CN209656194U - It is a kind of can real-time display stress multidirectional monitoring device - Google Patents

It is a kind of can real-time display stress multidirectional monitoring device Download PDF

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Publication number
CN209656194U
CN209656194U CN201920618014.8U CN201920618014U CN209656194U CN 209656194 U CN209656194 U CN 209656194U CN 201920618014 U CN201920618014 U CN 201920618014U CN 209656194 U CN209656194 U CN 209656194U
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China
Prior art keywords
pressure sensor
real
monitoring
monitoring device
stress
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CN201920618014.8U
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Chinese (zh)
Inventor
陈昭良
陈海滨
陈立成
贺云
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FUJIAN PROVINCE PUTIAN CITY HENG LI SENSOR Co.,Ltd.
YUNNAN INSTITUTE OF MEASUREMENT TEST TECHNOLOGY RESEARCH
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FUJIAN PUTIAN HENGLI SENSOR Co Ltd
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Priority to CN201920618014.8U priority Critical patent/CN209656194U/en
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Abstract

The utility model discloses it is a kind of can real-time display stress multidirectional monitoring device, more particularly to it is a kind of can multiple orientation in the same plane carry out the device of stress real-time monitoring, solves existing load-bearing monitor device only single the problem of being monitored to a certain fixed point, can not achieve multi-faceted real-time monitoring in the same plane.Device noumenon quadrangle and center offer the hole location for monitoring device installation;The monitoring device includes monitoring rod, sleeve, spring and pressure sensor, wherein, sleeve is fixed in the hole location that device noumenon quadrangle and center open up, sleeve is hollow tubular, its lower end is fixedly installed with pressure sensor, pressure sensor upper surface abuts lower spring end, and spring upper end abuts monitoring rod lower end, and monitoring rod is sheathed on upper cartridge and passes through top plate;Five pressure sensors respectively connect a terminal by conducting wire, and terminal is fixed on device noumenon outer wall.

