Auxiliary crane for artificial hole digging pile construction

By designing an auxiliary crane with a support base, equipment platform, and L-shaped frame structure, the problem of insufficient support stability in existing technologies was solved, thereby improving stability and safety during construction.

CN116177387BActive Publication Date: 2025-12-05CHINA RAILWAY 16TH BUREAU GRP CO LTD +1
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Patent Information

Application Number
CN202211537394.5
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-12-01
Publication Date
2025-12-05
Estimated Expiration
2042-12-01

AI Technical Summary

Technical Problem

Existing auxiliary tools for bored pile construction lack sufficient support stability and cannot effectively guarantee the safety and stability of the construction.

Method used

An auxiliary crane for manually excavated bored pile construction was designed, including a support base, equipment platform, outer edge frame plate, side wing support frame, support frame and contact support components, forming an L-shaped frame structure. Through multi-directional positioning and sandwich support, the stability of the equipment platform is enhanced.

Benefits of technology

This improved the stability of the equipment platform and construction safety, ensured the stability of crane operation, and enhanced the safety factor for personnel during construction operations.

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    Figure CN116177387B_ABST
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Abstract

The application relates to the technical field of engineering construction, in particular to an auxiliary crane for manual hole digging pile construction, which comprises a supporting base, an equipment platform erected on the supporting base and a plurality of cranes arranged on the equipment platform; outer edge frame plates are arranged on the two sides of the equipment platform, supporting frames are arranged on the outer edge frame plates, side wing supporting frames are arranged between the outer edge frame plates and the equipment platform, supporting positioning frames are arranged on the mounting ends of the supporting frames, the supporting frames are mounted on the outer edge frame plates through the supporting positioning frames and are connected with the supporting base; abutting supporting pieces are arranged on the supporting frames, and positioning supporting pieces are arranged on the side edges of the abutting supporting pieces; the abutting supporting pieces and the positioning supporting pieces form L-shaped frame structures. The application can guarantee the stability of the overall supporting base and the equipment platform, thereby guaranteeing the stability of the crane operation and improving the safety coefficient of personnel construction operation.
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Description

TECHNICAL FIELD

[0001] The present application relates to the field of engineering construction technology, in particular to an auxiliary crane for manual hole digging pile construction. BACKGROUND

[0002] The manual hole digging pile has the advantages of convenient construction, fast construction speed, and no need for large mechanical equipment. Compared with wood piles and concrete driven piles, it has the advantage of strong anti-seismic ability. Compared with the cone punching method, impact cone punching method, impact drill punching method, rotary drill machine drilling method, and caisson foundation, it has the advantage of cost saving. Therefore, the manual hole digging pile is widely used in highways and civil buildings.

[0003] The auxiliary tool for hole digging pile construction in the prior art is composed of a winch and a cantilevered triangular frame. This crane construction structure has certain defects. During the suspension construction operation, the gravity of the suspended object has an impact, and the operation vibration of the winch itself also has an impact, thereby significantly affecting the construction support environment. The existing auxiliary tool has the defect of support stability, and cannot effectively ensure the safety and stability of construction. SUMMARY

[0004] The present application aims to provide an auxiliary crane for manual hole digging pile construction to solve the problems in the background art.

[0005] To achieve the above-mentioned purpose, the present application provides the following technical solutions:

[0006] An auxiliary crane for manual hole digging pile construction, comprising a support base, an equipment platform erected on the support base, and a plurality of cranes arranged on the equipment platform;

[0007] The equipment platform is provided with an outer edge plate on both sides, and a support frame is installed on the outer edge plate. A side wing support frame is arranged between the outer edge plate and the equipment platform. The installation end of the support frame is provided with a support positioning frame. The support frame is installed on the outer edge plate through the support positioning frame and connected with the support base.

[0008] The support frame is provided with a resisting support piece and a positioning support piece arranged on the side of the resisting support piece. The resisting support piece and the positioning support piece form an L-shaped frame structure.

[0009] As a further solution of the present application, the equipment platform comprises a table frame installed on the support base and a frame shed frame installed on the table frame. An inner support frame is arranged in the frame shed frame.

[0010] As a further scheme of the present application, the outer edge frame plate is installed on the side edge of the support base through a connecting rotating shaft, the side wing support frame comprises an adjusting machine frame installed on the outer edge of the frame shed, a sliding seat arranged on the adjusting machine frame, and a support frame installed on the sliding seat, and the terminal end of the support frame is installed on the outer edge frame plate through a fixing plate.

