CN220311351U - Wire drawing device for preparing nickel-manganese alloy wire - Google Patents

Wire drawing device for preparing nickel-manganese alloy wire Download PDF

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Publication number
CN220311351U
CN220311351U CN202321473044.7U CN202321473044U CN220311351U CN 220311351 U CN220311351 U CN 220311351U CN 202321473044 U CN202321473044 U CN 202321473044U CN 220311351 U CN220311351 U CN 220311351U
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CN
China
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ring core
nickel
manganese alloy
cleaning
annular
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CN202321473044.7U
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Chinese (zh)
Inventor
曹兴东
曹露
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Jiangyin Chengxin Alloy Material Co ltd
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Jiangyin Chengxin Alloy Material Co ltd
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Abstract

The utility model provides a wire drawing device for preparing nickel-manganese alloy wires, which comprises a cleaning box, wherein an annular liquid groove is formed in one side, close to a feed inlet, of an inner cavity of the cleaning box, a cleaning ring core is matched in the annular liquid groove, an annular air groove is formed in one side, close to a discharge outlet, of the inner cavity of the cleaning box, and a drying ring core is matched in the annular air groove; compact structure, short processing procedure and high efficiency.

Description

Wire drawing device for preparing nickel-manganese alloy wire
Technical Field
The utility model relates to the technical field of wire drawing equipment, in particular to a wire drawing device for preparing nickel-manganese alloy wires.
Background
The wire drawing process of the nickel-manganese alloy wire comprises the steps of straightening a metal strip, coating the wire, drying, cooling and cleaning, wire drawing and collecting of the metal wire and the like, and some external impurities or metal scraps are easily attached to the surface of the nickel-manganese alloy wire, so that the surface of the nickel-manganese alloy wire needs to be cleaned. For example, the application number is CN202120900422.X discloses a bond alloy wire drawing device capable of removing impurities, the device lubricates the bond alloy wire through an oil absorption sponge, and the bond alloy wire is cleaned through a cleaning box, so that the device achieves the purpose of dust removal and lubrication. But the device has the advantages of more integral structural members, compactness, influence on the spatial arrangement of a processing workshop, long processing stroke and low processing rate.
Disclosure of Invention
In order to solve the problems, the utility model provides a wire drawing device for preparing nickel-manganese alloy wires, so as to solve the problems more exactly.
The utility model is realized by the following technical scheme:
the utility model provides a wire drawing device for nickel-manganese alloy wire preparation, which comprises a cleaning box, wherein the cleaning box is a horizontally arranged cylinder body, a feeding hole and a discharging hole for nickel-manganese alloy wires to penetrate are respectively arranged at two sides of the cleaning box, an annular liquid groove is arranged at one side, close to the feeding hole, of an inner cavity of the cleaning box, a cleaning ring core is matched in the annular liquid groove, a plurality of liquid spraying nozzles are arranged on the inner ring wall of the cleaning ring core, a liquid inlet communicated with the annular liquid groove is arranged on the outer wall of the cleaning box, an annular air groove is arranged at one side, close to the discharging hole, of the inner cavity of the cleaning box, a drying ring core is matched in the annular air groove, a liquid discharging interface is arranged at the bottom of the cleaning box, the liquid discharging interface is communicated with the inner cavity of the cleaning box, a plurality of air nozzles are arranged on the inner ring wall of the drying ring core, a pair of wire wheels are arranged at two sides of the cleaning box, and the wire wheels are connected to the side wall of the cleaning box through the wire wheels.
Furthermore, watertight bearings are matched between the two sides of the cleaning ring core and the annular liquid groove, and airtight bearings are matched between the two sides of the drying ring core and the annular air groove.
Further, the plurality of liquid spray nozzles are arranged in an annular array along the center of the cleaning ring core, and the liquid spray directions of the plurality of liquid spray nozzles are all directed to the center point of the cleaning ring core.
Further, the air nozzles are arranged in an annular array along the center of the drying ring core, and the air injection directions of the air nozzles are inclined by 30 degrees and point to the center point of the drying ring core.
Further, the outer ring wall integrated into one piece of clean ring core has the liquid guide piece of multi-disc slant setting, and the multi-disc liquid guide piece is the annular array setting along the center of clean ring core, the outer ring wall integrated into one piece of dry ring core has the air guide piece of multi-disc slant setting, and the multi-disc air guide piece is the annular array setting along the center of dry ring core.
