Auxiliary device for forklift carrying skid-mounted equipment
By designing an auxiliary device for forklift handling of skid-mounted equipment, and utilizing the movable connection between the connecting seat and the base and the limiting block, a stable connection and flexible steering between the forklift and the skid-mounted equipment are achieved, thus solving the problems of safety risks and low efficiency in the forklift handling process.
Patent Information
- Application Number
- CN202520312294.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-26
- Publication Date
- 2026-01-16
- Estimated Expiration
- 2035-02-26
AI Technical Summary
In existing technologies, forklifts cannot achieve a secure connection and easy steering when handling skid-mounted equipment, which poses safety risks and results in low handling efficiency.
Design an auxiliary device for forklift handling skid-mounted equipment. Through the movable connection between the connecting seat and the base, and by using the combination of fork tooth sleeves and fixed blocks and limit blocks, a stable connection between the forklift and the skid-mounted equipment can be achieved, allowing 360-degree rotation and avoiding slippage and inconvenience in turning.
It achieves a secure connection between the forklift and the skid-mounted equipment, avoids the risk of slippage, improves handling efficiency and turning flexibility, and solves the safety risks and low efficiency problems in the existing technology.
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Figure CN223804833U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a forklift auxiliary tool technical field, concretely relates to a kind of auxiliary device of forklift handling pry dress equipment. BACKGROUND
[0002] In the industry such as installation, power and manufacturing assembly, hoisting, traction handling is one of the most basic and most frequent operating activities.
[0003] At present, when moving large and medium-sized pry dress equipment, winch is generally used as power source to cooperate with ground ox or boat to carry out integral handling and traction on pry dress equipment. With winch as power source, the structure of motor, coupling, brake, gear box and drum is utilized to realize the winding of long steel wire rope, so as to transmit tension and carry out integral handling and traction on pry dress equipment. According to the literature (Safety use of winch [J]. Engineering machinery and maintenance, 2005 (4): 153.), the winch must be firmly fixed, such as bolt fixing method, horizontal wood fixing method, pile fixing method and weight fixing method, to ensure the safety of operation. However, there is a great risk in the traction process of long steel wire rope, and this method cannot be used in places where winch is inconvenient to fix.
[0004] Forklift is an industrial handling vehicle, and forklift cooperates with hoisting operation and traction handling, which is one of the most common and most flexible operating activities in operating site. In addition to handling objects, forklift is also widely used in equipment installation operation. For example, some auxiliary equipment such as fan and pump with small installation space has no special hoisting facility, and hoisting equipment is limited by space and cannot operate. For the hoisting of this kind of equipment, forklift plays an irreplaceable function due to its good turning performance.
[0005] The prior art tries to use forklift as power traction source to assist ground ox or boat to handle this kind of pry dress equipment, to replace the role of winch. However, when forklift is used to handle pry dress equipment, the prongs of forklift are flat and straight, which cannot realize the connection and fixation of pry dress equipment and traction, and the force is easy to slip during lifting and traction, which has great safety risk, and turning is not convenient, which affects handling efficiency.
[0006] Therefore, it is necessary to design a kind of auxiliary device of forklift handling pry dress equipment, to realize the firm and safe connection of forklift and pry dress equipment and convenient turning. INVENTION CONTENTS
[0007] The utility model aims at solving the above-mentioned problems existing in prior art, and provides a kind of auxiliary device of forklift handling pry dress equipment.
[0008] To achieve the above-mentioned purpose, the technical scheme adopted by the utility model is as follows:
[0009] The auxiliary device for the forklift to carry the pry-loading equipment comprises a connecting seat and a base, the base is used to be connected with the prongs of the forklift, the connecting seat is used to place the pry-loading equipment, the connecting seat is arranged on the base away from the forklift to ensure enough rotatable space;
[0010] The base and the connecting seat are connected through the movable connecting pin, so that the connecting seat can rotate 360° on the base with the movable connecting pin as the center without relative movement in the upward or horizontal direction.
[0011] The connecting seat and the base are combined and connected together through the movable connecting mode, in the operation process, the prongs of the forklift are inserted into the prong sleeve of the base, the pry-loading equipment is fixed on the connecting seat through the fixing block and the limiting block, the firm connection between the prongs of the forklift and the pry-loading equipment is realized, the prongs are prevented from slipping off under stress, and the safety is improved; the forklift can be conveniently turned when moving the equipment in cooperation with the earth or the ship, and the carrying efficiency is improved.
