CN208791789U - The Ti electrode piece of coated with nanometre rhodium iridium coatings - Google Patents

The Ti electrode piece of coated with nanometre rhodium iridium coatings Download PDF

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Publication number
CN208791789U
CN208791789U CN201821450794.1U CN201821450794U CN208791789U CN 208791789 U CN208791789 U CN 208791789U CN 201821450794 U CN201821450794 U CN 201821450794U CN 208791789 U CN208791789 U CN 208791789U
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rhodium iridium
electrode
coated
iridium coatings
electrode substrate
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CN201821450794.1U
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Chinese (zh)
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王凌鹏
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HANGZHOU KUNST FILTER CO Ltd
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HANGZHOU KUNST FILTER CO Ltd
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Abstract

The utility model relates to Ti electrode chip technology fields, and disclose the Ti electrode piece of coated with nanometre rhodium iridium coatings, including titanium electrode substrate, the middle part on titanium electrode substrate top is fixedly connected with the bottom of connecting rod, the surface of the positive Middle face of titanium electrode substrate is coated with rhodium iridium coatings, retention means are fixedly connected in the middle part of connecting rod top, the top of retention means is fixedly connected with the side of fixed pin bottom.The Ti electrode piece of the coated with nanometre rhodium iridium coatings; by being covered using outside of the cover board to rhodium iridium coatings thereon between fortune carrying out moving to titanium electrode substrate; it avoids and touches part rhodium iridium coatings during moving fortune; so that the surface of rhodium iridium coatings generates scuffing; to in electrolytic process; electrode can corrode rhodium iridium coatings from injury region; influence its electro catalytic activity, electric conductivity, inoxidizability; and then the use quality and effect of entire electrode are influenced, improve the protectiveness of device.