Further, an elastic rod piece is fixed on the inner ring wall of the drying ring core, a sponge support is arranged at the end part of the elastic rod piece, and a sponge block attached to the outer wall of the nickel-manganese alloy wire is arranged on the sponge support.
Further, the elastic rod piece is composed of a sleeve and a push rod which are sleeved in a sliding mode, the sleeve is fixed on the inner ring wall of the drying ring core, the end portion of the push rod is fixed with the sponge support, and a pressure spring for pushing the push rod is arranged in the sleeve.
The utility model has the beneficial effects that:
1. according to the utility model, the liquid inlet is externally connected with the cleaning liquid supply assembly, and in the process that the cleaning liquid is led into the annular liquid groove along the liquid inlet, the flow of the cleaning liquid pushes the liquid guide plate arranged on the outer ring wall of the cleaning ring core, so that the cleaning ring core is driven to rotate, a plurality of liquid spray nozzles are used for carrying out rotary spray washing on the nickel-manganese alloy wires, the cleaning effect is improved, and the cleaning structure is simplified;
2. according to the utility model, the air inlet interface is externally connected with the air supply assembly, and in the process that air is led into the annular air groove along the air inlet interface, the air flow pushes the air guide piece arranged on the outer ring wall of the drying ring core, so that the drying ring core is driven to rotate, a plurality of air nozzles are further used for carrying out rotary blowing on the nickel-manganese alloy wires, and the blowing effect of cleaning liquid is improved; compact structure, short processing procedure and high efficiency.
Drawings
FIG. 1 is a partial cross-sectional view of a three-dimensional structure of the present utility model;
FIG. 2 is a schematic perspective view of a cleaning ring core according to the present utility model;
FIG. 3 is a schematic perspective view of a drying ring core according to the present utility model;
fig. 4 is a side cross-sectional view of the present utility model.
In the figure: 1. a cleaning box; 101. a feed inlet; 102. a discharge port; 103. an annular liquid tank; 1031. a liquid inlet port; 104. an annular air groove; 1041. an air inlet interface; 105. a liquid discharge interface; 106. a wire guide wheel; 1061. a wheel seat; 2. cleaning the ring core; 201. a liquid spray nozzle; 202. a liquid guiding sheet; 203. a watertight bearing; 3. drying the ring core; 301. an air nozzle; 302. an air guide sheet; 303. an elastic rod member; 304. a sponge support; 305. a sponge block; 306. an airtight bearing; 4. nickel-manganese alloy wire.
Detailed Description
In order to more clearly and completely describe the technical scheme of the utility model, the utility model is further described below with reference to the accompanying drawings.
Referring to fig. 1-4, the utility model provides a wire drawing device for preparing nickel-manganese alloy wires, comprising a cleaning box 1, wherein the cleaning box 1 is a horizontally arranged cylinder, two sides of the cleaning box 1 are respectively provided with a feeding hole 101 and a discharging hole 102 for the nickel-manganese alloy wires 4 to penetrate, two sides of the cleaning box 1 are respectively provided with a pair of wire wheels 106, the wire wheels 106 are connected to the side wall of the cleaning box 1 through a wheel seat 1061 and are used for guiding and transporting the nickel-manganese alloy wires 4, one side, close to the feeding hole 101, of the inner cavity of the cleaning box 1 is provided with an annular liquid groove 103, a cleaning ring core 2 is matched in the annular liquid groove 103, the inner ring wall of the cleaning ring core 2 is provided with a plurality of liquid spray nozzles 201, the outer wall of the cleaning box 1 is provided with a liquid inlet interface 1031 communicated with the annular liquid groove 103, cleaning liquid can be led into the annular liquid groove 103 through the liquid inlet interface 1031, the outer surface of the nickel-manganese alloy wires 4 is washed by the plurality of liquid spray nozzles 201 arranged on the cleaning ring core 2, the plurality of liquid spraying nozzles 201 are arranged in an annular array along the center of the cleaning ring core 2, the liquid spraying directions of the plurality of liquid spraying nozzles 201 are all directed to the center point of the cleaning ring core 2, the comprehensiveness of flushing impurities on the surface of the nickel-manganese alloy wire 4 is guaranteed, watertight bearings 203 are matched between the two sides of the cleaning ring core 2 and the annular liquid groove 103, the tightness of the annular liquid groove 103 in conveying cleaning liquid is guaranteed, a plurality of liquid guiding sheets 202 which are obliquely arranged are integrally formed on the outer ring wall of the cleaning ring core 2, the plurality of liquid guiding sheets 202 are arranged in an annular array along the center of the cleaning ring core 2, in the process of guiding the cleaning liquid into the annular liquid groove 103 along the liquid inlet interface 1031, the liquid guiding sheets 202 arranged on the outer ring wall of the cleaning ring core 2 are pushed by the flowing of the cleaning liquid, so that the cleaning ring core 2 is driven to rotate, and the nickel-manganese alloy wire 4 is further rotated and sprayed by the plurality of liquid spraying nozzles 201, the cleaning effect is improved.
