The invention relates to an electric device, especially to a switch device.
In the field of power distribution, a switch device is installed in a switch cabinet, a wiring terminal of the switch is usually directly connected with a power busbar, the power busbar is directly overlapped on the wiring terminal, the wiring terminal and the power busbar are commonly connected by an overlapping joint method, and then a bolt and a nut are used for fastening. See
The object of the invention is to provide a switch device so as to solve the above problem. Such object is achieved by providing an electric device as defined in claim 1. Further advantageous according to the invention will be apparent from the dependent claims.
The invention provides an electric device, the electric device comprises a wiring terminal for connecting a busbar, the wiring terminal comprises a connecting rod, which partly inserts into the wiring terminal and has an interference fit with the wiring terminal, the connecting rod comprises a conductive first column portion that has an interference fit with the busbar, the first column portion axially arranges a conductive second column portion that has an interference fit with the first column portion, the second column portion is located inside of the first column portion, a thermal expansion coefficient of the second column portion is greater than that of the first column portion, a resistivity of the second column portion is greater than that of the first column portion, a material of the second column portion is an aluminum or an aluminum alloy, and a material of the first column portion is a copper or a copper alloy.
Since a wiring terminal of an electric device is connected to a busbar via a manner of butt-and-butt connecting, such connecting manner have following advantageous effects compared to a usual manner of overlapping connecting.
1. The same overlapping length with respect to the prior art increases more conductive surface for reducing a current density to achieve low temperature rising of connecting part.
2. No need to overlap a busbar and an output, so amount of material is reduced and save the social source.
3. Because there is no bolts or nuts for fastening, the electric clearance or safety distance is increased, an electric safety of device is also increased.
4. Because there is no bolts or nuts for fastening, a width of connecting part is reduced, an occupation space of a transformer is also reduced.
Further characteristics and advantages of the invention will emerge from the description of preferred, but not exclusive embodiments of the electric device according to the invention, non-limiting examples of which are provided in the attached drawings, in which:
R in this application stands for a radius.
Referring to
Referring to
Referring to
Referring to
Referring to
Referring to
L1 is an electric clearance or safety distance of the usual manner,
L2 is an electric clearance or safety distance of the invention,
L3 is a width of connecting part of the usual manner,
L4 is a width of connecting part of the invention.
Obviously, L2 is greater than L1, increasing amount is about a thickness of a busbar plus a rising height that a tail portion of bolt rises from a nut and plus a height of a nut. Obviously, L4 is lesser than L3, reducing amount is about a thickness of a busbar plus a height of head of a bolt plus a height of a nut and plus a rising height that a tail portion of bolt rises from a nut. Therefore, favorable factors (such as electric clearance or safety distance) for power device are increased, while unfavorable factors (such as occupation space) for power device are reduced.
Referring to
Referring to
Referring to
After the connecting rod is assembled to the connecting portion 9 and a busbar, because there is an interference fit between the first column portion 1 and a pre-hole of the connecting portion 9 and of a busbar, the first column portion 1 fits closely together with the connecting portion 9 and a busbar so as to fully carry current. Because there is an interference fit between the first column portion 1 and the second column portion 2, they fit closely together with each other, the second column portion 2 also fully carries current. Therefore, thermal effect of the first 1 and second 2 column portion works well, a temperature of the second column portion 2 is greater than that of the first column portion 1, since a resistivity of the second column portion 2 is greater than that of the first column portion 1. Radial swelling of the second column portion 2 is obviously greater than that of the first column portion 1 under a condition that temperature and thermal expansion coefficient are relatively greater, since a thermal expansion coefficient of the second column portion 2 is greater than that of the first column portion 1. Therefore, the second column portion 2 fits closely together with the first column portion 1 and radially exerts an outwards force on the first column portion 1 so as to enlarge a radial dimension of the first column portion 1, finally the first column portion 1 fits more closely together with the pre-hole of the connecting portion 9 and of a busbar and simultaneously exerts a radially outwards force on the pre-hole, that is to say a pressure between the connecting rod and the connecting portion 9 and a busbar is greater now than when they begin to be assembled together, an increasing pressure thereof is good to reduce a temperature rising on a touching surface.
Thus, interference fit between elements, arrangement of resistivity and arrangement of thermal expansion coefficient are great good to reduce temperature rising on a joint of the connecting portion 9 and a busbar, these three mutually effect one another. Initial interference fit is a foundation for effects of resistivity and thermal expansion coefficient, and effects of resistivity and thermal expansion coefficient intensify the interference fit, finally a contact pressure of connecting part is enlarged.
Referring to
As to a manner of overlapping busbars, a conductive area of connecting part is
S1=L6×L5=(R+2R+R)×L5=4R×L5
As to a manner of using connecting rod, a conductive area of connecting part is
S2=2πR×L5
So,
S2: S1=2πR: 4R=π/2≈1.57
Therefore, using connecting rod can reach more conductive area, obviously, under a condition of meeting requirement of mechanical strength, increasing a diameter of the pre-hole and reducing a distance from periphery of the pre-hole to an edge of the busbar or of the output can reach much more conductive area.