Description

It is a kind of can real-time display stress multidirectional monitoring device
Technical field
The utility model relates to a kind of load-bearing monitor device, it is specifically a kind of can real-time display stress multidirectional monitoring dress It sets.
Background technique
Mechanics sensor it is many kinds of, such as resistance strain gage pressure sensor, semiconductor gauge pressure sensor, pressure Resistance pressure transducer, inductance pressure transducer, capacitance pressure transducer, resonance type pressure sensor and condenser type accelerate Spend sensor etc..
But no matter which kind of above-mentioned sensor, only the position of single-point or single side is carried out mostly in use Part detection is then unable to subregion for the plane of part unbalance stress and carries out multi-faceted real-time monitoring, it is relatively narrow to benefit from face.
Utility model content
The shortcoming in the prior art being previously mentioned in technology based on the above background, the utility model provides one thus Kind can real-time display stress multidirectional monitoring device.
The utility model overcomes the above technical problem by using following technical solution, specifically:
It is a kind of can real-time display stress multidirectional monitoring device, including device noumenon, device noumenon upper end be fixed with top plate, Bottom plate is fixed in device noumenon lower end, and described device ontology quadrangle and center offer the hole location for monitoring device installation; The monitoring device includes monitoring rod, sleeve, spring and pressure sensor, wherein sleeve be fixed on device noumenon quadrangle and in In the hole location that heart position opens up, sleeve is hollow tubular, and lower end is fixedly installed with pressure sensor, pressure sensor upper surface Lower spring end is abutted, spring upper end abuts monitoring rod lower end, and monitoring rod is sheathed on upper cartridge and passes through top plate;Five pressures Force snesor respectively connects a terminal by conducting wire, and terminal is fixed on device noumenon outer wall.
As a further solution of the present invention: the terminal includes for reflecting pressure sensor institute stress size Display screen and power pack are equipped with battery in power pack, and display screen is digital display screen.
The charging charged for battery is offered outside the power pack as a further solution of the present invention, Mouthful, battery is electrically connected display screen and pressure sensor.
It is equipped in described device ontology for each pressure sensor as a further solution of the present invention, The power monitored carries out the arithmetic unit of operation.
The terminal external surface is provided with the elasticity for control system of switching on or off electricity as a further solution of the present invention, Switch and the function selecting key switched for the display content to display screen.
After using the above structure, the utility model compared to the prior art, has following advantages: the device utilizes monitoring rod Tip contact power source to being subjected to displacement, spring is compressed, spring by force feedback into pressure sensor, and using eventually End displaying by digital formal intuition by the power monitored, realizes the function of multi-faceted load-bearing monitor, and filling It sets and is also provided with arithmetic unit in ontology, synthesized each position institute stress by arithmetic unit, obtain resultant force, it is vdiverse in function.
Detailed description of the invention
Fig. 1 be can real-time display stress multidirectional monitoring device structural schematic diagram.
Fig. 2 be can real-time display stress multidirectional monitoring device top view.
In figure: 1- device noumenon;2- top plate;3- bottom plate;4- monitoring rod;5- sleeve;6- spring;7- pressure sensor; 8- Arithmetic unit;9- terminal.
Specific embodiment
The utility model is more fully retouched below with reference to relevant drawings for the ease of understanding the utility model, It states.The better embodiment of the utility model is given in attached drawing.But the utility model can be come with many different forms It realizes, however it is not limited to embodiments described herein.On the contrary, the purpose of providing these embodiments is that making practical new to this The disclosure of type understands more thorough and comprehensive.
In addition, the element in the utility model referred to as " is fixed on " or " being set to " another element, it can be direct On the other element or there may also be elements placed in the middle.When an element is considered as " connection " another element, it It can be directly to another element or may be simultaneously present centering elements.Term as used herein " vertical ", " horizontal ", "left", "right" and similar statement for illustrative purposes only, are not meant to be the only embodiment.
Embodiment 1
Please refer to Fig. 1~2, in the utility model embodiment, it is a kind of can real-time display stress multidirectional monitoring device, including Device noumenon 1,1 upper end of described device ontology are fixed with top plate 2, the fixed bottom plate 3 in 1 lower end of device noumenon, wherein device noumenon 1 Quadrangle and center offer the hole location for monitoring device installation, by monitoring device to each side being applied on top plate 2 Position power is monitored, and realizes the function of multi-faceted stress detection;
Specifically, the monitoring device includes monitoring rod 4, sleeve 5, spring 6 and pressure sensor 7, wherein sleeve 5 Be fixed on 1 four jiaos of device noumenon and hole location that center opens up in, sleeve 5 is hollow tubular, and lower end is fixedly installed with pressure Force snesor 7,7 upper surface of pressure sensor abut 6 lower end of spring, and 6 upper end of spring abuts 4 lower end of monitoring rod, and monitoring rod 4 is arranged In 5 top of sleeve and top plate 2 is passed through, the elastic connection between monitoring rod 4 and pressure sensor 7 is realized using spring 6, works as top plate On 2 after applied force, five monitoring rods 4 in different location different degrees of can be moved down, so that spring 6 be compressed, pass through bullet Spring 6 feeds back to stress condition in pressure sensor 7, and realization is monitored power suffered by each orientation on top plate 2.
For the ease of carrying out intuitive real-time monitoring to power suffered by each orientation, five pressure sensors 7 are respectively by leading Line connects a terminal, and terminal is fixed on 1 outer wall of device noumenon, and further, terminal includes for reflecting pressure sensing The display screen and power pack of 7 stress sizes of device are equipped with battery in power pack, and display screen is digital display screen, using aobvious Display screen reads power the showing by digital formal intuition that pressure sensor 7 monitors convenient for intuitive;The power supply The charge port to charge for battery is offered outside box, battery is electrically connected display screen and pressure sensor 7, needs to illustrate , terminal external surface is provided with elastic switch and function selecting key for control system of switching on or off electricity, and also installs in device noumenon 1 There is the power for being monitored to each pressure sensor 7 to carry out the arithmetic unit 8 of operation, by arithmetic unit 8 to each orientation institute Stress is synthesized, and suffered resultant force is obtained, and display screen shows to be that each pressure sensor 7 distinguishes institute's stress under normal circumstances Size, by press function selecting key can Glycerine enema device 8 so that data shown by display screen are converted to conjunction by component Power.
According to the specific descriptions of above-described embodiment, it is apparent from the working principle of the utility model is: by monitoring device to applying Each orientation power being added on top plate 2 is monitored, and realizes the function of multi-faceted stress detection, using spring 6 realize monitoring rod 4 with Elastic connection between pressure sensor 7, after applied force on top plate 2, five monitoring rods 4 in different location can different journeys Moving down for degree, so that spring 6 be compressed, is fed back to stress condition in pressure sensor 7 by spring 6, is realized on top plate 2 Power suffered by each orientation is monitored, and passes through the aobvious of digital formal intuition using the power that display screen monitors pressure sensor 7 It shows and, read convenient for intuitive, each orientation institute stress is synthesized by arithmetic unit 8, obtains suffered resultant force, normal condition Lower display screen shows to be size that each pressure sensor 7 distinguishes institute's stress, can Glycerine enema by pressing function selecting key Device 8, so that data shown by display screen are converted to resultant force by component.
It should be noted that terminal and display screen and arithmetic unit are the application of the prior art in the application, wherein utilize Spring is compressed to be subjected to displacement in the tip contact power source of monitoring rod, spring by force feedback into pressure sensor, and The power monitored is passed through to displaying for digital formal intuition using terminal, and is also provided with operation in device noumenon Device is synthesized each position institute stress by arithmetic unit, obtains resultant force, and the innovative point vdiverse in function for the application has Effect solves that existing load-bearing monitor device is only single to be monitored a certain fixed point, can not achieve same flat In face the problem of multi-faceted real-time monitoring.
Only the most preferred embodiment of the utility model is described above, but is not to be construed as the limit to claim System.The utility model is not limited only to above embodiments, and specific structure is allowed to vary.In every case in the utility model independent right It is required that protection scope in made various change it is within the protection scope of the present utility model.
Unless otherwise defined, all technical and scientific terms used herein are led with the technology for belonging to the utility model The normally understood meaning of the technical staff in domain is identical.Terminology used in the description of the utility model herein only be The purpose of description specific embodiment, it is not intended that in limitation the utility model.Term " and or " used herein packet Include any and all combinations of one or more related listed items.

