 84 arranged below the mounting plate 81, a connecting rod 85 is connected between the first connecting seats 84 in a penetrating manner, two ends of the connecting rod 85 are respectively connected with a first driven wheel 86 and a second driven wheel 87, a belt 88 is sleeved between the first driven wheel 86 and the first driven wheel 83, the end part of the first threaded rod 5 is connected with a second driven wheel 89, and a belt 810 is sleeved between the second driving wheel 87 and the second driven wheel 89.
Specifically, the control motor 82 drives the first driving wheel 83 to rotate, the first driving wheel 83 drives the first driven wheel 86 to rotate through the first belt 88, the first driven wheel 86 drives the second driving wheel 87 to rotate through the connecting rod 85, the second driving wheel 87 drives the second driven wheel 89 to rotate through the second belt 810, the second driven wheel 89 drives the first threaded rod 5 to rotate, and accordingly the electric push rod 6 in threaded connection with the second driven wheel moves on the first threaded rod 5, and at the moment, the connecting hoop 7 fixedly connected with the electric push rod drives the static pressure hammer 3 to horizontally move on the connecting plate 2, so that the ramming area of the device is increased.
The ramming area of the static pressure hammer 3 can be enlarged, the situation that a worker needs to repeatedly move the device to perform ramming operation is avoided, and further the working efficiency of the device is improved.
The working principle of the invention is as follows:
when a plane is tamped, the motor 82 is controlled to drive the first driving wheel 83 to rotate, the first driving wheel 83 drives the first driven wheel 86 to rotate through the first belt 88, the first driven wheel 86 drives the second driving wheel 87 to rotate through the connecting rod 85, the second driving wheel 87 drives the second driven wheel 89 to rotate through the second belt 810, the second driven wheel 89 drives the first threaded rod 5 to rotate, and accordingly the electric push rod 6 in threaded connection with the second driven wheel moves on the first threaded rod 5, at the moment, the connecting hoop 7 fixedly connected with the connecting hoop drives the static pressure hammer 3 to horizontally move on the connecting plate 2, so that the tamping area of the device is increased, and meanwhile, the electric push rod 6 is driven to work, so that the static pressure hammer 3 is pushed forwards, and the tamping area of the device is further enlarged;
when the slope is tamped, the pull rod 118 is pulled upwards, the pull rod 118 drives the connecting rope 114 to move upwards through the limiting block 1181, so that the connecting rope 114 drives the movable plate 115 to move in the moving process, the movable plate 115 drives the convex key 117 to move into the special-shaped groove 111, the convex key 117 is separated from the limiting hole 10 formed on the arc plate 9 at the moment, meanwhile, the spring 116 is compressed due to the fact that the distance between the fixed plate 113 and the movable plate 115 is reduced, then the connecting plate 2 is rotated to a required angle, the acting force for the pull rod 118 is removed, at the moment, the spring 116 pushes the movable plate 115 outwards, so that the movable plate 115 pushes the convex key 117 to enter the corresponding limiting hole 10, the angle of the static pressure hammer 3 is adjusted, when the connecting plate 2 is rotated, the toothed ring 121 on the arc plate 9 drives the driving gear 122 on the connecting plate 2 to rotate, the driven gear 123 drives the bevel gear 126 to rotate, so that the bevel gear 127 drives the threaded rod two 128 to rotate, at this time, the connecting piece 1210 moves upwards along the threaded rod two 128, so that the fixed ring 1213 drives the static pressure hammer 3 to move upwards, thereby avoiding the influence on the ramming work of the earthen site slope due to the fact that the static pressure hammer 3 is relatively close to the slope after the angle of the static pressure hammer 3 is adjusted (the static pressure hammer is essentially compaction equipment based on a hydraulic system, has an optimal stable hydraulic interval, easily causes the stress distance of an extension rod piece of the hydraulic system to be far when the hydraulic length is too long, further causes the coaxiality of the rod piece to be poor, is unfavorable for controlling the positive pressure at the end part of the hydraulic rod piece when the hydraulic distance is too short, therefore, when facing a slope, the height or the distance of the lower end part of a hammer head in an inactive state from a working surface, in fact, it is shorter with respect to the vertical, the shorter distance being mainly represented by the height of the base of the device, when the working surface is a facade, the distance will be shorter. Therefore, the device is a static pressure hammer with a dynamic adjustment function, so that the use interval of the static pressure hammer is larger and stable, in the actual use process, a fine adjustment nut/adjusting hand wheel similar to that between an objective lens and a lens cone in a monocular telescope can be designed between a hammer head and a telescopic rod piece of the hammer head, so that more accurate adjustment of the distance between the hammer head can be realized, the whole flow of the device is smooth, the device is tamped from a plane to a slope, more adjustment is not needed, and the working efficiency is very high.
The foregoing has shown and described the basic principles, principal features and advantages of the invention. It will be understood by those skilled in the art that the present invention is not limited to the above-described embodiments, and that the above-described embodiments and descriptions are only preferred embodiments of the present invention, and are not intended to limit the invention, and that various changes and modifications may be made therein without departing from the spirit and scope of the invention as claimed. The scope of the invention is defined by the appended claims and equivalents thereof.