[0012] As a preferred technical scheme:
[0013] The auxiliary device for the forklift to carry the pry-loading equipment as described above, the connecting seat comprises a first bottom plate, a fixing block and a limiting block, the fixing block and the limiting block are fixed on the upper surface of the first bottom plate;
[0014] The base comprises a second bottom plate and a prong sleeve, the prong sleeve is fixed on the lower surface of the second bottom plate, the prongs of the forklift are inserted into the prong sleeve in the operation process, wherein the prong sleeve is the existing technology, i.e. the fixing sleeve of the prongs of the forklift, the friction between the carried object and the prongs of the forklift can be reduced, the size of the prong sleeve is related to the prongs of the forklift, and the setting position of the prong sleeve is usually determined according to the length of the bottom plate to ensure that the prongs of the forklift have enough support for the auxiliary device for the forklift to carry the pry-loading equipment.
[0015] The more the number of the prong sleeves is, the firmer the connection between the base and the forklift is, but considering that the space on the lower surface of the second bottom plate is limited, therefore, preferably, the number of the prong sleeves is 2, and the prong sleeves are arranged side by side.
[0016] The auxiliary device for the forklift to carry the pry-loading equipment as described above, the first bottom plate is provided with a first connecting hole, the first connecting hole penetrates the first bottom plate;
[0017] The second bottom plate is provided with a second connecting hole, the second connecting hole penetrates the second bottom plate, and the second connecting hole is not at the same position on the second bottom plate as the prong sleeve, so as to avoid that the prong sleeve affects the function of the movable connecting pin;
[0018] The movable connecting pin connects the base and the connecting seat by being inserted into the first connecting hole and the second connecting hole.
[0019] The movable connecting pin comprises a connecting column and upper and lower connecting heads fixedly connected to upper and lower ends of the connecting column respectively, the upper and lower connecting heads and the connecting column are all cylindrical, and the diameter of the connecting column is smaller than that of the upper and lower connecting heads.
[0020] The diameter of the upper connecting head is larger than the diameter of the first connecting hole, and the diameter of the lower connecting head is larger than the diameter of the second connecting hole, so as to ensure that the connecting seat and the base do not have large up-down displacement.
[0021] The first connecting hole and the second connecting hole have the same diameter, so as to ensure that the connecting seat and the base are more stably connected.
[0022] The diameter of the connecting column is 2-4mm smaller than the diameter of the first connecting hole, so as to ensure that the connecting seat and the base do not have large horizontal displacement, and the connecting seat and the base can rotate.
[0023] The upper and lower connecting heads and the connecting column are connected by welding or screwing.
[0024] The number of the fixing blocks is two, and the fixing blocks are arranged side by side on two corners of the first bottom plate; the number of the limiting blocks is two, and the limiting blocks are arranged side by side on the other two corners of the first bottom plate.
[0025] The upper surface of the second bottom plate is provided with a fixing lifting lug away from the second connecting hole, and the fixing lifting lug is provided with a through hole.
[0026] The bottom base is fixedly connected with the fork teeth of the forklift by the fork tooth sleeve and the steel wire rope.
[0027] The connecting seat is combined with the fixing block and the limiting block (the interval size is determined according to the width of the bottom main steel structure of the prying device), the bottom main steel structure of the prying device is placed in the area combined by the fixing block and the limiting block, so that the prying device is prevented from horizontally moving forward, backward, leftward and rightward relative to the auxiliary device for carrying the prying device by the forklift, and the prying device is prevented from horizontally moving forward, backward, leftward and rightward relative to the forklift. The connecting seat and the base are combined in this way, so that the forklift and the prying device are connected through the auxiliary device for carrying the prying device by the forklift, and the prying device is prevented from slipping off during carrying.
[0028] As described above, the prying device and the auxiliary device for carrying the prying device by the forklift do not horizontally move forward, backward, leftward and rightward relative to each other, and the prying device and the forklift do not horizontally move forward, backward, leftward and rightward relative to each other through the connection of the auxiliary device for carrying the prying device by the forklift. The connecting seat and the base are connected through the movable connecting pin, so that the connecting seat and the base can rotate by 360 degrees, the prying device is connected to the connecting seat, and the fork teeth of the forklift are connected to the base. In this way, the forklift and the prying device can rotate by 360 degrees relative to each other on the basis of being limited to horizontally move forward, backward, leftward and rightward, so that the forklift and the prying device can be flexibly turned by 360 degrees during carrying.
