CN214272890U - Engineering scaffold lock catch with tension monitoring device - Google Patents
Engineering scaffold lock catch with tension monitoring device Download PDFInfo
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- CN214272890U CN214272890U CN202021674103.3U CN202021674103U CN214272890U CN 214272890 U CN214272890 U CN 214272890U CN 202021674103 U CN202021674103 U CN 202021674103U CN 214272890 U CN214272890 U CN 214272890U
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Abstract
The utility model aims at providing an engineering scaffold frame hasp with pulling force monitoring devices, its characterized in that: the scaffold comprises two scaffold lock catches, wherein the two scaffold lock catches are vertically distributed and connected in a transverse and longitudinal mode, each scaffold lock catch comprises a lock catch piece, a fastening bolt and a tension monitoring device, and the tension monitoring device comprises a bolt fixing piece, a tension monitor, a battery, a solar panel, a trigger, a plurality of sensors and an alarm; the whole engineering scaffold lock catch is simple in structure and convenient to use, has a tension monitoring device, utilizes the vibrating wire principle to cooperate trigger and alarm, and whether go to detect scaffold fixing bolt and become flexible to guarantee the stability of scaffold lock catch spare, the solar panel who is equipped with can charge for tension monitoring device's battery, guarantees its normal operation and real-time supervision, safe and reliable more.
Description
Technical Field
The utility model relates to an engineering construction field especially relates to an engineering scaffold frame hasp with pulling force monitoring devices.
Background
The scaffold for the building engineering is a temporary structural facility for loading, stacking and engaging in construction operation activities, is a common facility for high-altitude operation construction of the building engineering, and can ensure the safety of construction; due to the particularity of the building height of the scaffold, certain safety risks also exist, so that the safety technical evaluation of the firmness and stability of the scaffold is particularly important; at present, the structure of scaffold frame commonly used in construction is very simple, though there is different change in the aspect of the structure, satisfy outside more stable firm technical assessment, but its effect is the same, and along with the continuation of engineering, the stability assessment of whole scaffold frame then seems comparatively loaded down with trivial details, its insecure that becomes flexible or the hasp makes the danger coefficient of construction increase, the effect that the early warning was reminded can not be played to this kind of limitation, the potential safety hazard in the middle of the operation construction has been increased, how to solve the insecure factor that long-time use takes place, then need improve and upgrade current scaffold frame.
SUMMERY OF THE UTILITY MODEL
The utility model aims at providing a have pulling force monitoring devices utilizes the vibrating wire principle to cooperate trigger and alarm, goes to detect whether scaffold frame fixing bolt is not hard up to guarantee scaffold frame hasp piece's stability, the solar panel who is equipped with can charge for pulling force monitoring devices's battery, guarantees its normal operation and real-time supervision, safe and reliable's engineering scaffold frame hasp more.
The technical scheme of the utility model is that: the utility model provides an engineering scaffold frame hasp with pulling force monitoring devices which characterized in that: the scaffold is characterized by comprising two scaffold lock catches, wherein one scaffold lock catch is positioned at one side of the other scaffold lock catch, the two scaffold lock catches are transversely, longitudinally and vertically distributed and are fixedly connected, any scaffold lock catch comprises a lock catch piece, a fastening bolt and a tension monitoring device, the fastening bolt and the tension monitoring device are all positioned at the opening position of the lock catch piece, the tension monitoring device is fixedly connected with the lock catch piece, the fastening bolt penetrates through the lock catch piece and the tension monitoring device and is fixedly connected with the tension monitoring device, the tension monitoring device comprises a bolt fixing piece, a tension monitor, a battery, a solar panel, a trigger, a plurality of sensors and an alarm, the bolt fixing piece is positioned at one side of the opening position of the lock catch piece, the bolt fixing piece and the lock catch piece are fixedly connected, the tension monitor is positioned at the position close to the upper part of the inner, the utility model discloses a bolt tension monitoring device, including bolt mounting, battery, trigger, tensile monitor, bolt mounting, battery and bolt mounting, the tensile monitor is fixed connection with the bolt mounting, the battery is fixed connection with the bolt mounting, solar panel is located the upper portion of battery, solar panel is fixed connection with the battery, the trigger is located the inside of bolt mounting, and the trigger is located the lower part of tensile monitor, the trigger is fixed connection with the tensile monitor, the same distance evenly distributed in the lower part of trigger in interval between a plurality of inductors, a plurality of inductors all are fixed connection with the trigger, the alarm is located one side of tensile monitor, and the alarm is located the outside of bolt mounting, the one end of alarm is passed the bolt mounting and is fixed connection with the tensile monitor.
