CN108160756A - A kind of thin copper pipe coalignment - Google Patents

A kind of thin copper pipe coalignment Download PDF

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Publication number
CN108160756A
CN108160756A CN201711407901.2A CN201711407901A CN108160756A CN 108160756 A CN108160756 A CN 108160756A CN 201711407901 A CN201711407901 A CN 201711407901A CN 108160756 A CN108160756 A CN 108160756A
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CN
China
Prior art keywords
copper pipe
thin copper
connecting rod
gas storage
alignment
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.)
Pending
Application number
CN201711407901.2A
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Chinese (zh)
Inventor
王健
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Ningbo Long Rui Machinery Manufacturing Co Ltd
Original Assignee
Ningbo Long Rui Machinery Manufacturing Co Ltd
Priority date (The priority date 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 date listed.)
Filing date
Publication date
Application filed by Ningbo Long Rui Machinery Manufacturing Co Ltd filed Critical Ningbo Long Rui Machinery Manufacturing Co Ltd
Priority to CN201711407901.2A priority Critical patent/CN108160756A/en
Publication of CN108160756A publication Critical patent/CN108160756A/en
Pending legal-status Critical Current

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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B21MECHANICAL METAL-WORKING WITHOUT ESSENTIALLY REMOVING MATERIAL; PUNCHING METAL
    • B21DWORKING OR PROCESSING OF SHEET METAL OR METAL TUBES, RODS OR PROFILES WITHOUT ESSENTIALLY REMOVING MATERIAL; PUNCHING METAL
    • B21D3/00Straightening or restoring form of metal rods, metal tubes, metal profiles, or specific articles made therefrom, whether or not in combination with sheet metal parts
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B21MECHANICAL METAL-WORKING WITHOUT ESSENTIALLY REMOVING MATERIAL; PUNCHING METAL
    • B21DWORKING OR PROCESSING OF SHEET METAL OR METAL TUBES, RODS OR PROFILES WITHOUT ESSENTIALLY REMOVING MATERIAL; PUNCHING METAL
    • B21D37/00Tools as parts of machines covered by this subclass
    • B21D37/16Heating or cooling
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B21MECHANICAL METAL-WORKING WITHOUT ESSENTIALLY REMOVING MATERIAL; PUNCHING METAL
    • B21DWORKING OR PROCESSING OF SHEET METAL OR METAL TUBES, RODS OR PROFILES WITHOUT ESSENTIALLY REMOVING MATERIAL; PUNCHING METAL
    • B21D43/00Feeding, positioning or storing devices combined with, or arranged in, or specially adapted for use in connection with, apparatus for working or processing sheet metal, metal tubes or metal profiles; Associations therewith of cutting devices
    • B21D43/003Positioning devices
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B23MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
    • B23DPLANING; SLOTTING; SHEARING; BROACHING; SAWING; FILING; SCRAPING; LIKE OPERATIONS FOR WORKING METAL BY REMOVING MATERIAL, NOT OTHERWISE PROVIDED FOR
    • B23D21/00Machines or devices for shearing or cutting tubes

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Rollers For Roller Conveyors For Transfer (AREA)

Abstract

The invention belongs to technical fields of mechanical processing, disclose a kind of thin copper pipe coalignment, and including aligning mechanism and shaping mechanism, aligning mechanism includes alignment platform and gas storage storehouse, and alignment platform is equipped with alignment groove, and alignment platform is equipped with through-hole;Piston is slidably connected in gas storage storehouse, push rod is connected on piston, gas storage storehouse is equipped with air inlet and gas outlet;Shaping mechanism includes supporting table and two groups of conveyer belts, and conveyer belt includes driving wheel, driven wheel and belt;Driving wheel is equipped with first rotating shaft, the second shaft on driven wheel, and the bottom of supporting table is equipped with rotary electric machine;Mobile mechanism is further included, mobile mechanism includes first connecting rod, second connecting rod and third connecting rod.The present invention solves the prior art and the both ends of thin copper pipe is fixed using roller is straightened, and when alignment roller rotates, thin copper pipe can be caused to be detached under alignment roller, cause to be straightened the problem of ineffective.

