CN206200325U - A kind of press welder copper bar distributed architecture - Google Patents
A kind of press welder copper bar distributed architecture Download PDFInfo
- Publication number
- CN206200325U CN206200325U CN201620939655.XU CN201620939655U CN206200325U CN 206200325 U CN206200325 U CN 206200325U CN 201620939655 U CN201620939655 U CN 201620939655U CN 206200325 U CN206200325 U CN 206200325U
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- China
- Prior art keywords
- copper bar
- negative pole
- positive pole
- press welder
- confluence
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Abstract
The utility model discloses a kind of press welder copper bar distributed architecture, belong to press welder technical field.The copper bar distributed architecture uses positive pole copper bar and negative pole copper bar, positive pole confluence copper bar and negative pole confluence copper bar, positive pole copper bar and negative pole copper bar are fixed on the same side of pressure welding compressing head, and positive pole copper bar and negative pole copper bar are intervally arranged successively at grade along the length direction of press welder.Both positive and negative polarity copper bar is using the structure being interspersed successively in the utility model, when press welder works, the sense of current is opposite, magnetic field is cancelled out each other, and the purpose for eliminating or reducing magnetic field can be reached, so as to ensure the smooth feeding of twisting square steel and normal acquisition and the conveying of working data signal.The distributed architecture of positive pole copper bar and negative pole copper bar in the utility model, can save space, positive pole copper bar and negative pole copper bar length is shorter, reduces the loss of electric current, improves the operating efficiency of press welder.
Description
Technical field
The utility model is related to a kind of press welder copper bar distributed architecture, belongs to press welder technical field.
Background technology
Original steel-grating press welder rectifier element and press welder body are separated, and are arranged by conductive soft copper and are connected with press welder,
Copper bar horizontal distribution, current field does not wrap up press welder body, influences smaller in working region magnetic field.New press welder is changed
The arrangement of rectifier element, press welder top is installed on by rectifier element, simplifies design, shortens the length of conductive path
Degree, current loss reduction, but because press welder body is wrapped up in copper bar high current magnetic field, cause magnetic field larger, to press welder just
Often production is impacted.When steel-grating press welder is welded, high-intensity currrent pass sequentially through positive pole copper bar, positive bus,
Anode electrode, twisting square steel, band steel, negative electrode, negative bus-bar, negative pole copper bar form welding circuit, reach welding purpose.
Electric current very about 300,000 A during due to welding, form very big magnetic field around conductor, normal the sending of magnetic field influence twisting square steel
Enter, and surrounding metal material can be drawn to normal operating is influenceed on head, because magnetic field is very big, can form dry to signal acquisition
Disturb, cause data transmission fault or control error
Utility model content
The purpose of this utility model is to provide a kind of magnetic field that can eliminate welding current generation, ensures that raw material is normally sent into
Press welder copper bar distributed architecture.
To achieve these goals, the technical solution adopted in the utility model is:
A kind of press welder copper bar distributed architecture, the copper bar distributed architecture is converged using positive pole copper bar and negative pole copper bar, positive pole
Stream copper bar and negative pole confluence copper bar, positive pole copper bar and negative pole copper bar are fixed on the same side of pressure welding compressing head, positive pole copper bar and
Negative pole copper bar is intervally arranged successively at grade along the length direction of press welder.
Further, negative pole copper bar include input linkage section, lateral connection section, upper bending segment, vertical section one and under it is curved
Trisection, upper bending segment, vertical section one and lower bending segment are sequentially connected and are integrally formed composition C-shaped;Upper bending segment and lateral connection section
It is fixedly connected, input linkage section is connected with the negative pole of rectifier, and lower bending segment is connected with negative pole confluence copper bar;Positive pole copper bar includes
Output linkage section and vertical section two, output linkage section are connected with the positive pole of rectifier, the lower end of vertical section two and positive pole confluence copper bar
It is connected;Positive pole confluence copper bar and negative pole confluence copper bar are each attached to pressure welding compressing head lower surface, and positive pole confluence copper bar and negative pole converge
Insulating materials is set between stream copper bar, insulating materials is set between positive pole confluence copper bar and negative pole confluence copper bar and pressure head.
Further, it is bolted to connection between the lateral connection section and input linkage section of negative pole copper bar, negative pole copper
The lower bending segment of row is bolted to connection with negative pole confluence copper bar;The lower end of vertical section two of positive pole copper bar and positive pole conflux copper
Row is bolted to connection.
