CN205608098U - Piezoelectric element piezoelectricity effect coefficient testing arrangement - Google Patents
Piezoelectric element piezoelectricity effect coefficient testing arrangement Download PDFInfo
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- CN205608098U CN205608098U CN201620407327.5U CN201620407327U CN205608098U CN 205608098 U CN205608098 U CN 205608098U CN 201620407327 U CN201620407327 U CN 201620407327U CN 205608098 U CN205608098 U CN 205608098U
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Abstract
The utility model discloses a piezoelectric element piezoelectricity effect coefficient testing arrangement, including the testing arrangement body, pressure measurement passes through wire and controlling means electric connection, the top middle part of blotter is provided with matter level sensor, matter level sensor passes through wire and controlling means electric connection, matter level sensor's top is provided with piezoelectric element, the bracing piece is installed to the left side top of testing arrangement base, the display screen passes through wire and controlling means electric connection, the top right side of bracing piece is provided with lifting sliding groove, the right side fixed mounting of lift slider has the mounting panel, the below middle part of mounting panel is provided with pressure device, pressure device passes through wire and controlling means electric connection. This piezoelectric element piezoelectricity effect coefficient testing arrangement has advantages such as structural design is reasonable, easy operation, convenient and practical, test accuracy, can increase substantially efficiency of software testing simultaneously, can generally use widely.
Description
Technical field
This utility model belongs to piezoelectric element test equipment technical field, is specifically related to a kind of piezoelectric element piezoelectric effect coefficient testing device.
Background technology
Some electrolyte go up in a certain direction deformed by the effect of external force time, can produce polarization phenomena inside it, positive and negative contrary electric charge occur on its two apparent surfaces simultaneously.After external force is removed, it can return to again uncharged state, and this phenomenon is referred to as direct piezoelectric effect.Piezoelectric effect refers to produce under the most stressed effect of crystal bound charge, and bound charge is in proportion (i.e. direct piezoelectric effect) or the phenomenon of generation mechanical deformation (i.e. inverse piezoelectric effect) under the effect of extra electric field with impressed pressure.The material with piezoelectric effect is referred to as piezoelectric, and ferroelectric material belongs to the one of piezoelectric.Electric charge that piezoelectric produces under unit pressure effect or the deformation quantity produced under unit voltage effect are referred to as piezoelectric modulus, are used for weighing the size of piezoelectric effect.Owing to piezoelectric achieves machine-electric coupling character, various piezo-electric type device can be prepared hence with piezoelectric, such as high frequency and microwave piezoelectric transducer, piezoelectric oscillator, piezoelectric filter, piezoelectric transducer, piezoelectricity SAW device and nonlinear device etc., these devices are increasingly extensive in the application of military, business and civil area.
When using the piezoelectric modulus that direct piezoelectric effect measures piezoelectric, the two of measured material end faces are prepared electrode, material applies pressure, measures the electric charge produced on electrode, obtain piezoelectric modulus.Such as, Vertical loading method, air pressure platform method are all to utilize direct piezoelectric effect to measure piezoelectric modulus.These methods, while relatively simple, but precision is the highest, more can not characterize the piezoelectric property of material domain, and currently used is little.Use inverse piezoelectric effect to measure piezoelectric modulus, the two of measured material end faces are prepared electrode, apply voltage by electrode to material, measure the deformation of material, obtain piezoelectric modulus.The inverse piezoelectric effect mainly system of testing is utilized to have laser interferometer piezoelectricity test system, scanning near-field microwave microscopy test system.
Traditional piezoelectric element piezoelectric property evaluation mainly carries out piezoelectric element selection by material property parameter and structural behaviour parameter etc., but this kind of method influence factor is more, and there is cross influence relation, judgment criteria is the most directly perceived, less with actual application environment relatedness, it is primarily present following shortcoming: 1, piezoelectric element basic material index of correlation test instrunment is expensive, operation complexity, and mostly single parameter can only be tested, and piezoelectric to refer to index more, between each parameter, the relation of influencing each other can not intuitively characterize, and judgment criteria is unreasonable.2, the material property of piezoelectric element is affected by its processing technique, polarization condition etc., and its made piezoelectric element performance is bad.
Utility model content
The purpose of this utility model is to provide a kind of piezoelectric element piezoelectric effect coefficient testing device, with the problem solving to propose in above-mentioned background technology.
nullFor achieving the above object,This utility model following technical scheme of offer: a kind of piezoelectric element piezoelectric effect coefficient testing device,Including test device body,The lower section of described test device body is fixedly mounted on the top of test device pedestal,The inside left of described test device pedestal is provided with storage device,The inner right side of described test device pedestal is provided with oscillograph,Described oscillograph is electrically connected with controlling device by wire,Described test device pedestal be provided above cushion pad,The lower section of described cushion pad is provided with pressure-detecting device,Described pressure-detecting device is electrically connected with controlling device by wire,The upper center of described cushion pad is provided with mass sensor,Described mass sensor is electrically connected with controlling device by wire,Described mass sensor be provided above piezoelectric element,The left side of described test device pedestal is arranged above support bar,The right side of described support bar is provided with lifting sliding rail,The upper left of described support bar is provided with driving means,Described driving means is electrically connected with controlling device by wire,The left side of described support bar is provided with display screen in the lower section of driving means,Described display screen is electrically connected with controlling device by wire,The upper right of described support bar is provided with lifting slider,Described lifting slider is slidably connected with driving means,The right side of described lifting slider is installed with installing plate,It is provided with pressue device in the middle part of the lower section of described installing plate,Described pressue device is electrically connected with controlling device by wire.
