CN207832772U - A kind of SF6 density monitors calibration equipment free of demolition online - Google Patents
A kind of SF6 density monitors calibration equipment free of demolition online Download PDFInfo
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- CN207832772U CN207832772U CN201820206882.0U CN201820206882U CN207832772U CN 207832772 U CN207832772 U CN 207832772U CN 201820206882 U CN201820206882 U CN 201820206882U CN 207832772 U CN207832772 U CN 207832772U
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- ventilation duct
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Abstract
The utility model discloses a kind of SF6 density monitors calibration equipments free of demolition online, including detecting babinet, it is equipped with radiator on the front and rear sides wall of the detection babinet, the upper end of the detection babinet is rotatably connected to end cap, the side of the end cap is equipped with handle, the both sides of the detection babinet are respectively connected with mounting plate, two mounting plates are equipped with the first mounting groove, one end of first mounting groove is connected with the second ventilation duct, one end of second ventilation duct is connected with wedging ring, and the other end of second ventilation duct is connected with the first ventilation duct.The utility model operation is easy; pass through the second movable plate, third movable plate, spring lever, spring, wedging ring, the isostructural interaction of the first ventilation duct; so that playing the effect of damping when equipment is put down, to protect equipment part to reduce damage, prolong the service life.
Description
Technical field
The utility model is related to detection device technology field more particularly to a kind of SF6 density monitors schools free of demolition online
Experiment device.
Background technology
Tester free of demolition is detected and is controlled using 16 microcontrollers of high-performance density monitor online, integrates journey
Degree is high.Electromechanical Design, precision is high, reproducible, and reliability is high.It is configured with single color LCD screen and soft keyboard human-machine interface
Mouthful, easy to operate, beautiful interface, all parameters and state are very clear.It is automatically performed pressure measurement and 20 DEG C of value conversions, to
Complete the dynamic auto compensation between pressure, temperature, and show the pressure at a temperature of test environment, 20 DEG C when environment temperature under
Pressure, environment temperature.Thoroughly solve the problems, such as that SF6 gas density is relay field-checking is difficult, but present tester is
The mode easy to carry that babinet can be all fabricated to, but such density monitor online tester free of demolition because artificial
Factor easy tos produce vibration when putting down contact ground, so as to cause the part injury in equipment.
Utility model content
Purpose of the utility model is to solve disadvantages existing in the prior art, such as:Present tester is in order to just
In carrying the mode of babinet of being all fabricated to, but such density monitor online tester free of demolition because of artificial factor
Easy to produce vibration when putting down contact ground, so as to cause the part injury in equipment, and propose a kind of SF6 density after
Electric appliance calibration equipment free of demolition online.
To achieve the goals above, the utility model uses following technical solution:
A kind of SF6 density monitors calibration equipment free of demolition, including detection babinet online, front and back the two of the detection babinet
Radiator is equipped on side wall, the upper end of the detection babinet is rotatably connected to end cap, and the side of the end cap is equipped with handle,
The both sides of the detection babinet are respectively connected with mounting plate, and two mounting plates are equipped with the first mounting groove, first installation
One end of slot is connected with the second ventilation duct, and one end of second ventilation duct is connected with wedging ring, second ventilation duct it is another
One end is connected with the first ventilation duct, and the wedging ring is connected with the second movable plate away from one end of the second ventilation duct, and described second
The both ends of movable plate are equipped with carriage, are connected with motion bar on second movable plate, and the motion bar is away from the
One end of one mounting groove upper side wall slidably connects third movable plate, and second movable plate is connected with away from the side of wedging ring
One end of top plate, the third movable plate is equipped with the 4th mounting groove, and spring lever, the spring are connected in the 4th mounting groove
One end of bar is connected on top plate, and two third mounting grooves, the third are arranged on the two side of the third movable plate
Fixed link is fixedly connected on mounting groove, the motion bar is slidably connected in fixed link, and spring is wrapped in the fixed link,
One end of the spring is connected to one end of motion bar, and the other end of the spring is connected on the side wall of third mounting groove, institute
It states third movable plate and is connected with the first movable plate away from one end of spring lever, one end of first movable plate is connected with support
Plate is additionally provided with lock on the detection babinet.
Preferably, the carriage includes groove, and the groove is located at one end of the second movable plate, consolidates in the groove
Surely it is connected with connecting rod, pulley is rotatably connected in the connecting rod, the pulley is slidably connected at the side wall of the first mounting groove
On.
Preferably, the radiator includes the second mounting groove, and second mounting groove is located on the side wall of detection babinet,
Ventilating board is connected in second mounting groove, the side of the ventilating board is equipped with air blast leaf.
Preferably, the handle is rotatably connected on end cap, and sweatband is also wrapped on the handle.
