CN206990494U - Hydrogen bearing alloy test device - Google Patents

Hydrogen bearing alloy test device Download PDF

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Publication number
CN206990494U
CN206990494U CN201720355459.2U CN201720355459U CN206990494U CN 206990494 U CN206990494 U CN 206990494U CN 201720355459 U CN201720355459 U CN 201720355459U CN 206990494 U CN206990494 U CN 206990494U
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CN
China
Prior art keywords
hydrogen storage
nickel positive
fixed mount
storage alloy
positive plate
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Fee Related
Application number
CN201720355459.2U
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Chinese (zh)
Inventor
吕京宁
刘晨熙
何冬梅
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Jining University
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Jining University
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Filing date
Publication date
Application filed by Jining University filed Critical Jining University
Priority to CN201720355459.2U priority Critical patent/CN206990494U/en
Application granted granted Critical
Publication of CN206990494U publication Critical patent/CN206990494U/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

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Abstract

A kind of hydrogen bearing alloy test device is the utility model is related to, belongs to hydrogen bearing alloy cell reaction technical field.Including disc hydrogen storage alloy negative piece and disc nickel positive plate, battery diaphragm is provided between hydrogen storage alloy negative piece and nickel positive plate, the first fixed mount is provided with outside hydrogen storage alloy negative piece, the first supporting plate is provided with outside the first fixed mount;The second fixed mount is provided with outside nickel positive plate, the second supporting plate is provided with outside the second fixed mount, firm spring is provided between the first supporting plate and the second supporting plate.The utility model hydrogen bearing alloy reaction speed is stable, and test effect is more preferable.