Description

A kind of thin copper pipe coalignment
Technical field
The invention belongs to field of machining, and in particular to a kind of thin copper pipe coalignment.
Background technology
Copper pipe, also known as copper tube are one kind of nonferrous metal tube, are referred to by suppressing and drawing manufactured seamless pipe.By In it with firm, corrosion resistant characteristic, it is commonly used for pipeline in water supply pipe, heat supply, refrigeration equipment etc..Wherein freezing Commonly used in pipeline, in refrigeration equipment often using diameter equal to or less than 1mm as flow diversion pipe of refrigerant.During refrigeration, thin copper pipe The high pressure liquid refrigerant that condenser is come out, the liquid refrigerant of low pressure is become by throttling expansion, enters back into evaporation Device, so as to fulfill refrigeration.
Thin copper pipe would generally bend, thin copper pipe after bending would generally under the effect of external force after machining To curving.But thin copper pipe uses in air-conditioning, it usually needs it is stretched, to realize the installation in air-conditioning. Existing thin copper pipe coalignment mainly includes three groups of alignment rollers, and three groups of alignment rollers are arranged in a crossed manner, wherein two groups of alignment rollers are Drive roll.The bottom that the end of thin copper pipe is involved in wherein two groups alignment rollers by roller rotation is straightened in use, being driven by motor, is led to It crosses alignment roller to be fixed, then roller is straightened by another set and is rotated, thin copper pipe is straightened.
Also there are following technical problems during thin copper pipe is straightened for above-mentioned technical proposal:1st, above-mentioned technical proposal is in school During straight thin copper pipe, alignment roller can persistently rotate, and easily lead to thin copper pipe and skidded off from alignment roller bottom, so that solid Fixed is ineffective;2nd, since the caliber of thin copper pipe is small, and tube wall is thin, therefore squeezes thin copper pipe realization admittedly by being straightened roller It is fixed, it easily leads to thin copper pipe and is deformed, thin copper pipe is caused to be damaged;3rd, above-mentioned technical proposal moves thin copper pipe turn by being straightened roller strap It is dynamic, it realizes the alignment to thin copper pipe, is fixed since the both ends of thin copper pipe are aligned roller, alignment roller drives the two of thin copper pipe when rotating End movement during alignment roller rotation, when the distance between two groups of alignment rollers become larger, can cause thin copper pipe to be stretched, from And so that the size of thin copper pipe changes, cause the defect rate that thin copper pipe stretches high.
Invention content
The invention is intended to provide a kind of thin copper pipe coalignment, roller is straightened to the two of thin copper pipe to solve prior art utilization End is fixed, and when alignment roller rotates, thin copper pipe can be caused to be detached under alignment roller, cause to be straightened ineffective ask Topic.
To achieve the above object, the present invention provides following technical solution, a kind of thin copper pipe coalignment, including aligning mechanism And shaping mechanism, aligning mechanism include alignment platform and several gas storage storehouses, alignment platform upper edge is transversely provided with alignment groove, alignment platform position Several through-holes are equipped in the both sides of alignment groove, each gas storage storehouse connects respectively with each through-hole;Gas storage slidably connects in storehouse Piston, is connected with push rod on piston, and gas storage storehouse is divided by piston presses chamber and gas storage far from alignment platform close to alignment platform Chamber, push rod run through air storing cavity, and air storing cavity is equipped with air inlet and gas outlet, check valve is equipped on air inlet and gas outlet;Also Including two connecting rods, the one end of push rod far from piston of homonymy is fixedly connected in connecting rod, is connected in two connecting rods The mobile bar being connected to;Mobile bar includes the montant and cross bar of L-shaped setting, and the low side of montant is fixedly connected in connecting rod;It is fixed Type mechanism includes supporting table and two groups of conveyer belts being arranged in supporting table, and conveyer belt includes the driving wheel far from alignment platform, leans on The driven wheel of nearly alignment platform and the belt being wrapped on driving wheel and driven wheel, driving wheel and driven wheel are parallel with supporting table Setting;The middle part of driving wheel is equipped