Damped gateway device
Technical Field
The utility model belongs to the technical field of protection gateway device, concretely relates to absorbing gateway device.
Background
Today of science and technology rapid development, the network makes all kinds of product information transparentization, and shopping on the net can not only save time and energy, can save people's spending more, brings very big facility for the life.
The gateway device is also called an internetwork connector and is a network gateway which people must connect when surfing the internet, but the traditional gateway device has no good effect on heat dissipation and dust removal, and cannot well deal with external impact, so that parts in the gateway device are damaged, and economic loss is caused.
In order to reduce the damage of the vibration to the gateway device, a sucker is arranged at the bottom end of part of the gateway device, so that the gateway device can be adsorbed at a high position.
Therefore, how to absorb shock of the gateway device at the time of collision is a problem to be solved at present.
SUMMERY OF THE UTILITY MODEL
Utility model purpose: a shock absorbing gateway device is provided to solve the above problems of the prior art.
The technical scheme is as follows: a shock absorbing gateway device comprising:
the frame comprises a frame body and a sucker fixedly connected with the lower surface of the frame body;
the shock absorption mechanism comprises a shock absorption pad fixedly connected with the inner surface of the frame, a first shock absorption assembly fixedly connected with the frame and a second shock absorption assembly fixedly connected with the first shock absorption assembly;
the dustproof mechanism comprises a slide rail arranged in the frame and a dustproof assembly in sliding connection with the slide rail;
the heat dissipation assembly comprises heat dissipation holes arranged on the frame and a heat dissipation fan fixedly arranged on the frame.
In a further embodiment, the first damping assembly comprises an upper damping plate fixedly connected with the upper surface of the frame, damping springs symmetrically arranged at two ends of the upper damping plate, and a lower damping plate fixedly connected with the other end of each damping spring, and the damping effect is achieved by compressing the damping springs.
In a further embodiment, the second damping component comprises a sliding block which is symmetrically arranged on the lower damping plate and is in sliding connection with the lower damping plate, a horizontal damping spring which is sleeved on the lower damping plate and is fixedly connected with the sliding block, a supporting rod which is fixedly connected with the sliding block, and an upper damping plate which is fixedly connected with the other end of the supporting rod, wherein the supporting plate extrudes the horizontal damping spring which is fixedly connected with the sliding block, so that the impact force is offset, and the purpose of damping is achieved.
In a further embodiment, the dustproof assembly comprises a filter plate slidably connected with the slide rail, and a filter screen arranged on the filter plate, and the filter screen is installed to prevent dust from entering the interior of the gateway device, so as to protect the gateway device.
In a further embodiment, a pair of expansion plates are arranged on two sides of the filter plate, and a control device is fixedly arranged at the top end of the filter plate, so that the filter plate can be fixed in the gateway device and cannot easily fall off.
In a further embodiment, the filter screen corresponds to the position of the heat dissipation hole, so that heat can flow out of the heat dissipation hole, and dust can not enter the inside of the gateway device from the heat dissipation hole.
In a further embodiment, the control device is linearly connected with the expansion plate, and the filter plate can be disassembled and assembled under the control of the control device, so that the filter plate can be cleaned, and the heat dissipation performance and the internal cleanness of the gateway device are ensured.
Has the advantages that: the utility model relates to a shock-absorbing gateway device, a shock-absorbing mechanism is arranged in the gateway device, when external pressure presses an upper shock-absorbing plate, the upper shock-absorbing plate presses a shock-absorbing spring and a support rod, and then the shock-absorbing spring is compressed, and further partial pressure is counteracted, simultaneously a support plate presses a slide block, so that the position of the slide block moves, and further the slide block presses a horizontal shock-absorbing spring, and further the extrusion force is counteracted, thereby achieving the shock-absorbing effect, simultaneously a dustproof mechanism is also arranged in the gateway device, the interior of the gateway device can be prevented from dust, a slide rail is arranged on a frame, and a control device and a retractable plate are arranged on the filter plate, so that the filter plate can be ensured to be fixed in the gateway device, and when the gateway device is used for a long time, the filter plate can be disassembled for cleaning, the maintenance work of the, and radiating assemblies such as radiating holes and radiating fans are further arranged inside the gateway device, so that the stability of the temperature inside the gateway device is ensured.
Drawings
Fig. 1 is a perspective view of the present invention.
Fig. 2 is a schematic view of the middle damping mechanism of the present invention.
Fig. 3 is a schematic view of the middle dust-proof mechanism of the present invention.
The figures are numbered: the vibration-damping device comprises a frame 1, a sucker 2, a vibration-damping mechanism 3, an upper vibration-damping plate 301, a vibration-damping spring 302, a horizontal vibration-damping spring 303, a supporting rod 304, a lower vibration-damping plate 305, a sliding block 306, a cooling fan 4, a vibration-damping pad 5, a dust-proof mechanism 6, a telescopic plate 601, a control device 602, a filter screen 603, a cooling hole 604, a sliding rail 605 and a filter plate 606.
