Adjustable construction platform for mountainous areas

By introducing a base, U-shaped support block, lifting drilling mechanism, and adjustment mechanism into the mountain construction platform, combined with a servo motor and hydraulic system, the platform can be quickly adjusted and the drilling position can be fixed. This solves the problem of cumbersome operation of traditional construction platforms, reduces labor intensity and cost, and improves construction efficiency.

CN120719919BActive Publication Date: 2026-01-02SHANXI JINGWU NEW ENERGY CO LTD +1
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Patent Information

Application Number
CN202511196180.X
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-08-26
Publication Date
2026-01-02
Estimated Expiration
2045-08-26

AI Technical Summary

Technical Problem

Traditional mountain construction platforms require the erection of multiple layers of scaffolding during drilling operations, which increases labor intensity, operating costs, and construction time, and is cumbersome to operate.

Method used

An adjustable mountain construction platform is adopted, which includes a base, U-shaped support block, lifting drilling mechanism and adjustment mechanism. The height and position of the platform can be adjusted by servo motor and hydraulic system, and the drilling position can be quickly fixed by the cooperation of threaded rod and rubber sealing ring.

Benefits of technology

It reduces the labor intensity, operating costs, and construction period for relevant personnel, is easy to operate, and improves construction efficiency.

✦ Generated by Eureka AI based on patent content.

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    Figure CN120719919B_ABST
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Abstract

The application provides a mountain adjustable construction platform, which comprises a construction platform component, the construction platform component comprises a base, a U-shaped supporting block, a control panel, a lifting drilling mechanism, a plurality of universal wheels and an adjusting mechanism; the square movable block and the second rubber sealing ring are moved in the square movable through hole by the threaded rod, so that the first L-shaped through hole, the square movable through hole, the square through hole, the second circular through hole and the movable through groove are communicated, the pump body transmits the hydraulic oil in the liquid storage cavity to the movable through groove, the hydraulic oil in the movable through groove drives the corresponding ejection piece to move, the output shaft of the servo motor drives the circular block and the third rubber sealing ring to rotate, the circular block and the third rubber sealing ring drive the square through hole to rotate, which is used for adjusting the movement of the corresponding ejection piece, the position of the lifting drilling mechanism can be quickly horizontally fixed, so that the labor intensity, the use cost and the construction period of the related personnel are reduced, and the operation is relatively simple.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of geotechnical engineering construction, in particular to a mountain adjustable construction platform. BACKGROUND

[0002] When the mountain needs to be treated, reinforced and maintained, and photovoltaic equipment is installed, drilling operations such as construction of anchor rods, grouting, and setting of drainage holes are often required. A construction platform must be set up in advance during drilling construction. The traditional method is to set up a fixed construction platform with scaffolding poles. If the slope of the mountain is relatively steep, multiple layers of scaffolding must be set up from the bottom to the top, so that the construction platform can be treated to a horizontal state. Then the drilling machine is installed on the construction platform, and after the drilling is completed, the drilling machine is removed from the construction platform set up by the scaffolding. Then the relevant personnel set up the scaffolding at the position of the drilling hole. Thereafter, the drilling machine is fixed on the construction platform set up by the scaffolding at the position of the next drilling hole. This increases the labor intensity of the relevant personnel, the use cost and the construction period, and the operation is relatively cumbersome. Therefore, a mountain adjustable construction platform is proposed. SUMMARY

[0003] Therefore, the embodiments of the present application aim to provide a mountain adjustable construction platform to solve or alleviate the technical problems existing in the prior art, at least to provide a beneficial choice.

[0004] The technical scheme of the embodiments of the present application is as follows: a mountain adjustable construction platform, comprising a construction platform assembly, the construction platform assembly comprising a base, a U-shaped support block, a control panel, a lifting drilling mechanism, a plurality of universal wheels and an adjusting mechanism, wherein the U-shaped support block is arranged on the upper surface of the base, and the lifting drilling mechanism is arranged on the base and the U-shaped support block respectively, and the lifting drilling mechanism is used to raise the height of the construction; the adjusting mechanism is arranged on the base and the U-shaped support block respectively, and the adjusting mechanism is used to adjust the horizontal position of the base and the lifting drilling mechanism; a plurality of universal wheels are uniformly arranged on the lower surface of the base, and the control panel is arranged on the front surface of the base, and the control panel is electrically connected with the lifting drilling mechanism and the adjusting mechanism respectively through wires.

