Loading platform device

The loading platform device addresses instability and positioning challenges in conventional lifting devices by using a slide and locking mechanism for stable, remotely controlled movement and fixing, improving safety and efficiency in lifting operations.

JP7706586B6Active Publication Date: 2025-07-28SHINRYOI CORP +2
View PDF 5 Cites 0 Cited by

Patent Information

Application Number
JP2024025489
Authority / Receiving Office
JP · JP
Patent Type
Patents
Current Assignee / Owner
Filing Date
2024-02-22
Publication Date
2025-07-28
Estimated Expiration
2044-02-22

AI Technical Summary

Technical Problem

Conventional lifting devices for building materials are unstable, leading to risks of objects rolling or tipping over, and require repetitive adjustments for precise positioning, which is time-consuming and labor-intensive.

Method used

A loading platform device with a slide portion and locking mechanism that allows horizontal movement and remote control of fixing and releasing, featuring a ball bearing system, slide restrictions, and a locking mechanism with a belt winding and remote operation capability.

Benefits of technology

Enhances safety and reduces labor by stabilizing the lifting process and enabling precise positioning with reduced manual effort.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure 0007706586000001_ABST
    Figure 0007706586000001_ABST
Patent Text Reader

Abstract

Enhance the safety during the lifting and lowering operation of building materials and reduce the labor and effort required for the lifting and lowering operation to achieve labor saving. 【Means for solving the problem】 The present invention is a loading platform device 1 that can be installed on a lifting device 50 used when lifting building materials 5 to a high place, and includes a base portion 2 attached to the lifting device 50, and a slide portion 3 provided on the base portion 2 so as to be slidable in a horizontal direction with respect to the base portion 2 and capable of mounting the building materials 5, and a lock mechanism 31 capable of remotely controlling the operation of fixing and releasing the fixing of the building materials mounted on the slide portion 3.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The present invention relates to a platform device that can be installed on a lifting device used when lifting building materials to a high place.

Background Art

[0002] Conventionally, when performing work of lifting building materials such as equipment, pipe materials, ducts, etc. to a high place, an electric or gas cylinder type lifting device (upper) has been used.

Prior Art Documents

Patent Documents

[0003]

Patent Document 1

Summary of the Invention

Problems to be Solved by the Invention

[0004] However, in the above-described conventional lifting device, when performing work of lifting building materials such as pipe materials to a high place, round-shaped objects such as pipe materials are unstable, so there is a risk that the pipe materials may roll and fall from the lifting device, or the lifting device may tip over due to uneven weight of the loaded pipe materials or the like.

[0005] In addition, when misalignment occurs during connection work of pipe materials or the like, it is necessary to raise and lower the pipe materials or the like many times for fine adjustment of the mounting position of the pipe materials or the like, and there is also a problem that the work is time-consuming.

[0006] The present invention has been made to solve the above-described problems, and an object thereof is to provide a platform device that can enhance the safety during the lifting work of building materials and reduce the labor of the lifting work to achieve labor saving.

Means for Solving the Problems

[0007] In order to achieve the above object, the present invention is a loading platform device installable on a hoisting device used when hoisting building materials to a high place, comprising a base portion attached to the hoisting device, and a slide portion provided on the base portion so as to be slidable in a horizontal direction with respect to the base portion and capable of loading the building materials, and a locking mechanism capable of remotely controlling the operation of fixing and releasing the fixing of the building materials mounted on the slide portion.

[0008] In the loading platform device according to the present invention, it is preferable to include a ball bearing that enables the slide portion to slide in the horizontal direction, a slide restricting portion that restricts the slide length of the slide portion in the horizontal direction, a slide locking portion that disables the slide operation of the slide portion, and a lifting prevention portion that prevents the slide portion from lifting with respect to the base portion.

[0009] In the loading platform device according to the present invention, the locking mechanism preferably includes a winding portion capable of electrically winding a belt wound around the building materials, a locking portion that can be manually extended from the winding portion and locked to the tip of the belt wound around the building materials, and a control portion capable of remotely operating each of the operations of fixing and releasing the fixing of the belt with respect to the winding portion and fixing and releasing the tip of the belt with respect to the locking portion.

[0010] In the loading platform device according to the present invention, when the tip of the belt is fixed to the locking portion, the locking portion is preferably held in a horizontal posture, and when the tip of the belt is released from the locking portion, the locking portion is preferably held at a position rotated 60 degrees upward from the horizontal posture.

[0011] In the loading platform device according to the present invention, the building materials are long objects including pipe materials and duct materials for building equipment, and guide portions for preventing the long objects from rolling are provided on the slide portion at predetermined intervals along a direction perpendicular to the longitudinal direction of the long objects, and a protruding portion for preventing the long objects from falling is preferably provided around the base portion.