with first rotating shaft, and the middle part of driven wheel is equipped with the second shaft, and first rotating shaft and the second shaft are passed through It wears supporting table, and is rotatablely connected with supporting table, the bottom of supporting table sets that there are two respectively drive turning for two first rotating shafts rotations Dynamic motor, and the rotation direction of two first rotating shafts is opposite;Further include mobile mechanism, mobile mechanism includes successively hinged first Connecting rod, second connecting rod and third connecting rod, the one end of first connecting rod far from second connecting rod are fixed on the bottom of the second shaft;It is straightened platform Bottom be equipped with the sliding slot vertical with alignment groove, slidably connect sliding shoe in sliding slot, the one end of cross bar far from montant is fixed on On sliding shoe, the one end of third connecting rod far from second connecting rod is also secured on sliding shoe.
The technique effect of this programme technical characteristic:
For being straightened to the thin copper pipe of bending, shaping mechanism is used to shape to the thin copper pipe after alignment aligning mechanism. For placing thin copper pipe, through-hole connects alignment groove with gas storage storehouse, is used to implement the outlet for pressing chamber and air inlet, passes through the storage of both sides The movement in the same direction of piston in gas storehouse so that the gas storage storehouse of side attracts thin copper pipe, and the gas storage storehouse discharge gas of side pushes thin Copper pipe is straightened thin copper pipe.Simultaneously by the reciprocating movement of piston, it can realize and different directions are applied to the both sides of thin copper pipe Pressure, so as to fulfill the alignment to thin copper pipe.Connecting rod is used to connect the push rod of homonymy, realizes that the synchronous of push rod of homonymy is moved It is dynamic.
Rotary electric machine drives first rotating shaft rotation, and first rotating shaft drives driving wheel rotation, realized by belt transmission driven The rotation of wheel, so that belt rotates.When the thin copper pipe after alignment enters between two root skin bands, between two root skin bands between Away from smaller, the sizing to thin copper pipe is realized;The opposite side of two root skin bands is moved to the direction far from alignment platform simultaneously, so as to Thin copper pipe is driven to move, realizes the transmission of thin copper pipe.
It is company that first connecting rod, second connecting rod, third connecting rod and sliding shoe, which are formed by crank, second connecting rod of first connecting rod, Bar, third connecting rod and sliding shoe are the slider-crank mechanism of sliding block.Driven wheel rotation drives the rotation of the second shaft, and the second shaft turns It is dynamic that first connecting rod is driven to move in a circle, it is driven by slider-crank mechanism so that sliding shoe moves reciprocatingly along sliding slot, from And realize that piston reciprocatingly moves so that gas storage storehouse interval air-breathing and air blowing, so as to fulfill the alignment to thin copper pipe.
The technical principle of this programme is:
Conveyer belt rotates, and shapes to thin copper pipe, so that the second shaft drives first connecting rod to move in a circle, leads to Slider-crank mechanism transmission is crossed, sliding shoe reciprocatingly moves along sliding slot, so that two mobile bars reciprocatingly move so that two What root connecting rod synchronized reciprocatingly moves, and push rod band piston under the action of connecting rod reciprocatingly moves.When piston forward direction is moved When dynamic, the gas storage storehouse of alignment groove side carries out air-breathing, attracts thin copper pipe, and the gas storage storehouse of opposite side is pushed carefully by blow gas Copper pipe;When piston reverses direction moves, the gas storage storehouse of alignment groove side is blown, and the gas storage storehouse of opposite side carries out air-breathing, makes Reversely being extruded for thin copper pipe is obtained to be straightened;Thin copper pipe is straightened by the lasting reciprocating movement of piston.
What this programme can generate has the technical effect that:
1st, by setting alignment groove, and coordinate gas storage storehouse, realize negative pressure and the blow gas of gas storage storehouse interval, realize to thin The alignment of copper pipe compared with prior art, can be such that thin copper pipe is always positioned in alignment groove, lasting that thin copper pipe is straightened, So that the effect of alignment is good;
