CN210108918U - Zinc-plated iron wire anti-oxidation corrosion resistance testing arrangement - Google Patents
Zinc-plated iron wire anti-oxidation corrosion resistance testing arrangement Download PDFInfo
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- CN210108918U CN210108918U CN201920804264.0U CN201920804264U CN210108918U CN 210108918 U CN210108918 U CN 210108918U CN 201920804264 U CN201920804264 U CN 201920804264U CN 210108918 U CN210108918 U CN 210108918U
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Abstract
The utility model discloses a zinc-plated iron wire anti oxidation corrosion resisting property testing arrangement, including test chamber, fixed storehouse and ozone generator, ozone generator is installed through the mounting panel to test chamber one end, ozone generator's output passes through inside the gas transmission hole connects the test chamber, the test chamber other end passes through the bolt and installs fixed storehouse, the aspiration pump is installed through the fixed plate in fixed storehouse upper end, the port of bleeding of aspiration pump passes through the pipe connection test chamber, fixed storehouse bottom both ends are passed through the bolt and are installed fixed leg, the peripheral cover in fixed leg bottom is equipped with the sleeve, the bottom passes through spring coupling fixed leg bottom in the sleeve. The utility model discloses can conveniently carry out anti-oxidant and corrosion resisting property test, can also conveniently shelter from the contrast test to the iron wire, can make things convenient for the anti-oxidant corrosion resisting property of the different zinc-plating thickness iron wires of contrast test, whole device shock attenuation is effectual, is fit for being extensively promoted and used.
Description
Technical Field
The utility model relates to an iron wire production technical field, in particular to zinc-plated iron wire anti oxidation corrosion resisting property testing arrangement.
Background
In galvanized iron wire production process, the performance of galvanized iron wire tests, so testing arrangement is very necessary, testing arrangement in the past can not conveniently carry out anti-oxidant and corrosion resistance test, can not conveniently shelter from the contrast test to the iron wire, can not conveniently contrast the anti-oxidant corrosion resistance who tests different galvanized thickness iron wires, and whole device shock attenuation effect is poor, for this reason, we provide a galvanized iron wire anti-oxidant corrosion resistance testing arrangement.
Disclosure of Invention
The utility model mainly aims at providing a galvanized iron wire oxidation resistance and corrosion resistance testing device, through setting up the retaining ring, personnel pass the iron wire and keep off the ring, both ends are fixed in the fixed block, utilize the sheltering from of iron wire of retaining ring, conveniently contrast the galvanized iron wire and receive oxidation and partial state of corroding with not receiving, through setting up ozone generator, personnel open ozone generator, ozone generator can produce ozone during operation, carry ozone into the test chamber through the gas transmission hole, thereby conveniently carry out the anti-oxidation test to the galvanized iron wire, through setting up force (forcing) pump and shower nozzle, open the force (forcing) pump, during operation conveniently suck the corrosive solution in the agitator tank and pressurize, in the cavity again, in the shower nozzle again, utilize the shower nozzle convenience to spout corrosive solution into the test chamber, thereby conveniently carry out the corrosion resistance test to the galvanized iron wire, therefore, the oxidation resistance test and the corrosion resistance test can be carried out, and the problems in the technical background can be effectively solved.
In order to achieve the above purpose, the utility model adopts the following technical scheme:
a galvanized iron wire oxidation resistance and corrosion resistance testing device comprises a testing bin, a fixed bin and an ozone generator, wherein the ozone generator is installed at one end of the testing bin through a mounting plate, the output end of the ozone generator is connected with the inside of the testing bin through an air delivery hole, the other end of the testing bin is provided with the fixed bin through a bolt, the upper end of the fixed bin is provided with an air pump through a fixed plate, the air pumping port of the air pump is connected with the testing bin through a pipeline, two ends of the bottom of the fixed bin are provided with fixed legs through bolts, the periphery of the bottom end of each fixed leg is sleeved with a sleeve, the bottom of the sleeve is connected with the bottom of the fixed leg through a spring, a hollow cavity is installed at one side of the testing bin through a bolt, a stirring tank is installed at one side of the top end of the hollow cavity through a mounting column, a, the test chamber is characterized in that mounting blocks are welded at the top and the inner bottom of the test chamber, and a retaining ring is fixed between the mounting blocks through a connecting column.
Further, the fixed station is installed through the fixed column to the bottom in the fixed bin, cladding material thickness detector is installed through the fixed slot in the fixed bin top, cladding material thickness detector one end is connected with test probe through the connecting wire.
Furthermore, a bin door is installed at one end of the test bin through a rotating shaft.
Further, the bottom of the sleeve is welded with a mounting pad, and mounting holes are formed in two ends of the bottom of the mounting pad.
