CN101117717A - Manganese dioxide reference electrode - Google Patents
Manganese dioxide reference electrode Download PDFInfo
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- CN101117717A CN101117717A CNA2007100164410A CN200710016441A CN101117717A CN 101117717 A CN101117717 A CN 101117717A CN A2007100164410 A CNA2007100164410 A CN A2007100164410A CN 200710016441 A CN200710016441 A CN 200710016441A CN 101117717 A CN101117717 A CN 101117717A
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Abstract
The present invention belongs to the technical field of cathode corrosion prevention and relates to a manganese dioxide reference electrode applied to concrete for preventing corrosion of metal material. A body structure comprises a sealing adhesive tape, a concrete semi-permeable membrane, a piece of alkali-resistant tissue paper, manganese rings, a steel current collector cylinder and a wire, wherein the wire is welded to one end of the steel current collector cylinder; two manganese rings are respectively thrust into the steel current collector cylinder; the concrete semi-permeable membrane is winded by the alkali-resistant paper by the front end and then tenderly thrust into the steel current collector cylinder; the alkali-resistant paper contacts with the two manganese rings; the body structure of the reference electrode is sealed with the sealing adhesive tape and one end of the concrete semi-permeable membrane is made to contact with the outside, thereby an integral manganese dioxide reference electrode, which has a firm structure and can bear fairly large external stresses, is formed. Due to the semi-permeable membrane, the part of the electrode touching the concrete has similar thermal expansion coefficient with the concrete, so the electrode, unlike ceramics, has no integration loose problem between the concrete and has much more stable potential in long-term use.
Description
Technical field:
The invention belongs to the cathode protection technology field of corrosion and protection, be specifically related to a kind of manganese dioxide reference electrode that is applied to prevent in the concrete metal species material corrosion.
Background technology:
Steel Concrete all occupies sizable ratio in the Infrastructure of countries in the world, as Steel Concrete harbour, pile foundation, bridge, hydraulic gate, prestressed concrete pipe line, motorway etc.The user mode of these facilities is directly connected to the returns of investment of safety in production and country, guarantees that therefore these facilities are in the safe handling state and prolong its acceptable life is essential.But reinforcement corrosion causes the too early destruction of concrete structure, a big disaster that has become whole world common concern and become increasingly conspicuous.So monitoring and the etch state of estimating reinforcing bar in the concrete necessitate, potentiometry and various harmless electrochemical detection method have suitable advantage and development potentiality because of its characteristics such as fast and convenient, and the reliability of these data directly is associated with reference electrode.The various reference electrodes of present domestic application use in concrete and a lot of problems all occurred." being applicable to the reference electrode of Steel Concrete " patent of inventions such as Ji Mingtang, its application number 94240436.X is at present domestic and international rare patent about reference electrode in the concrete.The electrode that this patent relates to constitutes the spiral type filamentary silver that surface applied has silver chloride, and sealing material and the cable that is connected with filamentary silver contain the cementitious coating of 0.4~1% chlorion.This electrode with respect to the characteristics of other electrode is, can be embedded in the concrete, eliminates IR and falls, and can measure in the seawater current potential of reinforcing bar in the concrete structure, and potential stability is good.But this class electrode ubiquity complicated process of preparation, and structure is owed rationally, and cost is higher, and dry strength is poor, outstanding shortcoming such as grade that temperature factor is understable.
In concrete, no matter how good the impermeability of semi-permeable membranes is, the solution in the final environment still can permeate to electrode interior, because the silver chloride of silver chloride electrode is under alkaline change condition, instability is easy to generate Ag
2O has so just caused the unpredictability of electropotential; Also there is this corresponding problem in the copper sulfate reference electrode, in case environment solution reverse osmosis then can generate Cu (OH)
2Concrete environment for use mostly all and dry, the situation that general electrode all exists electrolytic solution to exosmose causes electrode unavailable, and the dry strength of these two kinds of electrodes can be very poor.On the other hand,, expand with heat and contract with cold, cause embedding reference electrode semi-permeable membranes to be easy to slight crack occur with concrete structure because concrete itself needs frequent experience alternation of wetting and drying.
Summary of the invention:
The objective of the invention is to overcome the shortcoming that exists in the prior art, develop a kind of in strong alkali solution electrode substance stable, and siccostabile manganese dioxide reference electrode is suitable as embedment type reference electrode for inspecting in the concrete.