[0005] In some embodiments, the adjusting mechanism comprises a servo motor, a circular block, a pump body, a communication pipe, a plurality of ejectors, a square movable block, a second rubber sealing ring, a threaded rod and a third rubber sealing ring, wherein the upper surface of the base is provided with a rotating groove, and the inside of the base is provided with a liquid storage cavity, the inside bottom wall of the liquid storage cavity is uniformly provided with a fan-shaped through hole, and the liquid storage cavity is filled with hydraulic oil; the circular block is rotationally connected to the inside bottom wall of the rotating groove, and the third rubber sealing ring is arranged on the outer wall of the circular block; the outer wall of the third rubber sealing ring is fitted with the inner wall of the rotating groove, and the outer wall of the circular block and the third rubber sealing ring is provided with a square through hole; the lower surface of the circular block is provided with a first L-shaped through hole and a square movable through hole, and the first L-shaped through hole and the square movable through hole are communicated; the inner wall of the rotating groove is uniformly provided with a second circular through hole, and the lower surface of the base is uniformly provided with a movable through groove; a plurality of second circular through holes are communicated with corresponding movable through grooves, and a plurality of ejectors are arranged in the corresponding movable through grooves; the inside top wall of the square movable through hole is provided with a threaded hole, and the outer wall of the threaded rod is threadedly connected to the inner wall of the threaded hole; the upper surface of the square movable block is rotationally connected to the bottom end of the threaded rod, and the second rubber sealing ring is arranged on the outer wall of the square movable block; the lower surface of the square movable block is provided with a second L-shaped through hole; the outer wall of the second rubber sealing ring is fitted with the inner wall of the square movable through hole, and the outer wall of the second rubber sealing ring is provided with a first circular through hole; the second L-shaped through hole and the first circular through hole are communicated; the servo motor is arranged on the inside top wall of the U-shaped support block, and the output shaft of the servo motor is arranged on the upper surface of the circular block; the pump body is arranged on the inside bottom wall of the liquid storage cavity, and the bottom end of the communication pipe is arranged on the liquid outlet of the pump body; the top end of the communication pipe penetrates through the base and is fixedly connected, and the outer wall of the communication pipe is rotationally connected to the inner wall of the first L-shaped through hole; the control panel is electrically connected with the servo motor and the pump body through wires.

[0006] In some embodiments, the ejector comprises an ejecting rod, a spring, a piston, a first ring body and a second ring body, wherein the first ring body and the second ring body are arranged on the inner wall of the movable through groove, and the outer wall of the piston is fitted with the inner wall of the movable through groove; the top end of the ejecting rod is arranged on the lower surface of the piston, and the bottom end of the ejecting rod penetrates through the second ring body; the top end of the spring is arranged on the lower surface of the piston, and the bottom end of the spring is arranged on the upper surface of the second ring body.

[0007] In some embodiments, the lifting drilling mechanism comprises two fixed plates, a plurality of support rods, a movable platform plate, a first hydraulic push rod, a drilling machine and a second hydraulic push rod, wherein the two fixed plates are symmetrically arranged on the upper surface of the U-shaped support block, and the upper surfaces of the plurality of support rods are evenly arranged on the lower surfaces of the fixed plates, and the lower surfaces of the plurality of support rods are evenly arranged on the upper surface of the base; the outer wall of the movable platform plate is slidably connected to one side adjacent to the two fixed plates, and the first hydraulic push rod is hingedly connected to the upper surface of the movable platform plate; the drilling machine is hingedly connected to the piston rod of the first hydraulic push rod, and the drilling machine is hingedly connected to the upper surface of the movable platform plate; the second hydraulic push rod is arranged on the upper surface of the U-shaped support block, and the piston rod of the second hydraulic push rod is arranged on the lower surface of the movable platform plate; the control panel is electrically connected to the first hydraulic push rod, the drilling machine and the second hydraulic push rod through wires.

[0008] In some embodiments, the top end of the threaded rod is provided with a handle.

[0009] In some embodiments, the bottom end of the ejection rod is provided with a rubber pad.

[0010] In some embodiments, one side adjacent to the two fixed plates is evenly provided with a sliding groove, and the outer wall of the movable platform plate is evenly provided with a sliding block, and the outer wall of the sliding block is slidably connected to the inner wall of the sliding groove.

[0011] In some embodiments, the outer wall of the piston is embedded with a first rubber sealing ring, and the outer wall of the first rubber sealing ring is attached to the inner wall of the corresponding movable slot.

[0012] In some embodiments, the lower surface of the base is symmetrically penetrated by two circular tubes, the base is fixedly connected with the two circular tubes, the outer wall of the circular tube is provided with a solenoid valve, and the control panel is electrically connected with the solenoid valve through wires.