Description

Hydrogen bearing alloy test device
Technical field
A kind of hydrogen bearing alloy test device is the utility model is related to, belongs to hydrogen bearing alloy cell reaction technical field.
Background technology
At present, hydrogen bearing alloy test is passed through electrolyte reaction, for surveying typically using setting hydrogen bearing alloy as negative plate Try hydrogen release high-volume, in test process, reaction speed is not particularly stable, influences to test effect.
Utility model content
The purpose of this utility model is to provide a kind of hydrogen bearing alloy test device, and hydrogen bearing alloy reaction speed is stable, test Effect is more preferable.
Hydrogen bearing alloy test device described in the utility model, including disc hydrogen storage alloy negative piece and disc nickel are just Pole piece, is provided with battery diaphragm between hydrogen storage alloy negative piece and nickel positive plate, being provided with first outside hydrogen storage alloy negative piece fixes Frame, the first fixed mount outside are provided with the first supporting plate;The second fixed mount is provided with outside nickel positive plate, is provided with outside the second fixed mount Second supporting plate, firm spring is provided between the first supporting plate and the second supporting plate.
Firm spring can fix the distance between hydrogen storage alloy negative piece and nickel positive plate well, and hydrogen bearing alloy is born Pole piece keeps relatively parallel with nickel positive plate, and firm, keeps at a distance and does not change, hydrogen storage alloy negative piece and nickel positive plate and electricity It is highly stable to solve liquid reaction speed, there is preferably test effect.
It is further preferred that hydrogen storage alloy negative piece, battery diaphragm and nickel positive plate center rotate through rotary shaft is set Axle one end connects motor.Motor can drive rotary shaft to rotate, and so as to drive hydrogen storage alloy negative piece and nickel positive plate to rotate, make Hydrogen storage alloy negative piece and nickel positive plate can fully and electrolyte contacts, fully reaction, meanwhile, can also adjust hydrogen storage conjunction The golden each diverse location of negative plate and nickel positive plate contact with different hydraulic pressure positions electrolyte, adds electrolyte flow, instead Should be more stable, more fully.
It is further preferred that the first fixed mount includes the first stator that two one end are fixedly connected, two first fixations Piece angle is less than 90 degree.Two the first stators can be good at clamping hydrogen storage alloy negative piece, keep hydrogen storage alloy negative piece Steadiness.Effect is more preferable when two the first stator angular ranges are spent for 30 degree -60, can either firmly fix hydrogen storage conjunction Golden negative plate, and do not influence hydrogen storage alloy negative piece and reacted with electrolyte.
It is further preferred that the second fixed mount includes the second stator that two one end are fixedly connected, two second fixations Piece angle is less than 90 degree.Two the second stators can be good at clamping nickel positive plate, keep the steadiness of nickel positive plate.Two Effect is more preferable when second stator angular range is spent for 30 degree -60, can either firmly fix nickel positive plate, and do not influence nickel Positive plate reacts with electrolyte.
Compared with prior art, the beneficial effects of the utility model are:
(1) the utility model can firmly fix storage very much very well by setting the first supporting plate and the first fixed mount Hydrogen alloy anode piece, by setting the second supporting plate and the second fixed mount, nickel positive plate can be firmly fixed very much very well, is led to Cross the firm spring of setting, distance between hydrogen storage alloy negative piece and nickel positive plate can be kept constant, reaction can it is more stable more Uniformly;
(2) by setting rotary shaft and motor, hydrogen storage alloy negative piece and nickel positive plate uniform rotation can be driven, is increased Electrolyte flow so that hydrogen storage alloy negative piece and nickel positive plate can fully and electrolyte contacts, fully reaction, reaction speed Spend more stable.
Brief description of the drawings
Fig. 1 is the structural representation of an embodiment of the present utility model,
Fig. 2 is A-A sectional views in Fig. 1.
In figure:1st, spring 2, the first supporting plate 3, the first fixed mount 4, hydrogen storage alloy negative piece 5, battery diaphragm are consolidated 6th, nickel positive plate 7, motor 8, rotary shaft 9, reaction vessel 10, the second fixed mount 11, the second supporting plate;
3.1st, the first stator 10.1, the second stator.
Embodiment
Below in conjunction with the accompanying drawing in the utility model embodiment, the technical scheme in the embodiment of the utility model is carried out Clearly and completely describing, it is clear that described embodiment is only the utility model part of the embodiment, rather than whole Embodiment.Based on the embodiment in the utility model, those of ordinary skill in the art are not under the premise of creative work is made The every other embodiment obtained, belong to the scope of the utility model protection.
Embodiment one
As shown in Fig. 1~Fig. 2, hydrogen bearing alloy test device described in the utility model, including disc hydrogen bearing alloy are born Pole piece 4 and disc nickel positive plate 6, battery diaphragm 5 is provided between hydrogen storage alloy negative piece 4 and nickel positive plate 6, hydrogen bearing alloy is born The outside of pole piece 4 is provided with the first fixed mount 3, and the outside of the first fixed mount 3 is provided with the first supporting plate 2;The outside of nickel positive plate 6 is provided with second Fixed mount 10, the outside of the second fixed mount 10 are provided with the second supporting plate 11, are provided between the first supporting plate 2 and the second supporting plate 11 steady Gu spring 1.First fixed mount 3 includes the first stator 3.1 that two one end are fixedly connected, two angles of the first stator 3.1 Less than 90 degree.Second fixed mount 10 includes the second stator 10.1 that two one end are fixedly connected, two the second stators 10.1 Angle is less than 90 degree.Effect is more preferable when two angular ranges of the first stator 3.1 are spent for 30 degree -60, can either firmly fix Good hydrogen storage alloy negative piece 4, and do not influence hydrogen storage alloy negative piece 4 and reacted with electrolyte.Two angles of the second stator 10.1 Effect is more preferable when scope is spent for 30 degree -60, can either firmly fix nickel positive plate 6, and does not influence nickel positive plate 6 and electrolysis Liquid reacts.First supporting plate 2, the first fixed mount 3, hydrogen storage alloy negative piece 4, battery diaphragm 5, nickel positive plate 6, the second fixed mount 10 and second supporting plate 11 be respectively positioned in reaction vessel 9.
Embodiment two
As shown in Fig. 1~Fig. 2, hydrogen storage alloy negative piece 4, battery diaphragm 5 and the center of nickel positive plate 6, which can be run through, sets rotation Rotating shaft 8, the one end of rotary shaft 8 connection motor 7.Rotary shaft 8 is set through reaction vessel 9, and rotary shaft 8 is located at outside reaction vessel 9 One end connection motor 7.Remaining is the same as embodiment one.
Found by research, hydrogen storage alloy negative piece 4 is during sustained response, hydrogen storage alloy negative piece 4 and nickel positive pole Built on the sand, hydrogen storage alloy negative piece 4 and the relative distance of the face of nickel positive plate 6 are inconsistent for distance between piece 6, or because local Deformation causes relative distance to change, and influences hydrogen storage alloy negative piece 4 and nickel positive plate 6 and electrolyte reaction speed.This By setting firm spring 1 in utility model, the relative of hydrogen storage alloy negative piece 4 and nickel positive plate 6 can be firmly fixed Position, distance is constant between holding hydrogen storage alloy negative piece 4 and nickel positive plate 6, and reaction speed is uniform and stable, good test effect.
The course of work or operation principle:
Firm spring 1 can fix the distance between hydrogen storage alloy negative piece 4 and nickel positive plate 6 well, and hydrogen storage is closed Golden negative plate 4 keeps relatively parallel with nickel positive plate 6, and firm, keeps at a distance and does not change, hydrogen storage alloy negative piece 4 and nickel are just Pole piece 6 and electrolyte reaction speed are highly stable, there is preferably test effect.
Motor 7 drives rotary shaft 8 to rotate, and rotary shaft 8 drives hydrogen storage alloy negative piece 4 and nickel positive plate 6 to rotate, and can make The hydrogen storage alloy negative piece 4 and nickel positive plate 6 for obtaining different parts fully contact with electrolyte, and fully reaction, reaction speed are more steady Fixed, test effect is more preferable.
Preferred embodiment of the present utility model is the foregoing is only, it is all at this not to limit the utility model Within the spirit and principle of utility model, any modification, equivalent substitution and improvements made etc., the utility model should be included in Protection domain within.
To the direction of structure and the description of relative position relation in the utility model, such as upper and lower description all around, Do not form to limitation of the present utility model, only for convenience of description.

