CN107088699A - A kind of welder - Google Patents
A kind of welder Download PDFInfo
- Publication number
- CN107088699A CN107088699A CN201710307769.1A CN201710307769A CN107088699A CN 107088699 A CN107088699 A CN 107088699A CN 201710307769 A CN201710307769 A CN 201710307769A CN 107088699 A CN107088699 A CN 107088699A
- Authority
- CN
- China
- Prior art keywords
- groove
- spiral shell
- shell shape
- sealed
- slippage slot
- 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.)
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Classifications
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B23—MACHINE TOOLS; METAL-WORKING NOT OTHERWISE PROVIDED FOR
- B23K—SOLDERING OR UNSOLDERING; WELDING; CLADDING OR PLATING BY SOLDERING OR WELDING; CUTTING BY APPLYING HEAT LOCALLY, e.g. FLAME CUTTING; WORKING BY LASER BEAM
- B23K9/00—Arc welding or cutting
- B23K9/32—Accessories
-
- H—ELECTRICITY
- H01—ELECTRIC ELEMENTS
- H01R—ELECTRICALLY-CONDUCTIVE CONNECTIONS; STRUCTURAL ASSOCIATIONS OF A PLURALITY OF MUTUALLY-INSULATED ELECTRICAL CONNECTING ELEMENTS; COUPLING DEVICES; CURRENT COLLECTORS
- H01R13/00—Details of coupling devices of the kinds covered by groups H01R12/70 or H01R24/00 - H01R33/00
- H01R13/44—Means for preventing access to live contacts
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- H—ELECTRICITY
- H01—ELECTRIC ELEMENTS
- H01R—ELECTRICALLY-CONDUCTIVE CONNECTIONS; STRUCTURAL ASSOCIATIONS OF A PLURALITY OF MUTUALLY-INSULATED ELECTRICAL CONNECTING ELEMENTS; COUPLING DEVICES; CURRENT COLLECTORS
- H01R13/00—Details of coupling devices of the kinds covered by groups H01R12/70 or H01R24/00 - H01R33/00
- H01R13/62—Means for facilitating engagement or disengagement of coupling parts or for holding them in engagement
- H01R13/639—Additional means for holding or locking coupling parts together, after engagement, e.g. separate keylock, retainer strap
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- H—ELECTRICITY
- H01—ELECTRIC ELEMENTS
- H01R—ELECTRICALLY-CONDUCTIVE CONNECTIONS; STRUCTURAL ASSOCIATIONS OF A PLURALITY OF MUTUALLY-INSULATED ELECTRICAL CONNECTING ELEMENTS; COUPLING DEVICES; CURRENT COLLECTORS
- H01R43/00—Apparatus or processes specially adapted for manufacturing, assembling, maintaining, or repairing of line connectors or current collectors or for joining electric conductors
- H01R43/26—Apparatus or processes specially adapted for manufacturing, assembling, maintaining, or repairing of line connectors or current collectors or for joining electric conductors for engaging or disengaging the two parts of a coupling device
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- Engineering & Computer Science (AREA)
- Manufacturing & Machinery (AREA)
- Physics & Mathematics (AREA)
- Plasma & Fusion (AREA)
- Mechanical Engineering (AREA)
- Non-Portable Lighting Devices Or Systems Thereof (AREA)
Abstract
The invention discloses a kind of welder, including energization foundation pile and power on unit, energization foundation pile bottom surrounding is provided with socle, socle is outward-dipping to be set, and socle bottom is provided with anti-skidding angle pad, provided with embedding even groove in energization foundation pile its right end face, provided with the first sliding chamber in energization foundation pile at the top of embedding even groove, provided with the second sliding chamber in energization foundation pile on the left of embedding even groove, it is inner on the left of embedding even groove to be provided with energization groove, second sliding intracavitary stretches the first spiral shell shape bar set provided with left and right, first spiral shell shape bar left-hand end is connected with the first motor, spiral shell shape is combined with slipping block on first spiral shell shape bar, slipping block bottom right side is provided with the joining beam for stretching setting to the right, stretch section is penetrated in embedding even groove on the right side of joining beam, and afterbody is fixed with docking facilities;The present invention is simple in construction, easy to operate, can realize the automatic locking positioning of power on unit and automatically control power on unit grafting work, safe.