Further, the locking fastener is two arc fasteners connected by a rotating shaft.
Further, the bolt fixing part is of a threaded hollow structure.
Further, the tension monitor is an electric control type tension setting monitoring device.
Further, the battery is a lithium battery with a solar power generation device.
Further, the inductor is a vibrating wire sensor.
Furthermore, the alarm is a sound-light alarm device.
The beneficial effects of the utility model reside in that: the engineering scaffold is provided with a plurality of sensors in a threaded hollow structure penetrating through a bolt fixing piece, the sensors can touch the threaded structure of part of fastening bolts in the bolt fixing piece, once the fastening bolts of the scaffold are loosened in the construction process, the fastening bolts can change in the bolt fixing piece, and then the sensors can be triggered, each sensor adopts a vibrating string type sensor with higher sensitivity, when the fastening bolts are loosened and displaced in the bolt fixing piece, the sensors can be triggered, if the sensors are triggered, the triggers can be opened, sensing signals can be transmitted to a tension monitor from the triggers, the tension monitor adopts an electric control type tension setting monitoring device, constructors can set a vibration trigger value by using the tension monitor, once the value monitored by the sensors exceeds the value set by the tension monitor, the alarm is started, the alarm adopts an audible and visual alarm device and can send out audible and visual early warning signals to remind constructors that a lock catch piece at the connecting position of the area is abnormal and needs to be maintained and reinforced, in addition, the upper part of the tension monitor is provided with a battery and a solar panel, the battery adopts a lithium battery with a solar power generation device, the solar panel at the top of the battery is utilized to convert solar energy into electric energy to charge the battery, the normal operation of the tension monitor is further ensured, the electric quantity state of the battery can be displayed on a screen of the tension monitor, and the constructors can replace the battery according to the electric quantity condition; the whole engineering scaffold lock catch is simple in structure and convenient to use, has a tension monitoring device, utilizes the vibrating wire principle to cooperate trigger and alarm, and whether go to detect scaffold fixing bolt and become flexible to guarantee the stability of scaffold lock catch spare, the solar panel who is equipped with can charge for tension monitoring device's battery, guarantees its normal operation and real-time supervision, safe and reliable more.
Drawings
Fig. 1 is a front view of the present invention.
Fig. 2 is the structural schematic diagram of the tension monitoring device of the present invention.
Wherein: 1. scaffold lock catch 2, lock catch piece 3 and fastening bolt
4. Tension monitoring device 5, bolt fixing piece 6 and tension monitor
7. Battery 8, solar panel 9, trigger
10. Inductor 11 and alarm
Detailed Description
The following provides a brief description of the embodiments of the present invention with reference to the accompanying drawings.
As shown in fig. 1 and 2, the engineering scaffold lock catch with the tension monitoring device is characterized in that: the scaffold lock catch comprises two scaffold lock catches 1, wherein one scaffold lock catch 1 is positioned on one side of the other scaffold lock catch 1, the two scaffold lock catches 1 are transversely and longitudinally vertically distributed and are fixedly connected, the scaffold lock catch 1 is optionally composed of a lock catch piece 2, a fastening bolt 3 and a tension monitoring device 4, the fastening bolt 3 and the tension monitoring device 4 are all positioned at the opening position of the lock catch piece 2, the tension monitoring device 4 is fixedly connected with the lock catch piece 2, the fastening bolt 3 penetrates through the lock catch piece 2 and the tension monitoring device 4 and is fixedly connected with the lock catch piece 4, the tension monitoring device 4 is composed of a bolt fixing piece 5, a tension monitor 6, a battery 7, a solar panel 8, a trigger 9, a plurality of inductors 10 and an alarm 11, the bolt fixing piece 5 is positioned on one side of the opening position of the lock catch piece 2, the bolt fixing piece 5 is fixedly connected with the lock catch piece 2, the tension monitor 6 is located at a position close to the upper part of the inner side of the bolt fixing piece 5, the tension monitor 6 is fixedly connected with the bolt fixing piece 5, the battery 7 is located at the top of the bolt fixing piece 5, the battery 7 is fixedly connected with the bolt fixing piece 5, the solar panel 8 is located at the upper part of the battery 7, the solar panel 8 is fixedly connected with the battery 7, the trigger 9 is located inside the bolt fixing piece 5, the trigger 9 is located at the lower part of the tension monitor 6, the trigger 9 is fixedly connected with the tension monitor 6, the sensors 10 are uniformly distributed at the lower part of the trigger 9 at the same interval, the sensors 10 are all fixedly connected with the trigger 9, the alarm 11 is located at one side of the tension monitor 6, and the alarm 11 is located outside the bolt fixing piece 5, one end of the alarm 11 penetrates through the bolt fixing piece 5 and is fixedly connected with the tension monitor 6. The lock catch piece 2 is two arc-shaped fasteners connected by a rotating shaft. The bolt fixing piece 5 is of a threaded hollow structure. The tension monitor 6 is an electric control type tension setting and monitoring device. The battery 7 is a lithium battery with a solar power generation device. The inductor 10 is a vibrating wire sensor. The alarm 11 is a sound and light alarm device.