[0013] The embodiments of the present application have the following advantages due to the use of the above technical solutions:

[0014] One, the threaded rod rotates in the threaded through hole, the threaded rod drives the square movable block and the second rubber sealing ring to move in the square movable through hole, so that the first L-shaped through hole, the square movable through hole, the square through hole, the second circular through hole and the movable through groove are communicated, the pump body draws the hydraulic oil in the liquid storage cavity through the communicating pipe to flow in the first L-shaped through hole, the square movable through hole, the square through hole and the second circular through hole in turn, and makes the hydraulic oil transmit to the movable through groove, the hydraulic oil in the movable through groove drives the corresponding ejection piece to move, then the relevant personnel starts the servo motor, the output shaft of the servo motor drives the circular block and the third rubber sealing ring to rotate, the circular block and the third rubber sealing ring drive the square through hole to rotate, for adjusting the corresponding ejection piece to move, then the circular block and the third rubber sealing ring drive the square through hole to be fitted with the inner wall of the rotating groove, for plugging the second circular through hole, the position of the lifting drilling mechanism can be quickly horizontally fixed, so as to reduce the labor intensity, use cost and construction period of the relevant personnel, and the operation is relatively simple.

[0015] Two, the threaded rod rotates in the threaded through hole, the threaded rod drives the square movable block and the second rubber sealing ring to move in the square movable through hole, so that the first L-shaped through hole, the square movable through hole, the square through hole, the second circular through hole and the movable through groove are communicated, the spring's elastic potential drives the piston to move upwards, the piston transmits the hydraulic oil in the movable through groove to the liquid storage cavity through the movable through groove, the second circular through hole, the square through hole, the first circular through hole, the second L-shaped through hole and the sector-shaped through hole, then the servo motor is started, the output shaft of the servo motor drives the circular block and the third rubber sealing ring to rotate, the circular block and the third rubber sealing ring drive the square through hole to rotate, so that the corresponding ejection rod moves into the movable through groove, so as to further reduce the labor intensity, use cost and construction period of the relevant personnel, and the operation is relatively simple.

[0016] The above summary is only for the purpose of the description and is not intended to limit in any way. In addition to the illustrative aspects, embodiments and features described above, further aspects, embodiments and features will become apparent to those skilled in the art upon consideration of the drawings and the following detailed description. BRIEF DESCRIPTION OF DRAWINGS

[0017] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the drawings needed to be used in the embodiments or the prior art description will be briefly introduced below. Obviously, the drawings in the following description are only some embodiments of the present application, and those skilled in the art can also obtain other drawings according to these drawings without creating any creative labor.

[0018] Figure 1 is a structural diagram of the present application;

[0019] Figure 2 is a structural diagram of the present invention viewed from the front;

[0020] Figure 3 is a structural diagram of the present invention viewed from the front; Figure 2 is a sectional structural diagram of the present invention viewed from the side A-A;

[0021] Figure 4 is a structural diagram of the present invention viewed from the side;

[0022] Figure 5 is a sectional structural diagram of the present invention viewed from the side B-B; Figure 4

[0023] Figure 6 is an enlarged structural diagram of the region C of the present invention; Figure 5

[0024] Figure 7 is an enlarged structural diagram of the region D of the present invention; Figure 5

[0025] Figure 8 is an enlarged structural diagram of the region E of the present invention; Figure 5

[0026] Figure 9 is an enlarged structural diagram of the region F of the present invention; Figure 5

[0027] Figure 10 is an enlarged structural diagram of the region G of the present invention; Figure 5

[0028] Figure 11 is an internal structural diagram of the adjusting mechanism of the present invention;

[0029] Figure 12 is a sectional structural diagram of the present invention viewed from the side H-H. Figure 11

[0030] ​​​​​​​Mark No. : 1, construction platform assembly; 2, rotating groove; 3, liquid storage cavity; 4, chute; 5, sliding block; 6, first L-shaped through hole; 7, movable through slot; 8, circular tube body; 9, second L-shaped through hole; 10, base; 11, U-shaped support block; 12, control panel; 13, lifting drilling mechanism; 14, universal wheel; 15, adjusting mechanism; 20, first circular through hole; 21, second circular through hole; 22, square through hole; 23, threaded through hole; 24, handle; 25, first rubber sealing ring; 26, rubber pad; 27, fan-shaped through hole; 28, electromagnetic valve; 29, square movable through hole; 130, fixed plate; 131, support rod; 132, movable platform plate; 133, first hydraulic push rod; 134, drilling machine; 135, second hydraulic push rod; 150, servo motor; 151, circular block body; 152, pump body; 153, communication pipe; 154, ejection piece; 155, square movable block; 156, second rubber sealing ring; 157, threaded rod; 158, third rubber sealing ring; 1540, ejection rod; 1541, spring; 1542, piston; 1543, first ring body; 1544, second ring body. DETAILED DESCRIPTION

[0031] Hereinafter, only certain exemplary embodiments are simply described. As those skilled in the art can recognize, the described embodiments can be modified in various different ways without departing from the spirit or scope of the present application. Therefore, the drawings and the description are considered to be exemplary in nature rather than limiting.

