A kind of anti-electromagnetic radiation green functional wooden door
An anti-electromagnetic radiation and green technology, applied in the field of wooden doors, can solve problems such as electromagnetic leakage, achieve reasonable weight, improve electromagnetic wave shielding effect, and reduce overall weight
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Embodiment 1
[0020] Please refer to figure 1 , an anti-electromagnetic radiation green functional wooden door, which is composed of an inner wooden material layer 1, an outer wooden material layer 2 and a middle conductive layer 3, wherein the inner wooden material layer 1, the outer wooden material layer 2 and the middle conductive layer A layer of metal fiber mesh 6 is provided at the junction of the layers 3, a conductive connector 4 is provided at the joint between the middle conductive layer 3 and the door frame 5, and a sensor 7 is provided in the door frame for sensing and automatically controlling the conductive connector 4, so as to carry out automatic conduction control, when the door is opened, the sensor cannot detect the conductive connector 4, and the conductive connector 4 does not work.
[0021] Wherein, the inner wood material layer 1 is made of radiata pine, and the outer wood material layer 2 is made of red pine; the metal fiber mesh 6 is made of copper fiber.
[0022] ...
Embodiment 2
[0025] Please refer to figure 1 , an anti-electromagnetic radiation green functional wooden door, which is composed of an inner wooden material layer 1, an outer wooden material layer 2 and a middle conductive layer 3, wherein the inner wooden material layer 1, the outer wooden material layer 2 and the middle conductive layer A layer of metal fiber mesh 6 is provided at the junction of the layers 3, a conductive connector 4 is provided at the joint between the middle conductive layer 3 and the door frame 5, and a sensor 7 is provided in the door frame for sensing and automatically controlling the conductive connector 4, so as to carry out automatic conduction control, when the door is opened, the sensor cannot detect the conductive connector 4, and the conductive connector 4 does not work.
[0026] Wherein, the inner wood material layer 1 is made of radiata pine, and the outer wood material layer 2 is made of red pine; the metal fiber mesh 6 is made of copper fiber.
[0027] ...
Embodiment 3
[0030] Please refer to figure 1 , an anti-electromagnetic radiation green functional wooden door, which is composed of an inner wooden material layer 1, an outer wooden material layer 2 and a middle conductive layer 3, wherein the inner wooden material layer 1, the outer wooden material layer 2 and the middle conductive layer A layer of metal fiber mesh 6 is provided at the junction of the layers 3, a conductive connector 4 is provided at the joint between the middle conductive layer 3 and the door frame 5, and a sensor 7 is provided in the door frame for sensing and automatically controlling the conductive connector 4, so as to carry out automatic conduction control, when the door is opened, the sensor cannot detect the conductive connector 4, and the conductive connector 4 does not work.
[0031] Wherein, the inner wood material layer 1 is made of radiata pine, and the outer wood material layer 2 is made of red pine; the metal fiber mesh 6 is made of copper fiber.
[0032] ...
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