To achieve these goals, what the present invention relates to is used for the manganese dioxide reference electrode that the concrete monitoring corrosion of steel is used, its agent structure comprises sealant tape, the concrete semi-permeable membranes, alkaline-resisting tissue paper, the manganese ring, collector steel cylinder and lead, wire bonds is at collector steel cylinder one end, two manganese rings are pushed respectively in the collector steel cylinder, snarl concrete semi-permeable membranes front end and touch in the collector steel cylinder with alkaline-resisting cotton paper, alkaline-resisting cotton paper and two manganese loop contacts, with sealant tape with reference electrode agent structure sealing and concrete semi-permeable membranes one end is contacted with extraneous, the manganese dioxide reference electrode of formation integral structure.Concrete making processes and technology are as follows:
Select β or γ titanium shape manganese dioxide powder earlier for use, granularity is between 300~400 orders, removes water treatment through the surface, and 120 ℃ of treatment temps in 30 minutes treatment times, get the Manganse Dioxide base-material;
Press column weight amount per-cent and choose material respectively, get except that the manganese dioxide powder after the water treatment 70~80%; Montomorillonite 15~25%; The KOH solution 1.5% of 1~9mol/L concentration; Acetylene black powder 2~8%; Ptfe emulsion 1%; Utilize the mechanical means thorough mixing, or adopt mortar to grind 30~60 minutes, get the mixed powder base-material; Utilize oil press, the mixed powder base-material is compressed into the electrode of basal body structure in steel die;
The stainless steel cylinder of choosing opening shape core structure is as the collector steel cylinder, internal diameter 16mm, and thick 1mm, long 48mm, end sealing, the blind end outside connects copper conductor with scolding tin, the other end opening, the steel cylinder internal surface is through Nickel Plating Treatment; The Manganse Dioxide manganese ring of two press formings is pushed in the steel cylinder, and light the pressure makes the manganese ring well contact with steel cylinder; It is stand-by to be pressed into a plastic tab on a back manganese ring;
The alkaline-resisting cotton paper that rolls shaping was immersed in the KOH solution of 9mol/L 20~40 minutes, taking-up is dried, with its lining at the manganese ring inner surface;
Cement flour is mixed with the part by weight of water by 7: 3, pour into the surface and be coated with in the stainless steel mould of organic oil,, make the semi-permeable membranes shape of moulding, semi-permeable membranes is inserted in two manganese rings in the steel cylinder with placing after the blunt nosed rod tamping 7 days;
With sealant tape the rest part except that semi-permeable membranes is sealed at last, make manganese dioxide reference electrode.
The present invention makes the firm in structure of reference electrode by adopting fibrous concrete as semipermeable membrane material with adopt stainless steel cylinder as structured material, can bear bigger external pressure etc.; By adopting fibrous concrete as semipermeable membrane material, make that the position that contact with concrete is similar with concrete thermal boundary shrinkage coefficient, can so not lead between similar pottery etc. and concrete and combine situation about becoming flexible; By adopting Manganse Dioxide, make the current potential of electrode stable many on long-term behaviour as electrode.
Description of drawings:
Fig. 1 is a manganese dioxide reference electrode basal body structure principle schematic of the present invention.
Embodiment:
Agent structure of the present invention comprises sealant tape 1, concrete semi-permeable membranes 2, alkaline-resisting cotton paper 3, manganese ring 4 and 5, collector steel cylinder 6 and lead 7, lead 7 is welded on collector steel cylinder 6 one ends, two manganese rings 4 and 5 are pushed respectively in the collector steel cylinder 6, snarl concrete semi-permeable membranes 2 front ends and touch in the collector steel cylinder 3 with alkaline-resisting cotton paper 3, alkaline-resisting cotton paper 3 contacts with 5 with two manganese rings 4, with sealant tape 1 with reference electrode agent structure sealing and concrete semi-permeable membranes 2 one ends are contacted with extraneous, the manganese dioxide reference electrode of formation integral structure.
Embodiment 1:
Select β titanium manganese dioxide powder for use, granularity is removed water treatment, 120 ℃ of treatment temps, 30 minutes treatment times through the surface between 300~400 orders; Get the manganese dioxide powder 70% after the processing by weight percentage respectively; Montomorillonite 20%; The KOH solution 1.5% of 1mol/L concentration; 7.5% acetylene black powder and 1% ptfe emulsion, utilize the mechanical means thorough mixing, and ground 60 minutes, utilize oil press, above-mentioned mixed powder is compressed in the tool steel mould and assemble by the manufacture craft process, obtain manganese dioxide reference electrode, its current potential is stabilized in 68 ± 5mV.
Embodiment 2:
Select γ titanium manganese dioxide powder for use, granularity is removed water treatment, 120 ℃ of treatment temps, 30 minutes treatment times through the surface between 300~400 orders; Get the manganese dioxide powder 80% after the processing by weight percentage respectively; Montomorillonite 15%; The KOH solution 1.5% of 9mol/L concentration; 2.5% acetylene black powder and 1% ptfe emulsion, utilize the mechanical means thorough mixing, and ground 60 minutes, utilize oil press, above-mentioned mixed powder is compressed in the tool steel mould and assemble by the manufacture craft process, obtain manganese dioxide reference electrode, its current potential is stabilized in 68 ± 5mV.
