Mobile engineering management platform

By designing a mobile engineering management platform, the problem of difficult weighing and position adjustment of forklift cargo has been solved, and convenient weighing and flexible position adjustment of forklift cargo has been achieved to adapt to different working environments.

CN223457614UActive Publication Date: 2025-10-21胡银涛
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Patent Information

Application Number
CN202422849925.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-22
Publication Date
2025-10-21
Estimated Expiration
2034-11-22

AI Technical Summary

Technical Problem

The existing technology lacks a weighing structure for forklift-type transport equipment, which makes it difficult to conveniently remove goods from the forklift for weighing, and the working position is inconvenient to adjust.

Method used

A mobile engineering management platform was designed, which includes a mobile base, a weighing machine, a display screen, a computer group and a support base. The driving motor is used to rotate the conveyor belt for weighing, and the angle and position of the base are adjusted by the electric cylinder and steering motor to achieve flexible positioning and weighing.

Benefits of technology

It realizes the convenient weighing and position adjustment of forklift cargo, improves the convenience and flexibility of weighing, and adapts to different working environments.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides a mobile engineering management platform, which relates to the technical field of engineering management and comprises a mobile base, and two groups of universal wheels for moving are arranged below the front side and the rear side of the mobile base; a weight measuring groove is formed in the front side of the top of the movable base and penetrates through the right end, and two sets of vertical through grooves are formed in the weight measuring groove. A weighing device is fixedly arranged in the weighing groove; a display screen is fixedly erected on the top of one end of the movable base; a computer set is fixedly arranged on the rear side of the top of the movable base. The weighing device is arranged, a convenient weighing function is provided, besides normal placement and use, materials can be placed above the conveying belt, the driving motor is started to drive the conveying belt to rotate, then the materials can be completely conveyed to the position above the weighing device, at the moment, the weighing sensor at the bottom of the weighing device is used for weighing, and the display screen is used for displaying. And the material weight is fed back to the computer group for recording and analysis, so that the problem that an existing platform is inconvenient to weigh is solved.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to engineering management technical field, more specifically, it is especially related to a mobile engineering management platform. BACKGROUND

[0002] In the engineering construction, need to the material used for weighing approval, the subsequent audit is convenient, judge whether reasonable, and building material general volume is big, adopts the forklift to transport, therefore generally all adopt the ground pound type weighing structure and carry out the weighing.

[0003] Based above, the current management mode is inconvenient to take down the goods on the forklift for weighing, lacks the weighing structure adapted to the forklift type transport equipment, and is inconvenient to adjust the working position as needed. UTILITY MODEL CONTENTS

[0004] In order to solve the above technical problems, the utility model provides a mobile engineering management platform to solve the problems of the existing management mode inconvenient to take down the goods on the forklift for weighing, lack of weighing structure adapted to the forklift type transport equipment and inconvenient to adjust the working position as needed in the background art.

[0005] The purpose and effect of the mobile engineering management platform are achieved by the following specific technical means:

[0006] A mobile engineering management platform, including mobile base, the front and rear sides of mobile base are provided with two groups of universal wheels for moving below, a weighing groove is formed through the right end of the top front side of mobile base, two groups of vertical grooves are formed in the weighing groove, a weighing device is fixedly arranged in the weighing groove, a display screen is fixedly arranged on the top of one end of mobile base, a computer group is fixedly arranged on the top rear side of mobile base, a monitor is fixedly arranged on the top of computer group, a circular groove structure is formed on the bottom rear side of mobile base, an electric cylinder and a control frame are fixedly arranged in the circular groove structure, and a support base is rotatably arranged on the extension end of electric cylinder in cooperation with tapered roller bearing.

[0007] Further, the weighing device is of three-section structure, three groups of conveying belts are rotatably arranged in the weighing device, a driving motor is fixedly arranged on the front side of weighing device, and the driving motor is synchronously connected with the shafts of three groups of conveying belts.

[0008] Further, the positions of two intervals of weighing device are aligned with the positions of vertical grooves, and a weighing sensor is arranged between the bottom of weighing device and mobile base.

[0009] Further, the bottom of support base is embedded with rubber strips for anti-friction.

[0010] Further, an inner gear ring is formed in the middle of the top of support base.

[0011] Further, the control frame is rotatably arranged below the rotating sleeve, a six-rib shaft is slidably arranged in the rotating sleeve, a control gear is fixedly arranged at the bottom end of the six-rib shaft, and the control gear is engaged with the internal gear ring; a steering motor is fixedly arranged outside the control frame, and the steering motor is in bevel gear transmission connection with the rotating sleeve.