Detailed Description
In the following description, numerous specific details are set forth in order to provide a more thorough understanding of the present invention. It will be apparent, however, to one skilled in the art, that the present invention may be practiced without one or more of these specific details. In other instances, well-known features have not been described in order to avoid obscuring the present invention.
In the description of the present invention, it should be noted that the terms "center", "upper", "lower", "left", "right", "vertical", "horizontal", "inner", "outer", and the like indicate orientations or positional relationships based on the orientations or positional relationships shown in the drawings, and are only for convenience of description and simplification of description, but do not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and thus, should not be construed as limiting the present invention. Furthermore, the terms "first," "second," and "third" are used for descriptive purposes only and are not to be construed as indicating or implying relative importance.
A shock absorbing gateway device comprising: the vibration-damping device comprises a frame 1, a sucker 2, a vibration-damping mechanism 3, an upper vibration-damping plate 301, a vibration-damping spring 302, a horizontal vibration-damping spring 303, a supporting rod 304, a lower vibration-damping plate 305, a sliding block 306, a cooling fan 4, a vibration-damping pad 5, a dust-proof mechanism 6, a telescopic plate 601, a control device 602, a filter screen 603, a cooling hole 604, a sliding rail 605 and a filter plate 606.
The sucking disc 2 is fixedly connected with the frame 1, the damping mechanism 3 comprises a damping pad 5 fixedly mounted on the inner surface of the frame 1, a first damping component fixedly arranged on the frame 1, and a second damping component fixedly mounted on the first damping component, the dustproof mechanism 6 comprises a sliding rail 605 fixedly connected inside the frame 1, and a dustproof component located on the sliding rail 605 and slidably connected with the sliding rail 605, and the radiating component comprises a radiating fan 4 arranged on the frame 1. And heat dissipation holes 604 fixedly installed on the frame 1.
The first damping component comprises an upper damping plate 301 fixedly connected with the upper surface of the frame 1, the damping springs 302 at two ends of the upper damping plate 301 are symmetrically arranged, the lower damping plate 305 fixedly connected with the other end of the damping spring 302 is compressed by the damping spring 302, and a damping effect is achieved.
The second damping component comprises sliding blocks 306 symmetrically arranged on the lower damping plate 305 and slidably connected with the lower damping plate 305, horizontal damping springs 303 sleeved on the lower damping plate 305 and fixedly connected with the sliding blocks 306, supporting rods 304 fixedly connected with the sliding blocks 306, and an upper damping plate 301 fixedly coupled to the other end of the support rod 304, and when the upper damping plate 301 is pressed by an external pressure, and the upper damping plate 301 moves downward, and the upper damping plate 301 moving downward presses the supporting rod 304, and the support bar 304 moves downward, and the downwardly displaced support bar 304 presses the slider 306, the slider 306, which moves further, presses the horizontal damping spring 303, and the horizontal damping spring 303 is deformed, and then produce the elasticity opposite with the extrusion force, and then offset external extrusion force, and then reach the shock attenuation effect to the gateway device, and then reach the purpose of protection gateway device internals.
The dustproof assembly comprises a filter plate 606 fixedly connected with the filter screen 603 and a slide rail 605 slidably connected with the filter plate 606.
The filter screen 603 corresponds to the heat dissipation hole 604, so that dust is prevented from entering the inside of the gateway device through the heat dissipation hole 604.
The expansion plate 601 is linearly connected with the control equipment 602, and has a simple structure and is convenient to control.
Description of the working principle: by compressing the damping spring 302, the damping effect is achieved, when the upper damping plate 301 is pressed by the external pressure, the upper damping plate 301 displaces downward, the upper pressure reducing plate moving downward presses the damping spring 302, the damping spring 302 deforms, and the elastic potential energy generated by the compressed damping spring 302 to restore the original shape offsets the pressure of the upper damping plate 301, thereby reducing the pressing of the upper damping plate 301 on the internal parts of the gateway device, and further achieving the damping effect, when the upper damping plate 301 is pressed by the external pressure, the upper damping plate 301 moves downward, the upper damping plate 301 moving downward presses the supporting rod 304, and further the supporting rod 304 moves downward, and further the supporting rod 304 moving downward presses the sliding block 306, and further the moving sliding block 306 presses the horizontal damping spring 303, and further the horizontal damping spring 303 deforms, and further generates the elastic force opposite to the pressing force, and then offset external extrusion force, and then reach the shock attenuation effect to the gateway device, and then accomplish the shock attenuation work to the gateway device, after the network management device live time is too long, can be stained with a large amount of dust on the filter screen 603, control equipment 602 makes expansion plate 601 retract this moment, and then filter 606 can move along slide rail 605 direction, after taking off filter 606, and then clean filter screen 603 on the filter 606, after the cleaning work is accomplished, install filter 606 on the gateway device along slide rail 605 direction, start control equipment 602 simultaneously, and then make expansion plate 601 pop out, reach the effect of fixed filter 606, and then accomplish the cleaning work to filter 606, accomplish the cleaning work to the gateway device.
As mentioned above, although the present invention has been shown and described with reference to certain preferred embodiments, it should not be construed as limiting the invention itself. Various changes in form and detail may be made therein without departing from the spirit and scope of the invention as defined by the appended claims.