Claims (4)

1. The utility model provides a portable soil site is tamped and is used multi-angle static pressure hammer, includes base plate, its characterized in that: the upper part of the base plate is hinged with a connecting plate, one side of the connecting plate, which is far away from the base plate, is provided with a static pressure hammer, through grooves are formed in parallel on the connecting plate, a first threaded rod is connected to the through grooves, an electric push rod is connected to the outer side of the first threaded rod, a connecting hoop is connected to one side of the electric push rod, which is far away from the first threaded rod, the connecting hoop is in sliding connection with the static pressure hammer, arc plates are arranged on two sides of the base plate, a plurality of limiting holes are formed in the arc plates, a buckle assembly is arranged in the connecting plate, the buckle assembly is in contact with the limiting holes but is not connected with the limiting holes, a compensation assembly is arranged on the same side of the static pressure hammer, the compensation assembly is connected with the static pressure hammer and the arc plates respectively, and a mounting box is connected to the position of the compensation assembly;
the buckle assembly comprises special-shaped grooves formed in two sides of the connecting plate, the inner cavities of the two special-shaped grooves are connected with guide wheels and fixed plates, the inner cavities of the special-shaped grooves are provided with connecting ropes, the bottom ends of the connecting ropes penetrate through the fixed plates and are connected with movable plates, springs are connected between the movable plates and the fixed plates, and one side, far away from the springs, of each movable plate is connected with a convex key;
the connecting device comprises a connecting plate, a connecting rod and a connecting rope, wherein the connecting plate is provided with a connecting hole, the connecting rod is connected with the connecting rod, and the connecting rod is connected with the connecting rod;
limiting blocks are connected to two ends of the pull rod, and the pull rod is connected with two connecting ropes through the limiting blocks;
the compensation assembly comprises two driving gears connected with the side surfaces of the connecting plates through rotating shafts, driven gears are meshed with the outer edges of the driving gears, rotating rods are connected with the side surfaces of the driven gears, connecting seats II are connected to the outer sides of the rotating rods, conical gears I are connected to the end portions of the rotating rods, conical gears II are meshed with the outer sides of the conical gears I in an extending mode, threaded rods II are connected to the upper portions of the conical gears II, the threaded rods II are connected with the outer sides of the connecting plates through connecting seats III, connecting pieces are connected between the two threaded rods II, sliding frames are connected to the connecting pieces in a sliding mode, telescopic rods are fixed to the outer sides of the sliding frames, fixing rings are fixed to the outer sides of the static pressure hammers, toothed rings are arranged on the outer sides of the arc plates, and meshed with the driving gears.
2. The portable earth site ramming multi-angle hydrostatic hammer of claim 1, wherein: the connecting plate is positioned on the same side of the static pressure hammer and is provided with a driving assembly, the driving assembly is connected with the end part of the first threaded rod, the driving assembly comprises a mounting plate arranged on the outer side of the connecting plate, a motor is connected above the mounting plate, and the output shaft of the motor is connected with a first driving wheel;
the connecting device comprises a mounting plate, and is characterized by further comprising two first connecting seats arranged below the mounting plate, a connecting rod is connected between the first connecting seats in a penetrating manner, two ends of the connecting rod are respectively connected with a first driven wheel and a second driving wheel, a belt I is sleeved between the first driven wheel and the first driving wheel, the end part of the first threaded rod is connected with a second driven wheel, and a belt II is sleeved between the second driving wheel and the second driven wheel.
3. The portable earth site ramming multi-angle hydrostatic hammer of claim 1, wherein: the side of the base plate is connected with a handle.
4. The portable earth site ramming multi-angle hydrostatic hammer of claim 1, wherein: the bottom plate is arranged below the base plate, the travelling wheels are arranged below the base plate, the hydraulic rod is arranged above the base plate, and the telescopic end of the hydraulic rod is fixed with the bottom of the base plate.
CN202211368094.9A 2022-11-03 2022-11-03 Portable multi-angle static pressure hammer for ramming earthen site Active CN115584716B (en)

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CN210288334U (en) * 2018-12-18 2020-04-10 高杰 Ramming machine with adjustable angle
CN213740995U (en) * 2020-08-24 2021-07-20 山东灵岩建设工程有限公司 Be used for native ruins to ram instrument of building and consolidating
CN112081094A (en) * 2020-09-17 2020-12-15 诸阿四 Backfill rammer compactor capable of conveniently adjusting ramming position and method
CN215211083U (en) * 2021-02-24 2021-12-17 广西建工集团第二安装建设有限公司 A kind of slope protection device for civil construction

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