Further, agitator tank one side is installed agitator motor through the bolt, agitator motor's output shaft runs through the agitator tank, agitator motor's output shaft periphery is fixed with the stirring roller through the screw.
Further, agitator tank one end is provided with the shower nozzle, the quantity of shower nozzle is a plurality of, shower nozzle one end is located the inside one side in test bin, the feed liquor end of force (forcing) pump passes through the pipe connection agitator tank bottom, the play liquid end of force (forcing) pump passes through the cavity in the pipe connection.
Further, the fixed block has all been welded to test bin inner wall both sides, the slide rail is installed through the screw at fixed block inner wall both ends, the briquetting is installed through the slider to the slide rail inboard, briquetting bottom and fixed block top all are provided with double-layered hole.
Compared with the prior art, the utility model discloses following beneficial effect has:
1. through setting up the fender ring, the personnel pass the iron wire and keep off the ring, and in the both ends were fixed in the fixed block, utilize to keep off the sheltering from of ring to the iron wire, conveniently contrast the galvanized iron wire and receive oxidation and corrode the part and do not receive oxidation and the state of corroding the part.
2. By arranging the air pump, the air pump is opened, most of air in the test bin is conveniently pumped out during work, by arranging the ozone generator, a person opens the ozone generator, the ozone generator can generate ozone during work, the ozone is conveyed into the test bin through the air conveying hole, so that the oxidation resistance test of the galvanized iron wire is conveniently carried out, the person respectively adds water and corrosive salt into the water adding port and the material adding port, opens the stirring motor at one end of the stirring tank, an output shaft conveniently drives the peripheral stirring roller to rotate during work, so that the corrosive salt and the water in the stirring tank are stirred, so that corrosive solution is conveniently formed, the pressure pump is opened by arranging the pressure pump and the spray head, the corrosive solution in the stirring tank is conveniently sucked and then pressurized during work, then the corrosive solution is conveyed into the hollow cavity and then conveyed into the spray head, the corrosive solution is conveniently sprayed into the test bin by the spray head, therefore, the corrosion performance of the galvanized iron wire can be conveniently tested, and the oxidation resistance test and the corrosion resistance test can be carried out.
3. Through setting up cladding material thickness detector, the personnel put into the fixed station top in the fixed bin with the zinc-plated iron wire, utilize the test probe of cladding material thickness detector to be close to the zinc-plated iron wire to the convenient thickness to the zinc-plated iron wire is tested, thereby makes things convenient for the different thickness oxidation and corrosion resistance of contrast test.
4. Through setting up the spring, utilize the spring of bottom in the sleeve, conveniently promote the damping performance of fixed leg to promote the damping performance of this testing arrangement during operation.
Drawings
Fig. 1 is the utility model discloses a galvanized iron wire oxidation resistance and corrosion resistance testing arrangement's overall structure schematic diagram.
Figure 2 is the utility model discloses a galvanized iron wire anti oxidation corrosion resistance testing arrangement's agitator tank schematic diagram.
Fig. 3 is a schematic diagram of a press block of the device for testing oxidation resistance and corrosion resistance of galvanized iron wires.
In the figure: 1. a test bin; 2. a spray head; 3. an ozone generator; 4. a baffle ring; 6. fixing the bin; 7. an air pump; 8. briquetting; 9. a fixed block; 10. a fixed leg; 11. a sleeve; 12. a spring; 13. a mounting mat; 14. mounting holes; 15. a fixed table; 16. a clamping hole; 17. a plating thickness detector; 18. detecting a probe; 19. a hollow cavity; 20. a stirring tank; 21. a pressure pump; 22. a water filling port; 23. a feed inlet; 24. a slide rail.
Detailed Description
In order to make the technical means, creation features, achievement purposes and functions of the present invention easy to understand, the present invention is further described below with reference to the following embodiments.
As shown in fig. 1-3, a galvanized iron wire oxidation resistance and corrosion resistance testing device comprises a testing chamber 1, a fixed chamber 6 and an ozone generator 3, wherein the ozone generator 3 is installed at one end of the testing chamber 1 through an installation plate, the output end of the ozone generator 3 is connected with the inside of the testing chamber 1 through an air delivery hole, the fixed chamber 6 is installed at the other end of the testing chamber 1 through a bolt, an air suction pump 7 is installed at the upper end of the fixed chamber 6 through a fixed plate, the air suction port of the air suction pump 7 is connected with the testing chamber 1 through a pipeline, fixed legs 10 are installed at two ends of the bottom of the fixed chamber 6 through bolts, a sleeve 11 is sleeved at the periphery of the bottom end of each fixed leg 10, the bottom of the sleeve 11 is connected with the bottom of the fixed leg 10 through a spring 12, a hollow cavity 19 is installed on one side of the testing chamber, well cavity 19 bottom one side is installed force (forcing) pump 21 through the erection column, filler 22 and charge door 23 are installed respectively to 20 top one end of agitator tank, all welding of top and interior bottom has installation piece 5 in the test chamber 1, be fixed with fender ring 4 through the spliced pole between the installation piece 5.