An annular air groove 104 is arranged on one side, close to the discharge hole 102, of the inner cavity of the cleaning box 1, the annular air groove 104 is matched with a drying ring core 3, a plurality of air nozzles 301 are arranged on the inner ring wall of the drying ring core 3, an air inlet interface 1041 communicated with the annular air groove 104 is arranged on the outer wall of the cleaning box 1, air can be introduced into the annular air groove 104 through the air inlet interface 1041 externally connected with an air supply assembly, cleaning liquid remained on the outer surface of the nickel-manganese alloy wire 4 is blown off by the plurality of air nozzles 301 arranged on the drying ring core 3, the plurality of air nozzles 301 are arranged in an annular array along the center of the drying ring core 3, the air injection directions of the plurality of air nozzles 301 are inclined 30 degrees and point to the center point of the drying ring core 3, the cleaning solution remained on the surface of the nickel-manganese alloy wire 4 is guaranteed to be blown off comprehensively, the airtight bearings 306 are matched between the two sides of the drying ring core 3 and the annular air groove 104, the air tightness of the annular air groove 104 in the air guiding process is guaranteed, the outer ring wall of the drying ring core 3 is integrally formed with a plurality of obliquely arranged air guide sheets 302, the plurality of air guide sheets 302 are arranged in an annular array along the center of the drying ring core 3, in the process that air is led into the annular air groove 104 along the air inlet interface 1041, the air flow pushes the air guide sheets 302 arranged on the outer ring wall of the drying ring core 3, so that the drying ring core 3 is driven to rotate, and a plurality of air nozzles 301 are driven to blow the nickel-manganese alloy wire 4 in a rotating manner, and the blowing effect of the cleaning solution is improved.
The bottom of the cleaning box 1 is provided with a liquid discharge interface 105, the liquid discharge interface 105 is communicated with the inner cavity of the cleaning box 1, and the liquid discharge interface 105 can discharge the cleaning liquid after the nickel-manganese alloy wire 4 is cleaned through an external liquid discharge pump.
As shown in fig. 3 and 4, an elastic rod 303 is fixed on the inner ring wall of the drying ring core 3, a sponge support 304 is arranged at the end part of the elastic rod 303, a sponge block 305 attached to the outer wall of the nickel-manganese alloy wire 4 is arranged on the sponge support 304, the elastic rod 303 is composed of a sleeve and a push rod which are sleeved in a sliding manner, the sleeve is fixed on the inner ring wall of the drying ring core 3, the end part of the push rod is fixed with the sponge support 304, a pressure spring for pushing the push rod is arranged in the sleeve, under the action of the elastic rod 303, the sponge support 304 is tightly abutted against the outer wall of the nickel-manganese alloy wire 4, and meanwhile, the outer wall of the nickel-manganese alloy wire 4 is comprehensively wiped by the sponge support 304 along with the rotation of the drying ring core 3, so that the cleaning effect is further improved.
Working principle: when the nickel-manganese alloy wire 4 passes through the inside of the cleaning box 1, a cleaning liquid supply assembly is externally connected through a liquid inlet interface 1031, and in the process that the cleaning liquid is led into the annular liquid groove 103 along the liquid inlet interface 1031, the flow of the cleaning liquid pushes the liquid guide plate 202 arranged on the outer ring wall of the cleaning ring core 2, so that the cleaning ring core 2 is driven to rotate, and a plurality of liquid spray nozzles 201 are used for carrying out rotary spray cleaning on the nickel-manganese alloy wire 4, so that the cleaning effect is improved; the air inlet interface 1041 is externally connected with an air supply assembly, and in the process that air is led into the annular air groove 104 along the air inlet interface 1041, air flow pushes the air guide piece 302 arranged on the outer ring wall of the drying ring core 3, so that the drying ring core 3 is driven to rotate, a plurality of air nozzles 301 are driven to blow the nickel-manganese alloy wires 4 in a rotating manner, and the blowing effect of cleaning liquid is improved; discharging the cleaning solution after cleaning the nickel-manganese alloy wire 4 along a liquid discharge interface 105; compact structure, short processing procedure and high efficiency.
Of course, the present utility model can be implemented in various other embodiments, and based on this embodiment, those skilled in the art can obtain other embodiments without any inventive effort, which fall within the scope of the present utility model.