Further, by being welded to connect between the lateral connection section and input linkage section of negative pole copper bar, negative pole copper bar
Lower bending segment is with negative pole confluence copper bar by being welded to connect;The lower end of vertical section two of positive pole copper bar is with positive pole confluence copper bar by weldering
Connect in succession.
Further, the thickness of positive pole copper bar is identical with the thickness of negative pole copper bar is 10~20mm.
By adopting the above-described technical solution, the technique effect that the utility model is obtained has:
Both positive and negative polarity copper bar is by the way of being interspersed successively in the utility model, the sense of current phase when press welder works
Instead, magnetic field is cancelled out each other, and the purpose for eliminating or reducing magnetic field can be reached, so as to ensure smooth feeding and the work of twisting square steel
The normal acquisition of date number and conveying.
The distributed architecture of positive pole copper bar and negative pole copper bar in the utility model, being capable of save space, positive pole copper bar and negative
Pole copper bar length is shorter, reduces the loss of electric current, improves the operating efficiency of press welder.
Brief description of the drawings
Fig. 1 is the utility model press welder and copper bar distributed architecture schematic front view;
Fig. 2 is the utility model press welder and copper bar distributed architecture A-A to schematic cross-sectional view;
Fig. 3 is the utility model positive pole copper bar schematic diagram;
Fig. 4 is the utility model negative pole copper bar schematic diagram;
Wherein, 1, positive pole copper bar, 1-1, output linkage section, 1-2, vertical section two, 2, negative pole copper bar, 2-1, input connection
Section, 2-2, lateral connection section, 2-3, upper bending segment, 2-4, vertical section one, 2-5, lower bending segment, 3, positive pole confluence copper bar, 4, negative
Pole confluence copper bar, 5, rectifier, 6, insulating materials, 7, pressure welding compressing head.
Specific embodiment
Below in conjunction with the accompanying drawings and specific embodiment is described in further details to the utility model:
Embodiment 1
The utility model discloses a kind of press welder copper bar distributed architecture, the copper bar distributed architecture uses positive pole copper bar 1
With negative pole copper bar 2, positive pole confluence copper bar 3 and negative pole confluence copper bar 4, positive pole copper bar 1 and negative pole copper bar 2 are fixed on pressure welding compressing head
7 the same side, the positive pole copper bar 1 and negative pole copper bar 2 represented in Fig. 1 is each attached to the left side of pressure welding compressing head 7.Positive pole copper bar
1 and negative pole copper bar 2 be intervally arranged successively at grade along the length direction of press welder, specific positive pole copper bar 1, negative pole copper bar
2nd, positive pole confluxes copper 3, the mutual alignment relation of negative pole confluence copper bar 4 and distributed architecture as shown in Figure 1 and Figure 2.In the utility model
Positive pole copper bar 1 and negative pole copper bar 2 are arranged on the same side of pressure welding compressing head 7, and use form staggered successively, can be with
When press welder is worked in positive pole copper bar 1 and negative pole copper bar 2 sense of current conversely, so that the electromagnetic field that electric current is produced mutually is supported
Disappear, reach the purpose for eliminating or reducing magnetic field, it is ensured that the smooth feeding of twisting square steel and the normal acquisition of working data signal
And conveying.
The utility model is mainly used in the press welder for producing steel grating, and steel grating typically has width more long
Degree, therefore multigroup rectifier and positive pole confluence copper bar can be used and negative pole confluence copper bar brings together electric current.
Copper bar distributed architecture in the utility model, uses the structure of positive pole copper bar as shown in Figure 3.Positive pole copper bar 1 is wrapped
Include output the linkage section 1-1 and 1-2 of vertical section two, output linkage section 1-1 be connected with the positive pole of rectifier 5, the 1-2 of vertical section two with just
Pole confluence copper bar 3 is connected.The structure of the negative pole copper bar 2 that the copper bar distributed architecture in the utility model is used is as shown in figure 4, negative
Pole copper bar 2 includes input linkage section 2-1, lateral connection section 2-2, upper bending segment 2-3, the 2-4 of vertical section one and lower bending segment 2-
5, upper bending segment 2-3, the 2-4 of vertical section one and lower bending segment 2-5 are sequentially connected and are integrally formed composition C-shaped;Upper bending segment 2-3 with
Lateral connection section 2-2 is fixedly connected, and input linkage section 2-1 is connected with the negative pole of rectifier 5, and lower bending segment 2-5 confluxes with negative pole
Copper bar 4 is connected, and input linkage section 2-1 and lateral connection the section 2-2's in the utility model in negative pole copper bar 2 is disposed to guarantor
Demonstrate,prove the 1-2 of vertical section two of integrally formed upper bending segment 2-3, the 2-4 of vertical section one and lower bending segment 2-5 and positive pole copper bar 2 according to
The form arrangement being intervally arranged, so as to reach the purpose for eliminating or reducing magnetic field.Positive pole copper bar 1 and negative pole in the utility model
Copper bar 2 is intervally arranged and generally refers to the vertical section two of positive pole copper bar 1 successively at grade along the length direction of press welder
The part of integrally formed upper bending segment 2-3, the 2-4 of vertical section one and lower bending segment 2-5 is according to successively in 1-2 and negative pole copper bar 2
The form arrangement at interval.Positive pole confluence copper bar 3 and negative pole confluence copper bar 4 are each attached to pressure welding compressing head lower surface, and positive pole confluxes
Insulating materials 6 is set between copper bar 3 and negative pole confluence copper bar 4, between positive pole confluence copper bar 3 and negative pole confluence copper bar 4 and pressure head
Insulating materials is set.