Description
Technical field
The present invention relates to welding technology field, a kind of welder.
Background technology
With the development of science and technology, the use of bonding machine is also more and more extensive, bonding machine needs to use in using operating process
The plug of equipment, is often directly inserted on socket by electricity during electricity consumption, is so easily loosened, will be produced in socket with plug
Loose contact, more because there is high current to flow through socket, is easy to damage using plug.Although in the market has band mechanical caging dress
The connector assembly put, but have disadvantages that, it can not such as prevent from artificially pulling up, plug lock function is bad, i.e., use in equipment
When still may drop out plug, cause the presence of larger potential safety hazard, equipment can not be used normally, in addition, existing weldering
Pick in electricity consumption by the manual grafting of personnel, there is grafting by the manual grafting of personnel exerts oneself uneven to cause to be damaged with dateline
It is bad, while causing electric shock accidents in the presence of electric arc is easily produced in plug.
The content of the invention
The technical problems to be solved by the invention are to provide a kind of welder, and it can solve the problem that above-mentioned show in the art
Problem.
The present invention is achieved through the following technical solutions:The present invention a kind of welder, including energization foundation pile with
And power on unit, the energization foundation pile bottom surrounding is provided with socle, and the socle is outward-dipping to be set, and the socle bottom is set
It is equipped with anti-skidding angle pad, the energization foundation pile its right end face provided with embedding even groove, in the energization foundation pile at the top of the embedding even groove
Provided with the first sliding chamber, slid in the energization foundation pile on the left of the embedding even groove provided with second on the left of chamber, the embedding even groove
End is provided with energization groove, and the second sliding intracavitary stretches the first spiral shell shape bar set provided with left and right, and the first spiral shell shape bar is left
Side is connected with the first motor, and spiral shell shape is combined with slipping block on the first spiral shell shape bar, the slipping block bottom right side be provided with to
Right side is stretched stretch section on the right side of the joining beam set, the joining beam and penetrated in the embedding even groove, and afterbody is fixed with docking facilities,
At the top of the docking facilities in end face provided with stretch downwards before and after the recessed pockets that set, the recessed pockets it is internal at be correspondingly provided with pair
Connect slippage slot, be provided with the docking facilities of the recessed trench bottom inside sealed groove, the sealed groove left and right sides at pair
It should be provided with to be equipped with the first slippage slot, the inner top of each first slippage slot and lead shifting groove, each first slippage slot
Inner bottom part in be equipped with the second slippage slot, be provided between second slippage slot in left side and second slippage slot on right side
It is equipped with convex position, each first slippage slot at the top of sealed slipping block, the sealed slipping block and described leads shifting provided with penetrating
In groove and convex position slipping block that sliding is connected, provided with oblique outside the side of the close sealed groove of the sealed slipping block
The sealed head in shape face, remote be provided with into the side outside of the sealed groove of the sealed slipping block is sunk into power on unit described in groove including holding
Portion, lead ingoing silver, conducting parts, closure and handle.
Further technical scheme, the first sliding chamber bottom end is connected with the embedding even groove top end and set, described
First sliding intracavitary is provided with the top of blend stop, the blend stop and is provided with end face in the spiral shell shape hole stretched set downwards, the spiral shell shape hole
It is connected at the top of the second spiral shell shape bar coordinated provided with spiral shell shape, the second spiral shell shape bar with the second motor.
Ball is provided with end face at the top of further technical scheme, the convex position slipping block, the ball leads shifting with described
Groove inner top is collided and slides mating connection.
