Building material consumption monitoring management device for engineering management
By designing an expansion device for building material consumption management and combining a laser receiver with a monitoring camera, the problems of data lag and high error rate in traditional building material management are solved. This enables real-time monitoring of building material consumption and convenient expansion of storage areas, thereby improving the accuracy and efficiency of management.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- 李京坛
- Filing Date
- 2025-03-31
- Publication Date
- 2026-04-17
AI Technical Summary
Traditional building material consumption management suffers from problems such as delayed data updates, high error rates, inability to provide real-time feedback, and inability to effectively manage and expand building material storage warehouses.
A monitoring and management device including a building material consumption management expansion unit was designed. The device detects the height of building materials through a laser receiver and provides feedback when the materials are exhausted. It is equipped with a monitoring camera to achieve real-time monitoring. The device can be easily expanded to classify building material types, and the storage compartment can be expanded by using a linkage threaded rod and bolts for fixing.
It enables real-time monitoring and management of building material consumption, reduces data errors, improves the accuracy and efficiency of management, and allows for timely expansion of warehouses to meet demand.
Smart Images

Figure CN224137742U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of engineering management, specifically a building material consumption monitoring and management device for engineering management. Background Technology
[0002] In construction project management, accurate monitoring of building material consumption directly affects cost control and construction efficiency. Traditional management models rely on manual recording and periodic inventory checks, which have inherent defects such as data update delays and high error rates. In recent years, the industry has gradually introduced basic technologies such as weighing sensors and video surveillance, realizing partial digital management of building material entry and exit. With the development of Internet of Things (IoT) technology, wireless sensor networks and data platforms have formed mature application paradigms in energy consumption monitoring, equipment operation and maintenance, and other fields, providing technical references for building material management.
[0003] However, it still has some drawbacks. For example, the industry currently mostly uses the traditional method of manual recording combined with regular inventory, which has problems such as data update lag, high error rate, inability to provide real-time feedback, and inability to manage and expand the warehouses where building materials are stored.
[0004] To address the aforementioned issues, this application proposes a building material consumption monitoring and management device for engineering management. Utility Model Content
[0005] The purpose of this utility model is to provide a building material consumption monitoring and management device for engineering management, so as to solve the problems mentioned in the background art, such as data update lag, high error rate, inability to provide real-time feedback, and inability to manage and expand the storage room for building materials.
[0006] To achieve the above objectives, the technical solution adopted by this utility model is as follows: a building material consumption monitoring and management device for engineering management, including a building material storage warehouse wall and a warehouse base. The building material storage warehouse wall is fixedly connected to the warehouse base. The building material storage warehouse wall is provided in two sets, and a building material consumption management expansion device is detachably connected between the two sets of building material storage warehouse walls. The building material consumption management expansion device facilitates the expansion of the building material storage warehouse wall, thereby classifying different types of building materials and improving the effect of building material consumption monitoring and management. It is also equipped with a laser receiver to detect the current height of the building material stack. When the building materials are exhausted, it can provide feedback to the monitoring terminal. The monitoring camera can transmit the image to the monitoring terminal in real time, further improving the monitoring and management of building material consumption.
[0007] Preferably, the building material storage warehouse wall has a building material storage room inside, the building material storage warehouse wall has fixing grooves on both sides, and the building material storage warehouse wall has multiple sets, and a buffer-type building material storage platform is movable above the inside of the storage room base.
[0008] Preferably, a buffer damping device is fixedly connected below the buffered building material storage platform, the buffer damping device is fixedly connected inside the base of the storage chamber, a monitoring camera is fixedly connected to the rear end of the building material storage chamber, and a building material consumption management expansion device is detachably installed inside and outside the fixing groove.
[0009] Preferably, a laser receiver is fixedly connected to one side of the building material storage room, a communication antenna is fixedly connected above the laser receiver, and a laser transmitter is fixedly connected to the other side of the building material storage room.
[0010] Preferably, the building material consumption management expansion device includes a turntable device, a linkage threaded rod, a bolt-fixed cover plate, a connecting flange, a limiting shaft, a linkage flange, a shaft frame, and a movable fixed cover plate. One side of the turntable device is fixedly connected to the linkage threaded rod, the linkage threaded rod moves inside the fixed groove, and the bolt-fixed cover plate is movable on the surface of the linkage threaded rod.
[0011] Preferably, the bolt-fixing cover plate is detachable to one side of the building material storage compartment, one side of the linkage threaded rod is fixedly connected to the connecting flange, one side of the connecting flange is detachably connected to the linkage flange, the linkage flange is fixedly connected to the limiting shaft, the limiting shaft is movable inside the shaft frame, the shaft frame is fixedly connected to the movable fixing cover plate, the movable fixing cover plate is detachable to one side of the building material storage compartment. When using this device, the monitoring camera installed inside the building material storage compartment can monitor the internal scene in real time, facilitating the user's observation of the on-site situation. The laser receiver installed in the building material storage compartment... When building materials are piled up inside, the laser emitted by the laser transmitter is blocked by the building materials and cannot be received by the laser receiver. However, when the building materials are exhausted, the laser emitted by the laser transmitter can be sent to the laser receiver, at which point an alarm can be triggered to notify that there are not enough building materials. When multiple building material storage rooms need to be added, the walls of the two building material storage rooms are placed in opposite directions, and the bolt fixing cover is fixed to the surface of the fixing groove. At this time, the linkage threaded rod passes through the inside of the fixing groove and enters the other building material storage room. After the connecting flange and the linkage flange are fixed with bolts, the turntable device is rotated to tighten the movable fixing cover until the two building material storage rooms are completely attached and fixed.