Description

The Ti electrode piece of coated with nanometre rhodium iridium coatings
Technical field
The utility model relates to Ti electrode chip technology fields, specially the Ti electrode piece of coated with nanometre rhodium iridium coatings.
Background technique
Once titanium electrode substrate pickling is completed, in later all production and processing processes and use process, it is necessary to stringent small The heart carries out, and existing factory often wears that clean gloves block anode both ends or edge is moved when carrying out moving fortune to it Fortune, but such mode may cause to scratch to applying to carry out, Titanium base itself is non-conductive, and outer layer, which applies, carries out metal oxide containing precious metals Coating just has electro catalytic activity, electric conductivity, inoxidizability, but its thickness only has 20 microns, is such as scratched or is destroyed, Then in electrolytic process, electrode can corrode first from injury region, influence the use quality and effect of entire electrode.
Utility model content
For the deficiency of existing Ti electrode piece, the utility model provides the Ti electrode of coated with nanometre rhodium iridium coatings Piece, it is strong to have a protectiveness, long service life, advantage easy to operate, solves and connects during carrying out to Ti electrode piece and moving fortune It contacts part rhodium iridium coatings, so that the surface of rhodium iridium coatings generates scuffing, influences its electro catalytic activity, electric conductivity, inoxidizability, And then the problem of influencing the use quality and effect of entire electrode.
The utility model provides the following technical solutions: the Ti electrode piece of coated with nanometre rhodium iridium coatings, including Ti electrode The middle part of matrix, the titanium electrode substrate top is fixedly connected with the bottom of connecting rod, the positive Middle face of titanium electrode substrate Surface is coated with rhodium iridium coatings, is fixedly connected with retention means in the middle part of the connecting rod top, the top of the retention means and solid The side of rationed marketing bottom is fixedly connected, and limit hole, the positive two sides of titanium electrode substrate are offered in the middle part of the fixed pin Sliding slot is offered respectively, and the positive two sides of titanium electrode substrate are flexibly connected with the two sides at the cover board back side respectively by sliding slot, institute It states and is fixedly connected with connecting pin in the middle part of cover board top, circular through hole is offered in the middle part of the connecting pin, and in connecting pin Portion is flexibly connected by circular through hole with traction rope.
Preferably, there are three the quantity of the titanium electrode substrate is total to, and three titanium electrode substrates are located at the bottom of connecting rod It is equally spaced.
Preferably, the rhodium iridium coatings are rectangular shape, and the long side length of the rhodium iridium coatings is 1.5 times of short side.
Preferably, the section of the sliding slot is spill, and the flute length of the sliding slot is 0.9 times of titanium electrode substrate height.
Preferably, the height of the cover board the sum of gap between three titanium electrode substrate height and titanium electrode substrate Times, offer rectangular channel compatible with fixed pin size at the top of the cover board, and the top of cover board by rectangular channel with Fixed pin is flexibly connected.
With existing Ti electrode piece compare, the utility model have it is following the utility model has the advantages that
1, the Ti electrode piece of the coated with nanometre rhodium iridium coatings, by being used between fortune carrying out moving to titanium electrode substrate Cover board covers the outside of rhodium iridium coatings thereon, avoids and touches part rhodium iridium coatings during moving fortune, so that rhodium The surface of iridium coating layer generates scuffing, so that electrode can corrode rhodium iridium coatings from injury region in electrolytic process, influences it Electro catalytic activity, electric conductivity, inoxidizability, and then the use quality and effect of entire electrode are influenced, improve the protection of device Property.
2, the Ti electrode piece of the coated with nanometre rhodium iridium coatings is realized by the setting of concavity chute hole to cover board The effect that front-rear position position is defined avoids cover board and incorgruous movement occurs in sliding process, causes to rhodium iridium coatings The problem of damage, improves the reasonability of device.
Detailed description of the invention
Fig. 1 is the utility model structure front schematic view;
Fig. 2 is the utility model structural side view;
Fig. 3 is that the utility model structure titanium electrode substrate shows perspective view.
In figure: 1, titanium electrode substrate;2, connecting rod;3, rhodium iridium coatings;4, retention means;5, fixed pin;6, limit hole;7, sliding Slot;8, cover board;9, connecting pin;10, traction rope.
Specific embodiment
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.Based on the embodiments of the present invention, those of ordinary skill in the art are without making creative work Every other embodiment obtained, fall within the protection scope of the utility model.
Please refer to Fig. 1-3, the Ti electrode piece of coated with nanometre rhodium iridium coatings, including titanium electrode substrate 1, titanium electrode substrate There are three 1 quantity is total, and the bottom that three titanium electrode substrates 1 are located at connecting rod 2 is equally spaced, 1 top of titanium electrode substrate Middle part is fixedly connected with the bottom of connecting rod 2, and the surface of the positive Middle face of titanium electrode substrate 1 is coated with rhodium iridium coatings 3, and rhodium iridium applies Layer 3 is rectangular shape, and the long side length of rhodium iridium coatings 3 is 1.5 times of short side, and connecting rod is fixedly connected in the middle part of 2 top The top of retention means 4, retention means 4 is fixedly connected with the side of 5 bottom of fixed pin, and the middle part of fixed pin 5 offers limit hole 6, The positive two sides of titanium electrode substrate 1 offer sliding slot 7 respectively, and the section of sliding slot 7 is spill, and the flute length of sliding slot 7 is Ti electrode base 0.9 times of 1 height of body, and the positive two sides of titanium electrode substrate 1 are flexibly connected with the two sides at 8 back side of cover board respectively by sliding slot 7, The height of cover board 8 is 1.1 times of the sum of gap between three titanium electrode substrates, 1 height and titanium electrode substrate 1, cover board 8 Top offers rectangular channel compatible with 5 size of fixed pin, and the top of cover board 8 is connected by rectangular channel and 5 activity of fixed pin It connects, by being covered using outside of the cover board 8 to rhodium iridium coatings 3 thereon between fortune carrying out moving to titanium electrode substrate 1, avoids Part rhodium iridium coatings 3 are touched during moving fortune, so that the surface of rhodium iridium coatings 3 generates scuffing, thus in electrolytic process In, electrode can corrode rhodium iridium coatings 3 from injury region, influence its electro catalytic activity, electric conductivity, inoxidizability, Jin Erying The use quality and effect for ringing entire electrode, improve the protectiveness of device, cover board is fixedly connected with connecting pin in the middle part of 8 top 9, the middle part of connecting pin 9 offers circular through hole, and the middle part of connecting pin 9 is flexibly connected by circular through hole with traction rope 10.
Working principle after the completion of 1 pickling of titanium electrode substrate, when needing to carry out moving fortune to its position, unclamps traction first Rope 10, the gravity of cover board 8 itself moves down it along the sliding slot 7 of 1 two sides of titanium electrode substrate, until by three titanium electrode substrates Rhodium iridium coatings 3 outside 1 cover all, then wear outside the moving to titanium electrode substrate 1 that clean gloves clamp cover board 8 Fortune.
It should be noted that, in this document, relational terms such as first and second and the like are used merely to a reality Body or operation are distinguished with another entity or operation, are deposited without necessarily requiring or implying between these entities or operation In any actual relationship or order or sequence.Moreover, the terms "include", "comprise" or its any other variant are intended to Non-exclusive inclusion, so that the process, method, article or equipment including a series of elements is not only wanted including those Element, but also including other elements that are not explicitly listed, or further include for this process, method, article or equipment Intrinsic element.
While there has been shown and described that the embodiments of the present invention, for the ordinary skill in the art, It is understood that these embodiments can be carried out with a variety of variations in the case where not departing from the principles of the present invention and spirit, repaired Change, replacement and variant, the scope of the utility model is defined by the appended claims and the equivalents thereof.