Further technical scheme, the side of the close sealed groove of the sealed slipping block bottom end face is entered provided with contract
Groove.
It is provided with further technical scheme, the convex position in the 3rd motor, each second slippage slot and is equipped with the
Three spiral shell shape bars, each 3rd spiral shell shape bar medial extremity is ganged up the convex position of the left and right sides and connected with the 3rd motor respectively
Connect, spiral shell shape is combined with the sliding push arm stretched upwards on the 3rd spiral shell shape bar, the sliding push arm stretches upwards section and penetrates institute
State in the first slippage slot and enter groove with the contract and be connected, the 3rd spiral shell shape bar hand of spiral of the left and right sides is conversely set
Put.
Stretch section is ganged up between the second sliding chamber and the embedding even groove on the right side of further technical scheme, the joining beam
The energization foundation pile inside at and sliding be connected.
Further technical scheme, the ingoing silver of leading is fixedly installed on the end front/rear end, and the conducting parts are fixed
In the end left end face position, the closure is fixed on the end base position, and the handle is fixedly installed on institute
End its right end face position is stated, the closure left and right sides is correspondingly provided with the sealed groove in ramp-like face, and the closure bottom is provided with
Lead the ramp-like face of shifting.
Further technical scheme, it is described sink into groove provided with penetrate in first slippage slot and with the described first sliding
The spring element collided inside groove.
The beneficial effects of the invention are as follows:
1. setting left and right by the second sliding intracavitary stretches the first spiral shell shape bar set, the first spiral shell shape bar left-hand end connects with the first motor
Connect, spiral shell shape coordinates slipping block on the first spiral shell shape bar, slipping block bottom right side is set to be stretched on the right side of the joining beam for stretching setting to the right, joining beam
Exhibition section is penetrated in embedding even groove, and afterbody is fixed and sets docking facilities, automatically controls grafting work so as to realize, improves operating efficiency,
Reduce the personnel to operate.
2. correspondence is set at internal before and after stretching the recessed pockets of setting, recessed pockets downwards by being set in end face at the top of docking facilities
Dock and sealed groove is set in slippage slot, the docking facilities of recessed trench bottom, correspondence sets the first sliding at sealed groove left and right sides inside
It is all provided with leading in shifting groove, the inner bottom part of each first slippage slot in groove, the inner top of each first slippage slot and is all provided with the second slippage slot,
Set between second slippage slot in left side and second slippage slot on right side in convex position, each first slippage slot and be all provided with sealed slipping block,
Set to penetrate to lead at the top of sealed slipping block and move in groove and convex position slipping block that sliding is connected, the close sealed groove of sealed slipping block
The sealed head in ramp-like face is set on the outside of side, sealed slipping block is far set into the side outside of sealed groove to sink into groove, so as to realize certainly
It is dynamic it is sealed be located by connecting, prevent power on unit is produced in moving process from rocking, cause grafting shakiness.
Set 3. being connected by the first sliding chamber bottom end with embedding even groove top end, the first sliding intracavitary sets blend stop, blend stop
The second spiral shell shape bar that the cooperation of spiral shell shape is set in the spiral shell shape hole stretched set downwards, spiral shell shape hole, the second spiral shell shape bar top are set in the end face of top
Portion is connected with the second motor, so as to realize in non-electricity consumption, is realized the isolation and protection of energization groove, is prevented electric shock accidents.
4. the present invention is simple in construction, easy to operate, the automatic locking positioning of power on unit can be realized and energization is automatically controlled
Device grafting works, and improves operating efficiency and security.
Brief description of the drawings
For ease of explanation, the present invention is described in detail by following specific embodiment and accompanying drawing.