The fixed station 15 is installed through the fixed column at the bottom in the fixed bin 6, and cladding material thickness detector 17 is installed through the fixed slot at the top in the fixed bin 6, cladding material thickness detector 17 one end is connected with test probe 18 through the connecting wire.
In this embodiment as shown in fig. 1, the personnel put into the 15 tops of fixed station in fixed bin 6 with the galvanized iron wire, utilize cladding material thickness detector 17's 18 test probe to be close to the galvanized iron wire to the convenient thickness to the galvanized iron wire tests, thereby makes things convenient for the different thickness oxidation and corrosion resistance of contrast test.
Wherein, a bin door is installed at one end of the test bin 1 through a rotating shaft.
In the embodiment, as shown in fig. 1 and 2, a person closes the bin door to conveniently close the test bin 1.
The bottom of the sleeve 11 is welded with a mounting pad 13, and mounting holes 14 are formed in two ends of the bottom of the mounting pad 13.
In this embodiment, as shown in fig. 1, the test device is conveniently mounted on a target plane by using mounting holes 14 at both ends of a mounting pad 13.
Wherein, agitator tank 20 one side is installed agitator motor through the bolt, agitator motor's output shaft runs through agitator tank 20, agitator motor's output shaft periphery is fixed with the stirring roller through the screw.
As shown in FIG. 2 in this embodiment, open the agitator motor of agitator tank 20 one end, the during operation output shaft conveniently drives outlying stirring roller and rotates to corrosivity salinity and water stir in the agitator tank 20, thereby conveniently form corrosive solution.
Wherein, agitator tank 20 one end is provided with shower nozzle 2, the quantity of shower nozzle 2 is a plurality of, 2 one ends of shower nozzle are located 1 inside one side in test bin, the feed liquor end of force (forcing) pump 21 passes through the pipe connection agitator tank 20 bottom, the play liquid end of force (forcing) pump 21 passes through pipe connection cavity 19 in.
In this embodiment, as shown in fig. 1 and fig. 2, the pressure pump 21 is turned on, so that the corrosive solution in the stirring tank 20 is conveniently sucked and pressurized during operation, and then is conveyed into the hollow cavity 19 and then conveyed into the spray head 2, and the spray head 2 is used to conveniently spray the corrosive solution into the test chamber 1, thereby facilitating the corrosion performance test of the galvanized iron wire.
Wherein, fixed block 9 has all been welded to 1 inner wall both sides in test bin, slide rail 24 is installed through the screw in 9 inner wall both ends of fixed block, 24 inboard slide rails install briquetting 8 through the slider, briquetting 8 bottom and fixed block 9 interior top all are provided with double-layered hole 16.
In this embodiment, as shown in fig. 3, the sliding blocks at the two ends of the pressing block 8 slide in the sliding rails 24, so that the distance between the pressing block 8 and the fixing block 9 is conveniently shortened, and the iron wire is conveniently clamped by the clamping holes 16.
It should be noted that the utility model relates to a zinc-plated iron wire oxidation resistance and corrosion resistance testing arrangement, in operation, utilize the mounting hole 14 at mounting pad 13 both ends to conveniently install this testing arrangement on the target plane, ozone generator 3, aspiration pump 7 and force (forcing) pump 21 are connected near the power use, utilize the slider at briquetting 8 both ends to slide in slide rail 24, conveniently draw close the distance of briquetting 8 and fixed block 9, thereby conveniently utilize anchor clamps 16 to carry out the centre gripping to the iron wire, personnel pass the iron wire and keep off ring 4, both ends are fixed in fixed block 9, utilize the sheltering from of fender ring 4 to the iron wire, conveniently contrast the zinc-plated iron wire receive oxidation and corrode the partial state that does not receive oxidation and corruption, personnel will the door closure, open aspiration pump 7, the during operation conveniently takes out most air in test chamber 1, personnel open ozone generator 3, ozone generator 3 (Guangzhou Gonghuan ozone technology Limited company produces, model QJ-8004K-10G) can generate ozone during operation, the ozone is conveyed into the test bin 1 through the air conveying hole, so that the oxidation resistance test can be conveniently carried out on galvanized iron wires, personnel respectively add water and corrosive salt into the water adding hole 22 and the material adding hole 23, the stirring motor at one end of the stirring tank 20 is opened, the output shaft conveniently drives the peripheral stirring roller to rotate during operation, so that the corrosive salt and the water in the stirring tank 20 are stirred, corrosive solution is conveniently formed, the pressure pump 21 is opened, the corrosive solution in the stirring tank 20 is conveniently sucked and then pressurized during operation, the corrosive solution is conveyed into the hollow cavity 19 and then conveyed into the spray head 2, the spray head 2 is used for conveniently spraying the corrosive solution into the test bin 1, so that the corrosion resistance test can be conveniently carried out on the galvanized iron wires, and the oxidation resistance test and the corrosion resistance test can be carried out, the personnel put into the 15 tops of fixed station in fixed storehouse 6 with the zinc-plated iron wire, the test probe 18 that utilizes cladding material thickness detector 17 (Guangzhou Dongzhou's electrotechnical limited company production, model DR 360) is close to the zinc-plated iron wire, thereby the convenient thickness to the zinc-plated iron wire is tested, thereby make things convenient for the different anti-oxidation corrosion resistance of thickness of contrast test, utilize the spring 12 of bottom in the sleeve 11, conveniently promote the damping performance of stationary leg 10, thereby promote the damping performance of this testing arrangement during operation.
