1. Field of the Invention
The invention relates to an attraction plate structure of electromagnetic doorlock, particularly to an attraction surface of the attraction plate being a convex-curve surface structure to form a curved internal stress.
2. Description of the Related Art
In the access control monitoring system, the use of an electromagnetic doorlock has been very popular. The electromagnetic doorlock 10 as shown in
The traditional attraction plate 12 as
This kind of structure of the attraction surface 121 is used for many years. After continuous research, the inventor found out that after the electric magnet 11 is energized, the magnetic flux density (B) is strong in the region of both ends, and the magnetic flux density (B) is weak in the middle region. Thus, as shown in
It is the main object of the present invention to provide an attraction plate structure of electromagnetic doorlock so that under the unchanged current of the electric magnet or unchanged attraction area between the electric magnet and attraction plate, the tension value is increased more than 10% to save energy and enhance the security access control.
In order to achieve the above objects, the attraction plate structure of electromagnetic doorlock comprises an electric magnet; an attraction plate in a long shape, having an attraction surface, the attraction surface arranged at a corresponding surface of the electric magnet, and the attraction plate positioned on a mounted body by a positioning assembly; wherein the attraction surface has an arch portion higher than the bottom plane of 0.04 mm to 0.27 mm at a central region thereof, and the arch portion extends towards both ends to form a curve surface, so that a convex-curve surface is formed with both ends lower than the central region;
Whereby when the attraction plate is attracted by the magnetic force produced by the electric magnet, the convex-curve surface is forced to deform for abutting the electric magnet; when the mounted body is pulled in an opposite direction of the electric magnet, the attraction plate under the tension of the positioning assembly overcomes the curved internal stress of the attraction plate to enhance the tensile value of the attraction plate.
Base on the features disclosed, the present invention uses the convex curve design of the attraction surface to produce the curved internal stress while the attraction plate is pulled. Due to the curved internal stress, the electric magnet under the normal current is able to enhance the tensile value of the electromagnetic doorlock, saving energy and enhancing the security access control.
With the referenced to
The structure design of the attraction plate 30 is the main feature of the present invention. With the reference to
With the reference to
The experiment proved that the height h of the convex-curve surface 33 between 0.04 mm˜0.27 mm can play a larger effect. If the height h of the convex-curve surface 33 is too high, the curved internal stress will be too large to offset the attraction force of the electric magnet 20, and then decrease the tensile force. From the material mechanics point of view, the attraction plate 30 is like a “”-shaped beam, and both ends are positions with stronger magnetic flux density B; thus, when the attraction plate 30 is pulled away from the electric magnet 20, the present invention not only overcomes the magnetic force of the electric magnet 20 but overcomes the curved internal stress S produced by the “
”-shaped attraction plate 30 as shown in
”-shaped attraction plate 30 in the middle, and this curved internal stress S just offsets the tensile force which has weak magnetic flux density B at the middle of the attraction plate 30. Accordingly, in the case of the constant input current of the electric magnet 20, the electromagnetic doorlock 60 of the present invention can increase the tension value by more than 10%.
In principle, as long as the positioning assembly 50 is able to pull the middle of the attraction plate 30, the type of the positioning assembly 50 is not a limitation. The mounted body 40 may include a box-like body, U-shaped body, L-shaped body, or flat body. The above components can also be embedded in the door, or the door is directly the mounted body 40. An applicable embodiment as shown in
In the embodiment, the mounted body 40 being a box-like body has a positioning hole 41 in a middle thereof, and the attraction plate 30 corresponding to the positioning hole 41 has a spot-faced hole 35, and the positioning assembly 50A is a countersunk bolt 50A engaging into the spot-faced hole 35 to fix the attraction plate 30 to the mounted body 40. The mounted body 40 further has a pad 42 arranged between the bottom of the attraction plate 30 and the mounted body 40.
To test and verify the effectiveness of the present invention, the inventor uses the attraction plate of 185 mm×61 mm×12 mm to conduct the tensile test. The following table shows the attraction plate after being energized of 500 mA current, and 12V voltage.
From the above test values, if the tensile position of attraction plate is set in the middle without the convex-curve surface 33 in the middle, the tensile value is about 1076 pounds. If the tensile position of attraction plate 30 is at the middle with the convex-curve surface 33 in the middle, there is no effect while the height h of the convex-curve surface 33 is within 0.04 mm; however, the tensile value is significantly increased between 0.04 mm to 0.27 mm.
The above test value uses the attraction plate of 185 mm×61 mm×12 mm; however, normal size of the attraction plate mostly has length from 180 to 200 mm, and thickness from 11 to 16 mm. Therefore, different attraction plate has different tensile value after test, but the corresponding increased rate of tensile value and the curve tendency diagram basically has little different. Thus, the attraction plate 30 under the same current, the tensile value of the electromagnetic doorlock is increased at least 10% to save energy and enhance the access control.
Although particular embodiments of the invention have been described in detail for purposes of illustration, various modifications and enhancements may be made without departing from the spirit and scope of the invention.
Accordingly, the invention is not to be limited except as by the appended claims.
Number | Date | Country | Kind |
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102105133 | Feb 2013 | TW | national |