Claims (7)

1. The utility model provides a wire drawing device for nickel-manganese alloy wire preparation, includes washs case (1), its characterized in that, washs case (1) and is the cylinder of horizontal, and the both sides of washs case (1) are equipped with feed inlet (101) and discharge gate (102) that are used for nickel-manganese alloy wire (4) to run through respectively, one side that is close to feed inlet (101) in washs case (1) inner chamber is equipped with annular liquid groove (103), cooperates in annular liquid groove (103) has clean ring core (2), be equipped with a plurality of hydrojet mouth (201) on the inner circle wall of clean ring core (2), and the outer wall of washcase (1) be equipped with inlet (1031) that is linked together with annular liquid groove (103), one side that is close to discharge gate (102) in washcase (1) inner chamber is equipped with annular air groove (104), annular air groove (104) cooperate with dry ring core (3), the bottom of washcase (1) is equipped with flowing back interface (105), and washs the inner chamber (1) inner chamber (2) of inner race wall (3) is equipped with a plurality of hydrojet mouth (301), and the both sides of wasing case (1) are equipped with wire (104) that are linked together, and the wire guide wheel (106) is connected to the side wall of the cleaning box (1) through the wheel seat (1061).
2. The drawing device for nickel-manganese alloy wire preparation according to claim 1, wherein watertight bearings (203) are matched between two sides of the cleaning ring core (2) and the annular liquid groove (103), and airtight bearings (306) are matched between two sides of the drying ring core (3) and the annular air groove (104).
3. The drawing device for preparing the nickel-manganese alloy wire according to claim 1, wherein the plurality of liquid spray nozzles (201) are arranged in an annular array along the center of the cleaning ring core (2), and the liquid spray directions of the plurality of liquid spray nozzles (201) are all directed to the center point of the cleaning ring core (2).
4. The drawing device for preparing the nickel-manganese alloy wire according to claim 1, wherein the air nozzles (301) are arranged in an annular array along the center of the drying ring core (3), and the air injection directions of the air nozzles (301) are inclined by 30 degrees and point to the center point of the drying ring core (3).
5. The wire drawing device for nickel-manganese alloy wire preparation according to claim 1, wherein the outer ring wall of the cleaning ring core (2) is integrally formed with a plurality of liquid guide sheets (202) which are obliquely arranged, the plurality of liquid guide sheets (202) are arranged in an annular array along the center of the cleaning ring core (2), the outer ring wall of the drying ring core (3) is integrally formed with a plurality of air guide sheets (302) which are obliquely arranged, and the plurality of air guide sheets (302) are arranged in an annular array along the center of the drying ring core (3).
6. The wire drawing device for nickel-manganese alloy wire preparation according to claim 1, wherein an elastic rod piece (303) is fixed on the inner ring wall of the drying ring core (3), a sponge support (304) is arranged at the end part of the elastic rod piece (303), and a sponge block (305) attached to the outer wall of the nickel-manganese alloy wire (4) is arranged on the sponge support (304).
7. The wire drawing device for preparing the nickel-manganese alloy wire according to claim 6, wherein the elastic rod piece (303) is composed of a sleeve and a push rod which are sleeved in a sliding mode, the sleeve is fixed on the inner ring wall of the drying ring core (3), the end portion of the push rod is fixed with the sponge support (304), and a pressure spring for pushing the push rod is arranged in the sleeve.
CN202321473044.7U 2023-06-09 2023-06-09 Wire drawing device for preparing nickel-manganese alloy wire Active CN220311351U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202321473044.7U CN220311351U (en) 2023-06-09 2023-06-09 Wire drawing device for preparing nickel-manganese alloy wire

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202321473044.7U CN220311351U (en) 2023-06-09 2023-06-09 Wire drawing device for preparing nickel-manganese alloy wire

Publications (1)

Publication Number Publication Date
CN220311351U true CN220311351U (en) 2024-01-09

Family

ID=89411941

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202321473044.7U Active CN220311351U (en) 2023-06-09 2023-06-09 Wire drawing device for preparing nickel-manganese alloy wire

Country Status (1)

Country Link
CN (1) CN220311351U (en)

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