Preferably, the lower section of described installing plate is provided with photographic head on the right side of pressue device, and described photographic head is electrically connected with controlling device by wire, and described photographic head is full-view camera.
Preferably, described display screen is LED display.
Preferably, described cushion pad is rubber blanket, and the thickness of described cushion pad is 3-5cm.
Preferably, described driving means is fluid pressure drive device.
Preferably, described pressure-detecting device includes pressure transducer and alarm, and described pressure transducer and alarm are all electrically connected with controlling device by wire.
Compared with prior art, the beneficial effects of the utility model are: this piezoelectric element piezoelectric effect coefficient testing device, by storing the design of device so that test process can all preserve;By photographic head and the design of display screen, easily facilitate and clearly observe and monitoring and test process;By the design of pressure-detecting device so that the pressure size during detection is the most controlled;This piezoelectric element piezoelectric effect coefficient testing device, has the advantages such as reasonable in design, simple, convenient and practical, test is accurate, can increase substantially testing efficiency simultaneously, can use with popularity.
Accompanying drawing explanation
Fig. 1 is structural representation of the present utility model;
Fig. 2 is side view of the present utility model;
Fig. 3 is circuit module schematic diagram of the present utility model.
In figure: 1 test device body, 2 test device pedestals, 3 storage devices, 4 driving means, 5 support bars, 6 lifting sliding rails, 7 lifting sliders, 8 installing plates, 9 pressue devices, 10 photographic head, 11 piezoelectric elements, 12 cushion pads, 13 display screens, 14 control device, 15 oscillographs, 16 pressure-detecting devices, 17 mass sensors.
Detailed description of the invention
Below in conjunction with the accompanying drawing in this utility model embodiment, the technical scheme in this utility model embodiment is clearly and completely described, it is clear that described embodiment is only a part of embodiment of this utility model rather than whole embodiments.Based on the embodiment in this utility model, the every other embodiment that those of ordinary skill in the art are obtained under not making creative work premise, broadly fall into the scope of this utility model protection.
nullThis utility model provides a kind of piezoelectric element piezoelectric effect coefficient testing device as Figure 1-3,Including test device body 1,The lower section of described test device body 1 is fixedly mounted on the top of test device pedestal 2,The inside left of described test device pedestal 2 is provided with storage device 3,The inner right side of described test device pedestal 2 is provided with oscillograph 15,Described oscillograph 15 is electrically connected with controlling device 14 by wire,Described test device pedestal 2 be provided above cushion pad 12,Described cushion pad 12 is rubber blanket,The thickness of described cushion pad 12 is 3-5cm,The lower section of described cushion pad 12 is provided with pressure-detecting device 16,Described pressure-detecting device 16 is electrically connected with controlling device 14 by wire,Described pressure-detecting device 16 includes pressure transducer and alarm,Described pressure transducer and alarm are all electrically connected with controlling device 14 by wire,The upper center of described cushion pad 12 is provided with mass sensor 17,Described mass sensor 17 is electrically connected with controlling device 14 by wire,Described mass sensor 17 be provided above piezoelectric element 11,The left side of described test device pedestal 2 is arranged above support bar 5,The right side of described support bar 5 is provided with lifting sliding rail 6,The upper left of described support bar 5 is provided with driving means 4,Described driving means 4 is fluid pressure drive device,Described driving means 4 is electrically connected with controlling device 14 by wire,The left side of described support bar 5 is provided with display screen 13 in the lower section of driving means 4,Described display screen 13 is electrically connected with controlling device 14 by wire,Described display screen 13 is LED display,The upper right of described support bar 5 is provided with lifting slider 7,Described lifting slider 7 is slidably connected with driving means 4,The right side of described lifting slider 7 is installed with installing plate 8,The lower section of described installing plate 8 is provided with photographic head 10 on the right side of pressue device 9,Described photographic head 10 is electrically connected with controlling device 14 by wire,Described photographic head 10 is full-view camera,It is provided with pressue device 9 in the middle part of the lower section of described installing plate 8,Described pressue device 9 is electrically connected with controlling device 14 by wire.