Claims (6)

1. one kind can real-time display stress multidirectional monitoring device, including device noumenon (1), device noumenon (1) upper end be fixed with Top plate (2), device noumenon (1) lower end are fixed bottom plate (3), which is characterized in that described device ontology (1) quadrangle and center are equal Offer the hole location for monitoring device installation;The monitoring device includes that monitoring rod (4), sleeve (5), spring (6) and pressure pass Sensor (7), wherein sleeve (5) is fixed in the hole location that device noumenon (1) quadrangle and center open up, and sleeve (5) is hollow Tubulose, lower end are fixedly installed with pressure sensor (7), and pressure sensor (7) upper surface abuts spring (6) lower end, spring (6) Upper end abuts monitoring rod (4) lower end, and monitoring rod (4) is sheathed on sleeve (5) top and passes through top plate (2).
2. one kind according to claim 1 can real-time display stress multidirectional monitoring device, which is characterized in that described in five Pressure sensor (7) respectively connects a terminal by conducting wire, and terminal is fixed on device noumenon (1) outer wall.
3. one kind according to claim 2 can real-time display stress multidirectional monitoring device, which is characterized in that the terminal Including being equipped with battery in power pack, showing for reflecting the display screen and power pack of pressure sensor (7) institute stress size Screen is digital display screen.
4. one kind according to claim 3 can real-time display stress multidirectional monitoring device, which is characterized in that the power supply The charge port to charge for battery is offered outside box, battery is electrically connected display screen and pressure sensor (7).
5. one kind according to claim 1 can real-time display stress multidirectional monitoring device, which is characterized in that described device The arithmetic unit (8) that power for being monitored to each pressure sensor (7) carries out operation is installed in ontology (1).
6. one kind according to claim 3 can real-time display stress multidirectional monitoring device, which is characterized in that the terminal Outer surface is provided with the elastic switch for control system of switching on or off electricity and the function selecting key for the display content switching to display screen.
CN201920618014.8U 2019-04-30 2019-04-30 It is a kind of can real-time display stress multidirectional monitoring device Active CN209656194U (en)

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CN201920618014.8U CN209656194U (en) 2019-04-30 2019-04-30 It is a kind of can real-time display stress multidirectional monitoring device

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Application Number Priority Date Filing Date Title
CN201920618014.8U CN209656194U (en) 2019-04-30 2019-04-30 It is a kind of can real-time display stress multidirectional monitoring device

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111855054A (en) * 2019-04-30 2020-10-30 福建省莆田市衡力传感器有限公司 Multidirectional monitoring device capable of displaying stress in real time

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111855054A (en) * 2019-04-30 2020-10-30 福建省莆田市衡力传感器有限公司 Multidirectional monitoring device capable of displaying stress in real time

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TR01 Transfer of patent right

Effective date of registration: 20200902

Address after: 2965 lihuaxi Avenue, Huating Town, Chengxiang District, Putian City, Fujian Province

Co-patentee after: YUNNAN INSTITUTE OF MEASUREMENT TEST TECHNOLOGY RESEARCH

Patentee after: FUJIAN PROVINCE PUTIAN CITY HENG LI SENSOR Co.,Ltd.

Address before: 351100 Shengli South Road, Chengxiang District, Putian City, Fujian Province

Patentee before: FUJIAN PROVINCE PUTIAN CITY HENG LI SENSOR Co.,Ltd.