Fig. 1 is a kind of welder internal structure schematic diagram of the invention;
Fig. 2 is docking facilities right view of the invention;
Fig. 3 is the close-up schematic view of " A " in Fig. 1 of the present invention;
Fig. 4 is power on unit overall structure diagram of the invention;
Structural representation when Fig. 5 is a kind of welder original state of the invention;
Structural representation when Fig. 6 is a kind of welder grafting of the invention;
Structural representation when Fig. 7 completes for a kind of welder grafting of the present invention;
Fig. 8 is the right view in Fig. 1.
Embodiment
As Figure 1-Figure 8, a kind of welder of the invention, including energization foundation pile 5 and power on unit 6, it is described to be powered
The bottom surrounding of foundation pile 5 is provided with socle 30, and the socle 30 is outward-dipping to be set, so that increase stability, and the socle 30
Bottom is provided with anti-skidding angle pad 31, its right end face of energization foundation pile 5 provided with embedding even groove 52, the institute at embedding even groove 52 top
State provided with the first sliding chamber 53 in energization foundation pile 5, provided with the second sliding chamber in the energization foundation pile 5 in embedding even groove 52 left side
51, embedding even groove 52 left side is inner to be provided with for stretching and setting provided with left and right in energization groove 521, the second sliding chamber 51
One spiral shell shape bar 511, the left-hand end of the first spiral shell shape bar 511 is connected with the first motor 513, spiral shell shape on the first spiral shell shape bar 511
Slipping block 512 is combined with, the bottom right side of slipping block 512 is provided with the joining beam 514 for stretching setting to the right, the joining beam 514
Right side stretch section is penetrated in the embedding even groove 52, and afterbody is fixed with docking facilities 7, the top end face of docking facilities 7
Provided with the downward recessed pockets 71 for stretching and setting, docking slippage slot 72 is correspondingly provided with before and after the recessed pockets 71 inside, it is described recessed
Enter and sealed groove 77 be provided with the docking facilities 7 of the bottom of groove 71, inside the sealed left and right sides of groove 77 at be correspondingly provided with the
It is equipped with one slippage slot 73, the inner top of each first slippage slot 73 and leads shifting groove 75, each first slippage slot 73
Inner bottom part in be equipped with the second slippage slot 74, second slippage slot 74 in left side and second slippage slot 74 on right side it
Between be provided with convex position 76, each first slippage slot 73 and be equipped with sealed slipping block 731, the sealed top of slipping block 731
The convex position slipping block 751 being connected is moved in groove 75 and slides provided with described lead is penetrated, the sealed slipping block 731 is close described
Ramp-like face sealed first 732 is provided with outside the side of sealed groove 77, the sealed slipping block 731 is remote to the one of the sealed groove 77
Provided with sinking into groove 733 in outside side, the power on unit 6 includes end 61, leads ingoing silver 62, conducting parts 64, closure 65 and handle
63。
Wherein, the first sliding bottom end of chamber 53 is connected with the embedding even top end of groove 52 and set, first sliding
It is provided with chamber 53 in blend stop 531, the top end face of blend stop 531 provided with the downward spiral shell shape hole 532 stretched and set, the spiral shell shape hole
The the second spiral shell shape bar 533 coordinated in 532 provided with spiral shell shape, the top of the second spiral shell shape bar 533 is connected with the second motor 534, so that
Realize automatic protection and sealed.
Wherein, ball 752 is provided with the top end face of convex position slipping block 751, the ball 752 leads shifting groove 75 with described
Inner top is collided and slides mating connection, so as to improve the sealed movement of slipping block 731 flexibility.
Wherein, groove 735 is entered in the side of the close sealed groove 77 of the bottom end face of sealed slipping block 731 provided with contract.