[0012] Compared with the prior art, the beneficial effects of this utility model are:
[0013] This utility model, through the construction material consumption management expansion device, facilitates the convenient expansion of the construction material storage warehouse wall, thereby classifying different types of construction materials and improving the effectiveness of construction material consumption monitoring and management. It is also equipped with a laser receiver to detect the current height of the construction material stack, and can provide feedback to the monitoring terminal when the construction materials are exhausted. In addition, the installed monitoring camera can transmit the image to the monitoring terminal in real time, further improving the monitoring and management of construction material consumption. Attached Figure Description
[0014] Figure 1 This is a schematic diagram of the overall structure of a building material consumption monitoring and management device for engineering management according to this utility model;
[0015] Figure 2 This is a schematic diagram of the building material warehouse structure of a building material consumption monitoring and management device for engineering management according to this utility model;
[0016] Figure 3 This is a schematic diagram of the structure of a building material consumption monitoring and management device for engineering management, according to the present invention.
[0017] Figure 4 This is a schematic diagram of the installation structure of a building material consumption monitoring and management extension device for engineering management, according to the present invention.
[0018] In the diagram: 1. Building material storage warehouse wall; 11. Fixing groove; 12. Building material warehouse; 2. Warehouse base; 3. Buffer-type building material storage platform; 31. Buffer damping device; 4. Laser receiver; 41. Communication antenna; 5. Laser transmitter; 6. Building material consumption management expansion device; 61. Turntable device; 62. Linkage threaded rod; 63. Bolt fixing cover plate; 64. Connecting flange; 65. Limiting pivot; 66. Linkage flange; 67. Pivot frame; 68. Movable fixing cover plate; 7. Monitoring camera. Detailed Implementation
[0019] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present utility model. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments.
[0020] Please see Figures 1-4 A building material consumption monitoring and management device for engineering management includes a building material storage warehouse wall 1 and a warehouse base 2. The building material storage warehouse wall 1 is fixedly connected to the warehouse base 2. The building material storage warehouse wall 1 is provided with two sets, and a building material consumption management expansion device 6 is detachably connected between the two sets of building material storage warehouse walls 1. The building material consumption management expansion device 6 facilitates the expansion of the building material storage warehouse wall 1, thereby classifying different types of building materials and improving the effect of building material consumption monitoring and management. It is also equipped with a laser receiver 4 to detect the current height of the building material stack. When the building materials are exhausted, it can provide feedback to the monitoring terminal. The monitoring camera 7 can transmit the image to the monitoring terminal in real time, further improving the monitoring and management of building material consumption.
[0021] In this embodiment, as shown Figures 1-2As shown, a building material storage chamber 12 is provided inside the building material storage wall 1. Fixing slots 11 are provided on both sides of the building material storage wall 1, and the building material storage wall 1 is provided with multiple sets. A buffer-type building material storage platform 3 is movable above the inside of the chamber base 2. The buffer-type building material storage platform 3 is fixedly connected to a buffer damping device 31 below. The buffer damping device 31 is fixedly connected to the inside of the chamber base 2. A monitoring camera 7 is fixedly connected to the rear end of the building material chamber 12. A building material consumption management expansion device 6 is detachably provided inside and outside the fixing slot 11. A laser receiver 4 is fixedly connected to one side of the building material chamber 12. A communication antenna 41 is fixedly connected above the laser receiver 4. A laser transmitter 5 is fixedly connected to the other side of the building material chamber 12.