Claims (3)

1. a kind of hydrogen bearing alloy test device, it is characterised in that including disc hydrogen storage alloy negative piece (4) and disc nickel just Pole piece (6), battery diaphragm (5) is provided between hydrogen storage alloy negative piece (4) and nickel positive plate (6), hydrogen storage alloy negative piece (4) is outside Portion is provided with the first fixed mount (3), and the first supporting plate (2) is provided with outside the first fixed mount (3);The is provided with outside nickel positive plate (6) Two fixed mounts (10), the second fixed mount (10) is outside to be provided with the second supporting plate (11), the first supporting plate (2) and the second supporting plate (11) firm spring (1) is provided between.
2. hydrogen bearing alloy test device according to claim 1, it is characterised in that hydrogen storage alloy negative piece (4), battery every Through rotary shaft (8) is set, rotary shaft (8) one end connects motor (7) for film (5) and nickel positive plate (6) center.
3. hydrogen bearing alloy test device according to claim 1, it is characterised in that the first fixed mount (3) includes two one The first stator (3.1) being fixedly connected is held, two the first stator (3.1) angles are less than 90 degree.
CN201720355459.2U 2017-04-06 2017-04-06 Hydrogen bearing alloy test device Expired - Fee Related CN206990494U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201720355459.2U CN206990494U (en) 2017-04-06 2017-04-06 Hydrogen bearing alloy test device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201720355459.2U CN206990494U (en) 2017-04-06 2017-04-06 Hydrogen bearing alloy test device

Publications (1)

Publication Number Publication Date
CN206990494U true CN206990494U (en) 2018-02-09

Family

ID=61422967

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201720355459.2U Expired - Fee Related CN206990494U (en) 2017-04-06 2017-04-06 Hydrogen bearing alloy test device

Country Status (1)

Country Link
CN (1) CN206990494U (en)

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CF01 Termination of patent right due to non-payment of annual fee
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20180209

Termination date: 20180406