Preferably, the stepped setting of the first ventilation duct.
Compared with prior art, the utility model has the beneficial effects that:
In the utility model, when user uses the device, when putting down, support plate drives third movable plate to move
It is dynamic, so that spring-compressed, realizes that first time damping, the then movement of third movable plate make spring lever compress, realize the
Secondary shock-absorbing, while the second movable plate being driven to be moved up under the action of carriage, wedging ring is compressed, because ladder-like the
The setting of one ventilation duct can make the air in wedging ring not exclude quickly once, to realize third time damping.This reality
It is easy with novel operating, passes through the structures such as the second movable plate, third movable plate, spring lever, spring, wedging ring, the first ventilation duct
Interaction so that the effect that damping is played when equipment is put down, to protect equipment part to reduce damage, extension makes
Use the service life.
Description of the drawings
Fig. 1 be the utility model proposes the Facad structure of SF6 density monitors calibration equipment free of demolition online a kind of show
It is intended to;
Fig. 2 is the partial enlargement structural representation of A in Fig. 1.
In figure:1 mounting plate, 2 detection babinets, 3 first ventilation ducts, 4 second ventilation ducts, 5 first movable plates, 6 end caps, 7 carry
Hand, 8 locks, 9 radiators, 10 wedging rings, 11 first mounting grooves, 12 support plates, 13 carriages, 14 second movable plates, 15
Top plate, 16 spring levers, 17 third mounting grooves, 18 springs, 19 third movable plates, 20 motion bars, 21 fixed links.
Specific implementation mode
The following will be combined with the drawings in the embodiments of the present invention, carries out the technical scheme in the embodiment of the utility model
Clearly and completely describe, it is clear that the described embodiments are only a part of the embodiments of the utility model, rather than whole
Embodiment.
Referring to Fig.1-2, a kind of SF6 density monitors calibration equipment free of demolition, including detection babinet 2 online, detects babinet 2
Front and rear sides wall on be equipped with radiator 9, radiator 9 includes the second mounting groove, and the second mounting groove is located at detection babinet 2
Side wall on, be connected with ventilating board in the second mounting groove, the side of ventilating board is equipped with air blast leaf, can be with by the rotation of air blast leaf
So that the heat of equipment is transmitted, the effect of heat dissipation is played, the upper end of detection babinet 2 is rotatably connected to end cap 6, end cap 6
Side is equipped with handle 7, and handle 7 is rotatably connected on end cap 6, and sweatband is also wrapped on handle 7, is convenient for the carrying of equipment, inspection
The both sides of measuring tank body 2 are respectively connected with mounting plate 1, and two mounting plates 1 are equipped with the first mounting groove 11, one end of the first mounting groove 11
It is connected with the second ventilation duct 4, one end of the second ventilation duct 4 is connected with wedging ring 10, and the other end of the second ventilation duct 4 is connected with
One end of one ventilation duct 3, the 3 stepped setting of the first ventilation duct, and the first ventilation duct 3 is connected to air, and stair-stepping first is logical
Air hose 3 can make air that can not exclude moment, and to play cushioning effect, wedging ring 10 deviates from one end of the second ventilation duct 4
It is connected with the second movable plate 14, the both ends of the second movable plate 14 are equipped with carriage 13, and carriage 13 includes groove, groove
Positioned at one end of the second movable plate 14, it is fixedly connected with connecting rod in groove, pulley, pulley sliding are rotatably connected in connecting rod
It is connected on the side wall of the first mounting groove 11, by pulley in the slide over side walls of the first mounting groove 11, improves the second movable plate
14 mobile fluency avoids the occurrence of stuck phenomenon, and motion bar 20 is connected on the second movable plate 14, and motion bar 20 is carried on the back
One end from 11 upper side wall of the first mounting groove slidably connects third movable plate 19, and the second movable plate 14 deviates from the one of wedging ring 10
Side is connected with top plate 15, and one end of third movable plate 19 is equipped with the 4th mounting groove, spring lever 16, bullet are connected in the 4th mounting groove
One end of spring base 16 is connected on top plate 15, and two third mounting grooves 17 are arranged on the two side of third movable plate 19, the
Fixed link 21 is fixedly connected on three mounting grooves 17, motion bar 20 is slidably connected in fixed link 21, is wrapped in fixed link 21
Spring 18, one end of spring 18 are connected to one end of motion bar 20, and the other end of spring 18 is connected to the side of third mounting groove 17
On wall, third movable plate 19 is connected with the first movable plate 5 away from one end of spring lever 16, and one end of the first movable plate 5 is connected with
Support plate 12 detects and is additionally provided with lock 8 on babinet 2, can lock end cap 6, and lock 8 belongs to prior art means, on the market
It can see everywhere, so its internal structure and operation principle are not described in detail herein.