Advantages of the Invention

[0012] According to the present invention, various excellent effects such as labor saving in the hoisting operation of building materials and improvement in safety can be obtained.

Brief Description of the Drawings

[0013]

Figure 1

Figure 2

Figure 3

Figure 4

Figure 5

Figure 6

Figure 7

Figure 8

Figure 9

Figure 10

Embodiments for Carrying Out the Invention

[0014] Hereinafter, embodiments of the present invention will be described with reference to the drawings. Here, FIG. 1 is a plan view showing a state in which a pipe member is mounted on a loading platform device according to an embodiment of the present invention, FIG. 2 is a plan view showing a base portion of the loading platform device according to an embodiment of the present invention, FIG. 3 shows a slide portion of the loading platform device according to an embodiment of the present invention, (a) is a plan view, (b) is a front side view, (c) is a right side view, FIG. 4 is a plan view showing a loading platform of the loading platform device according to an embodiment of the present invention, FIG. 5 is a cross-sectional view showing the inside of the loading platform of the loading platform device according to an embodiment of the present invention, FIG. 6 is a schematic cross-sectional view showing the inside of the loading platform of the loading platform device according to an embodiment of the present invention, FIG. 7 is a cross-sectional view showing a lock mechanism of the loading platform device according to an embodiment of the present invention, FIG. 8 shows the lock mechanism at the time of fixing in the loading platform device according to an embodiment of the present invention, (a) is a plan view, (b) is a cross-sectional view, FIG. 9 shows the lock mechanism at the time of unlocking in the loading platform device according to an embodiment of the present invention, (a) is a plan view, (b) is a cross-sectional view, and FIG. 10 is an elevation view showing a lifting device to which the loading platform device according to an embodiment of the present invention is attached. In the following description, the case where a pipe member is mounted on the loading platform device will be exemplified and described.

[0015] As shown in FIG. 1, a loading platform device 1 according to an embodiment of the present invention includes a loading platform 4 having a base portion 2 and a slide portion 3 provided on the base portion 2, and a pipe member 5 is mounted on the slide portion 3 of the loading platform 4. Further, the loading platform device 1 can be attached to a lifting device 50 as shown in FIG. 10, and as the lifting device 50, various existing types of aerial work platforms can be used.

[0016] As well shown in FIG. 2, the base portion 2 has a rectangular shape in plan view and has a flat box shape with an upper opening. On the bottom surface 6 of the base portion 2, ball bearing units 8 formed by attaching a large number (16 in the drawing) of ball bearings 7 in a row at a predetermined interval are fixed at a predetermined interval over four rows in the front-rear direction.

[0017] On the side plates 9 on the front, rear, left, and right of the base part 2, a plurality (a total of 8 in the drawing) of rod-shaped protrusions 10 are provided so as to be able to stand up. By maintaining the standing posture, these protrusions 10 have the function of preventing the pipe material 5 mounted on the slide part 3 of the loading platform 4 from falling off the loading platform 4. In addition, when the protrusions 10 do not need to function to prevent the pipe material 5 from falling, they can be laid down along the outer surfaces of the side plates 9 on the front, rear, left, and right and held in a horizontal posture.

[0018] As shown well in FIGS. 1 and 3(a), in plan view, the slide part 3 has a rectangular shape slightly smaller than the base part 2 so that a predetermined gap is formed between the slide part 3 and the side plates 9 on the front, rear, left, and right of the base part 2, and has a flat box shape. In the present embodiment, the slide part 3 is placed on the ball bearing 7 so that a space of 50 mm in the front, rear, left, and right directions is formed between the slide part 3 and the side plates 9 on the front, rear, left, and right of the base part 2. Thereby, the slide part 3 can slide 50 mm in the horizontal directions of the front, rear, left, and right with respect to the base part 2, and the side plates 9 on the front, rear, left, and right of the base part 2 function as slide restricting parts for restricting the slide length of the slide part 3 in the front, rear, left, and right directions.

[0019] As shown well in FIG. 3, on the top plate 11 of the slide part 3, five guide parts 12 project at predetermined intervals in five rows in the front and rear along the direction perpendicular to the longitudinal direction. Thereby, a placement space 30 for four pipe materials 5 is formed between each of the guide parts 12 on the top plate 11 of the slide part 3, and these guide parts 12 have the function of preventing the pipe material 5 from rolling. Further, as shown in FIG. 3(b), a plurality of pins 13 project downward on the lower surface side of the guide part 12, and pin holes 14 are formed at positions corresponding to these pins 13 on the top plate 11 of the slide part 3. Thereby, the guide part 12 can be attached to and detached from the top plate 11 of the slide part 3.