[0012] Compared with the prior art, the utility model has the beneficial effects that:

[0013] The weighter is arranged, convenient weighing function is provided, in addition to normal placement and use, material can be placed above the conveying belt, the driving motor is started to drive the conveying belt to rotate, material can be completely conveyed above the weighter, the weighing sensor at the bottom of the weighter is used to weigh, and the display screen is used to display, the weight of the material can be known, and feedback is given to the computer group to record and analyze.

[0014] The supporting base is arranged, placement positioning and angle adjusting functions are provided, when the angle needs to be adjusted, the supporting base is continuously lowered by starting the electric cylinder, the moving base is lifted by the counteracting force, the rotating sleeve is rotated by starting the steering motor, the six-rib shaft and the six-rib shaft are rotated by the rotating sleeve cooperating with the bevel gear, the moving base is rotated by the six-rib shaft counteracting the internal gear ring, the corresponding angle is adjusted, the position can be crossed in the tunnel and the like which cannot be directly crossed, convenience is provided for use.

[0015] The rotating sleeve is arranged, transmission function is provided, the six-rib shaft is slidably arranged in the rotating sleeve, the transmission effect can be maintained during movement, the power transmission of the control gear can be maintained during the height adjustment of the moving base, simultaneous rotation and height adjustment are realized. BRIEF DESCRIPTION OF DRAWINGS

[0016] Figure 1 It is the three-dimensional structure schematic diagram of the utility model.

[0017] Figure 2 It is the isometric structure schematic diagram of the utility model.

[0018] Figure 3 It is the side view structure schematic diagram of the utility model.

[0019] Figure 4 It is the side view structure schematic diagram of the utility model supporting base.

[0020] Figure 5 It is the transmission structure schematic diagram of the utility model supporting base.

[0021] In the drawing, the corresponding relationship between the component name and the drawing number is as follows:

[0022] 1, mobile base; 101, weighing groove; 102, vertical channel; 2, weighing device; 201, conveying belt; 202, driving motor; 3, display screen; 4, computer group; 5, monitor; 6, electric cylinder; 7, support base; 701, inner gear ring; 8, control frame; 801, rotating sleeve; 802, hexagonal shaft; 803, control gear; 9, steering motor. DETAILED DESCRIPTION

[0023] The embodiments of the present application will be further described in detail below with reference to the drawings and examples.

[0024] Example 1:

[0025] As shown in the accompanying Figure 1 to the accompanying Figure 5 As shown:

[0026] The utility model provides a mobile engineering management platform, including mobile base 1, mobile base 1's front and rear side below all are provided with two groups for moving universal wheel, mobile base 1's top front side is passed right end and is set up with the weighing groove 101, is set up with two groups vertical channel 102 in the weighing groove 101, the weighing device 2 is fixedly arranged in the weighing groove 101, mobile base 1 one end top fixed frame is provided with display screen 3, the top rear side of mobile base 1 is fixedly set up with computer group 4, and the top of computer group 4 is fixedly set up with monitor 5, the bottom rear side of mobile base 1 is set up with round groove structure, and electric cylinder 6 and control frame 8 are fixedly set up in the round groove structure, and the telescopic end of electric cylinder 6 is rotatably provided with support base 7 in cooperation with tapered roller bearing.

[0027] Among them, the weighing device 2 is three-section structure, and three groups of conveying belts 201 are rotatably arranged in the weighing device 2, and a driving motor 202 is fixedly arranged on the front side of the weighing device 2, and the driving motor 202 is synchronously and transmissionally connected with the shafts of the three groups of conveying belts 201.

[0028] Among them, the two intervals of the weighing device 2 are aligned with the positions of the vertical channels 102, and a weighing sensor is arranged between the bottom of the weighing device 2 and the mobile base 1.

[0029] Among them, the bottom of the support base 7 is embedded with rubber strips for anti-friction.

[0030] Among them, the inner gear ring 701 is arranged in the middle of the top of the support base 7.

[0031] Among them, the rotating sleeve 801 is rotatably arranged below the control frame 8, the hexagonal shaft 802 is slidably arranged in the rotating sleeve 801, the control gear 803 is fixedly arranged at the bottom end of the hexagonal shaft 802, and the control gear 803 is engaged with the inner gear ring 701; the steering motor 9 is fixedly arranged outside the control frame 8, and the steering motor 9 is transmissionally connected with the bevel gear of the rotating sleeve 801.

