MULTIFUNCTIONAL CAPACITIVE-TYPE SLEEVE WITH VACUUM ARC-EXTINGUISHING CHAMBER
20180301304 ยท 2018-10-18
Assignee
Inventors
Cpc classification
H01H33/66207
ELECTRICITY
H01H33/66261
ELECTRICITY
International classification
Abstract
A multifunctional capacitive-type sleeve with a vacuum arc-extinguishing chamber comprises a sleeve insulation core covered outside the vacuum arc-extinguishing chamber, wherein one ends of two connection terminals are respectively led out from the two ends of the sleeve insulation core, and the other ends of the two connection terminals can be contacted and separated in the vacuum arc-extinguishing chamber to switch on and off a circuit. The multifunctional capacitive-type sleeve with a vacuum arc-extinguishing chamber according to the present invention not only has the function of a sleeve, but also has the function of a disconnector, the sleeve insulation core is internally provided with a vacuum arc-extinguishing chamber to switch on and off the circuit, which can simplify structures of a high-voltage switch and a control cabinet, reduce the device volume, and decrease the device cost.
Claims
1. A multifunctional capacitive-type sleeve with a vacuum arc-extinguishing chamber, comprising a capacitive-type sleeve insulation core covered outside the vacuum arc-extinguishing chamber, wherein one ends of two connection terminals are respectively led out from the two ends of the sleeve insulation core, and the other ends of the two connection terminals can be contacted and separated in the vacuum arc-extinguishing chamber to switch on and off a circuit.
2. The multifunctional capacitive-type sleeve with a vacuum arc-extinguishing chamber according to claim 1, wherein one or more capacitive screen group composed of a plurality of coaxial capacitive screens alternatively arranged with an insulating layer is embedded in the sleeve insulation core , and the outermost capacitive screen is an earthing screen.
3. The multifunctional capacitive-type sleeve with a vacuum arc-extinguishing chamber according to claim 2, wherein the capacitive screen group comprises main capacitive screens forming a main capacitor, voltage-dividing capacitive screens forming a voltage-dividing capacitor and shielding capacitive screens forming a shielding capacitor; and the main capacitor and the voltage-dividing capacitor are connected in series to form a capacitive voltage divider for providing voltage signal output, and the shielding capacitor plays a role of shielding and protecting.
4. The multifunctional capacitive-type sleeve with a vacuum arc-extinguishing chamber according to claim 2, wherein two capacitive screen groups are embedded in the sleeve insulation core, the two capacitive screen groups are respectively arranged at the two ends of the sleeve insulation core, and the earthing screens of the two capacitive screen groups are connected.
5. The multifunctional capacitive-type sleeve with a vacuum arc-extinguishing chamber according to claim 4, wherein the plurality of coaxial capacitive screens of each capacitive screen group are arranged in a manner of ladder-like deviation from inside to outside gradually along an axial direction from one end of the sleeve insulation core to a middle part provided with the vacuum arc-extinguishing chamber.
6. The multifunctional capacitive-type sleeve with a vacuum arc-extinguishing chamber according to claim 4, wherein the vacuum arc-extinguishing chamber is arranged in the middle part in the chamber of the sleeve insulation core, the two ends of the vacuum arc-extinguishing chamber are provided with an arc-extinguishing chamber flange, the two capacitive screen groups are respectively embedded at the positions in the two ends of the sleeve insulation core surrounding the two arc-extinguishing chamber flanges, and each capacitive screen in each capacitive screen group surrounds one corresponding arc-extinguishing chamber flange.
7. The multifunctional capacitive-type sleeve with a vacuum arc-extinguishing chamber according to claim 4, wherein the two capacitive screen groups in the sleeve insulation core respectively form the main capacitor, the voltage-dividing capacitor and the shielding capacitor, the main capacitor and the voltage-dividing capacitor are connected in series to form the capacitive voltage divider for providing voltage signal output, and the shielding capacitor plays a role of shielding and protecting; wherein both the two ends of the main capacitor after in series connection with the voltage-dividing capacitor of one capacitive screen group, and the two ends of the shielding capacitor of one capacitive screen group are respectively connected to the connection terminal at end of the multifunctional capacitive-type sleeve and an earth potential; both the two ends of the main capacitor after in series connection with the a voltage-dividing capacitor of the other capacitive screen group, and the two ends of the shielding capacitor of the other capacitive screen group are respectively connected to the connection terminal at the other end of the multifunctional capacitive-type sleeve and the earth potential; and a current transformer secondary coil is sleeved in the scope of the earthing screen of the two capacitive screen groups outside the the sleeve insulation core.