Wherein, it is provided with the convex position 76 in the 3rd motor 761, each second slippage slot 74 and is equipped with the 3rd spiral shell shape
Bar 742, each medial extremity of 3rd spiral shell shape bar 742 gang up respectively the convex position 76 of the left and right sides and with the 3rd motor
761 connections, spiral shell shape is combined with the sliding push arm 741 stretched upwards on the 3rd spiral shell shape bar 742, the sliding push arm 741 to
Upper stretch section penetrates in first slippage slot 73 and enters groove 735 with the contract and is connected, the 3rd spiral shell of the left and right sides
The hand of spiral of shape bar 742 is reversed, and unblock work is automatically controlled so as to realize, improves operating efficiency.
Wherein, the institute that the right side stretch section of joining beam 514 is ganged up between the second sliding chamber 51 and the embedding even groove 52
State at the inside of energization foundation pile 5 and sliding is connected.
Wherein, the ingoing silver 62 of leading is fixedly installed on the front/rear end of end 61, and the conducting parts 64 are fixed on described
The left end face position of end 61, the closure 65 is fixed on the bottom position of end 61, and the handle 63 is fixedly installed on
Its right end face position of end 61, the left and right sides of closure 65 is correspondingly provided with the sealed groove 651 in ramp-like face, the closure
Fixation is quickly assigned in 65 bottoms provided with the ramp-like face 652 of shifting is led so as to realize, and then realizes that autopatching works.
Wherein, it is described sink into groove 733 provided with penetrate in first slippage slot 73 and with first slippage slot 73
The spring element 734 collided at portion, so as to realize the work that automatically resets.
As shown in figure 5, slipping block 512 is located at the leftward position of the second sliding chamber 51 during original state, meanwhile, slipping block
The docking facilities 7 of the 512 drive right-hand ends of joining beam 514 are embedded in embedding even in groove 52 completely, now, the are driven by the second motor 534
Two spiral shell shape bars 533 are rotated, and are driven by the second spiral shell shape bar 533 in the fully-inserted docking slippage slot 72 of blend stop 531, meanwhile, sealed cunning
Block 731 is moved by the elastic pressure on top surface of spring element 734, the ramp-like face on sealed slipping block 731 sealed first 732 is at utmost worn
Enter in sealed groove 77, now, convex position slipping block 751, which is located at, leads the shifting most inner side of groove 75, meanwhile, sliding push arm 741 is located at the
The most inner side of two slippage slots 74, now, the sliding top stretch section of push arm 741 enter groove 735 with contract and are connected.
When needing electricity consumption, the second spiral shell shape bar 533 is controlled to invert by the second motor 534 first, by the band of the second spiral shell shape bar 533
Dynamic blend stop 531 is moved up, until blend stop 531 is entirely retracted in the first sliding chamber 53, now, the bottom end face of blend stop 531 with it is embedding
Even the inner top of groove 52 is in same level, then drives the first spiral shell shape bar 511 to rotate by the first motor 513, by the first spiral shell
Shape bar 511 drives slipping block 512 to be moved along the second sliding right direction of chamber 51, until slipping block 512 is moved to the second sliding chamber
51 right-most position, now, slipping block 512 drive the docking facilities 7 on joining beam 514 and joining beam 514 at utmost to stretch out
Outside embedding even groove 52, then power on unit 6 is moved to the top position of docking facilities 7, makes to lead ingoing silver 62 positioned at docking slippage slot 72
Top correspondence position, now, moves down power on unit 6, makes to lead ingoing silver 62 and is gradually inserted in docking slippage slot 72, meanwhile, make end
Portion 61 is gradually slipped into recessed pockets 71, continues to move down power on unit 6, closure 65 is gradually penetrated in sealed groove 77, until
Lead the ramp-like face 652 of shifting to abut with sealed first 732 sliding in ramp-like face, sealed slipping block 731 is overcome the elastic top pressure of spring element 734