[0029] Advantages:
[0030] (1) The auxiliary device for carrying the prying device by the forklift is stably connected to the forklift through the fork teeth sleeve and stably connected to the prying device through the fixing block and the limiting block, so that the forklift is not displaced or falls off during carrying the prying device, is safe and reliable, and fundamentally avoids the risk of the fork teeth of the forklift being forced to slip off.
[0031] (2) The auxiliary device for carrying the prying device by the forklift is combined together through the movable connection of the connecting seat and the base, so that the angle can be adjusted when the forklift is used as a power source to carry the prying device, and the prying device can be flexibly and conveniently turned in combination with the ground or the ship, the carrying efficiency is improved, and the fixing position of the steel wire rope is not frequently adjusted during turning when the prying device is carried by using the winch.
[0032] (3) The auxiliary device for carrying the prying device by the forklift solves the problems of high safety risk, low carrying efficiency and poor tool versatility of the prior art. BRIEF DESCRIPTION OF DRAWINGS
[0033] Figure 1 is a front view of the utility model;
[0034] Figure 2 is a right view of the utility model;
[0035] Figure 3is a top view schematic diagram of the utility model;
[0036] Figure 4 is a three-dimensional structure schematic diagram of the utility model;
[0037] Figure 5 is a structure schematic diagram of the connecting seat of the utility model;
[0038] Figure 6 is a structure schematic diagram of the base of the utility model;
[0039] Figure 7 is a structure schematic diagram of the movable connecting pin of the utility model;
[0040] Figure 8 is a three-dimensional structure schematic diagram of another perspective of the utility model;
[0041] Figure 9 is a use schematic diagram of a forklift carrying prying equipment auxiliary device of the utility model;
[0042] Wherein, 1-connecting seat, 101-first bottom plate, 102-fixed block, 103-limiting block, 104-first connecting hole, 2-movable connecting pin, 201-upper connecting head, 202-connecting column, 203-lower connecting head, 3-base, 301-second bottom plate, 302-second connecting hole, 303-fork sleeve, 304-lifting lug, 305-through hole, 4-forklift, 5-steel wire rope, 6-fork, 7-prying equipment, 8-auxiliary device, 9-ground ox. DETAILED DESCRIPTION
[0043] The utility model will be further described below in conjunction with specific embodiment. It should be understood that these examples are only for illustrating the utility model and are not used for limiting the scope of the utility model. In addition, it should be understood that after reading the content taught by the utility model, those skilled in the art can make various changes or modifications to the utility model, and these equivalent forms also fall within the scope defined by the appended claims of the present application.
[0044] A forklift carrying prying equipment auxiliary device, as shown in Figures 1-4 It includes connecting seat 1, movable connecting pin 2 and base 3, base 3 is used for connecting with the fork of forklift, connecting seat 1 is used for placing prying equipment, and connecting seat 1 is arranged on the position of base 3 away from forklift;
[0045] As Figure 5As shown, the connecting seat 1 comprises a first bottom plate 101, fixing blocks 102 and limiting blocks 103; the number of the fixing blocks 102 is 2, which are arranged on the upper surface of the first bottom plate 101 on two opposite corners; the number of the limiting blocks 103 is 2, which are arranged on the upper surface of the first bottom plate 101 on the other two opposite corners; the fixing blocks and the limiting blocks are fixed on the upper surface of the first bottom plate 101 by welding;
[0046] The first bottom plate 101 is provided with a first connecting hole 104, which penetrates the first bottom plate 101;
[0047] As shown, Figure 6 The base 3 comprises a second bottom plate 301 and a tine sleeve 303, the tine sleeve 303 is fixed on the lower surface of the second bottom plate 301 by welding, and the tines of the forklift are inserted into the tine sleeve 303 during operation;
[0048] The second bottom plate 301 is provided with a second connecting hole 302, which penetrates the second bottom plate 301, and the second connecting hole 302 is not at the same position on the second bottom plate 301 as the tine sleeve 303;
[0049] The upper surface of the second bottom plate 301 is provided with a fixed lifting lug 304 at a position away from the second connecting hole 302 by welding, and the fixed lifting lug 304 is provided with a through hole 305;
[0050] As shown, Figure 7 The movable connecting pin 2 comprises a connecting column 202, an upper connecting head 201 and a lower connecting head 203 fixedly connected to the upper end and the lower end of the connecting column 202 respectively, the upper connecting head 201, the lower connecting head 203 and the connecting column 202 are all cylindrical, the diameter of the connecting column 202 is smaller than the diameters of the upper connecting head 201 and the lower connecting head 203; the connecting mode of the upper connecting head 201 and the lower connecting head 203 with the connecting column is welding or threaded connection;
[0051] The movable connecting pin 2 connects the base 3 with the connecting seat 1 by inserting into the first connecting hole 104 and the second connecting hole 302, so that the connecting seat 1 can rotate on the base 3 with the movable connecting pin 2 as the center without relative movement in the upward or horizontal direction;
[0052] The diameter of the upper connecting head 201 is greater than the hole diameter of the first connecting hole 104, and the diameter of the lower connecting head 203 is greater than the hole diameter of the second connecting hole 302;
[0053] The hole diameters of the first connecting hole 104 and the second connecting hole 302 are the same;
[0054] The diameter of the connecting column 202 is 2-4 mm smaller than the hole diameter of the first connecting hole 104.