[0011] As a further scheme of the present application, the adjusting machine frame is arranged with an adjusting screw rod, and an adjusting screw sleeve is installed on the adjusting screw rod, and the sliding seat is connected with the adjusting screw sleeve.

[0012] As a further scheme of the present application, the support positioning frame comprises a support frame box arranged on the installation end of the support frame, the support frame box is arranged with a support column, the top end of the support column is arranged with a fixing seat, the fixing plate is arranged with a positioning end, and the fixing seat is installed on the positioning end.

[0013] As a further scheme of the present application, the support positioning frame further comprises a reinforcing support rod arranged between the support frame box and the support base, the bottom edge of the support base is arranged with a fixing block, and the fixing block and the support frame box are both arranged with a plurality of connecting bolts, and the reinforcing support rod is connected between the connecting bolts.

[0014] As a further scheme of the present application, the positioning support part comprises a vertical frame plate installed on the support frame box, a plurality of frame blocks arranged on the vertical frame plate, and a plurality of transverse positioning inserting rods installed on the frame blocks.

[0015] As a further scheme of the present application, the abutting support part comprises a middle frame box installed on the support frame box, an installation bolt installed on the bottom end of the middle frame box, and a first abutting base plate and a second abutting base plate arranged on the two sides of the installation bolt respectively, the first abutting base plate is arranged in a horizontal direction and is arranged with a plurality of vertical positioning inserting rods, the second abutting base plate is arranged downward with a plurality of slope positioning inserting rods, the second abutting base plate is arranged with an external connecting bolt, and the external connecting bolt is connected with the vertical frame plate.

[0016] As a further scheme of the present application, the middle frame box is further arranged with an inner frame support rod, the first abutting base plate is arranged with a first pull rod, the first pull rod is connected with the inner frame support rod through a positioning bolt, the inner frame support rod is further arranged with a bending bolt part, and the bending bolt part is connected with the second abutting base plate through a second pull rod.

[0017] Compared with the prior art, the present application has the following beneficial effects:

[0018] The embodiment is dedicated to ensuring the stability of the equipment platform operation construction,

[0019] 1) The outer edge frame plate is arranged on both sides of the supporting base, the side wing support frame is arranged between the equipment platform and the outer edge frame plate, the side wing support frame is used to support the outer edge frame plate, and the outer edge support angle can be adjusted, so that the supporting frame arranged at the bottom of the outer edge frame plate can be attached to the shape of the hole digging area notch;

[0020] 2) The supporting frame is installed on the outer edge frame plate through the support positioning frame and is connected with the supporting base, so that the supporting frame is multi-directionally positioned, and the stability of the supporting frame is ensured;

[0021] 3) The supporting frame comprises a resisting supporting part and a positioning supporting part, the resisting supporting part and the positioning supporting part form an L-shaped frame structure, the resisting supporting part is used to support the outer side ground area of the hole digging notch, and the positioning supporting part is used to support the inner groove wall area of the hole digging notch, so that the sandwich type positioning is formed, the stability of the overall supporting base and the equipment platform is ensured, the stability of the crane operation is ensured, and the safety factor of the personnel construction operation is improved.

[0022] It should be understood that the foregoing general description and the following detailed description are only exemplary and explanatory, and cannot limit the present application. BRIEF DESCRIPTION OF DRAWINGS

[0023] The drawings incorporated into the specification and forming a part thereof, illustrate embodiments consistent with the present application and, together with the description, serve to explain the principles of the application. These drawings and the description are not intended to limit the scope of the application in any way.

[0024] Figure 1 The overall structure schematic diagram of the auxiliary crane for artificial hole digging pile construction is provided for the embodiments of the present application.

[0025] Figure 2 The structure schematic diagram of the equipment platform is provided for the embodiments of the present application.

[0026] Figure 3 The installation schematic diagram of the supporting frame is provided for the embodiments of the present application.

[0027] Figure 4 The installation schematic diagram of the reinforcing support rod is provided for the embodiments of the present application.

[0028] Figure 5 The structure schematic diagram of the supporting frame is provided for the embodiments of the present application.

