Equipment with high-performance safety isolation and information exchange system
Technical Field
The utility model belongs to the technical field of safety isolation and information exchange system, especially, relate to an equipment with high performance safety isolation and information exchange system.
Background
The safety isolation and information exchange system, namely the network gate, is a new generation of enterprise-level information safety protection equipment with high safety degree, and provides higher-level safety protection capability for an information network by relying on a safety isolation technology, so that the anti-attack capability of the information network is greatly enhanced, and the occurrence of information leakage events is effectively prevented.
The electronic elements which need to be powered and used are combined inside the network gate, and the electronic elements have self power consumption and power supply energy consumption in the using process, so that more working heat can be generated, the self heat dissipation effect of the network gate is poor, the network gate needs to be matched with an external working environment for cooling, the use stability of the network gate is poor, and the working performance is reduced.
To this end, we propose a device with a high-performance security isolation and information exchange system to solve the above problems.
SUMMERY OF THE UTILITY MODEL
The utility model aims at making the net floodgate self have stronger heat dissipation heat transfer ability, improved the stability and the performance that the net floodgate used, and the equipment that has high performance safety isolation and information exchange system that provides.
In order to realize the purpose, the utility model adopts the following technical scheme:
the utility model provides an equipment with high performance safety isolation and information exchange system, includes the gatekeeper organism, the equal fixed mounting panel that is equipped with in both sides of gatekeeper organism, the fixed installation pole that is equipped with two symmetries and sets up in the inner wall rear side of gatekeeper organism, two the fixed cover is equipped with jointly in the outside of installation pole places the board, the louvre has all been seted up to the both sides of gatekeeper organism, the louvre internal rotation is equipped with the bull stick, the fixed cover of pole wall of bull stick is equipped with the heat transfer board, the fixed cover of lower extreme of gatekeeper organism is equipped with the housing, the inner wall both sides of housing are all fixed and are equipped with the fixed plate, two be equipped with reciprocating mechanism between the fixed plate, be equipped with swing heat dissipation mechanism between the inside of housing and the bull stick.
Preferably, reciprocating mechanism includes motor, diaphragm and sector gear, the diaphragm slides and locates two inside the fixed plate, and the equal fixed cover in lateral wall both ends is equipped with the first tooth that a plurality of intervals set up, the bottom fixed connection of motor and net brake organism, and output end and sector gear fixed connection, the fixed second tooth that is equipped with a plurality of intervals and sets up of middle-end of diaphragm, second tooth and sector gear meshing set up, the both ends of diaphragm all are equipped with the spring, the both ends of spring respectively with fixed plate and diaphragm fixed connection.
Preferably, swing heat dissipation mechanism includes the circular gear, the rotation of housing inner wall bottom is equipped with the montant, the louvre is worn into and the fixed bevel gear that is equipped with of one end is close to mutually with the bull stick in the upper end of montant, two the bevel gear meshing sets up, the fixed cover of circular gear is located the lower extreme of montant and with first tooth meshing setting.
Preferably, both sides of the mesh gate machine body are fixedly provided with dust filtering covers, and the dust filtering covers are wrapped on the outer sides of the heat dissipation holes.
Preferably, a sliding hole matched with the transverse plate to slide is formed in the fixing plate.
Preferably, the bottom of the housing is provided with a plurality of vent holes.
Compared with the prior art, the utility model provides an equipment with high performance safety isolation and information exchange system possesses following beneficial effect:
1. this equipment with high performance safety isolation and information exchange system through the net floodgate organism, louvre, housing, fixed plate, bull stick, heat transfer board, reciprocating mechanism and the swing heat dissipation mechanism that is equipped with, can be in the net floodgate course of operation for the heat transfer board is at the incessant reciprocal swing of thermovent, can carry out the quick intersection flow to the gas of net floodgate organism inside and outside, improves heat dissipation and heat transfer effect, improves the stability in use and the performance of net floodgate.
2. This equipment with high performance safety isolation and information exchange system through louvre and the dust filter cover that is equipped with, when the louvre is opened the heat dissipation, avoids the dust to get into the screen panel inside as far as possible.
The part that does not relate to among the device all is the same with prior art or can adopt prior art to realize, the utility model discloses convenient operation for the gatekeeper self has stronger heat dissipation heat transfer ability, thereby cooperates ambient temperature's regulation, has effectively improved the stability and the performance that the gatekeeper used.
Drawings
Fig. 1 is a schematic structural diagram of an apparatus with a high performance security isolation and information exchange system according to the present invention;
fig. 2 is an enlarged view of a portion a of fig. 1.
In the figure: 1 net brake body, 2 mounting panels, 3 mounting bars, 4 placing plates, 5 rotating rods, 6 heat exchange plates, 7 cover shells, 8 fixing plates, 9 motors, 10 transverse plates, 11 sector gears, 12 first teeth, 13 second teeth, 14 springs, 15 circular gears, 16 vertical rods, 17 bevel gears and 18 dust filtering covers.
Detailed Description
The technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments.
In the description of the present invention, it should be understood that the terms "upper", "lower", "front", "rear", "left", "right", "top", "bottom", "inner", "outer", and the like indicate orientations or positional relationships based on orientations or positional relationships shown in the drawings, and are only for convenience of description and simplicity of description, but do not indicate or imply that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore, should not be construed as limiting the present invention.
Referring to fig. 1, an apparatus having a high performance security isolation and information exchange system includes a gatekeeper body 1, mounting plates 2 are fixedly disposed on both sides of the gatekeeper body 1, two symmetrically disposed mounting rods 3 are fixedly disposed on the rear side of the inner wall of the gatekeeper body 1, and a placing plate 4 is fixedly disposed on the outer side of the two mounting rods 3, so as to stably support an electronic component inside a mesh enclosure after being mounted.