In the utility model, when user uses the device, when putting down, support plate 12 drives third movable plate 19
It is mobile, so that spring 18 compresses, realize first time damping, the then movement of third movable plate 19 makes spring lever 16 press
Contracting realizes second of damping, while the second movable plate 14 being driven to be moved up under the action of carriage 13, compresses wedging ring
10, because the setting of ladder-like first ventilation duct 3 can make the air in wedging ring 10 not exclude quickly once, to real
Now third time damping.
The preferable specific implementation mode of the above, only the utility model, but the scope of protection of the utility model is not
Be confined to this, any one skilled in the art within the technical scope disclosed by the utility model, according to this practicality
Novel technical solution and its utility model design are subject to equivalent substitution or change, should all cover the protection model in the utility model
Within enclosing.
Claims (5)
1. a kind of SF6 density monitors calibration equipment free of demolition, including detection babinet (2) online, which is characterized in that the detection
Radiator (9) is equipped on the front and rear sides wall of babinet (2), the upper end of the detection babinet (2) is rotatably connected to end cap
(6), the side of the end cap (6) is equipped with handle (7), and the both sides of the detection babinet (2) are respectively connected with mounting plate (1), two
The mounting plate (1) is equipped with the first mounting groove (11), and one end of first mounting groove (11) is connected with the second ventilation duct
(4), one end of second ventilation duct (4) is connected with wedging ring (10), and the other end of second ventilation duct (4) is connected with
One ventilation duct (3), the wedging ring (10) are connected with the second movable plate (14) away from one end of the second ventilation duct (4), and described the
The both ends of two movable plates (14) are equipped with carriage (13), and motion bar is connected on second movable plate (14)
(20), the motion bar (20) slidably connects third movable plate (19), institute away from one end of the first mounting groove (11) upper side wall
It states the second movable plate (14) and is connected with top plate (15) away from the side of wedging ring (10), one end of the third movable plate (19) is set
There is the 4th mounting groove, spring lever (16) is connected in the 4th mounting groove, one end of the spring lever (16) is connected to top plate
(15) on, two third mounting grooves (17), the third mounting groove are arranged on the two side of the third movable plate (19)
(17) fixed link (21) is fixedly connected on, the motion bar (20) is slidably connected in fixed link (21), the fixed link
(21) spring (18) is wrapped on, one end of the spring (18) is connected to one end of motion bar (20), the spring (18)
The other end is connected on the side wall of third mounting groove (17), and the third movable plate (19) connects away from one end of spring lever (16)
There are the first movable plate (5), one end of first movable plate (5) to be connected with support plate (12), also set on the detection babinet (2)
There is lock (8).
2. a kind of SF6 density monitors according to claim 1 calibration equipment free of demolition online, which is characterized in that described
Carriage (13) includes groove, and the groove is located at one end of the second movable plate (14), the company of being fixedly connected in the groove
Extension bar is rotatably connected to pulley in the connecting rod, and the pulley is slidably connected on the side wall of the first mounting groove (11).
3. a kind of SF6 density monitors according to claim 1 calibration equipment free of demolition online, which is characterized in that described
Radiator (9) includes the second mounting groove, and second mounting groove is located on the side wall of detection babinet (2), second installation
Ventilating board is connected in slot, the side of the ventilating board is equipped with air blast leaf.
4. a kind of SF6 density monitors according to claim 1 calibration equipment free of demolition online, which is characterized in that described
Handle (7) is rotatably connected on end cap (6), and sweatband is also wrapped on the handle (7).
5. a kind of SF6 density monitors according to claim 1 calibration equipment free of demolition online, which is characterized in that described
First ventilation duct (3) stepped setting.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201820206882.0U CN207832772U (en) | 2018-02-06 | 2018-02-06 | A kind of SF6 density monitors calibration equipment free of demolition online |
Applications Claiming Priority (1)
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CN201820206882.0U CN207832772U (en) | 2018-02-06 | 2018-02-06 | A kind of SF6 density monitors calibration equipment free of demolition online |
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CN207832772U true CN207832772U (en) | 2018-09-07 |
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CN201820206882.0U Active CN207832772U (en) | 2018-02-06 | 2018-02-06 | A kind of SF6 density monitors calibration equipment free of demolition online |
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Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN113191384A (en) * | 2021-01-29 | 2021-07-30 | 重庆工商大学 | Hyperspectral image sparse unmixing system based on compressed sensing and installation equipment |
-
2018
- 2018-02-06 CN CN201820206882.0U patent/CN207832772U/en active Active
Cited By (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN113191384A (en) * | 2021-01-29 | 2021-07-30 | 重庆工商大学 | Hyperspectral image sparse unmixing system based on compressed sensing and installation equipment |
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