Power is remote to the movement of the sealed side of groove 77 towards the first slippage slot 73, until ramp-like face sealed first 732 is remote to the sealed side of slipping block 731
End face abutted with the outside wall slip of closure 65, until ramp-like face sealed first 732 is slid onto at the sealed groove 651 in ramp-like face, together
When, the bottom end face of closure 65 is collided with the sealed inner bottom part of groove 77, now, elasticity of the sealed slipping block 731 by spring element 734
Pressure on top surface makes ramp-like face sealed first 732 spring into the sealed groove 651 in ramp-like face, meanwhile, in the bottom end face of end 61 and recessed pockets 71
Bottom is collided, now, leads ingoing silver 62 with docking the fully mated connection of slippage slot 72, then controls first by the first motor 513
Spiral shell shape bar 511 is inverted, and drives slipping block 512 to be moved along the second sliding left direction of chamber 51 by the first spiral shell shape bar 511, meanwhile, it is sliding
Moving block 512 drives joining beam 514 and the docking facilities 7 of the right end of joining beam 514 to be moved towards left side, until slipping block 512 is moved
To the left-most position of the second sliding chamber 51, meanwhile, drive docking facilities 7 to be completely embedded into embedding even groove 52, now, docking facilities
7 drive in the fully-inserted energization groove 521 of conducting parts 64 on power on unit 6, so as to realize that automatic power is connected;When electricity consumption completes to need
When taking out power on unit 6, drive the first spiral shell shape bar 511 to rotate by the first motor 513, sliding is driven by the first spiral shell shape bar 511
Block 512 is moved along the second sliding right direction of chamber 51, until slipping block 512 is moved to the right-most position of the second sliding chamber 51,
Now, slipping block 512 drives the docking facilities 7 on joining beam 514 and joining beam 514 at utmost to stretch out outside embedding even groove 52, then
The 3rd spiral shell shape bar 742 for controlling the left and right sides by the 3rd motor 761 is rotated, and is driven by the 3rd spiral shell shape bar 742 of the left and right sides
The sliding push arm 741 of the left and right sides is moved towards opposite direction, now, and sliding push arm 741 drives sealed slipping block 731 to overcome elastic force
The elastic pressure on top surface of part 734 is remote to the movement of the sealed side of groove 77 towards the first slippage slot 73, until ramp-like face sealed first 732 takes off completely
From in the sealed groove 651 in ramp-like face, now, move up power on unit 6 and can be taken off, then the 3rd motor 761 control left and right sides
The 3rd spiral shell shape bar 742 invert, the sliding push arm 741 of the left and right sides is driven towards correspondence by the 3rd spiral shell shape bar 742 of the left and right sides
Direction is moved, until sliding push arm 741 and the sealed slipping block 731 for the elastic pressure on top surface top pressure for passing through spring element 734 recover
To initial position, then drive the first spiral shell shape bar 511 to invert by the first motor 513, slipping block is driven by the first spiral shell shape bar 511
512 move along the second sliding right direction of chamber 51, until it is embedding even in groove 52 to drive docking facilities 7 to be completely embedded into, and finally control the
Two motor 534 drives the second spiral shell shape bar 533 to rotate, and the fully-inserted docking slippage slot 72 of blend stop 531 is driven by the second spiral shell shape bar 533
It is interior, so that initial position is realized, and then realization protects energization groove 521 not exposed.
The beneficial effects of the invention are as follows:
1. setting left and right by the second sliding intracavitary stretches the first spiral shell shape bar set, the first spiral shell shape bar left-hand end connects with the first motor
Connect, spiral shell shape coordinates slipping block on the first spiral shell shape bar, slipping block bottom right side is set to be stretched on the right side of the joining beam for stretching setting to the right, joining beam
Exhibition section is penetrated in embedding even groove, and afterbody is fixed and sets docking facilities, automatically controls grafting work so as to realize, improves operating efficiency,
Reduce the personnel to operate.