8. The multifunctional capacitive-type sleeve with a vacuum arc-extinguishing chamber according to claims 1, wherein an insulating umbrella skirt is further sleeved outside the sleeve insulation core, and both the two ends of the sleeve insulation core are provided with a voltage-sharing flange.
9. The multifunctional capacitive-type sleeve with a vacuum arc-extinguishing chamber according to claims 1, wherein one or more current transformer secondary coils are further sleeved outside the sleeve insulation core.
10. The multifunctional capacitive-type sleeve with a vacuum arc-extinguishing chamber according to claim 7, wherein the vacuum arc-extinguishing chamber is arranged in the middle part in the chamber of the sleeve insulation core, the two ends of the vacuum arc-extinguishing chamber are provided with the arc-extinguishing chamber flange, the two capacitive screen groups are respectively embedded at the positions in the two ends of the sleeve insulation core surrounding the two arc-extinguishing chamber flanges, each capacitive screen in each capacitive screen group surrounds one corresponding arc-extinguishing chamber flange, and the plurality of coaxial capacitive screens of each capacitive screen group are arranged in a manner of ladder-like deviation from inside to outside gradually along the axial direction from one end of the sleeve insulation core to the middle part provided with the vacuum arc-extinguishing chamber; and the current transformer secondary coil is sleeved outside the sleeve insulation core at the position corresponding to the vacuum arc-extinguishing chamber, two insulating umbrella skirts are respectively sleeved at the two ends outside the sleeve insulation core, and both the two ends of the sleeve insulation core are provided with a voltage-sharing flange.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0016]
[0017]
[0018]
DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
[0019] The detailed description of the preferred embodiments of the multifunctional capacitive-type sleeve with a vacuum arc-extinguishing chamber according to the present invention is further described with reference to the embodiments as shown in
[0020] As shown in
[0021] The multifunctional capacitive-type sleeve with a vacuum arc-extinguishing chamber according to the present invention not only has the function of a sleeve, but also has the function of a disconnector, the sleeve insulation core is internally provided with a vacuum arc-extinguishing chamber to switch on and off the circuit, which can simplify structures of a high-voltage switch and a control cabinet, reduce the device volume, and decrease the device cost. The vacuum arc-extinguishing chamber is arranged in the sleeve with a capactive screen structure, the connection terminals are installed in two ends, and the function of the disconnector is realized through the insulating pull rod and the operating mechanism; two ends of the sleeve are provided with the flange to improve the electric field at two ends of the sleeve; the main capacitor C1 and the voltage-dividing capacitor C2 are arranged to form the capacitive voltage divider to provide the voltage signal output to be used for measuring the voltage; the shielding capacitor C3 is arranged to guarantee the stability of the voltage measurement signal without being affected by external environment; and a secondary coil is installed in an earthing scope outside the sleeve, which is used for providing the functions of measurement of current signal and high-voltage electric energy taking.
[0022] As shown in
[0023] The two capactive screen groups 5 in the sleeve insulation core 4 respectively form the main capacitor C1, the voltage-dividing capacitor C2 and the shielding capacitor C3, the main capacitor C1 and the voltage-dividing capacitor C2 form the capacitive voltage divider, which is used for measuring the voltage, and the shielding capacitor C3 plays a role of shielding and protecting. As shown in
[0024] The sleeve with the vacuum arc-extinguishing chamber according to the present invention has simple structure, the sleeve with the structure of multiple sets of the capacitive screens is produced, the vacuum arc-extinguishing chamber is fixed in the sleeve, a capacitive and multifunctional capacitive-type sleeve with the function of the disconnector is obtained after installation of the current transformer, the insulating umbrella skirt, the voltage-sharing flange, the connection terminal and the insulating pull rod. The main capacitor C1 embedded in the sleeve insulation core 4 is composed of a set of coaxial cylindric metal or semi-conducting capacitive screens, and multiple cylindric capacitive screens or semi-conducting capacitive screens form the main capacitor C1 in series; the voltage-dividing capacitor C2 is a set of capacitive screens with larger electric capacity continuously rolled or laid outside the outermost capacitive screen; the shielding capacitor C3 is mutually insulating and mutually overlapped capacitive screen rolled or laid from the connection terminal to the earthing screen end while the main capacitor C1 and the voltage-dividing capacitor C2 are manufactured, and the capacitive screens forming the main capacitor C1, the voltage-dividing capacitor C2 and the shielding capacitor C3 are embedded in the sleeve insulation core 4, and are rolled and laid in sequence.
[0025] The contents above further describe the present invention in detail with reference to the specific preferred embodiments, but it cannot be deemed that the detailed embodiments of the present invention are limited to the description. Those skilled in the art of the present invention may make many simple deductions or replacements without departing from the concept of the present invention, which shall all fall within the protection scope of the present invention.