Operation principle: when this piezoelectric element piezoelectric effect coefficient testing device uses, first piezoelectric element 11 is placed in the middle part of the mass sensor 17 above cushion pad 12, then open the pressue device 9 that driving means 4 controls on installing plate 8 and move downward piezoelectric element 11 is pressurizeed by controlling device 14, and by pressure-detecting device 16 monitoring pressure in real time size, and shown by display screen 13, it is simple to operator observe use.This piezoelectric element piezoelectric effect coefficient testing device, has the advantages such as reasonable in design, simple, convenient and practical, test is accurate, can increase substantially testing efficiency simultaneously, can use with popularity.
Last it is noted that the foregoing is only preferred embodiment of the present utility model; it is not limited to this utility model; although this utility model being described in detail with reference to previous embodiment; for a person skilled in the art; technical scheme described in foregoing embodiments still can be modified by it; or wherein portion of techniques feature is carried out equivalent; all within spirit of the present utility model and principle; the any modification, equivalent substitution and improvement etc. made, within should be included in protection domain of the present utility model.
Claims (6)
- null1. a piezoelectric element piezoelectric effect coefficient testing device,Including test device body (1),The lower section of described test device body (1) is fixedly mounted on the top of test device pedestal (2),It is characterized in that: the inside left of described test device pedestal (2) is provided with storage device (3),The inner right side of described test device pedestal (2) is provided with oscillograph (15),Described oscillograph (15) is electrically connected with controlling device (14) by wire,Described test device pedestal (2) be provided above cushion pad (12),The lower section of described cushion pad (12) is provided with pressure-detecting device (16),Described pressure-detecting device (16) is electrically connected with controlling device (14) by wire,The upper center of described cushion pad (12) is provided with mass sensor (17),Described mass sensor (17) is electrically connected with controlling device (14) by wire,Described mass sensor (17) be provided above piezoelectric element (11),The left side of described test device pedestal (2) is arranged above support bar (5),The right side of described support bar (5) is provided with lifting sliding rail (6),The upper left of described support bar (5) is provided with driving means (4),Described driving means (4) is electrically connected with controlling device (14) by wire,The left side of described support bar (5) is provided with display screen (13) in the lower section of driving means (4),Described display screen (13) is electrically connected with controlling device (14) by wire,The upper right of described support bar (5) is provided with lifting slider (7),Described lifting slider (7) is slidably connected with driving means (4),The right side of described lifting slider (7) is installed with installing plate (8),Pressue device (9) it is provided with in the middle part of the lower section of described installing plate (8),Described pressue device (9) is electrically connected with controlling device (14) by wire.
- A kind of piezoelectric element piezoelectric effect coefficient testing device the most according to claim 1, it is characterized in that: the lower section of described installing plate (8) is provided with photographic head (10) on the right side of pressue device (9), described photographic head (10) is electrically connected with controlling device (14) by wire, and described photographic head (10) is full-view camera.
- A kind of piezoelectric element piezoelectric effect coefficient testing device the most according to claim 1, it is characterised in that: described display screen (13) is LED display.
- A kind of piezoelectric element piezoelectric effect coefficient testing device the most according to claim 1, it is characterised in that: described cushion pad (12) is rubber blanket, and the thickness of described cushion pad (12) is 3-5cm.
- A kind of piezoelectric element piezoelectric effect coefficient testing device the most according to claim 1, it is characterised in that: described driving means (4) is fluid pressure drive device.
- A kind of piezoelectric element piezoelectric effect coefficient testing device the most according to claim 1, it is characterized in that: described pressure-detecting device (16) includes pressure transducer and alarm, described pressure transducer and alarm are all electrically connected with controlling device (14) by wire.
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Cited By (4)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN108106654A (en) * | 2017-12-26 | 2018-06-01 | 崔文良 | The detection device of piezo ceramic element |
CN111487482A (en) * | 2020-05-22 | 2020-08-04 | 苏州天准科技股份有限公司 | Nanocrystalline material electrical property detection device and nanocrystalline material detection system |
CN111562470A (en) * | 2020-04-30 | 2020-08-21 | 南京理工大学 | PZT discharge performance testing device with temperature control and overload simulation system |
TWI811931B (en) * | 2021-12-29 | 2023-08-11 | 宏碁股份有限公司 | Detection device and detection method for light emitting element |
-
2016
- 2016-05-06 CN CN201620407327.5U patent/CN205608098U/en active Active
Cited By (5)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN108106654A (en) * | 2017-12-26 | 2018-06-01 | 崔文良 | The detection device of piezo ceramic element |
CN111562470A (en) * | 2020-04-30 | 2020-08-21 | 南京理工大学 | PZT discharge performance testing device with temperature control and overload simulation system |
CN111487482A (en) * | 2020-05-22 | 2020-08-04 | 苏州天准科技股份有限公司 | Nanocrystalline material electrical property detection device and nanocrystalline material detection system |
TWI811931B (en) * | 2021-12-29 | 2023-08-11 | 宏碁股份有限公司 | Detection device and detection method for light emitting element |
US12010771B2 (en) | 2021-12-29 | 2024-06-11 | Acer Incorporated | Detection device and detection method for light emitting element |
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