2nd, by setting first connecting rod, second connecting rod and third connecting rod, and first connecting rod is connected in the second shaft, the Three-link is fixed on sliding block, when the second shaft rotates, the reciprocating movement of piston is realized, so as to reduce setting for actuator It puts, so as to simplify structure;
3rd, the technical program realizes the gearing of the piston in the air storing cavity of both sides by mobile bar and connecting rod, can be so that two The distance of the piston movement of side is identical, can be so that mobile precision is high, and is using process compared with setting two actuators In do not need to debug, save the time;
4th, by setting two groups of conveyer belts, can realizing the sizing to thin copper pipe and realizing the transmission of thin copper pipe.
It is the preferred embodiment based on said program below:
Preferred embodiment one:Based on base case, cutting bed is further included, cutting bed is arranged on one of alignment platform far from supporting table End, cutting bed are equipped with cutting mechanism.Cutting mechanism can realize the cutting rolled up to thin copper pipe, can be vertical after thin copper pipe is cut It is straightened, reduces and the time that thin copper pipe is spent is cut and carried when being straightened using different device.
Preferred embodiment two:Based on preferred embodiment one, the side far from alignment platform on the cutting bed is rotatably connected to wrapping wire Roller, and winding-roller is vertically arranged, cutting mechanism is arranged on one end of the close alignment platform of cutting bed, between cutting mechanism and winding-roller Driving motor equipped with limit roller and driving limit roller rotation.Winding-roller realizes thin copper pipe volume for placing thin copper pipe volume Rotation;Driving motor driving limit roller rotation, the frictional force between limit roller rotation and thin copper pipe drive thin copper pipe to move.
Preferred embodiment three:Based on preferred embodiment two, the cutting mechanism include knife rest, gas storage box, hollow cutter and The cylinder of cutter movement is driven, the bottom of knife rest is fixed on cutting tables, and gas storage box is fixedly connected on the top of knife rest, gas storage The bottom of box is set there are two air outlet;Two conduits are further included, conduit includes a supervisor and with being responsible for several branch pipes connected, The one end of branch pipe far from supervisor is both connected on gas outlet, is responsible for one end far from branch pipe and is connected with gas storage box, is set in gas storage box There is heating tube;The top of cutter is equipped with conus portion, and the bottom of gas storage box is equipped with the groove coordinated with cutter, cutter Top is equipped with the air guide hole coordinated with air outlet;On knife rest L-shaped gas-guide tube, gas-guide tube packet are equipped with positioned at the both sides of cutter Transverse tube and the vertical tube connected with transverse tube are included, the upper surface of transverse tube is equipped with the air inlet connected with vertical tube air outlet, the middle part of vertical tube It is hinged on knife rest.
Working principle and beneficial effect:
Gas in air storing cavity is discharged by gas outlet, is imported in gas storage box and is stored by conduit, in gas storage box Heating tube heats gas.Heated gas in gas storage box is entered by air outlet in hollow cutter, is realized Heating to cutter so that cutter for capillary cutting effect more preferably.Since the top of cutter is equipped with conus portion, Therefore when cutter and gas storage box are affixed, the bottom of the conus portion of cutter outwardly against gas-guide tube transverse tube upper end to both sides Push the transverse tube of gas-guide tube so that air inlet is far from air outlet.
When cylinder driving cutter move down, the top of cutter is gradually reduced outwardly against the distance of transverse tube, therefore horizontal Pipe is gradually close to each other, is hinged on knife rest in the middle part of vertical tube, forms lever construction, according to lever principle, superposed two Root transverse tube is close to each other so that air inlet is connected with air outlet.After air inlet is connected with air outlet so that gas after heating into Enter in transverse tube, blow and spread on the capillary using vertical tube, pull down capillary, capillary is fixed, convenient for capillary Pipe is cut;It blows to be sprinkling upon on thin copper pipe by the gas after heating simultaneously and thin copper pipe is heated so that thin copper pipe enters It is more yielding after alignment groove, so that alignment is better.
Preferred embodiment four:Based on preferred embodiment three, conveying trough is additionally provided on the cutting bed.Conveying trough can to thin copper pipe into Row limiting, avoid thin copper pipe shift on cutting tables caused by cutting accuracy it is bad.