[0032] It should be noted that the terms "first", "second", "symmetrical", "array" and the like are only used for distinguishing description and position description purposes, and cannot be understood as indicating or implying relative importance or implicitly indicating the number of the indicated technical features. Therefore, the features defined with "first", "symmetrical" and the like can explicitly or implicitly include one or more of the features; similarly, for some features without quantity limitation in the form of "two", "three" and the like, it should be noted that the features also belong to explicitly or implicitly including one or more feature quantities;

[0033] In the present application, unless otherwise explicitly specified and limited, the terms "mounting", "connection", "fixing" and the like should be understood in a broad sense; for example, it can be fixed connection, or detachable connection, or one-piece; it can be mechanical connection, it can be direct connection, it can be welding, it can be indirect connection through intermediate medium, it can be the internal communication of two elements or the interaction relationship between two elements. For those skilled in the art, the specific meaning of the above terms in the present application can be understood according to the description and drawings in combination with specific circumstances.

[0034] The embodiments of the present application will be described in detail below in combination with the drawings.

[0035] As Figures 1-12 shown in the drawings, the embodiment of the present application provides a mountain adjustable construction platform, which comprises a construction platform assembly 1, the construction platform assembly 1 comprises a base 10, a U-shaped support block 11, a control panel 12, a lifting drilling mechanism 13, a plurality of universal wheels 14 and an adjusting mechanism 15, wherein the U-shaped support block 11 is arranged on the upper surface of the base 10, and the lifting drilling mechanism 13 is arranged on the base 10 and the U-shaped support block 11 respectively, the lifting drilling mechanism 13 is used to raise the height of construction, the adjusting mechanism 15 is arranged on the base 10 and the U-shaped support block 11 respectively, the adjusting mechanism 15 is used to adjust the horizontal position of the base 10 and the lifting drilling mechanism 13, the plurality of universal wheels 14 are uniformly arranged on the lower surface of the base 10, and the control panel 12 is arranged on the front surface of the base 10, the control panel 12 is electrically connected with the lifting drilling mechanism 13 and the adjusting mechanism 15 through wires respectively.

[0036] Specifically in this embodiment, the adjusting mechanism 15 comprises a servo motor 150, a circular block 151, a pump body 152, a communicating pipe 153, a plurality of ejectors 154, a square movable block 155, a second rubber sealing ring 156, a threaded rod 157 and a third rubber sealing ring 158. The upper surface of the base 10 is provided with a rotating groove 2, and the inside of the base 10 is provided with a liquid storage cavity 3. The inner side bottom wall of the liquid storage cavity 3 is uniformly provided with a fan-shaped through hole 27, and the inside of the liquid storage cavity 3 is filled with hydraulic oil (not shown in the figure). The circular block 151 is rotationally connected to the inner side bottom wall of the rotating groove 2, and the third rubber sealing ring 158 is arranged on the outer wall of the circular block 151. The outer wall of the third rubber sealing ring 158 is in close contact with the inner wall of the rotating groove 2. The outer walls of the circular block 151 and the third rubber sealing ring 158 are provided with square through holes 22. The lower surface of the circular block 151 is provided with a first L-shaped through hole 6 and a square movable through hole 29, and the first L-shaped through hole 6 and the square movable through hole 29 are communicated. The inner wall of the rotating groove 2 is uniformly provided with second circular through holes 21, and the lower surface of the base 10 is uniformly provided with movable grooves 7. The plurality of second circular through holes 21 are communicated with the corresponding movable grooves 7, and the plurality of ejectors 154 are arranged in the corresponding movable grooves 7. The inner side top wall of the square movable through hole 29 is provided with a threaded hole 23, and the outer wall of the threaded rod 157 is threadedly connected to the inner wall of the threaded hole 23. The upper surface of the square movable block 155 is rotationally connected to the bottom end of the threaded rod 157, and the second rubber sealing ring 156 is arranged on the outer wall of the square movable block 155. The lower surface of the square movable block 155 is provided with a second L-shaped through hole 9. The outer wall of the second rubber sealing ring 156 is in close contact with the inner wall of the square movable through hole 29, and the outer wall of the second rubber sealing ring 156 is provided with a first circular through hole 20. The second L-shaped through hole 9 and the first circular through hole 20 are communicated. The servo motor 150 is arranged on the inner side top wall of the U-shaped support block 11, and the output shaft of the servo motor 150 is arranged on the upper surface of the circular block 151. The pump body 152 is arranged on the inner side bottom wall of the liquid storage cavity 3, and the bottom end of the communicating pipe 153 is arranged on the liquid outlet of the pump body 152. The top end of the communicating pipe 153 penetrates through the base 10 and is fixedly connected. The outer wall of the communicating pipe 153 is rotationally connected to the inner wall of the first L-shaped through hole 6. The control panel 12 is electrically connected with the servo motor 150 and the pump body 152 through wires. Through the above arrangement, the threaded rod 157 is rotated in the threaded hole 23, and the threaded rod 157 drives the square movable block 155 and the second rubber sealing ring 156 to move in the square movable through hole 29, so that the first L-shaped through hole 6, the square movable through hole 29, the square through hole 22, the second circular through hole 21 and the movable groove 7 are communicated. The pump body 152 sequentially draws the hydraulic oil in the liquid storage cavity 3 to the first L-shaped through hole 6, the square movable through hole 29, the square through hole 22 and the second circular through hole 21 through the communicating pipe 153, and makes the hydraulic oil transmit to the movable groove 7. The hydraulic oil in the movable groove 7 drives the corresponding ejector 154 to move.Afterwards, the relevant personnel start the servo motor 150, the output shaft of the servo motor 150 drives the circular block 151 and the third rubber sealing ring 158 to rotate, the circular block 151 and the third rubber sealing ring 158 drive the square through hole 22 to rotate, for adjusting the corresponding ejector 154 to move, afterwards, the circular block 151 and the third rubber sealing ring 158 drive the square through hole 22 to fit with the inner wall of the rotating groove 2, for plugging the second circular through hole 21, which can quickly fix the position of the lifting drilling mechanism 13 horizontally.