[0022] In this embodiment, as shown Figures 3-4 As shown, the building materials consumption management expansion device 6 includes a turntable device 61, a linkage threaded rod 62, a bolt-fixed cover plate 63, a connecting flange 64, a limiting shaft 65, a linkage flange 66, a shaft frame 67, and a movable fixed cover plate 68. One side of the turntable device 61 is fixedly connected to the linkage threaded rod 62, which moves within the fixing groove 11. The bolt-fixed cover plate 63 is movably mounted on the surface of the linkage threaded rod 62 and is detachable from one side of the building materials storage chamber 12. One side of the linkage threaded rod 62 is fixedly connected to the connecting flange 64, and the connecting flange 64 has a detachable linkage flange 66 on one side. The linkage flange 66 is fixedly connected to the limiting shaft 65, which moves within the shaft frame 67. The shaft frame 67 is fixedly connected to the movable fixed cover plate 68, which is detachable from one side of the building materials storage chamber 12. When using this device… The monitoring camera 7 installed inside the building material storage room 12 can monitor the internal scene in real time, making it convenient for users to observe the situation on site. When building materials are piled up inside the building material storage room 12, the laser of the laser transmitter 5 is blocked by the building materials and cannot be received by the laser receiver 4. However, when the building materials are exhausted, the laser of the laser transmitter 5 can be sent to the laser receiver 4, at which point an alarm can be issued to notify that there are not enough building materials. When multiple building material storage rooms 12 need to be expanded, the two building material storage room walls 1 are placed in opposite directions, and the bolt fixing cover plate 63 is fixed to the surface of the fixing groove 11. At this time, the linkage threaded rod 62 passes through the inside of the fixing groove 11 and enters the other building material storage room 12. After the connecting flange 64 and the linkage flange 66 are fixed with bolts, the turntable device 61 is rotated to tighten the movable fixing cover plate 68 until the two building material storage rooms 12 are completely attached and fixed.
[0023] Working principle
[0024] A building material consumption monitoring and management extension device 6 for engineering management facilitates the convenient expansion of the building material storage warehouse wall 1, enabling classification according to different types of building materials and improving the effectiveness of building material consumption monitoring and management. It is equipped with a laser receiver 4 to detect the current height of the building material stack, and can send feedback to the monitoring terminal when the building materials are depleted. Furthermore, a monitoring camera 7 can transmit images to the monitoring terminal in real time, further enhancing the monitoring and management of building material consumption. When using this device, the monitoring camera 7 inside the building material warehouse 12 can monitor the internal scene in real time, allowing users to observe the situation on site. The laser receiver 4... When building materials are piled up inside the building material storage room 12, the laser from the laser emitter 5 is blocked by the building materials and cannot be received by the laser receiver 4. However, when the building materials are exhausted, the laser from the laser emitter 5 can be sent to the laser receiver 4, at which point an alarm can be issued to notify that there are not enough building materials. When multiple building material storage rooms 12 need to be expanded, the two building material storage room walls 1 are placed in opposite directions, and the bolt fixing cover plate 63 is fixed to the surface of the fixing groove 11. At this time, the linkage threaded rod 62 passes through the inside of the fixing groove 11 and enters the other building material storage room 12. After the connecting flange 64 and the linkage flange 66 are fixed with bolts, the turntable device 61 is rotated to tighten the movable fixing cover plate 68 until the two building material storage rooms 12 are completely attached and fixed.
[0025] Based on the embodiments of this utility model, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this utility model.
Claims
1. A building material consumption monitoring and management device for engineering management, comprising a building material storage warehouse wall (1) and a warehouse base (2), characterized in that: The building material storage warehouse wall (1) is fixedly connected to the warehouse base (2) below. The building material storage warehouse wall (1) is provided in two sets, and a building material consumption management expansion device (6) is detachably connected between the two sets of building material storage warehouse walls (1). The building material consumption management expansion device (6) includes a turntable device (61), a linkage threaded rod (62), a bolt fixing cover plate (63), a connecting flange (64), a limiting rotating shaft (65), a linkage flange (66), a rotating shaft frame (67), and a movable fixing cover plate (68). The turntable device (61) is fixedly connected to the linkage threaded rod (62) on one side, and the linkage threaded rod (62) is movable in the fixing groove ( 11) Inside, the surface of the linkage threaded rod (62) is movably fitted with a bolt fixing cover plate (63); the bolt fixing cover plate (63) is detachable to one side of the building material storage chamber (12), one side of the linkage threaded rod (62) is fixedly connected to the connecting flange (64), one side of the connecting flange (64) is detachably fitted with a linkage flange (66), the linkage flange (66) is fixedly connected to the limiting shaft (65), the limiting shaft (65) is movably inside the shaft frame (67), the shaft frame (67) is fixedly connected to a movable fixing cover plate (68), and the movable fixing cover plate (68) is detachable to one side of the building material storage chamber (12).
2. The construction material consumption monitoring management device for engineering management according to claim 1, characterized in that: The building material storage warehouse wall (1) has a building material storage room (12) inside. The building material storage warehouse wall (1) has fixed grooves (11) on both sides. The building material storage warehouse wall (1) has multiple sets. The storage room base (2) has a buffer-type building material storage platform (3) that moves inside.
3. The construction material consumption monitoring management device for engineering management according to claim 2, characterized by: The buffered building material storage platform (3) is fixedly connected to the buffer damping device (31) below, the buffer damping device (31) is fixedly connected to the inside of the warehouse base (2), the rear end of the building material warehouse (12) is fixedly connected to the monitoring camera (7), and the building material consumption management expansion device (6) is detachable inside and outside the fixed groove (11).
4. The construction material consumption monitoring management device for engineering management according to claim 3, characterized by: One side of the building material storage room (12) is fixedly connected to the laser receiver (4), the upper part of the laser receiver (4) is fixedly connected to the communication antenna (41), and the other side of the building material storage room (12) is fixedly connected to the laser transmitter (5).