Fig. 3 and Fig. 4 merely illustrate the structure type of positive pole copper bar 3 and negative pole copper bar 4 in this embodiment, specifically used
During, multigroup positive pole copper bar 3 can be set according to actual conditions, negative pole copper bar 4 can also will laterally connect according to actual conditions
Section 2-2 is met to lengthen, then set multigroup input linkage section 2-1 and integrally formed upper bending segment 2-3, the 2-4 of vertical section one and
Lower bending segment 2-5.
In the utility model the structure setting of positive pole copper bar 1 and negative pole copper bar 2 be mechanism in order to be applied to press welder and
The distribution of rectifier 5, and ensure that positive pole copper bar 1 and negative pole copper bar 2 are at the same side of pressure welding head 7.
The company of being bolted between the lateral connection section 2-2 and input linkage section 2-1 of negative pole copper bar 2 in the utility model
Connect, lower bending segment 2-5 and the negative pole confluence copper bar 4 of negative pole copper bar 2 are bolted to connection;The vertical section two of positive pole copper bar 1
1-2 is bolted to connection with positive pole confluence copper bar 3.
Can also be using welding between the lateral connection section 2-2 and input linkage section 2-1 of negative pole copper bar 2 in the utility model
Mode be fixedly connected, the lower bending segment 2-5 of negative pole copper bar 2 can also be by way of welding with negative pole confluence copper bar 4
It is fixedly connected;The 1-2 of vertical section two of positive pole copper bar 1 companies of being fixed by way of welding with positive pole confluence copper bar 3
Connect.
In actual use preferentially select bolted mode, bolted mode can ensure positive pole copper bar with just
Steering capability between the confluence copper bar of pole and between negative pole copper bar and negative pole confluence copper bar it is good, and be easy to dismounting, make
Use more flexible.
The thickness of positive pole copper bar 1 is identical with the thickness of negative pole copper bar 2 in the utility model, and Thickness scope is 10~
20mm。
The rectifier of the press welder in the utility model is arranged on the upper end of press welder, and positive pole copper bar and negative pole copper bar are along pressure
By the way of being interspersed successively, the arrangement mode being capable of save space, shortening positive pole copper bar and negative pole for welding machine length direction
The length of copper bar, so as to reduce the loss of electric current, improves the operating efficiency of press welder.
Distributed architecture of the utility model using positive pole copper bar and negative pole copper bar successively staggeredly, and positive pole copper bar and negative pole
Copper bar is in the same side of pressure welding compressing head, it is ensured that the sense of current is reached conversely, electromagnetic field is cancelled out each other when press welder works
Eliminate or reduce the purpose in magnetic field, so as to ensure the smooth feeding of twisting square steel and the normal acquisition of working data signal and defeated
Send.
Claims (5)
1. a kind of press welder copper bar distributed architecture, it is characterised in that:The copper bar distributed architecture uses positive pole copper bar(1)And negative pole
Copper bar(2), positive pole confluence copper bar(3)With negative pole confluence copper bar(4), positive pole copper bar(1)With negative pole copper bar(2)It is fixed on press welder
The same side of pressure head, positive pole copper bar(1)With negative pole copper bar(2)Along press welder length direction at grade successively interval row
Cloth.