[0037] In this embodiment, specifically, the ejector 154 includes an ejector rod 1540, a spring 1541, a piston 1542, a first ring body 1543 and a second ring body 1544, wherein the first ring body 1543 and the second ring body 1544 are arranged on the inner wall of the corresponding movable through slot 7, the outer wall of the piston 1542 fits the inner wall of the movable through slot 7, the top end of the ejector rod 1540 is arranged on the lower surface of the piston 1542, the bottom end of the ejector rod 1540 passes through the second ring body 1544, the top end of the spring 1541 is arranged on the lower surface of the piston 1542, and the bottom end of the spring 1541 is arranged on the upper surface of the second ring body 1544, through the above arrangement, the hydraulic oil in the movable through slot 7 drives the piston 1542 in the corresponding ejector 154 to move downward, the piston 1542 drives the ejector rod 1540 to move downward, when the ejector rod 1540 drives the rubber pad 26 to contact the ground, the spring 1541 is extruded by the piston 1542 and the second ring body 1544 to deform, wherein the spring 1541 is used to drive the ejector rod 1540 and the piston 1542 to reset.

[0038] In this embodiment, specifically, the lifting drilling mechanism 13 comprises two fixed plates 130, a plurality of support rods 131, a movable platform plate 132, a first hydraulic push rod 133, a drilling machine 134 and a second hydraulic push rod 135, wherein the two fixed plates 130 are symmetrically arranged on the upper surface of the U-shaped support block 11, the upper surfaces of the plurality of support rods 131 are uniformly arranged on the lower surface of the fixed plate 130, the lower surfaces of the plurality of support rods 131 are uniformly arranged on the upper surface of the base 10, the outer wall of the movable platform plate 132 is slidably connected to one side adjacent to the two fixed plates 130, the first hydraulic push rod 133 is hinged to the upper surface of the movable platform plate 132, the drilling machine 134 is hinged to the piston rod of the first hydraulic push rod 133, and the drilling machine 134 is hinged to the upper surface of the movable platform plate 132, the second hydraulic push rod 135 is arranged on the upper surface of the U-shaped support block 11, and the piston rod of the second hydraulic push rod 135 is arranged on the lower surface of the movable platform plate 132, the control panel 12 is electrically connected to the first hydraulic push rod 133, the drilling machine 134 and the second hydraulic push rod 135 through wires, the second hydraulic push rod 135 and the drilling machine 134 are started by the control panel 12, the piston rod of the second hydraulic push rod 135 drives the movable platform plate 132 to move downward in reverse, the movable platform plate 132 drives the first hydraulic push rod 133 and the drilling machine 134 to move downward, and the drilling machine 134 drives the drill rod to rotate.

[0039] In this embodiment, specifically, the top end of the threaded rod 157 is provided with a handle 24, and the threaded rod 157 is rotated in the threaded hole 23 by the handle 24.