[0055] Specific use process: as Figure 9 As shown in the figure, when the forklift 4 is working, the movable connecting pin 2 connects the base 3 with the connecting seat 1 by inserting the first connecting hole 104 and the second connecting hole 302, the prying device 7 is connected to the connecting seat 1, and the prongs 6 of the forklift are connected to the base 3, so that the prying device 7 is prevented from having horizontal relative displacement relative to the auxiliary device 8 during the carrying process; the steel wire rope 5 is passed through the through hole 305 of the fixed lifting lug 304, and then the steel wire rope 5 is firmly bound with the prongs 6 of the forklift, so that the base 3 is firmly connected with the forklift 4, and then the ground ox 9 (or the walking boat) can be used to flexibly and conveniently turn.
Claims
1. An auxiliary device for a fork lift truck to handle a pry bar installation, characterized in that: The base (3) is connected with the connecting seat (1) through a movable connecting pin (2), so that the connecting seat (1) can rotate on the base (3) with the movable connecting pin (2) as the center without relative movement in the vertical or horizontal direction. The connecting seat (1) comprises a first bottom plate (101), a fixing block (102) and a limiting block (103), and the fixing block (102) and the limiting block (103) are fixed on the upper surface of the first bottom plate (101).
2. A device according to claim 1, characterized in that The base (3) comprises a second bottom plate (301) and a fork sleeve (303), and the fork sleeve (303) is fixed on the lower surface of the second bottom plate (301), and the fork of the forklift is inserted into the fork sleeve (303) during operation. The first bottom plate (101) is provided with a first connecting hole (104) penetrating through the first bottom plate (101).
3. A device according to claim 2, c h a r a c t e r i s e d in that The second bottom plate (301) is provided with a second connecting hole (302) penetrating through the second bottom plate (301), and the second connecting hole (302) is not located at the same position on the second bottom plate (301) as the fork sleeve (303). The movable connecting pin (2) connects the base (3) with the connecting seat (1) by being inserted into the first connecting hole (104) and the second connecting hole (302). The movable connecting pin (2) comprises a connecting column (202) and upper and lower connecting heads (201, 203) fixed on the upper and lower ends of the connecting column (202), respectively, and the upper and lower connecting heads (201, 203) and the connecting column (202) are all cylindrical, and the diameter of the connecting column (202) is smaller than that of the upper and lower connecting heads (201, 203).
4. A device according to claim 3, characterized in that The diameter of the upper connecting head (201) is larger than the hole diameter of the first connecting hole (104), and the diameter of the lower connecting head (203) is larger than the hole diameter of the second connecting hole (302).
5. A device according to claim 4, characterized in that The hole diameters of the first connecting hole (104) and the second connecting hole (302) are the same. The diameter of the connecting column (202) is 2-4 mm smaller than the hole diameter of the first connecting hole (104). The connecting mode of the upper and lower connecting heads (201, 203) and the connecting column (202) is welding or threaded connection.
6. The apparatus of claim 4, wherein, The number of the fixing blocks (102) is two, which are arranged side by side on two corners of the first bottom plate (101), and the number of the limiting blocks (103) is also two, which are arranged side by side on the other two corners of the first bottom plate (101).
7. The apparatus according to claim 2, wherein, The upper surface of the second bottom plate (301) is provided with a fixed lifting lug (304) away from the second connecting hole (302), and the fixed lifting lug (304) is provided with a through hole (305).
8. The apparatus according to claim 3, wherein,