[0029] In the figure: 11, support base; 12, equipment platform; 13, outer edge frame plate; 14, support frame; 15, crane; 16, wing support frame; 17, support positioning frame; 18, abutting support piece; 19, positioning support piece; 21, frame shed frame; 22, table frame; 23, inner support frame; 31, connecting shaft; 32, fixed plate; 33, adjusting machine frame; 34, sliding seat; 35, support frame; 37, adjusting screw; 38, adjusting screw sleeve; 41, support frame; 42, support column; 43, fixed seat; 44, positioning end; 45, fixed block; 46, connecting bolt; 47, reinforcing support rod; 52, vertical frame plate; 53, frame block; 54, transverse positioning plug rod; 61, middle frame; 62, mounting bolt; 63, first abutting base plate; 64, second abutting base plate; 65, vertical positioning plug rod; 66, slope positioning plug rod; 67, external bolt; 71, inner frame support rod; 72, first pull rod; 73, bent bolt; 74, second pull rod. DETAILED DESCRIPTION

[0030] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application, which are shown in the drawings. When the following description refers to the drawings, the same numbers in different drawings represent the same or similar elements unless otherwise indicated.

[0031] Obviously, the described embodiments are only a part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative work belong to the scope of protection of the present application.

[0032] The specific implementation of the present application will be described in detail below in combination with specific embodiments.

[0033] In one embodiment,

[0034] Please refer to Figure 1 , provides an auxiliary crane for artificial digging pile construction, including support base 11, equipment platform 12 erected on support base 11, and a plurality of cranes 15 provided on the equipment platform 12;

[0035] The equipment platform 12 is provided with outer edge frame plate 13 on both sides, and support frame 14 is installed on the outer edge frame plate 13, the outer edge frame plate 13 and the equipment platform 12 are provided with wing support frame 16, the installation end of the support frame 14 is provided with support positioning frame 17, the support frame 14 is installed on the outer edge frame plate 13 through the support positioning frame 17, and is connected with the support base 11;

[0036] The supporting frame 14 is provided with a resisting supporting piece 18 and a positioning supporting piece 19 arranged at the side of the resisting supporting piece 18, and the resisting supporting piece 18 and the positioning supporting piece 19 form an L-shaped frame structure.

[0037] The supporting base 11 is erected on the ground and fixedly installed on the ground through supporting screw rods and other related fixing components. The equipment platform 12 is arranged on the supporting base 11, and the crane 15 is arranged on the equipment platform 12. The suspension end of the crane 15 extends into the hole digging groove, and the personnel operates the crane 15 on the equipment platform 12.

[0038] The embodiment is dedicated to ensuring the stability of the equipment platform 12 in operation, and the outer edge frame plate 13 is arranged at both sides of the supporting base 11. The side wing supporting frame 16 is arranged between the equipment platform 12 and the outer edge frame plate 13, and is used to support the outer edge frame plate 13 and adjust the outer edge supporting angle, so that the supporting frame 14 arranged at the bottom of the outer edge frame plate 13 can be matched with the shape of the hole digging area groove. The supporting frame 14 is installed on the outer edge frame plate 13 through the supporting positioning frame 17 and is connected with the supporting base 11, so that the supporting frame 14 is multi-directionally positioned and the stability of the supporting frame 14 is ensured. The supporting frame 14 includes the resisting supporting piece 18 and the positioning supporting piece 19, and the resisting supporting piece 18 and the positioning supporting piece 19 form an L-shaped frame structure. The resisting supporting piece 18 is used to support the outer ground area of the hole digging groove, and the positioning supporting piece 19 is used to support the inner groove wall area of the hole digging groove, so as to form a clamping surface type positioning, ensure the stability of the whole supporting base 11 and the equipment platform 12, and ensure the stability of the crane operation and improve the safety factor of the personnel operation.

[0039] In one embodiment,

[0040] Based on the above embodiment, for the implementation structure of the equipment platform 12, please refer to Figure 2 , and the embodiment is designed as follows:

[0041] The equipment platform 12 includes a table frame 22 installed on the supporting base 11 and a frame shed frame 21 installed on the table frame 22. The frame shed frame 21 is provided with an inner supporting frame 23. The equipment platform 12 is arranged on the supporting base 11 and is used for personnel operating machine table and operating area, and is also used for installing equipment on the suspension end of the crane 15.

[0042] In one embodiment,

[0043] Based on the above embodiment, for the specific implementation structure of the side wing supporting frame 16, please refer to Figure 2 , and the embodiment is designed as follows:

[0044] The outer edge frame plate 13 is installed on the side edge of the support base 11 through the connecting rotating shaft 31, the side wing support frame 16 comprises an adjusting machine frame 33 installed on the outer edge of the frame shed frame 21, a sliding seat 34 arranged on the adjusting machine frame 33, and a support frame 35 installed on the sliding seat 34, and the terminal end of the support frame 35 is installed on the outer edge frame plate 13 through the fixing plate 32.