Preferred embodiment five:Based on preferred embodiment four, the limit roller is rubber rollers.The friction coefficient of rubber rollers is big, therefore So that the frictional force of the generation between limit roller and thin copper pipe becomes larger, so as to cause transmission effect of the limit roller to thin copper pipe It is good.
Description of the drawings
Fig. 1 is the structure diagram of the embodiment of the present invention;
Fig. 2 is the structure diagram of cutting mechanism in Fig. 1 of the present invention;
Fig. 3 is the enlarged drawing of part A in Fig. 2;
Fig. 4 is the structure diagram of mobile mechanism of the present invention.
Specific embodiment
Below by the further details of explanation of specific embodiment:
Reference numeral in Figure of description includes:Cutting bed 1, conveying trough 11, winding-roller 12, limit roller 13, cutting machine Structure 2, gas storage box 21, air outlet 211, knife rest 22, cutter 23, air guide hole 231, gas-guide tube 24, vertical tube 241, transverse tube 242, into Air port 243, alignment platform 3, alignment groove 31, through-hole 32, gas storage storehouse 4, piston 41, push rod 42, connecting rod 43, supporting table 5, driving wheel 51st, first rotating shaft 511, driven wheel 52, the second shaft 521, belt 53, first connecting rod 6, second connecting rod 7, third connecting rod 8, slip Block 9.
Embodiment is substantially as shown in Figure 1:
A kind of thin copper pipe coalignment, including cutting bed 1, aligning mechanism and the shaping mechanism set gradually from a left side from the right side, It is equipped with winding-roller 12, limit roller 13 and cutting mechanism 2 successively from right from left on cutting bed 1, limit roller 13 is rubber rollers.Winding-roller 12 are rotatably connected on the left end of cutting bed 1, and winding-roller 12 is parallel with cutting bed 1, and limit roller 13 is vertically arranged with cutting bed 1, Motor is additionally provided on cutting bed 1, the output shaft of motor is connect with the middle part of limit roller 13;1 upper edge of cutting bed is transversely provided with transmission Slot 11.
It is moved as shown in Fig. 2, cutting mechanism 2 includes knife rest 22, gas storage box 21, hollow cutter 23 and driving cutter 23 Dynamic cylinder, knife rest 22 are fixed on cutting bed 1, and gas storage box 21 is fixedly connected on the top of knife rest 22, the bottom of gas storage box 21 If there are two air outlets 211.Two conduits are further included, conduit includes a supervisor and with being responsible for several branch pipes connected, branch pipe One end far from supervisor is both connected on gas outlet, is responsible for one end far from branch pipe and is connected with gas storage box 21, is set in gas storage box 21 There is heating tube.
The top of cutter 23 is equipped with conus portion, and the bottom of gas storage box 21 is equipped with the groove coordinated with cutter 23, cuts The top of cutter 23 is equipped with the air guide hole 231 coordinated with air outlet 211.It is equipped on knife rest 22 positioned at the both sides of cutter 23 in L The gas-guide tube 24 of shape, gas-guide tube 24 include transverse tube 242 and the vertical tube 241 connected with transverse tube 242, as shown in figure 3, transverse tube 242 Upper surface is equipped with the air inlet 243 connected with 241 air outlet 211 of vertical tube, and the middle part of vertical tube 241 is hinged on knife rest 22.
Aligning mechanism includes alignment platform 3 and eight gas storage storehouses 4, and alignment 3 upper edge of platform is transversely provided with alignment groove 31, is straightened platform 3 It is all provided with positioned at the both sides of alignment groove 31 there are four through-hole 32, each gas storage storehouse 4 connects respectively with each through-hole 32.In gas storage storehouse 4 Piston 41 is slidably connected, push rod 42 is connected on piston 41, gas storage storehouse 4 is divided by piston 41 for the pressure close to alignment platform 3 Dynamic chamber and the air storing cavity far from alignment platform 3, push rod 42 run through air storing cavity, and air storing cavity is equipped with air inlet and gas outlet, air inlet With check valve is equipped on gas outlet.
Two connecting rods 43 are further included, the one end of the push rod 42 of homonymy far from piston 41 is fixedly connected in connecting rod 43 On, the mobile bar of L-shaped is respectively connected in two connecting rods 43.Mobile bar includes montant and the cross bar for being arranged on montant bottom end, erects The low side of bar is fixedly connected in connecting rod 43.