Claims (5)

1. the Ti electrode piece of coated with nanometre rhodium iridium coatings, including titanium electrode substrate (1), it is characterised in that: the Ti electrode The middle part on matrix (1) top is fixedly connected with the bottom of connecting rod (2), and the surface of the positive Middle face of the titanium electrode substrate (1) applies It is covered with rhodium iridium coatings (3), is fixedly connected with retention means (4) in the middle part of connecting rod (2) top, the top of the retention means (4) End is fixedly connected with the side of fixed pin (5) bottom, offers limit hole (6), the Ti electrode in the middle part of the fixed pin (5) Matrix (1) positive two sides offer sliding slot (7) respectively, and titanium electrode substrate (1) positive two sides by sliding slot (7) respectively with The two sides at cover board (8) back side are flexibly connected, and are fixedly connected with connecting pin (9), the connecting pin in the middle part of cover board (8) top (9) circular through hole is offered in the middle part of, and the middle part of connecting pin (9) is flexibly connected by circular through hole with traction rope (10).
2. the Ti electrode piece of coated with nanometre rhodium iridium coatings according to claim 1, it is characterised in that: the Ti electrode There are three the quantity of matrix (1) is total, and the bottom that three titanium electrode substrates (1) are located at connecting rod (2) is equally spaced.
3. the Ti electrode piece of coated with nanometre rhodium iridium coatings according to claim 1, it is characterised in that: the rhodium iridium applies Layer (3) is rectangular shape, and the long side length of the rhodium iridium coatings (3) is 1.5 times of short side.
4. the Ti electrode piece of coated with nanometre rhodium iridium coatings according to claim 1, it is characterised in that: the sliding slot (7) section is spill, and the flute length of the sliding slot (7) is 0.9 times of titanium electrode substrate (1) height.
5. the Ti electrode piece of coated with nanometre rhodium iridium coatings according to claim 1, it is characterised in that: the cover board (8) height is 1.1 times of the sum of gap between three titanium electrode substrate (1) height and titanium electrode substrate (1), the cover board (8) rectangular channel compatible with fixed pin (5) size is offered at the top of, and the top of cover board (8) passes through rectangular channel and fixation (5) are sold to be flexibly connected.
CN201821450794.1U 2018-09-06 2018-09-06 The Ti electrode piece of coated with nanometre rhodium iridium coatings Active CN208791789U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201821450794.1U CN208791789U (en) 2018-09-06 2018-09-06 The Ti electrode piece of coated with nanometre rhodium iridium coatings

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201821450794.1U CN208791789U (en) 2018-09-06 2018-09-06 The Ti electrode piece of coated with nanometre rhodium iridium coatings

Publications (1)

Publication Number Publication Date
CN208791789U true CN208791789U (en) 2019-04-26

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Family Applications (1)

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CN201821450794.1U Active CN208791789U (en) 2018-09-06 2018-09-06 The Ti electrode piece of coated with nanometre rhodium iridium coatings

Country Status (1)

Country Link
CN (1) CN208791789U (en)

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