The working mode is as follows: the engineering component mainly comprises two scaffold lock catches 1, wherein one scaffold lock catch 1 is positioned on one side of the other scaffold lock catch 1, the two scaffold lock catches 1 are distributed and fixedly connected in a transverse and longitudinal vertical manner, the structure distributed in the transverse and longitudinal vertical manner is used for building a scaffold support rod, each scaffold lock catch 1 comprises a lock catch piece 2, a fastening bolt 3 and a tension monitoring device 4, the lock catch piece 2 is two arc-shaped fasteners connected through a rotating shaft, so that the lock catch piece 2 can be conveniently opened and closed, the two arc-shaped fastener structures of the lock catch piece 2 can meet the folding of scaffold pipes, and the scaffold can be built more flexibly; when the scaffold is used, a constructor only needs to detach the fastening bolt 3, open the locking piece 2, place the scaffold pipe into the two arc-shaped fastener structures of the locking piece 2, then fasten the two arc-shaped fastener structures of the locking piece 2 by using the fastening bolt 3, and enable the fastening bolt 3 to pass through the opening position of the locking piece 2 and the tension monitoring device 4 arranged at the opening position, so that the scaffold pipe is fastened in the two arc-shaped fastener structures of the locking piece 2, and the constructor completes construction of the scaffold according to the operation; after the scaffold is built, opening a tension monitoring device 4, wherein the tension monitoring device 4 comprises a bolt fixing piece 5, a tension monitor 6, a battery 7, a solar panel 8, a trigger 9, a plurality of sensors 10 and an alarm 11, the bolt fixing piece 5 adopts a threaded hollow structure and is arranged at the opening position of a lock catch piece 2, the threaded hollow structure of the bolt fixing piece 5 corresponds to the position of a round hole at the opening position of the lock catch piece 2 for a fastening bolt 3 to pass through, namely when the fastening bolt 3 passes through the round hole at the opening position of the lock catch piece 2, the fastening bolt can also pass through the threaded hollow structure of the bolt fixing piece 5, the plurality of sensors 10 are arranged in the threaded hollow structure passing through the bolt fixing piece 5, and the sensors 10 can touch the threaded structure of the part of the fastening bolt 3 in the bolt fixing piece 5, in the construction process, once the fastening bolt 3 of the scaffold is loosened, the fastening bolt 3 changes in the bolt fixing piece 5, so that the sensors 10 are triggered, each sensor 10 adopts a vibrating string type sensor, the sensitivity is higher, when the fastening bolt 3 is loosened and displaced in the bolt fixing piece 5, the sensor 10 is triggered, if the sensor 10 is triggered, the trigger 9 is opened, a sensing signal is transmitted to the tension monitor 6 from the trigger 9, the tension monitor 6 adopts an electric control type tension setting monitoring device, a constructor can use the tension monitor 6 to set a vibration trigger value, once the value monitored by the sensor 10 exceeds the value set by the tension monitor 6, the alarm 11 is opened, the alarm 11 adopts an audible and visual alarm device, and an audible and visual early warning signal is sent out, the tension monitoring device is used for reminding constructors that the lock catch piece 2 at the connecting position of the area is abnormal and needs to be maintained and reinforced, in addition, the upper part of the tension monitoring device 6 is provided with a battery 7 and a solar panel 8, the battery 7 adopts a lithium battery with a solar power generation device, the solar panel 8 at the top of the battery is used for converting solar energy into electric energy to charge the battery 7, the normal operation of the tension monitoring device 6 is further ensured, the electric quantity state of the battery 7 can be displayed on the screen of the tension monitoring device 6, and the constructors can replace the battery 7 according to the electric quantity condition; the whole engineering scaffold lock catch is simple in structure and convenient to use, has a tension monitoring device, utilizes the vibrating wire principle to cooperate trigger and alarm, and whether go to detect scaffold fixing bolt and become flexible to guarantee the stability of scaffold lock catch spare, the solar panel who is equipped with can charge for tension monitoring device's battery, guarantees its normal operation and real-time supervision, safe and reliable more.