[0020] As shown in FIG. 4, a rectangular control box 16 for accommodating various electronic devices (not shown) including a receiver 15 that receives commands from a remote controller (not shown) is formed in the central portion inside the slide portion 3. Further, as shown in FIG. 3(a), a rectangular lid portion 17 is provided at the center of the top plate 11 of the slide portion 3 so as to be openable and closable above the control box 16. The remote controller and the various electronic devices constitute a control unit (not shown).

[0021] As shown in FIGS. 4 to 6, anti-lifting portions 18 for preventing the slide portion 3 from lifting with respect to the base portion 2 are provided at two positions, left and right, of the control box 16 inside the slide portion 3. The anti-lifting portion 18 includes a vertically long bolt 19 fixed to the bottom surface 6 of the base portion 2, a longitudinally long bracket 20 with its center fixed to the upper end of the bolt 19, and pressing rubbers 21 fixed to the lower surfaces of the front and rear end portions of the bracket 20.

[0022] An opening 23 through which the bolt 19 of the anti-lifting portion 18 passes is formed in a circular shape on the bottom surface 22 of the slide portion 3, and the size of the opening 23 is set such that the slide portion 3 can slide a predetermined length (for example, 50 mm) in the front, rear, left, and right directions. When an upward lifting force acts on the slide portion 3, the pressing rubber 21 of the anti-lifting portion 18 contacts the bottom surface 22 of the slide portion 3, thereby preventing the slide portion 3 from lifting.

[0023] Further, as shown in FIG. 4, a hasp lock 25 is formed across the front and rear side plates 9 of the base portion 2 and the front and rear side surfaces 24 of the slide portion 3. When it is not necessary to slide the slide portion 3, the hasp lock 25 functions as a slide lock portion that disables the slide operation of the slide portion 3.

[0024] As shown in FIGS. 4 and 7 to 9, on the left and right end portions of the slide portion 3, locking mechanisms 31 are provided at four positions corresponding to the respective placement spaces 30 of the pipe fitting member 5. Each locking mechanism 31 includes a winding portion 33 that can electrically wind a belt 32 wound around the pipe fitting member 5, and a locking portion 35 that can be locked to a hook 34 provided at the tip of the belt 32 wound around the pipe fitting member 5. The winding portion 33 and the locking portion 35 are configured to include a rotary solenoid 36 and a link mechanism 37 composed of a plurality of connecting rods. The locking mechanism 31 can use, for example, a backward prevention belt for a wheelchair, and is configured such that the belt 32 is in a fixed state when not energized and the belt 32 is in a fixed release state when energized. Each operation of fixing and releasing the belt 32 with respect to the winding portion 33 and fixing and releasing the hook 34 of the belt 32 with respect to the locking portion 35 can be remotely operated by the control unit. Further, the power supply for the locking mechanism 31 and the like is branched from the lifting device 50, and the electrical wiring is a one-touch attachment connection.

[0025] Next, a method of using the loading platform device 1 according to the embodiment of the present invention will be described.

[0026] First, as shown in FIG. 1, the four pipe fitting members 5 to be lifted to a high place are respectively placed on the respective placement spaces 30 on the slide portion 3 of the loading platform 4. When the remote controller is remotely operated to energize the locking mechanism 31, the fixing of the belt 32 is released. Therefore, the belt 32 is manually stretched and wound around the pipe fitting member 5 on the placement space 30, and the hook 34 at the tip is locked to the locking portion 35.

[0027] Next, when the remote controller is remotely operated to de-energize the locking mechanism 31, as shown in FIG. 8, the connecting rods of the link mechanism 37 are held linearly and in a fixed state, and the locking portion 35 is held in a horizontal posture. In this fixed state, even if the hook 34 is pulled in the direction of releasing the fixing (the rightward arrow direction in FIG. 8), a compressive stress is applied to the two linearly extended connecting rods among the three connecting rods. Therefore, the fixed state is not released unless the link mechanism 37 is broken.

[0028] With the pipe material 5 fixed to each placement space 30 on the slide part 3 of the loading platform 2 in this way, the loading platform device 1 carrying the pipe material 5 is moved by the lifting device 50 to the lifting-in location. Then, at a predetermined lifting-in location, the lifting device 50 is raised to lift the pipe material 5 to a predetermined height.

[0029] Then, with two workers boarding the aerial work platform in pairs on both sides in the longitudinal direction of the pipe material 5 on the slide part 3 lifted to the predetermined height, when the lock mechanism 31 is energized by remote operation of the remote control, it enters the unlocked state. In this unlocked state, as shown in FIG. 9, the rotary solenoid 36 rotates, and the lock part 35 is held at a position rotated 60 degrees upward from the horizontal posture (see FIG. 9(b)). The hook 34 is disengaged from the lock part 35, and the belt 32 is wound up by the winding part 33. Thereafter, the operation of lifting the pipe material 5 to a predetermined position is performed by two workers in a pair.