[0040] In this embodiment, specifically, the bottom end of the ejection rod 1540 is provided with a rubber pad 26, and the rubber pad 26 is used to enhance the friction between the ejection rod 1540 and the ground.

[0041] In this embodiment, specifically, the side adjacent to the two fixed plates 130 is uniformly provided with a sliding groove 4, and the outer wall of the movable platform plate 132 is uniformly provided with a sliding block 5, and the outer wall of the sliding block 5 is slidably connected to the inner wall of the sliding groove 4, and the sliding block 5 is slid in the sliding groove 4, which can assist the movement of the movable platform plate 132 and stabilize the position of the movable platform plate 132.

[0042] In this embodiment, specifically, the outer wall of the piston 1542 is embedded with a first rubber sealing ring 25, and the outer wall of the first rubber sealing ring 25 is attached to the inner wall of the corresponding movable slot 7, and the first rubber sealing ring 25 is used to enhance the sealing between the piston 1542 and the movable slot 7.

[0043] In this embodiment, specifically, the lower surface of the base 10 is symmetrically penetrated by two circular pipe bodies 8, the base 10 is fixedly connected with the two circular pipe bodies 8, the outer wall of the circular pipe body 8 is provided with an electromagnetic valve 28, the control panel 12 is electrically connected with the electromagnetic valve 28 through wires, the electromagnetic valve 28 is started by the control panel 12, an external pipe body is connected with one of the circular pipe bodies 8 by the relevant personnel, then hydraulic oil is filled into the liquid storage cavity 3, the gas in the liquid storage cavity 3 is discharged through the other circular pipe body 8, and when the other circular pipe body 8 discharges the hydraulic oil, it is indicated that the liquid storage cavity 3 has been stored with the hydraulic oil.

[0044] In this embodiment, specifically, the lower surface of the base 10 is symmetrically penetrated by two circular pipe bodies 8, the base 10 is fixedly connected with the two circular pipe bodies 8, the outer wall of the circular pipe body 8 is provided with an electromagnetic valve 28, the control panel 12 is electrically connected with the electromagnetic valve 28 through wires, the electromagnetic valve 28 is started by the control panel 12, an external pipe body is connected with one of the circular pipe bodies 8 by the relevant personnel, then hydraulic oil is filled into the liquid storage cavity 3, the gas in the liquid storage cavity 3 is discharged through the other circular pipe body 8, and when the other circular pipe body 8 discharges the hydraulic oil, it is indicated that the liquid storage cavity 3 has been stored with the hydraulic oil.

[0045] Thereafter, the screw rod 157 is driven by the hand-held handle 24 to rotate in the threaded through hole 23, the screw rod 157 drives the square movable block 155 and the second rubber sealing ring 156 to move downwards in the square movable through hole 29, so that the first L-shaped through hole 6, the square movable through hole 29, the square through hole 22, the second circular through hole 21 and the movable through slot 7 are communicated, then the pump body 152 is started by the control panel 12, the hydraulic oil in the liquid storage cavity 3 is drawn into the connecting pipe 153 by the pump body 152, the hydraulic oil in the connecting pipe 153 is transmitted into the movable through slot 7 through the first L-shaped through hole 6, the square movable through hole 29, the square through hole 22 and the second circular through hole 21 in sequence, the piston 1542 in the corresponding ejector 154 is driven by the hydraulic oil in the movable through slot 7 to move downwards, the ejector rod 1540 is driven by the piston 1542 to move downwards, and the spring 1541 is deformed by being extruded by the piston 1542 and the second ring body 1544 when the rubber pad 26 driven by the ejector rod 1540 contacts the ground.

[0046] Thereafter, the servo motor 150 is started by the control panel 12, the output shaft of the servo motor 150 drives the circular block 151 and the third rubber sealing ring 158 to rotate, the circular block 151 and the third rubber sealing ring 158 drive the square through hole 22 to rotate, for adjusting the corresponding ejector 154 to move, so that the ejector rod 1540 on the corresponding ejector 154 contacts the ground, thereafter, the circular block 151 and the third rubber sealing ring 158 drive the square through hole 22 to be fitted with the inner wall of the rotating recess 2, for plugging the second circular through hole 21, preventing the hydraulic oil in the movable through slot 7 from leaking, and for making the position of the base 10 be in a horizontal position.

