An intelligent solar photovoltaic box-type substation
A box-type substation and photovoltaic box-type technology, applied in substation/switch layout details, electrical components, building locks, etc., can solve the problems of unreliable opening or locking and opening of the box door, and achieve flexible locking and opening process Reliable, prevents external force from directly opening the locking mechanism, and prolongs the service life
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Embodiment 1
[0038] like figure 1 , figure 2 , Figure 12 and Figure 13As shown, an intelligent solar photovoltaic box-type substation includes a box-type substation housing 10, a high-voltage component 20, a transformer component 30 and a low-voltage component 40, and the high-voltage component 20, the transformer component 30 and the low-voltage component 40 are arranged in a box-type In the substation shell 10; the box-type substation shell 10 is set to include a top wall 101, a base 102, a structural frame 103, a box door 104 and a locking mechanism 105, and the top wall 101 and the base 102 are connected by a structural frame 103 , the structural frame 103 divides the box-type substation shell 10 into a high-voltage room, a voltage-transforming room, and a low-voltage room, and the front surface of each room of the structural frame 103 is hinged with a box door 104, and a locking mechanism 105 is arranged in the box door 104 On the surface, and the locking mechanism 105 locks the...
Embodiment 2
[0041] like image 3 and Figure 4 As shown, the difference from Embodiment 1 is that, further, the locking mechanism 105 is configured as a horizontal locking assembly and a lock core 106, and the horizontal locking assembly and the lock core 106 are both arranged on the inner surface of the box door 104, and the horizontal locking The input end of the assembly is connected to the lock cylinder 106 , and the output end of the transverse locking assembly can be locked on the inner surface of the structural frame 103 to realize the opening and closing of the door 104 .
[0042] Specifically, the lock core 106 is arranged on the inner surface of the box door 104 through the rotating shaft 107, that is, the rotating shaft 107 is arranged on the inner surface of the box door 104 through a bearing to rotate, and the lock core 106 is fixed on the rotating shaft 107.
[0043] Further, the lateral locking assembly includes a locking housing one 1051, a guide block 1052, a lock dial 1...
Embodiment 3
[0048] like Figure 5 , Image 6 and Figure 11 As shown, the difference from Embodiment 1 and Embodiment 2 is that, further, the locking mechanism 105 is configured as a vertical locking assembly and a lock cylinder 106, and both the vertical locking assembly and the lock cylinder 106 are arranged in the box door 104. On the surface, the input end of the vertical lock assembly is connected to the lock cylinder 106 , and the output end of the vertical lock assembly can be locked on the base 102 to realize the opening and closing of the door 104 .
[0049] Further, the vertical locking assembly includes a guide seat 1056, a swing rod 1057, a connecting rod 1058 and an insertion rod 1059. The guide seat 1056 is fixed on the inner surface of the box door 104, and the guide seat 1056 is close to a side of the inner surface of the box door 104. Side is connected swing rod 1057 and lock cylinder 106 through rotating shaft 107 rotation, swing rod 1057 is away from one end of one en...
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