[0045] The adjusting machine frame 33 is provided with an adjusting screw rod 37, and the adjusting screw rod 37 is provided with an adjusting screw sleeve 38, and the sliding seat 34 is connected with the adjusting screw sleeve 38.

[0046] The adjusting machine frame 33 is a fixed end supported by the side wing support frame 16, the adjusting machine frame 33 is installed on the outer edge of the frame shed frame 21, the adjusting machine frame 33 is provided with the adjusting screw rod 37, the adjusting screw rod 37 is driven to move through the internal motor, so as to drive the sliding seat 34 to move, so that the sliding seat 34 is displaced, and then the support frame 35 is driven to move, the support angle of the outer edge frame plate 13 is adjusted, and the adjusting screw rod 37 also limits the sliding seat 34, so as to avoid the displacement of the sliding seat 34, and ensure the support effect of the support frame 35 on the support machine frame 14.

[0047] In one embodiment,

[0048] Based on the above embodiment, the specific implementation structure of the support positioning frame 17 is described in detail with reference to Figure 3 , and the embodiment is designed as follows:

[0049] The support positioning frame 17 comprises a support frame 41 arranged on the installation end of the support machine frame 14, the support frame 41 is provided with a support column 42, the top end of the support column 42 is provided with a fixing seat 43, the fixing plate 32 is provided with a positioning end 44, and the fixing seat 43 is installed on the positioning end 44.

[0050] Before installation, the support column 42 and the support frame 41 form a plastic frame structure, with the side wing support frame 16 adjusting the outer edge frame plate 13 to a suitable support angle, the locking fixing seat 43 is locked and fixed at the same time, so that the support column 42 and the support frame 41 form a fixed frame structure.

[0051] In one case of the embodiment,

[0052] Please refer to Figure 4 , the support positioning frame 17 further comprises a reinforcing support rod 47 arranged between the support frame 41 and the support base 11, the bottom edge of the support base 11 is provided with a fixing block 45, and a plurality of connecting bolts 46 are arranged on the fixing block 45 and the support frame 41, and the reinforcing support rod 47 is connected between the connecting bolts 46.

[0053] In order to further improve the stability, after the support column 42 and the support frame 41 are fixed, the support column 42 and the support frame 41 are internally installed with the reinforcing support rods 47, which are arranged at equal intervals and are obliquely supported between the frame body composed of the support column 42 and the support frame 41, so as to ensure the stability of the overall frame body.

[0054] In one embodiment,

[0055] Based on the above embodiment, for the specific implementation structure of the support frame 14, please refer to Figure 3 and Figure 5 The embodiment is designed as follows:

[0056] The positioning support member 19 includes the vertical frame plate 52 installed on the support frame 41, the plurality of frame blocks 53 arranged on the vertical frame plate 52, and the plurality of transverse positioning insertion rods 54 installed on the frame blocks 53. The positioning support member 19 is supported on the inner groove wall of the excavated groove, and the transverse positioning insertion rods 54 are vertically inserted and fixed on the inner groove wall position of the excavated groove, so as to ensure the stability of the support.

[0057] The abutting support member 18 includes the middle frame 61 installed on the support frame 41, the mounting bolt 62 installed at the bottom end of the middle frame 61, and the first abutting base plate 63 and the second abutting base plate 64 arranged on both sides of the mounting bolt 62, respectively. The first abutting base plate 63 is arranged in a horizontal direction and is provided with a plurality of vertical positioning insertion rods 65. The second abutting base plate 64 is downwardly provided with a plurality of slope positioning insertion rods 66. The second abutting base plate 64 is externally connected with the external connection bolt 67, which is connected with the vertical frame plate 52.

[0058] The abutting support member 18 is supported on the slot area, wherein the abutting support member 18 is branched into the first abutting base plate 63 and the second abutting base plate 64. The first abutting base plate 63 is supported on the ground area of the slot, and is vertically inserted and fixed by the vertical positioning insertion rods 65. The second abutting base plate 64 is arranged along the slot shape of the excavated groove, supports the slot position, and the slope positioning insertion rods 66 are perpendicular to the slot slope angle of the excavated groove, so as to ensure the stability of the slot slope and avoid the collapse of the slot slope.