[0032] AsFigures 1-5 As shown, the material is transported to the upper side of the weighing device 2 by using the forklift type tool, and placed on the upper side of the conveying belt 201 by butt joint, and the driving motor 202 is started to drive the conveying belt 201 to rotate, so that the material can be completely transported to the upper side of the weighing device 2, at this time, the weighing sensor at the bottom of the weighing device 2 is used for weighing, and the display screen 3 is used for display, so that the weight of the material can be known, and feedback to the computer group 4 for record analysis;

[0033] Conversely, the material can be unloaded.

[0034] Embodiment 2:

[0035] On the basis of embodiment 1, the material is transported to the upper side of the weighing device 2 by using the forklift type tool, and placed on the upper side of the conveying belt 201 by butt joint, and the driving motor 202 is started to drive the conveying belt 201 to rotate, so that the material can be completely transported to the upper side of the weighing device 2, at this time, the weighing sensor at the bottom of the weighing device 2 is used for weighing, and the display screen 3 is used for display, so that the weight of the material can be known, and feedback to the computer group 4 for record analysis;

[0036] After the weighing is completed, the foregoing steps are reversed, and the material can be unloaded.

[0037] The specific use mode and effect of the embodiment are as follows:

[0038] In the utility model, when using, the movable base 1 is moved to the position of weighing, and then the electric cylinder 6 is started to make the supporting base 7 contact the ground, so that the anti-skid positioning is realized, and the components of the computer group 4 are fixed;

[0039] The material is transported to the upper side of the weighing device 2 by using the forklift type tool, and placed on the upper side of the conveying belt 201 by butt joint, and the driving motor 202 is started to drive the conveying belt 201 to rotate, so that the material can be completely transported to the upper side of the weighing device 2, at this time, the weighing sensor at the bottom of the weighing device 2 is used for weighing, and the display screen 3 is used for display, so that the weight of the material can be known, and feedback to the computer group 4 for record analysis; conversely, the material can be unloaded;

[0040] When the angle needs to be adjusted, the electric cylinder 6 is started to make the supporting base 7 continue to descend, the reaction force of the reverse push rises the movable base 1, at this time, the steering motor 9 is started to drive the rotating sleeve 801 to rotate, the rotating sleeve 801 cooperates with the bevel gear to drive the six-rib shaft 802 and the six-rib shaft 802 to rotate, the six-rib shaft 802 reversely pushes the inner gear ring 701, so that the movable base 1 can rotate itself, the corresponding angle can be adjusted, and the movable base 1 can be arranged on the position that cannot be directly crossed, such as a tunnel, so that convenience is provided for use.

Claims

1. A mobile engineering management platform, characterized by, Include: Mobile base (1), the front and rear side of the mobile base (1) is provided with two groups of universal wheels for moving below; the top front side of the mobile base (1) is provided with a weighing groove (101) through the right end, two groups of vertical through grooves (102) are arranged in the weighing groove (101); a load cell (2) is fixedly arranged in the weighing groove (101); a display screen (3) is fixedly arranged on one end of the top of the mobile base (1); a computer group (4) is fixedly arranged on the top rear side of the mobile base (1), and a monitor (5) is fixedly arranged on the top of the computer group (4); the bottom rear side of the mobile base (1) is provided with a circular groove structure, and an electric cylinder (6) and a control frame (8) are fixedly arranged in the circular groove structure, and the telescopic end of the electric cylinder (6) is rotatably provided with a support base (7) through a tapered roller bearing.

2. The mobile engineering management platform of claim 1, wherein: The load cell (2) is a three-section structure, three groups of conveying belts (201) are rotatably arranged in the load cell (2), and a drive motor (202) is fixedly arranged on the front side of the load cell (2); the drive motor (202) is synchronously connected with one side of the rotating shaft of the three groups of conveying belts (201).

3. The mobile engineering management platform of claim 1, wherein: The positions of the two spaced-apart load cells (2) are aligned with the vertical through grooves (102), and a load sensor is arranged between the bottom of the load cell (2) and the mobile base (1).

4. The mobile engineering management platform of claim 1, wherein: The bottom of the support base (7) is embedded with a rubber strip for anti-friction.

5. The mobile engineering management platform of claim 1, wherein: The top of the support base (7) is provided with an inner gear ring (701) in the middle.

6. The mobile engineering management platform of claim 5, wherein: A rotating sleeve (801) is rotatably arranged below the control frame (8), a six-rib shaft (802) is slidably arranged in the rotating sleeve (801), a control gear (803) is fixedly arranged at the bottom end of the six-rib shaft (802), and the control gear (803) is engaged with the inner gear ring (701); a steering motor (9) is fixedly arranged outside the control frame (8), and the steering motor (9) is connected with the rotating sleeve (801) through bevel gear transmission.