[0047] Afterwards, the relevant personnel start the second hydraulic push rod 135 and the first hydraulic push rod 133 through the control panel 12, the piston rod of the second hydraulic push rod 135 drives the movable platform plate 132 to move upwards, the movable platform plate 132 drives the first hydraulic push rod 133 and the drilling machine 134 to move upwards, the piston rod of the first hydraulic push rod 133 drives the drilling machine 134 to rotate on the movable platform plate 132, so that the drilling machine 134 is in a vertical state, then the relevant personnel install the drill rod on the drilling machine 134, and then the relevant personnel start the second hydraulic push rod 135 and the drilling machine 134 through the control panel 12, the piston rod of the second hydraulic push rod 135 reversely drives the movable platform plate 132 to move downwards, the movable platform plate 132 drives the first hydraulic push rod 133 and the drilling machine 134 to move downwards, and the drilling machine 134 drives the drill rod to rotate.

[0048] When the drilling is completed, the relevant personnel start the second hydraulic push rod 135 and the first hydraulic push rod 133, the piston rod of the first hydraulic push rod 133 drives the drilling machine 134 to rotate, and then the piston rod of the second hydraulic push rod 135 drives the movable platform plate 132, the first hydraulic push rod 133 and the drilling machine 134 to move into the two fixed plates 130.

[0049] Then the relevant personnel hold the handle 24 to drive the threaded rod 157 to rotate in the threaded through hole 23, the threaded rod 157 drives the square movable block 155 and the second rubber sealing ring 156 to move in the square movable through hole 29, so that the second L-shaped through hole 9, the first circular through hole 20, the square through hole 22 and the movable through slot 7 are communicated, the elastic potential of the spring 1541 drives the piston 1542 to move upwards, the piston 1542 transmits the hydraulic oil in the movable through slot 7 to the storage cavity 3 through the movable through slot 7, the second circular through hole 21, the square through hole 22, the first circular through hole 20, the second L-shaped through hole 9 and the sector-shaped through hole 27, and then the relevant personnel start the servo motor 150 through the control panel 12, the output shaft of the servo motor 150 drives the circular block 151 and the third rubber sealing ring 158 to rotate, the circular block 151 and the third rubber sealing ring 158 drive the square through hole 22 to rotate, so that the corresponding second circular through hole 21 is communicated with the square through hole 22, the first circular through hole 20 and the second L-shaped through hole 9, and the corresponding ejection rod 1540 moves into the movable through slot 7.

[0050] The above merely illustrates the specific embodiments of the present application, but the protection scope of the present application is not limited to this, and any person skilled in the art can easily think of various changes or replacements within the technical range disclosed by the present application, which should be covered in the protection scope of the present application. Therefore, the protection scope of the present application should be subject to the protection scope of the claims.

Claims

1. A mountain adjustable construction platform comprising a construction platform assembly (1), characterized in that: The construction platform assembly (1) comprises a base (10), a U-shaped support block (11), a control panel (12), a lifting drilling mechanism (13), a plurality of universal wheels (14) and an adjusting mechanism (15), wherein The U-shaped support block (11) is arranged on the upper surface of the base (10), and the lifting drilling mechanism (13) is arranged on the base (10) and the U-shaped support block (11) respectively, and the lifting drilling mechanism (13) is used for lifting the height of construction; The adjusting mechanism (15) is arranged on the base (10) and the U-shaped support block (11) respectively, and the adjusting mechanism (15) is used for adjusting the horizontal position of the base (10) and the lifting drilling mechanism (13); A plurality of the universal wheels (14) are uniformly arranged on the lower surface of the base (10), and the control panel (12) is arranged on the front surface of the base (10), and the control panel (12) is electrically connected with the lifting drilling mechanism (13) and the adjusting mechanism (15) through wires respectively; The adjusting mechanism (15) comprises a servo motor (150), a circular block (151), a pump body (152), a communication pipe (153), a plurality of ejection pieces (154), a square movable block (155), a second rubber sealing ring (156), a threaded rod (157) and a third rubber sealing ring (158), wherein The upper surface of the base (10) is provided with a rotating groove (2), and the inside of the base (10) is provided with a liquid storage cavity (3), the inside bottom wall of the liquid storage cavity (3) is uniformly provided with a fan-shaped through hole (27), and the inside of the liquid storage cavity (3) is filled with hydraulic oil; The circular block (151) is rotationally connected to the inside bottom wall of the rotating groove (2), and the third rubber sealing ring (158) is arranged on the outer wall of the circular block (151), the outer wall of the third rubber sealing ring (158) is fitted with the inner wall of the rotating groove (2), and the outer walls of the circular block (151) and the third rubber sealing ring (158) are provided with square through holes (22); The lower surface of the circular block (151) is provided with a first L-shaped through hole (6) and a square movable through hole (29) respectively, and the first L-shaped through hole (6) and the square movable through hole (29) are communicated; The inner wall of the rotating groove (2) is uniformly provided with a second circular through hole (21), and the lower surface of the base (10) is uniformly provided with a movable groove (7); A plurality of the second circular through holes (21) are communicated with the corresponding movable grooves (7), and a plurality of the ejection pieces (154) are arranged in the corresponding movable grooves (7); The inside top wall of the square movable through hole (29) is provided with a threaded hole (23), and the outer wall of the threaded rod (157) is threadedly connected to the inner wall of the threaded hole (23). The upper surface of the square movable block (155) is rotationally connected to the bottom end of the threaded rod (157), and the second rubber sealing ring (156) is arranged on the outer wall of the square movable block (155); and the lower surface of the square movable block (155) is provided with a second L-shaped through hole (9). The outer wall of the second rubber sealing ring (156) is attached to the inner wall of the square movable through hole (29), and the outer wall of the second rubber sealing ring (156) is provided with a first circular through hole (20); the second L-shaped through hole (9) is in communication with the first circular through hole (20). The servo motor (150) is arranged on the inner side top wall of the U-shaped support block (11), and the output shaft of the servo motor (150) is arranged on the upper surface of the circular block (151). The pump body (152) is arranged on the inner side bottom wall of the liquid storage cavity (3), and the bottom end of the communication pipe (153) is arranged on the liquid outlet of the pump body (152). The top end of the communication pipe (153) penetrates the base (10) and is fixedly connected; the outer wall of the communication pipe (153) is rotationally connected to the inner wall of the first L-shaped through hole (6). The control panel (12) is electrically connected with the servo motor (150) and the pump body (152) through wires, respectively. The ejector (154) comprises an ejector rod (1540), a spring (1541), a piston (1542), a first ring body (1543) and a second ring body (1544), wherein, The first ring body (1543) and the second ring body (1544) are arranged on the inner wall of the movable through slot (7), and the outer wall of the piston (1542) is attached to the inner wall of the movable through slot (7). The top end of the ejector rod (1540) is arranged on the lower surface of the piston (1542), and the bottom end of the ejector rod (1540) penetrates the second ring body (1544). The top end of the spring (1541) is arranged on the lower surface of the piston (1542), and the bottom end of the spring (1541) is arranged on the upper surface of the second ring body (1544).