Shaping mechanism includes supporting table 5 and two groups of conveyer belts being arranged in supporting table 5, and conveyer belt includes the active in left side The belt 53 taken turns the driven wheel 52 on 51, right side and be wrapped on driving wheel 51 and driven wheel 52, driving wheel 51 and driven wheel 52 It is arranged in parallel with supporting table 5.The middle part of driving wheel 51 is equipped with first rotating shaft 511, and the middle part of driven wheel 52 is equipped with the second shaft 521,511 and second shaft 521 of first rotating shaft is rotatablely connected through supporting table 5 with supporting table 5, there are two supporting table 5 is set The rotary electric machine that two first rotating shafts 511 rotate is respectively driven, and the rotation direction of two first rotating shafts 511 is opposite.Two groups of biographies The direction of transfer for the side for sending the belt 53 of band opposite is from right from left.
Mobile mechanism is further included, as shown in figure 4, mobile mechanism is included from left from right hinged first connecting rod 6, second successively Connecting rod 7 and third connecting rod 8, left end one end of first connecting rod 6 are fixed on the bottom of the second shaft 521.The bottom of alignment platform 3 is equipped with The sliding slot vertical with alignment groove 31 slidably connects sliding shoe 9 in sliding slot, and the right end of cross bar is fixed on sliding shoe 9, and third connects The one end of bar 8 far from second connecting rod 7 is also secured on sliding shoe 9.
During using the present embodiment, thin copper pipe roller is set on winding-roller 12, and pull the end of thin copper pipe so that thin copper Pipe is located in conveying trough 11, and passes through the lower section of limit roller 13;Start driving motor and rotary electric machine, driving motor drives limiting Roller 13 rotates, and relative friction is generated with thin copper pipe when limit roller 13 rotates, so as to fulfill the transmission to thin copper pipe.
When thin copper pipe is moved in alignment groove 31, start cylinder, cylinder drives cutter 23 to move down, and cutter 23 are to thin Copper pipe is cut.Thin copper pipe after cutting is located in alignment groove 31, and rotary electric machine drives driving wheel 51 to rotate, so as to fulfill biography The transmission of band is sent, and realizes the rotation of driven wheel 52, driven wheel 52 drives the second shaft 521 to rotate when rotating.
It is crank that first connecting rod 6, second connecting rod 7 and third connecting rod 8, which are formed with first connecting rod 6, third connecting rod 8 is sliding block Slider-crank mechanism, according to the kinetic characteristic of slider-crank mechanism, the second shaft 521 drives first connecting rod 6 to move in a circle, because This causes third connecting rod 8 that sliding shoe 9 is driven to reciprocatingly slide along sliding slot.So that sliding shoe 9 drives cross bar to reciprocatingly move, So that the piston 41 in the air storing cavity of both sides moves back and forth so that the outlet of the air storing cavity interval at both ends and air inlet.When side During air storing cavity air inlet, thin copper pipe is adsorbed, the air storing cavity blow gas of opposite side squeezes thin copper pipe.Repeat the above steps realization pair The alignment of thin copper pipe.
Gas in air storing cavity is introduced gas by conduit in gas storage box 21 when discharging, then passes through adding in gas storage box 21 Heat pipe is heated so that the gas in gas storage box 21 is heated.Gas after being heated passes through air outlet 211 and air guide hole 231 enter in cutter 23, cutter 23 are heated so that cutter 23 can quickly cut thin copper pipe.When Cutter 23 move down when being cut to thin copper pipe, and two gas-guide tubes 24 relatively move so that air outlet 211 and air inlet 243 Connection so that the gas after heating enters in gas-guide tube 24, and passes through 24 water conservancy diversion of gas-guide tube, blows and is sprinkling upon on thin copper pipe, to thin copper Pipe is fixed, while thin copper pipe is heated, so that thin copper pipe is yielding, convenient for the alignment to thin copper pipe.
After thin copper pipe is aligned in alignment groove 31, two groups of biographies are pushed to by the thin copper pipe subsequently entered in alignment groove 31 Between sending band, thin copper pipe is shaped and transmitted by two groups of conveyer belt movements, when moving tube is moved to conveyer belt left end, It is collected again.
For those skilled in the art, under the premise of technical solution of the present invention is not departed from, several changes can also be made Shape and improvement, these should also be considered as protection scope of the present invention, these all do not interfere with the effect and patent that the present invention is implemented Practicability.