Referring to
As to a manner of overlapping busbars, a conductive area of connecting part is
S1=L6×L5=(4R+3×2R)×L5=10R×L5
As to a manner of using connecting rod, a conductive area of connecting part is
S2=3×2πR×L5=6πR×L5
So,
S2: S1=6πR: 10R=3π/5≈1.884
Therefore, using connecting rod can reach more conductive area, obviously, under a condition of meeting requirement of mechanical strength, increasing a diameter of the pre-hole and reducing a distance from periphery of the pre-hole to an edge of the busbar or of the output can reach much more conductive area.
So the connecting rod of the invention has two positive effects, one is increasing a contact pressure, the other is greatly increasing a conductive area, reducing temperature rising on connecting parts benefits from these two positive effects, the aim of the invention is achieved.
Referring to
Three pre-holes for receiving the connecting rod are made to an end surface 5 of the connecting portion 9 along a length direction of the connecting portion 9 before the connecting rod is assembled to the connecting portion 9, a diameter of the pre-hole is slightly lesser than an outer diameter of the connecting rod so as to achieve a radial interference fit between the connecting rod and the pre-hole, a depth of the pre-hole is slightly greater than half of length of the connecting rod. After the pre-hole is made, half of the connecting rod inserts into the pre-hole wherein a first through hole 6 located at a middle portion of the connecting rod reaches to an end surface 5 of the connecting portion 9, a through hole for assembling a pin is made from a front surface 3 of the connecting portion 9, the through hole penetrates through the front surface 3 and a rear surface 4 of the connecting portion 9, and also penetrates through the connecting rod, an axis of the through hole intersects an axis of the connecting rod, the connecting portion 9 and the connecting rod are tightly connected together by the pin.
Three pre-holes for receiving the connecting rod are made to an end surface 5 of a busbar along a length direction of a busbar before a busbar is assembled to the connecting portion 9, a diameter of the pre-hole is slightly lesser than an outer diameter of the connecting rod so as to achieve a radial interference fit between the connecting rod and the pre-hole, a depth of the pre-hole is slightly greater than half of length of the connecting rod. After a pre-hole is made on a busbar, the pre-hole of a busbar sheathes on the connecting rod rising on the connecting portion 9 till an end surface 5 of a busbar fits with an end surface 5 of the connecting portion 9, then a through hole for assembling a pin is made from a front surface 3 of a busbar, the through hole penetrates through the front surface 3 and a rear surface 4 of a busbar, and also penetrates through the connecting rod, an axis of the through hole intersects an axis of the connecting rod, a busbar and the connecting rod are tightly connected together by the pin to finally achieve that a busbar and the connecting portion 9 are tightly connected together.
After the connecting portion 9 and a busbar are butt-and-butt connected, there is an axial clearance fit between the connecting rod and the pre-hole, this is good for fitting between end surface of the connecting portion 9 and end surface of a busbar. There is a chamfer convenient for assembling located at a head portion of a pre-hole. There is an interference fit between the pin and the hole. An axial movement between the connecting portion 9 and a busbar is limited after the pin is positioned, finally the connecting portion 9, the connecting rod, the busbar and the pin these four are be tightly connected together.
Referring to
Referring to
Air in the pre-hole of the connecting portion 9 freely flows out via the second through hole 7 due to such arrangement of through hole 6,7 during the connecting rod inserts into the pre-hole of the connecting portion 9, so the connecting rod is conveniently positioned. Air in the pre-hole of a busbar freely flows out from the first through hole 6 via the second through hole 7 due to such arrangement of through hole 6,7 during a busbar is assembled to the connecting rod that is already assembled to the first busbar, so a busbar is conveniently positioned.
The material of the first column portion 1 in embodiment 1 is replaced by a copper alloy, and the material of the second column portion 2 in embodiment 1 is replaced by an aluminum alloy. Since a hardness of alloy is relatively high, the second column portion 2 is kept in a low temperature (5° C.) for a period of time (5 minutes), and the first column portion 1 is kept in a high temperature (80° C.) for a period of time (5 minutes), an inner diameter of the first column portion 1 is slightly increased and an outer diameter of the second column portion 2 is slightly reduced due to thermal expansion and contraction so as to conveniently assemble the second column portion 2 into the first column portion 1, when a temperature of assembled connecting rod returns to a normal temperature, an interference fit is formed between the first 1 and second 2 column portion. There are several different kinds of diameters and lengths of the connecting rod so as to meet different size of busbars or different size of the connecting portions 9.
Number | Date | Country | Kind |
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2016103520134 | May 2016 | CN | national |
This application is a continuation-in-part of U.S. patent application Ser. No. 16/442,478, filed Jun. 15, 2019, which is a continuation of U.S. patent application Ser. No. 15/920,472, filed Mar. 14, 2018, which is a continuation of U.S. patent application Ser. No. 15/602,146, filed May 23, 2017, which claimed priority to China Patent Application No. 2016103520134, filed May 24, 2016, the entire content of related applications are hereby incorporated by reference.
Number | Date | Country | |
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Parent | 15920472 | Mar 2018 | US |
Child | 16442478 | US | |
Parent | 15602146 | May 2017 | US |
Child | 15920472 | US |
Number | Date | Country | |
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Parent | 16442478 | Jun 2019 | US |
Child | 16983032 | US |