As shown in fig. 1-2, heat dissipation holes are formed in both sides of the gatekeeper body 1, a rotating rod 5 is rotatably disposed in each heat dissipation hole, a heat exchange plate 6 is fixedly sleeved on a rod wall of the rotating rod 5, and each heat dissipation hole can be opened by the heat exchange plate 6 to allow heat to flow out.
As shown in fig. 1, the two sides of the gatekeeper body 1 are both fixedly provided with dust filter covers 18, the dust filter covers 18 wrap the outer sides of the heat dissipation holes, and external dust is prevented from entering the gatekeeper body 1 through the heat dissipation holes as much as possible to influence the stable operation of internal parts.
As shown in fig. 1, the fixed cover of lower extreme of net floodgate organism 1 is equipped with housing 7, the inner wall both sides of housing 7 are all fixed and are equipped with fixed plate 8, be equipped with reciprocating mechanism between two fixed plates 8, reciprocating mechanism includes motor 9, diaphragm 10 and sector gear 11, diaphragm 10 slides and locates inside two fixed plates 8, and the lateral wall both ends are all fixed the cover and are equipped with the first tooth 12 that a plurality of intervals set up, the gliding slide opening of cooperation diaphragm 10 has been seted up to the inside of fixed plate 8, diaphragm 10 can be in fixed plate 8 lateral sliding.
As shown in fig. 1, bottom fixed connection of motor 9 and net brake organism 1, and output end terminal and sector gear 11 fixed connection, the fixed second tooth 13 that is equipped with a plurality of intervals and sets up of middle-end of diaphragm 10, second tooth 13 sets up with the meshing of sector gear 11, the both ends of diaphragm 10 are all overlapped and are equipped with spring 14, the both ends of spring 14 respectively with fixed plate 8 and diaphragm 10 fixed connection, the meshing of accessible sector gear 11 and second tooth 13, and cooperate the tensile resilience of spring 14, make diaphragm 10 carry out reciprocating sliding.
As shown in fig. 1-2, a swinging heat dissipation mechanism is arranged between the inside of the housing 7 and the rotating rod 5, a plurality of ventilation holes are formed in the bottom of the housing 7, the swinging heat dissipation mechanism includes a circular gear 15, a vertical rod 16 is rotatably arranged at the bottom of the inner wall of the housing 7, a heat dissipation hole is penetrated into the upper end of the vertical rod 16, and a bevel gear 17 is fixedly arranged at one end close to the rotating rod 5, the two bevel gears 17 are meshed and arranged, the circular gear 15 is fixedly sleeved at the lower end of the vertical rod 16 and meshed and arranged with the first tooth 12, the transverse plate 10 can slide in a reciprocating manner while being meshed with the first tooth 12 through the circular gear 15, so that the vertical rod 15 rotates, and therefore, under the meshing of the two bevel gears 17, the rotating rod 5 drives the heat exchange plate 6 to perform reciprocating air blowing, and heat exchange and heat dissipation are conveniently performed by flowing out of the heat inside the mesh gate machine body 1.
The utility model discloses in, at the net brake during operation, carry out the stabilizing support through placing board 4 to electrical components's installation, motor 9 and net brake organism 1 synchronous start simultaneously, make sector gear 11 continuously rotate, through sector gear 11 and a plurality of second tooth 13's intermittent type meshing, and cooperation spring 14 drives the extrusion resilience of diaphragm 10, make diaphragm 10 drive the first tooth 12 in both sides and carry out horizontal reciprocating sliding, and through the positive and negative meshing transmission of round gear 15 with first tooth 12, make 16 reciprocal rotations of montant, thereby drive bull stick 5 rotates under two bevel gear 17's transmission meshing, make heat transfer plate 6 reciprocate to rotate in the radiating hole, can advance net brake organism 1 inside with outside air fan, and discharge 1 inside hot-air of net brake organism, improve the inside thermal scattered and disappearing effect of net brake organism, the stability in use and performance of screen panel have been improved.
Overall, the technical problem is addressed: electronic elements in the network gate have self power consumption and power supply energy consumption in the using process, so that more working heat can be generated, and the self heat dissipation effect is poor; the technical scheme is as follows: the heat exchange plate can continuously and reciprocally swing in the heat dissipation hole in the working process of the mesh gate, and gas inside and outside the mesh gate machine body can rapidly flow in an intersecting manner, so that the heat dissipation and heat exchange effects are improved, and the use stability and the use performance of the mesh gate are improved; the implementation process of the technical scheme is as follows: the motor 9 and the mesh gate machine body 1 are started synchronously, so that the sector gear 11 continuously rotates, the sector gear 11 is intermittently meshed with the plurality of second teeth 13 and is matched with the spring 14 to drive the transverse plate 10 to extrude and rebound, the transverse plate 10 drives the first teeth 12 on two sides to transversely slide in a reciprocating manner, and the circular gear 15 is in positive and negative meshing transmission with the first teeth 12, so that the vertical rod 16 rotates in a reciprocating manner, the rotating rod 5 is driven to rotate under the transmission meshing of the two bevel gears 17, the heat exchange plate 6 rotates in a reciprocating manner in the heat dissipation hole, external air can be blown into the mesh gate machine body 1, and hot air in the mesh gate machine body 1 is exhausted; therefore, the technical problem can be solved certainly, and the technical effects are as follows: the network gate has strong heat dissipation and heat exchange capacity, so that the network gate is matched with the regulation of the environmental temperature.
The above, only be the embodiment of the preferred of the present invention, but the protection scope of the present invention is not limited thereto, and any person skilled in the art is in the technical scope of the present invention, according to the technical solution of the present invention and the utility model, which are designed to be replaced or changed equally, all should be covered within the protection scope of the present invention.