Claims (6)

1. a kind of thin copper pipe coalignment, it is characterised in that:Including aligning mechanism and shaping mechanism, aligning mechanism includes alignment platform With several gas storage storehouses, alignment platform upper edge is transversely provided with alignment groove, and the both sides that alignment platform is located at alignment groove are equipped with several through-holes, often A gas storage storehouse connects respectively with each through-hole;Piston is slidably connected in gas storage storehouse, push rod is connected on piston, gas storage storehouse leads to It crosses piston to be divided into close to the air storing cavity for pressing chamber and separate alignment platform for being straightened platform, push rod runs through air storing cavity, and air storing cavity is equipped with Check valve is equipped on air inlet and gas outlet, air inlet and gas outlet;Two connecting rods are further included, the push rod of homonymy is far from living One end of plug is fixedly connected in connecting rod, the mobile bar being respectively connected in two connecting rods;Mobile bar includes L-shaped setting Montant and cross bar, the low side of montant is fixedly connected in connecting rod;Shaping mechanism includes supporting table and is arranged in supporting table Two groups of conveyer belts, conveyer belt include far from alignment platform driving wheel, close to alignment platform driven wheel and be wrapped in driving wheel With the belt on driven wheel, driving wheel and driven wheel are arranged in parallel with supporting table;The middle part of driving wheel is equipped with first rotating shaft, from The middle part of driving wheel is equipped with the second shaft, and first rotating shaft and the second shaft are rotatablely connected, support through supporting table with supporting table The bottom of platform respectively drives the rotary electric machine that two first rotating shafts rotate, and the rotation direction phase of two first rotating shafts there are two setting Instead;Mobile mechanism is further included, mobile mechanism includes hinged successively first connecting rod, second connecting rod and third connecting rod, first connecting rod One end far from second connecting rod is fixed on the bottom of the second shaft;The bottom for being straightened platform is equipped with the sliding slot vertical with alignment groove, sliding Sliding shoe is slidably connected in slot, the one end of cross bar far from montant is fixed on sliding shoe, and third connecting rod is far from second connecting rod One end is also secured on sliding shoe.
2. thin copper pipe coalignment according to claim 1, it is characterised in that:Cutting bed is further included, cutting bed is arranged on The one end of platform far from supporting table is straightened, cutting bed is equipped with cutting mechanism.
3. thin copper pipe coalignment according to claim 2, it is characterised in that:One far from alignment platform on the cutting bed Side is rotatably connected to winding-roller, and winding-roller is vertically arranged, and cutting mechanism is arranged on cutting bed close to one end of alignment platform, cutting Limit roller is equipped between mechanism and winding-roller and drives the driving motor of limit roller rotation.
4. thin copper pipe coalignment according to claim 3, it is characterised in that:The cutting mechanism includes knife rest, gas storage The cylinder of box, hollow cutter and driving cutter movement, the bottom of knife rest are fixed on cutting tables, and gas storage box is fixedly connected At the top of knife rest, the bottom of gas storage box sets that there are two air outlets;Further include two conduits, conduit include a supervisor and with master Several branch pipes of pipe connection, the one end of branch pipe far from supervisor are both connected on gas outlet, are responsible for one end far from branch pipe and gas storage Box connects, and heating tube is equipped in gas storage box;The top of cutter is equipped with conus portion, and the bottom of gas storage box is equipped with and matches with cutter The groove of conjunction, the top of cutter are equipped with the air guide hole coordinated with air outlet;Positioned at the both sides of cutter equipped with L-shaped on knife rest Gas-guide tube, gas-guide tube includes transverse tube and the vertical tube that connect with transverse tube, and the upper surface of transverse tube with vertical tube air outlet equipped with connecting Air inlet is hinged on knife rest in the middle part of vertical tube.
5. thin copper pipe coalignment according to claim 4, it is characterised in that:Conveying trough is additionally provided on the cutting bed.
6. thin copper pipe coalignment according to claim 5, it is characterised in that:The limit roller is rubber rollers.
CN201711407901.2A 2017-12-22 2017-12-22 A kind of thin copper pipe coalignment Pending CN108160756A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201711407901.2A CN108160756A (en) 2017-12-22 2017-12-22 A kind of thin copper pipe coalignment

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201711407901.2A CN108160756A (en) 2017-12-22 2017-12-22 A kind of thin copper pipe coalignment

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Publication Number Publication Date
CN108160756A true CN108160756A (en) 2018-06-15

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Country Status (1)

Country Link
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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109127787A (en) * 2018-06-28 2019-01-04 江阴市龙和机械科技有限公司 A kind of straightener

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109127787A (en) * 2018-06-28 2019-01-04 江阴市龙和机械科技有限公司 A kind of straightener

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Application publication date: 20180615