In the description of the present invention, it should be noted that the terms "center", "longitudinal", "lateral", "up", "down", "front", "back", "left", "right", "vertical", "horizontal", "inner", "outer", "top", "bottom", "end", etc. indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, and are only for convenience of description and simplification of the description, but do not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and thus, should not be construed as limiting the present invention. Furthermore, the terms "first," "second," and "third" are used for descriptive purposes only and are not to be construed as indicating or implying relative importance.
While one embodiment of the present invention has been described in detail, the description is only a preferred embodiment of the present invention, and should not be considered as limiting the scope of the present invention. All the equivalent changes and improvements made according to the application scope of the present invention should still fall within the patent coverage of the present invention.
Claims (7)
1. The utility model provides an engineering scaffold frame hasp with pulling force monitoring devices which characterized in that: the scaffold is characterized by comprising two scaffold lock catches, wherein one scaffold lock catch is positioned at one side of the other scaffold lock catch, the two scaffold lock catches are transversely, longitudinally and vertically distributed and are fixedly connected, any scaffold lock catch comprises a lock catch piece, a fastening bolt and a tension monitoring device, the fastening bolt and the tension monitoring device are all positioned at the opening position of the lock catch piece, the tension monitoring device is fixedly connected with the lock catch piece, the fastening bolt penetrates through the lock catch piece and the tension monitoring device and is fixedly connected with the tension monitoring device, the tension monitoring device comprises a bolt fixing piece, a tension monitor, a battery, a solar panel, a trigger, a plurality of sensors and an alarm, the bolt fixing piece is positioned at one side of the opening position of the lock catch piece, the bolt fixing piece and the lock catch piece are fixedly connected, the tension monitor is positioned at the position close to the upper part of the inner side of the bolt fixing piece, the utility model discloses a bolt tension monitoring device, including bolt mounting, battery, trigger, tensile monitor, bolt mounting, battery and bolt mounting, the tensile monitor is fixed connection with the bolt mounting, the battery is fixed connection with the bolt mounting, solar panel is located the upper portion of battery, solar panel is fixed connection with the battery, the trigger is located the inside of bolt mounting, and the trigger is located the lower part of tensile monitor, the trigger is fixed connection with the tensile monitor, the same distance evenly distributed in the lower part of trigger in interval between a plurality of inductors, a plurality of inductors all are fixed connection with the trigger, the alarm is located one side of tensile monitor, and the alarm is located the outside of bolt mounting, the one end of alarm is passed the bolt mounting and is fixed connection with the tensile monitor.
2. The engineering scaffold lock catch with the tension monitoring device as claimed in claim 1, wherein: the lock catch piece is two arc fasteners connected by a rotating shaft.
3. The engineering scaffold lock catch with the tension monitoring device as claimed in claim 1, wherein: the bolt fixing piece is of a threaded hollow structure.
4. The engineering scaffold lock catch with the tension monitoring device as claimed in claim 1, wherein: the tension monitor is an electric control type tension setting and monitoring device.
5. The engineering scaffold lock catch with the tension monitoring device as claimed in claim 1, wherein: the battery is a lithium battery with a solar power generation device.
6. The engineering scaffold lock catch with the tension monitoring device as claimed in claim 1, wherein: the inductor is a vibrating wire sensor.
7. The engineering scaffold lock catch with the tension monitoring device as claimed in claim 1, wherein: the alarm is a sound-light alarm device.
Priority Applications (1)
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CN202021674103.3U CN214272890U (en) | 2020-08-12 | 2020-08-12 | Engineering scaffold lock catch with tension monitoring device |
Applications Claiming Priority (1)
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CN202021674103.3U CN214272890U (en) | 2020-08-12 | 2020-08-12 | Engineering scaffold lock catch with tension monitoring device |
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CN214272890U true CN214272890U (en) | 2021-09-24 |
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CN202021674103.3U Active CN214272890U (en) | 2020-08-12 | 2020-08-12 | Engineering scaffold lock catch with tension monitoring device |
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- 2020-08-12 CN CN202021674103.3U patent/CN214272890U/en active Active
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