2. The adjustable mountain construction platform of claim 1, wherein: The lifting drilling mechanism (13) comprises two fixed plates (130), a plurality of support rods (131), a movable platform plate (132), a first hydraulic push rod (133), a drilling machine (134) and a second hydraulic push rod (135), wherein, The two fixed plates (130) are symmetrically arranged on the upper surface of the U-shaped support block (11), and the upper surfaces of the plurality of support rods (131) are uniformly arranged on the lower surfaces of the fixed plates (130); the lower surfaces of the plurality of support rods (131) are uniformly arranged on the upper surface of the base (10); The outer wall of the movable platform plate (132) is slidingly connected to one side of the two fixed plates (130), and the first hydraulic push rod (133) is hinged to the upper surface of the movable platform plate (132); The drill (134) is hinged to the piston rod of the first hydraulic push rod (133), and the drill (134) is hinged to the upper surface of the movable platform plate (132); The second hydraulic push rod (135) is arranged on the upper surface of the U-shaped support block (11), and the piston rod of the second hydraulic push rod (135) is arranged on the lower surface of the movable platform plate (132); The control panel (12) is electrically connected with the first hydraulic push rod (133), the drill (134) and the second hydraulic push rod (135) through wires respectively.

3. The adjustable mountain construction platform of claim 1, wherein: The top end of the threaded rod (157) is provided with a handle (24).

4. The adjustable mountain construction platform of claim 1, wherein: The bottom end of the ejection rod (1540) is provided with a rubber pad (26).

5. The adjustable mountain construction platform of claim 2, wherein: The outer wall of the movable platform plate (132) is uniformly provided with a sliding block (5), and the outer wall of the sliding block (5) is slidably connected to the inner wall of the sliding groove (4).

6. The adjustable mountain construction platform of claim 1, wherein: The outer wall of the piston (1542) is embedded with a first rubber sealing ring (25), and the outer wall of the first rubber sealing ring (25) is attached to the inner wall corresponding to the movable slot (7).

7. The adjustable mountain construction platform of claim 1, wherein: The lower surface of the base (10) is symmetrically penetrated by two circular tubes (8), the base (10) is fixedly connected with the two circular tubes (8), the outer wall of the circular tube (8) is provided with a solenoid valve (28), and the control panel (12) is electrically connected with the solenoid valve (28) through wires.

Citation Information

Patent Citations

  • Drill boom arrangement

    CA1101835A

  • Drilling device and drilling method

    CA2643310C