2. correspondence is set at internal before and after stretching the recessed pockets of setting, recessed pockets downwards by being set in end face at the top of docking facilities
Dock and sealed groove is set in slippage slot, the docking facilities of recessed trench bottom, correspondence sets the first sliding at sealed groove left and right sides inside
It is all provided with leading in shifting groove, the inner bottom part of each first slippage slot in groove, the inner top of each first slippage slot and is all provided with the second slippage slot,
Set between second slippage slot in left side and second slippage slot on right side in convex position, each first slippage slot and be all provided with sealed slipping block,
Set to penetrate to lead at the top of sealed slipping block and move in groove and convex position slipping block that sliding is connected, the close sealed groove of sealed slipping block
The sealed head in ramp-like face is set on the outside of side, sealed slipping block is far set into the side outside of sealed groove to sink into groove, so as to realize certainly
It is dynamic it is sealed be located by connecting, prevent power on unit is produced in moving process from rocking, cause grafting shakiness.
Set 3. being connected by the first sliding chamber bottom end with embedding even groove top end, the first sliding intracavitary sets blend stop, blend stop
The second spiral shell shape bar that the cooperation of spiral shell shape is set in the spiral shell shape hole stretched set downwards, spiral shell shape hole, the second spiral shell shape bar top are set in the end face of top
Portion is connected with the second motor, so as to realize in non-electricity consumption, is realized the isolation and protection of energization groove, is prevented electric shock accidents.
4. the present invention is simple in construction, easy to operate, the automatic locking positioning of power on unit can be realized and energization is automatically controlled
Device grafting works, and improves operating efficiency and security.
The foregoing is only a specific embodiment of the invention, but protection scope of the present invention is not limited thereto, any
The change or replacement expected without creative work, should all be included within the scope of the present invention.Therefore, it is of the invention
Protection domain should be determined by the scope of protection defined in the claims.
Claims (8)
1. a kind of welder, including energization foundation pile and power on unit, it is characterised in that:Energization foundation pile bottom surrounding is provided with pin
Post, socle is outward-dipping to be set, and socle bottom is provided with anti-skidding angle pad, energization foundation pile its right end face provided with embedding even groove, embedding
Even slid in the energization foundation pile at the top of groove provided with first in chamber, the embedding energization foundation pile connected on the left of groove provided with the second sliding chamber, embedding company
Inner on the left of groove to be provided with energization groove, the second sliding intracavitary stretches the first spiral shell shape bar set provided with left and right, and the first spiral shell shape bar is left
Side is connected with the first motor, and spiral shell shape is combined with slipping block on the first spiral shell shape bar, and slipping block bottom right side is provided with to be stretched to the right
Stretch section is penetrated in embedding even groove on the right side of the joining beam of setting, joining beam, and afterbody is fixed with end face at the top of docking facilities, docking facilities
Before and after the interior recessed pockets provided with stretching, extension setting downwards, recessed pockets docking slippage slot, pair of recessed trench bottom are correspondingly provided with inside
Be correspondingly provided with the first slippage slot at being provided with connection device inside sealed groove, the sealed groove left and right sides, each first slippage slot it is interior
It is equipped with top and leads shifting groove, the second slippage slot, second slippage slot in left side is equipped with the inner bottom part of each first slippage slot
It is provided between second slippage slot on right side in convex position, each first slippage slot and is equipped with sealed slipping block, sealed slipping block top
Portion is provided with to penetrate to lead and moved in groove and convex position slipping block that sliding is connected, on the side outside of the close sealed groove of sealed slipping block
Provided with the sealed head in ramp-like face, sealed slipping block is far provided with to sink into the side outside of sealed groove to be included end into groove power on unit, leads
Ingoing silver, conducting parts, closure and handle.
2. a kind of welder according to claim 1, it is characterised in that:It is described first sliding chamber bottom end with it is described embedding
Even groove top end, which is connected, is set, and the first sliding intracavitary is provided with the top of blend stop, the blend stop and set in end face provided with stretching, extension downwards
With the second motor at the top of the second spiral shell shape bar coordinated in the spiral shell shape hole put, the spiral shell shape hole provided with spiral shell shape, the second spiral shell shape bar
Connection.