[0030] By holding the lock part 35 at a position rotated 60 degrees upward from the horizontal posture in the unlocked state in this way, the hook 34 can be smoothly disengaged from the lock part 35. Therefore, the operation of winding up the belt 32 by the winding part 33 can be performed smoothly and reliably.

[0031] Note that the angle of the lock part 35 from the horizontal posture in the unlocked state is most preferably set to 60 degrees as described above, but it is not necessarily 60 degrees as long as it is in the range of 55 to 65 degrees.

[0032] As described above, according to the loading platform device 1 according to the embodiment of the present invention, the loading platform device 1 carrying building materials such as the pipe material 5 can be moved by the lifting device 50 to the lifting-in location, and the building materials such as the pipe material 5 can be lifted to a predetermined position without dropping them by two workers in a pair.

[0033] In addition, the operation of fixing and releasing the fixing of the belt 32 to the building materials such as the pipe material 5 mounted on the loading platform device 1 can be remotely performed by the remote control.

[0034] Furthermore, when it is noticed that the building materials such as the pipe material 5 mounted on the loading platform device are displaced in position after being hoisted to a high place, the slide part 3 of the loading platform 4 can be slid back and forth and left and right to easily perform the alignment adjustment.

[0035] Therefore, according to the loading platform device 1 according to the above-described embodiment, excellent effects such as labor saving in the work of loading building materials such as the pipe material 5 and improvement in safety can be obtained. In particular, when the building materials are long items such as pipe materials and duct materials, the above effects become more remarkable.

[0036] In addition, as the lifting device 50, various existing types of aerial work platforms can be used, and the loading platform device 1 can be easily attached to the work floor of those aerial work platforms by removing the handrails and using general-purpose tools.

[0037] In the above description of the embodiment according to the present invention, the case where the pipe material 5 is loaded on the loading platform device 1 and hoisted to a high place has been exemplified and described. Needless to say, the loading platform device 1 according to the present invention can also be used when mounting building materials including various equipment such as air conditioners and lighting fixtures, in addition to long items such as duct materials and ceiling base materials other than the pipe material 5 and attaching them to a high place.

[0038] In addition, the above description of the embodiment of the present invention describes a preferred embodiment of the loading platform device 1 according to the present invention, and thus may be subject to various technically preferable limitations. However, the technical scope of the present invention is not limited to these aspects unless there is a description specifically limiting the present invention.

Description of Reference Numerals

[0039] 1 Loading platform device 2 Base part 3 Slide part 5 Pipe material (building material) 7 Ball bearing 9 Side plates (slide restricting parts) on the front, rear, left, and right of the base part 10 Protrusion 12 Guide part 18 Anti-lifting part 25 Snap lock (slide lock part) 31 Lock mechanism 32 Belt 33 Take-up part 35 Lock part 50 Lifting device

Claims

1. A loading platform device installable on a hoisting device used when hoisting building materials to a high place, a base part attached to the hoisting device, a slide part provided on the base part so as to be slidable in a horizontal direction with respect to the base part and capable of mounting the building materials, a winding part capable of electrically winding a belt wound around the building materials, a lock part manually extended from the winding part and capable of locking to the tip of the belt wound around the building materials, a control part enabling remote operation of fixing and releasing the belt to and from the winding part and switching between the fixed state and the released state of the lock part, characterized by comprising the above.

2. a ball bearing enabling the slide operation of the slide part in the horizontal direction, a slide restricting part restricting the slide length of the slide part in the horizontal direction, a slide lock part disabling the slide operation of the slide part, a lifting prevention part preventing the slide part from lifting with respect to the base part, The loading platform device according to claim 1, comprising the above.

3. When the tip of the belt is fixed to the lock part, the lock part is held in a horizontal posture, and when the tip of the belt is released from the lock part, the lock part is held in a position rotated 60 degrees upward from the horizontal posture. The loading platform device according to claim 1.

4. The building materials are long objects including pipe materials and duct materials for building equipment, on the slide part, guide parts for preventing the long object from rolling are provided at predetermined intervals along a direction orthogonal to the longitudinal direction of the long object, Around the base part, a protruding part for preventing the long object from falling is provided. The loading platform device according to any one of claims 1 to 3.

Citation Information

Patent Citations

  • Goods carrying device based on Internet of Things

    CN111923982A

  • lifting work vehicle

    JP1993077197U

  • High working car

    JP1994211495A

  • Work support table for crane

    JP1995117993A

  • Free table fo hanging large heavy device

    JP1996127498A