Dustproof mechanism of high-speed intelligent router box body
Technical Field
The invention belongs to the technical field of router auxiliary equipment, and particularly relates to a dustproof mechanism for a box body of a high-speed intelligent router.
Background
The router box body that uses in the past all is the vacancy on a certain plane, and the clearance between open and the router box body is too big and the space that the router exposes is too big, and outside dust or impurity accessible air flow get into or attach in the router to lead to the inside components and parts of router to accelerate ageing or break down.
Therefore, according to the technical problems, the invention provides a high-speed intelligent router box body dustproof mechanism capable of preventing dust and impurities and less part of water.
Disclosure of Invention
In order to solve the problems, the invention discloses a dustproof mechanism of a high-speed intelligent router box body, which can reduce exposed gaps and can radiate heat and observe a router indicator lamp through vertical insertion and finishing fitting installation.
In order to achieve the above purpose, the technical scheme of the invention is as follows:
A dustproof mechanism of a box body of a high-speed intelligent router comprises a box body; the box body is half open structure, box body open terminal surface integral type is connected with the box body extension arm, leave the carrier groove between two sets of box body extension arms and the positive terminal surface of box body, the inside router that holds in the palm through the direction carrier piece that carries of carrier groove, the terminal surface is hugged closely to the terminal surface of box body inboard in the router, the radiator unit is installed to the positive terminal surface inboard of box body.
Further, the guide carrier comprises a wing plate and a foot pad, the wing plate is of a ninety-degree bending plate structure, the foot pad is integrally connected with the root of the vertically unfolded wing plate, and the foot pad is in lifting contact with the root end surface of the router.
Still further, the pterygoid lamina bottom terminal surface and the pulley sliding contact of horizontal expansion, the pulley passes through the bearing and installs in the countersunk head inslot, the countersunk head inslot is seted up in the pterygoid lamina slot, the inboard middle section at the box body extension arm is seted up to pterygoid lamina slot level.
Furthermore, a semi-cylindrical expansion hole is reserved at the upper end of the wing plate slot, an expansion strip is inserted into the expansion hole, and the bottom end face of the expansion strip is in expansion contact with the upper end face of the wing plate.
Furthermore, the bottom of the extending arm of the box body is integrally connected with a base plate, a nail groove is formed in the middle section of the base plate, and a screw inserted in the nail groove is fastened and butted with the wall surface.
Still further, the radiating component comprises a heat collecting plate and radiating holes, the radiating holes are uniformly formed in the front end face of the box body, the radiating holes are opposite to the heat collecting plate, the cross section of the heat collecting plate is of a convex structure, and the slope surfaces of the two lower layers of the two sides of the heat collecting plate are fixedly connected with the mounting cross beam at the bottom of the box body.
Furthermore, the front end face of the box body is provided with a carrying frame along the bottom of the radiating hole, visual glass is filled in the carrying frame, and the carrying frame is opposite to the router indicator lamp.
The beneficial effects of the invention are as follows:
Compared with the prior art, the invention adopts a structure which can be vertically inserted and assembled in a fitting way and is matched with vertical guide installation in a longitudinal direction, so that the technical problem that the space occupied by a room or an office is occupied by horizontal arrangement in the past is solved, and the installation difficulty can be reduced. The built-in heat conduction type heat dissipation structure solves the technical problem of low-efficiency heat dissipation rate caused by oversealing. The visual glass window that pilot lamp reserved can solve in the past trompil observe the pilot lamp and lead to the dust to get into the inside technical problem of box body along the cavity.
Drawings
Fig. 1 is a schematic structural diagram of a dustproof mechanism of a high-speed intelligent router box body.
Fig. 2 is a schematic structural view of a wing plate of a dustproof mechanism of a box body of a high-speed intelligent router.
Fig. 3 is a schematic structural view of an extension arm of a dustproof mechanism of a high-speed intelligent router box according to the present invention.
Fig. 4 is a schematic structural diagram of an energy collecting plate of a dustproof mechanism of a box body of a high-speed intelligent router.
List of drawing identifiers:
1 is a box body, 2 is visual glass, 3 is a carrying frame, 4 is a heat dissipation hole, 5 is a box body extension arm, 6 is a base plate, 7 is an insertion auxiliary mechanism, 8 is an energy collecting plate, 9 is a carrying groove, 10 is a wing plate slot, 11 is a nail slot, 12 is a wing plate, 13 is an expansion strip, 15 is a pulley, 16 is a countersunk slot, 17 is a bearing, and 18 is an expansion wedge block;
8-1 is a boss, 8-2 is a mounting cross beam, 8-3 is a reserved area, and 12-1 is a foot pad.
Detailed Description
The present invention is further illustrated in the following drawings and detailed description, which are to be understood as being merely illustrative of the invention and not limiting the scope of the invention.