[0059] Preferably, in the embodiment, the second abutting base plate 64 is further connected with the vertical frame plate 52 through the external connection bolt 67, so that the first abutting base plate 63, the second abutting base plate 64 and the vertical frame plate 52 form an integrated support structure, further ensuring the stability of the support of the excavated groove.

[0060] In one case of the embodiment,

[0061] The middle frame 61 is further provided with an inner frame supporting rod 71, the first resisting base plate 63 is circumscribed with a first pull rod 72, the first pull rod 72 is connected to the inner frame supporting rod 71 through a positioning bolt, the inner frame supporting rod 71 is further provided with a bent bolt 73, the bent bolt 73 is connected to the second resisting base plate 64 through a second pull rod 74.

[0062] It will be obvious to a person skilled in the art that, without departing from the spirit or essential characteristics of the application, the present application can be implemented otherwise than as described herein. Particularly, the embodiments described above are illustrative in all aspects and do not limit the application. The scope of the application should be construed on the basis of the appended claims, rather than the description, and all changes that come within the meaning and equivalency range of the claims are intended to be embraced therein.

[0063] Furthermore, it should be understood that although the description is made according to the embodiments, not every embodiment contains only one independent technical solution, and the description is made in this way only for the sake of clarity, and a person skilled in the art should understand the description as a whole, and the technical solutions in each embodiment can also be properly combined to form other embodiments that can be understood by a person skilled in the art.

Claims

1. An auxiliary crane for artificial hole digging pile construction, comprising a supporting base, a device platform erected on the supporting base, and a plurality of cranes arranged on the device platform, characterized in that, the device platform is provided with an outer edge frame plate on both sides, and a supporting frame is installed on the outer edge frame plate, a side wing support frame is arranged between the outer edge frame plate and the device platform, and a supporting positioning frame is arranged at the mounting end of the supporting frame, the supporting frame is mounted on the outer edge frame plate through the supporting positioning frame and connected with the supporting base; the supporting frame is provided with a butt supporting piece, and a positioning supporting piece is arranged on the side of the butt supporting piece, and the butt supporting piece and the positioning supporting piece form an L-shaped frame structure; the device platform comprises a platform frame installed on the supporting base and a frame shed frame installed on the platform frame, and an inner support frame is arranged in the frame shed frame; the outer edge frame plate is mounted on the side of the supporting base through a connecting shaft, the side wing support frame comprises an adjusting machine frame installed on the outer edge of the frame shed frame, a sliding seat arranged on the adjusting machine frame, and a support frame installed on the sliding seat, and the terminal end of the support frame is mounted on the outer edge frame plate through a fixed plate; the supporting positioning frame comprises a supporting frame arranged at the mounting end of the supporting frame, a supporting column is arranged on the supporting frame, a fixed seat is arranged at the top end of the supporting column, a positioning end is arranged on the fixed plate, and the fixed seat is mounted on the positioning end; the positioning supporting piece comprises a vertical frame plate installed on the supporting frame, a plurality of frame blocks arranged on the vertical frame plate, and a plurality of horizontal positioning inserting rods installed on the frame blocks; the butt supporting piece comprises a middle frame installed on the supporting frame, a mounting bolt installed at the bottom end of the middle frame, and a first butt base plate and a second butt base plate arranged on both sides of the mounting bolt respectively, the first butt base plate is arranged horizontally and is provided with a plurality of vertical positioning inserting rods, the second butt base plate is downwardly provided with a plurality of slope positioning inserting rods, the second butt base plate is provided with an external bolt, and the external bolt is connected with the vertical frame plate; the middle frame is further provided with an inner frame supporting rod, the first butt base plate is provided with a first pull rod, the first pull rod is connected with the inner frame supporting rod through a positioning bolt, and the inner frame supporting rod is further provided with a bending bolt, and the bending bolt is connected with the second butt base plate through a second pull rod.

2. The auxiliary hoist for artificial excavation pile construction according to claim 1, characterized by, an adjusting screw rod is arranged in the adjusting machine frame, an adjusting screw sleeve is mounted on the adjusting screw rod, and the sliding seat is connected with the adjusting screw sleeve.

3. The auxiliary hoist for artificial excavation pile construction according to claim 1, characterized in that, the supporting positioning frame further comprises a reinforcing supporting rod arranged between the supporting frame and the supporting base, a fixed block is arranged at the bottom edge of the supporting base, a plurality of connecting bolts are arranged on the fixed block and the supporting frame, and the connecting bolts are connected with the reinforcing supporting rod.

Citation Information

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