Claims (2)
1. manganese dioxide reference electrode, agent structure comprises sealant tape, concrete semi-permeable membranes, alkaline-resisting tissue paper, manganese ring, collector steel cylinder and lead, it is characterized in that wire bonds is at collector steel cylinder one end, two manganese rings are pushed respectively in the collector steel cylinder, snarl concrete semi-permeable membranes front end and touch in the collector steel cylinder with alkaline-resisting cotton paper, alkaline-resisting cotton paper and two manganese loop contacts, with sealant tape with reference electrode agent structure sealing and concrete semi-permeable membranes one end is contacted with extraneous, the manganese dioxide reference electrode of formation integral structure.
2. manganese dioxide reference electrode according to claim 1 is characterized in that making processes is: select β or γ titanium shape manganese dioxide powder earlier for use, remove water treatment through the surface and get the Manganse Dioxide base-material; Press column weight amount per-cent and choose material respectively, get except that the manganese dioxide powder after the water treatment 70~80%; Montomorillonite 1 5~25%; The KOH solution 1.5% of 1~9mol/L; Acetylene black powder 2~8%; Ptfe emulsion 1%; Thorough mixing, or adopt mortar grind the mixed powder base-material; The mixed powder base-material is compressed into the electrode of basal body structure in steel die; The stainless steel cylinder of choosing opening shape core structure is as the collector steel cylinder, and an end seals, and the blind end outside connects copper conductor with scolding tin, the other end opening, and the steel cylinder internal surface is through Nickel Plating Treatment; The Manganse Dioxide manganese ring of two press formings is pushed in the steel cylinder, and light the pressure makes the manganese ring well contact with steel cylinder; It is stand-by to be pressed into a plastic tab on a back manganese ring; The alkaline-resisting cotton paper that rolls shaping was immersed in the KOH solution of 9mol/L 20~40 minutes, taking-up is dried, with its lining at the manganese ring inner surface; Cement flour is mixed with the part by weight of water by 7: 3, pour into the surface and be coated with in the stainless steel mould of organic oil,, make the semi-permeable membranes shape of moulding, semi-permeable membranes is inserted in two manganese rings in the steel cylinder with placing after the blunt nosed rod tamping 7 days; With sealant tape the rest part except that semi-permeable membranes is sealed at last, make manganese dioxide reference electrode.
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CNB2007100164410A CN100526509C (en) | 2007-07-31 | 2007-07-31 | Manganese dioxide reference electrode |
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CNB2007100164410A CN100526509C (en) | 2007-07-31 | 2007-07-31 | Manganese dioxide reference electrode |
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CN101117717A true CN101117717A (en) | 2008-02-06 |
CN100526509C CN100526509C (en) | 2009-08-12 |
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Cited By (4)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN102175734A (en) * | 2011-02-25 | 2011-09-07 | 中南大学 | Reference sensor |
CN103586455A (en) * | 2013-10-15 | 2014-02-19 | 钟祥市中原电子有限责任公司 | Reference electrode powder for molten metal oxygen-measuring batteries and production process |
CN104729985A (en) * | 2015-03-25 | 2015-06-24 | 淮阴师范学院 | WSN-based remote wireless monitoring system for concrete reinforcement corrosion degree |
CN109252172A (en) * | 2018-09-14 | 2019-01-22 | 浙江钰烯腐蚀控制股份有限公司 | A kind of manganese dioxide solid state reference electrode and preparation method thereof |
-
2007
- 2007-07-31 CN CNB2007100164410A patent/CN100526509C/en not_active Expired - Fee Related
Cited By (5)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN102175734A (en) * | 2011-02-25 | 2011-09-07 | 中南大学 | Reference sensor |
CN102175734B (en) * | 2011-02-25 | 2013-06-26 | 中南大学 | Reference sensor |
CN103586455A (en) * | 2013-10-15 | 2014-02-19 | 钟祥市中原电子有限责任公司 | Reference electrode powder for molten metal oxygen-measuring batteries and production process |
CN104729985A (en) * | 2015-03-25 | 2015-06-24 | 淮阴师范学院 | WSN-based remote wireless monitoring system for concrete reinforcement corrosion degree |
CN109252172A (en) * | 2018-09-14 | 2019-01-22 | 浙江钰烯腐蚀控制股份有限公司 | A kind of manganese dioxide solid state reference electrode and preparation method thereof |
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CN100526509C (en) | 2009-08-12 |
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