IP Library › Granted Patent US 10,930,460
Granted Patent B2
US 10,930,460 · App. 16/275,356 · Granted Feb 23, 2021

Relay structure with heat dissipation function

Inventor: Sung-Jen Wu (New Taipei, TW)
Assignee: SONG CHUAN PRECISION CO., LTD.
H01H50/12H01H50/02H01H50/14H01H50/36
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Quick Facts
Patent No.
US 10,930,460
App. No.
16/275,356
Granted
Feb 23, 2021
Kind
B2
Abstract

A relay structure with a heat dissipation function includes fixed metal plates, at least one movable metal assembly, and at least one electromagnetic unit. Each fixed metal plate is connected to a polymeric heat conductor. A tracking resistant plate is provided between the fixed metal plates. The tracking resistant plate is connected to the polymeric heat conductor for blocking a tracking occurred between the polymeric heat conductor and the fixed metal plates. The movable metal assembly is disposed at one side of the metal fixed plats. The movable metal assembly has movable contacts. The electromagnetic unit is disposed at one side of the movable metal assembly.

Claims (11)

1. A relay structure with a heat dissipation function, comprising:

a plurality of fixed metal plates, each connected to a polymeric heat conductor, at least one tracking resistant plate being provided between any two of the plurality of fixed metal plates, the tracking resistant plate being connected to the polymeric heat conductor for blocking a tracking occurred between the polymeric heat conductor and any two of the plurality of fixed metal plates;

at least one movable metal assembly, disposed at one side of the metal fixed plats, the movable metal assembly having a plurality of movable contacts; and

and at least one electromagnetic unit, disposed at one side of the movable metal assembly; wherein an electromagnetic effect formed by the electromagnetic unit after electrified drives the movable metal assembly to move the plurality of fixed metal plates and the plurality of movable contacts to be in a closed or open state, thereby forming an electrical connection or disconnection.

2. The relay structure as claimed in claim 1 , wherein each of the plurality of fixed metal plates is adhered to the polymeric heat conductor, each of the plurality of fixed metal plates has a front heat convection portion, a middle heat conduction portion, and a terminal heat radiation portion; the front heat convection portion is connected to the polymeric heat conductor, the front heat convection portion forms an electric arc high-temperature forming region and a convective heat dissipation region relative to the movable metal assembly, the electric arc high-temperature forming region is opposite to the convective heat dissipation region, the convective heat dissipation region is exposed, a heat convection space is formed between the convective heat dissipation region and an outer surface of the polymeric heat conductor; the middle heat conduction portion is formed by extending and bending the front heat convection portion, the terminal heat radiation portion is formed by extending the middle heat conduction portion, a first end of the terminal heat radiation portion, opposite to a second end connected to the middle heat conduction portion, extends out of the polymeric heat conductor; thermal energy of the electric arc high-temperature forming region is dissipated through the convective heat dissipation region and the heat convection space in a convective manner, thermal energy is further conducted to the polymeric thermal conductor through the middle heat conduction portion to be dissipated in a heat conduction manner, and thermal energy is further radiated through the terminal radiation portion.

3. The relay structure as claimed in claim 2 , wherein the first end of the terminal heat radiation portion, opposite to the second end connected to the middle heat conduction portion, is extended and bent to form an extension portion, so that the plurality of fixed metal plates each have a U shape.

4. The relay structure as claimed in claim 3 , wherein the terminal heat radiation portion is formed by extending and bending the middle heat conduction portion, and the middle heat conduction portion is disposed at a non-right angle with respect to the front heat convection portions and the terminal heat radiation portion.

5. The relay structure as claimed in claim 2 , further comprising a plurality of magnetic members, the magnetic members are disposed at opposite sides of the movable metal assembly and the electric arc high-temperature forming regions, or around the movable metal assembly and the electric arc high-temperature forming regions.

6. The relay structure as claimed in claim 5 , wherein every adjacent two of the magnetic members are opposite poles.

7. The relay structure as claimed in claim 1 , wherein a bottom side of the polymeric heat conductor is provided with a slotted body for the polymeric heat conductor to form a closed space with the plurality of fixed metal plates and the plurality of movable contacts so as to block an electric arc generated when the plurality of fixed metal plates are electrically connected to the plurality of movable contacts.

8. The relay structure as claimed in claim 1 , wherein the tracking resistant plate comes in plural quantities, an air gap is formed between any two of the tracking resistant plates for blocking a tracking occurred between any two of the plurality of fixed metal plates.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 15, 2019
From: WU, SUNG-JEN
To: SONG CHUAN PRECISION CO., LTD.
Reel/Frame 048340/0639 →
Continuity (1)
Related Publication 20200266017A1 · Aug 20, 2020