The basic principles and the main features of the invention and the advantages of the invention have been shown and described above. It will be understood by those skilled in the art that the present invention is not limited to the above embodiments, and that the foregoing embodiments and descriptions are provided only to illustrate the principles of the present invention without departing from the spirit and scope of the present invention. The scope of the invention is defined by the appended claims and equivalents thereof.
Claims (7)
1. The utility model provides a zinc-plated iron wire anti oxidation corrosion resistance testing arrangement, includes test bin (1), fixed storehouse (6) and ozone generator (3), its characterized in that: ozone generator (3) is installed through the mounting panel to test storehouse (1) one end, inside ozone generator's (3) output passes through the gas transmission hole and connects test storehouse (1), fixed storehouse (6) is installed through the bolt to test storehouse (1) other end, aspiration pump (7) are installed through the fixed plate in fixed storehouse (6) upper end, the port of bleeding of aspiration pump (7) passes through pipe connection test storehouse (1), fixed leg (10) are installed through the bolt in fixed storehouse (6) bottom both ends, fixed leg (10) bottom periphery cover is equipped with sleeve (11), fixed leg (10) bottom is connected through spring (12) in sleeve (11) bottom, install well cavity (19) through the screw in test storehouse (1) one side, agitator tank (20) are installed through the bolt in well cavity (19) top one side, pressure pump (21) are installed through the erection column in well cavity (19) bottom one side, filler (22) and charge door (23) are installed respectively to agitator tank (20) top one end, all welding at top and interior bottom has installation piece (5) in test chamber (1), be fixed with fender ring (4) through the spliced pole between installation piece (5).
2. The galvanized iron wire oxidation and corrosion resistance testing device of claim 1, characterized in that: fixed station (15) are installed through the fixed column to the bottom in fixed storehouse (6), cladding material thickness detector (17) are installed through the fixed slot in fixed storehouse (6) internal top, cladding material thickness detector (17) one end is connected with test probe (18) through the connecting wire.
3. The galvanized iron wire oxidation and corrosion resistance testing device of claim 1, characterized in that: and a bin door is arranged at one end of the test bin (1) through a rotating shaft.
4. The galvanized iron wire oxidation and corrosion resistance testing device of claim 1, characterized in that: the bottom of the sleeve (11) is welded with a mounting pad (13), and mounting holes (14) are formed in two ends of the bottom of the mounting pad (13).
5. The galvanized iron wire oxidation and corrosion resistance testing device of claim 1, characterized in that: agitator motor is installed through the bolt in agitator tank (20) one side, agitator motor's output shaft runs through agitator tank (20), agitator motor's output shaft periphery is fixed with the stirring roller through the screw.
6. The galvanized iron wire oxidation and corrosion resistance testing device of claim 1, characterized in that: agitator tank (20) one end is provided with shower nozzle (2), the quantity of shower nozzle (2) is a plurality of, shower nozzle (2) one end is located test storehouse (1) inside one side, the feed liquor end of force (forcing) pump (21) passes through pipe connection agitator tank (20) bottom, cavity (19) in the play liquid end of force (forcing) pump (21) passes through the pipe connection.
7. The galvanized iron wire oxidation and corrosion resistance testing device of claim 1, characterized in that: test storehouse (1) inner wall both sides all weld fixed block (9), slide rail (24) are installed through the screw at fixed block (9) inner wall both ends, briquetting (8) are installed through the slider to slide rail (24) inboard, briquetting (8) bottom and fixed block (9) interior top all are provided with and press from both sides hole (16).
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CN201920804264.0U CN210108918U (en) | 2019-05-31 | 2019-05-31 | Zinc-plated iron wire anti-oxidation corrosion resistance testing arrangement |
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CN201920804264.0U CN210108918U (en) | 2019-05-31 | 2019-05-31 | Zinc-plated iron wire anti-oxidation corrosion resistance testing arrangement |
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