3. a kind of welder according to claim 1, it is characterised in that:It is provided with the top of the convex position slipping block in end face
Ball, the ball is collided with the shifting groove inner top of leading and slides mating connection.
4. a kind of welder according to claim 1, it is characterised in that:The close institute of the sealed slipping block bottom end face
Groove is entered in the side for stating sealed groove provided with contract.
5. a kind of welder according to claim 1, it is characterised in that:The 3rd motor is provided with the convex position, each
The 3rd spiral shell shape bar is equipped with second slippage slot, each 3rd spiral shell shape bar medial extremity gangs up the institute of the left and right sides respectively
State convex position and be connected with the 3rd motor, spiral shell shape is combined with the sliding push arm stretched upwards on the 3rd spiral shell shape bar, described
Sliding push arm, which stretches upwards section and penetrates in first slippage slot and enter groove with the contract, to be connected, and described the of the left and right sides
Three spiral shell shape bar hand of spirals are reversed.
6. a kind of welder according to claim 1, it is characterised in that:Stretch section gangs up described the on the right side of the joining beam
Two slide inside chambers and the embedding energization foundation pile connected between groove and sliding mating connection.
7. a kind of welder according to claim 1, it is characterised in that:The ingoing silver of leading is fixedly installed on the end
Front/rear end, the conducting parts are fixed on the end left end face position, and the closure is fixed on the end base position
Put, the handle is fixedly installed on the end its right end face position, the closure left and right sides is correspondingly provided with ramp-like face lock
Groove is closed, the closure bottom, which is provided with, leads the ramp-like face of shifting.
8. a kind of welder according to claim 1, it is characterised in that:Described sink penetrates described first into interior be provided with of groove
In slippage slot and with inside first slippage slot at the spring element collided.
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CN201710307769.1A CN107088699A (en) | 2017-05-04 | 2017-05-04 | A kind of welder |
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CN201710307769.1A CN107088699A (en) | 2017-05-04 | 2017-05-04 | A kind of welder |
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CN105977715A (en) * | 2016-05-05 | 2016-09-28 | 中山市谛恩日用品有限公司 | Electrical cabinet suitable for plugging |
CN106410512A (en) * | 2016-11-01 | 2017-02-15 | 方丹 | Industrial power plug and socket mechanism capable of self locking |
CN106450940A (en) * | 2016-11-02 | 2017-02-22 | 柴建儿 | Power supply device capable of being self-locked |
CN106532351A (en) * | 2016-11-21 | 2017-03-22 | 义乌市晶凯机械设备有限公司 | Power supply insertion device used for electrical equipment |
CN106602351A (en) * | 2016-12-20 | 2017-04-26 | 朱亚伟 | Power supply plugging system |
-
2017
- 2017-05-04 CN CN201710307769.1A patent/CN107088699A/en not_active Withdrawn
Patent Citations (6)
Publication number | Priority date | Publication date | Assignee | Title |
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CN105140691A (en) * | 2015-07-03 | 2015-12-09 | 金华市百格丝芙袋业有限公司 | Shockproof socket capable of automatically locking and unlocking |
CN105977715A (en) * | 2016-05-05 | 2016-09-28 | 中山市谛恩日用品有限公司 | Electrical cabinet suitable for plugging |
CN106410512A (en) * | 2016-11-01 | 2017-02-15 | 方丹 | Industrial power plug and socket mechanism capable of self locking |
CN106450940A (en) * | 2016-11-02 | 2017-02-22 | 柴建儿 | Power supply device capable of being self-locked |
CN106532351A (en) * | 2016-11-21 | 2017-03-22 | 义乌市晶凯机械设备有限公司 | Power supply insertion device used for electrical equipment |
CN106602351A (en) * | 2016-12-20 | 2017-04-26 | 朱亚伟 | Power supply plugging system |
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