As shown in fig. 1,2,3 and 4, a dustproof mechanism for a high-speed intelligent router box body comprises a box body; the box body is half open structure, box body 1 open terminal surface integral type is connected with box body extension arm 5, leave between the terminal surface just of two sets of box body extension arms 5 and box body 1 and carry groove 9, carry groove 9 inside to hold in the palm through the direction carrier and be equipped with the router, the terminal surface is just hugged closely box body 1 inboard terminal surface to the router, the radiating component is installed to box body 1 just terminal surface inboard. Wherein, the box body 1 of half open structure can practice thrift local manufacturing cost, and usable open tip and wall laminating assembly simultaneously avoid the plane area too big to lead to the butt joint structure not steady enough. And the box body extension arm 5 with the open end surface and the carrier groove 9 reserved by the box body 1 can be inserted and assembled into a router with the matched size and thickness through a guide carrier. The guide carrier is a second carrier that can be guided vertically and lifted outside the router box 1. Meanwhile, the heat dissipation assembly installed in the interlayer inside the box body 1 can be matched with the box body 1 with higher sealing degree to complete a heat dissipation process by matching with the router.
As shown in fig. 1,2,3 and 4, the guide carrier comprises a wing plate 12 and a foot pad 12-1, the wing plate 12 is in a ninety-degree bending plate structure, the foot pad 12-1 is integrally connected with the root of the vertically-unfolded wing plate 12, and the foot pad 12-1 and the root end of the router are in a lifting contact state. Wherein, the guiding carrier serving as the second lifting carrier consists of a wing plate 12 and a foot pad 12-1. The wing plate 12 is an angle steel-shaped mounting structure, and the material of the wing plate can be made of high-hardness plastic materials. While the foot 12-1 at the root of the wing 12 is sufficient to make and stretch the router.
As shown in fig. 1,2, 3 and 4, the bottom end surface of the horizontally unfolded wing plate 12 is in sliding contact with a pulley 15, the pulley 15 is installed in a countersunk groove 16 through a bearing 17, the countersunk groove 16 is arranged in a wing plate slot 10, and the wing plate slot 10 is horizontally arranged in the middle section of the inner side of the box body extension arm 5. Wherein the wing plate 12 can conduct guiding movement along the pulley 15 arranged in the wing plate slot 10. The provision of the countersunk grooves 16 provides space for the installation and passive rotation of the pulleys 15 during guiding.
As shown in fig. 1,2,3 and 4, a semi-cylindrical expansion hole is reserved at the upper end of the wing plate slot 10, an expansion strip 13 is inserted into the expansion hole, and the bottom end surface of the expansion strip 13 is in expansion contact with the upper end surface of the wing plate 12. Wherein, the semi-cylindrical expansion hole can be matched with the semi-cylindrical jack reserved by the wing plate slot 10 in fig. 1 to complete the packaging process. By inserting the expansion strip 13, the friction force between the wing plate 12 and the expansion strip 13 and the inner wall of the box body extension arm 5 can be increased, so that dust is prevented from being polluted because the top of the router is exposed by external force or vibration.
As shown in fig. 1, 2, 3 and 4, the bottom of the extending arm 5 of the box body is integrally connected with a base plate 6, a nail slot 11 is formed in the middle section of the base plate 6, and a screw inserted into the nail slot 11 is fastened and butted with the wall surface. Wherein, the backing plate 6 that box extension arm 5 integral type is connected can cooperate screw fixed connection on wall or other plane plates.
As shown in fig. 1,2, 3 and 4, the heat dissipation assembly comprises an energy collecting plate 8 and heat dissipation holes 4, the heat dissipation holes 4 are uniformly formed in the front end face of the box body 1, the heat dissipation holes 4 are opposite to the energy collecting plate 8, the cross section of the energy collecting plate 8 is in a convex structure, and the slope surfaces of two lower layers on two sides of the energy collecting plate 8 are fixedly connected with a beam 8-2 arranged at the bottom of the box body 1. Wherein, the energy collecting plate 8 is matched with the heat dissipation holes 4 to dissipate heat conducted by the router. While at the same time avoiding the router being exposed to the air along the heat sink 4.
As shown in fig. 1, fig. 2, fig. 3 and fig. 4, a carrying frame 3 is provided along the bottom of the heat dissipation hole 4 on the front end surface of the box body 1, the carrying frame 3 is filled with visible glass 2, and the carrying frame 3 is opposite to the router indicator lamp.
It should be noted that the foregoing merely illustrates the technical idea of the present invention and is not intended to limit the scope of the present invention, and that a person skilled in the art may make several improvements and modifications without departing from the principles of the present invention, which fall within the scope of the claims of the present invention.