2. a kind of press welder copper bar distributed architecture according to claim 1, it is characterised in that:Negative pole copper bar(2)Including defeated
Enter linkage section(2-1), lateral connection section(2-2), upper bending segment(2-3), vertical section one(2-4)And lower bending segment(2-5), on
Bending segment(2-3), vertical section one(2-4)With lower bending segment(2-5)It is sequentially connected and is integrally formed composition C-shaped;Upper bending segment(2-3)
With lateral connection section(2-2)It is fixedly connected, is input into linkage section(2-1)With rectifier(5)Negative pole be connected, lower bending segment(2-5)
With negative pole confluence copper bar(4)It is connected;Positive pole copper bar(1)Including output linkage section(1-1)With vertical section two(1-2), output connection
Section(1-1)With rectifier(5)Positive pole be connected, vertical section two(1-2)Lower end and positive pole confluence copper bar(3)It is connected;Positive pole confluxes
Copper bar(3)With negative pole confluence copper bar(4)It is each attached to pressure welding compressing head lower surface, positive pole confluence copper bar(3)Conflux copper with negative pole
Row(4)Between insulating materials is set(6), positive pole confluence copper bar(3)With negative pole confluence copper bar(4)Insulation material is set between pressure head
Material.
3. a kind of press welder copper bar distributed architecture according to claim 2, it is characterised in that:Negative pole copper bar(2)Transverse direction
Linkage section(2-2)With input linkage section(2-1)Between be bolted to connection, negative pole copper bar(2)Lower bending segment(2-5)With
Negative pole confluence copper bar(4)It is bolted to connection;Positive pole copper bar(1)Vertical section two(1-2)Lower end and positive pole confluence copper bar
(3)It is bolted to connection.
4. a kind of press welder copper bar distributed architecture according to claim 2, it is characterised in that:Negative pole copper bar(2)Transverse direction
Linkage section(2-2)With input linkage section(2-1)Between by being welded to connect, negative pole copper bar(2)Lower bending segment(2-5)With negative pole
Confluence copper bar(4)By being welded to connect;Positive pole copper bar(1)Vertical section two(1-2)Lower end and positive pole confluence copper bar(3)By weldering
Connect in succession.
5. a kind of press welder copper bar distributed architecture according to any one of claim 3 or 4, it is characterised in that:Positive pole copper bar
(1)Thickness and negative pole copper bar(2)Thickness identical be 10~20mm.
Priority Applications (1)
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CN201620939655.XU CN206200325U (en) | 2016-08-25 | 2016-08-25 | A kind of press welder copper bar distributed architecture |
Applications Claiming Priority (1)
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CN201620939655.XU CN206200325U (en) | 2016-08-25 | 2016-08-25 | A kind of press welder copper bar distributed architecture |
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CN206200325U true CN206200325U (en) | 2017-05-31 |
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CN201620939655.XU Withdrawn - After Issue CN206200325U (en) | 2016-08-25 | 2016-08-25 | A kind of press welder copper bar distributed architecture |
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Cited By (4)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN106181005A (en) * | 2016-08-25 | 2016-12-07 | 新兴铸管股份有限公司 | A kind of press welder copper bar distribution mode |
CN109841407A (en) * | 2017-11-21 | 2019-06-04 | Tdk电子股份有限公司 | Capacitor |
CN110449894A (en) * | 2019-07-23 | 2019-11-15 | 杭州康奋威科技股份有限公司 | The synchronous punching press of busbar upwarps-binding face press welding device and its upwarp press welding method |
CN113075980A (en) * | 2021-03-26 | 2021-07-06 | 山东英信计算机技术有限公司 | Heat dissipation and power supply module and power supply frame |
-
2016
- 2016-08-25 CN CN201620939655.XU patent/CN206200325U/en not_active Withdrawn - After Issue
Cited By (6)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN106181005A (en) * | 2016-08-25 | 2016-12-07 | 新兴铸管股份有限公司 | A kind of press welder copper bar distribution mode |
CN109841407A (en) * | 2017-11-21 | 2019-06-04 | Tdk电子股份有限公司 | Capacitor |
US11404215B2 (en) | 2017-11-21 | 2022-08-02 | Tdk Electronics Ag | Capacitor |
CN109841407B (en) * | 2017-11-21 | 2022-09-09 | Tdk电子股份有限公司 | Capacitor with improved capacitance |
CN110449894A (en) * | 2019-07-23 | 2019-11-15 | 杭州康奋威科技股份有限公司 | The synchronous punching press of busbar upwarps-binding face press welding device and its upwarp press welding method |
CN113075980A (en) * | 2021-03-26 | 2021-07-06 | 山东英信计算机技术有限公司 | Heat dissipation and power supply module and power supply frame |
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GR01 | Patent grant | ||
GR01 | Patent grant | ||
AV01 | Patent right actively abandoned |
Granted publication date: 20170531 Effective date of abandoning: 20190531 |
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AV01 | Patent right actively abandoned |