Disclosure of utility model
The application provides a terminal machine, which is used for solving the problems that the inside of the terminal machine cannot efficiently and rapidly dissipate heat, the terminal machine is halted after long-time use, and the service life and the practicability of the terminal machine are reduced.
In order to achieve the above object, the technical scheme of the present application is as follows:
The application provides a terminal, which comprises a terminal body, a heat radiation assembly and a refrigeration assembly, wherein the heat radiation assembly comprises a return pipe and at least one exhaust fan, the return pipe is arranged in the terminal body, the exhaust fan is arranged at the top of the terminal body to exhaust heat in the terminal body, the refrigeration assembly comprises a refrigerator and at least one fan, the refrigerator is arranged on the inner bottom wall of the terminal body, the cold end of the refrigerator faces towards the return pipe, the hot end of the refrigerator faces away from the return pipe, and the fan is arranged on the side wall of the terminal body to accelerate circulation of air above the refrigerator.
In one possible implementation manner, the terminal provided by the application is provided with a water inlet communicated with the return pipe on one side of the terminal body, and a water outlet communicated with the return pipe on the other side of the terminal body.
In one possible implementation manner, the terminal provided by the application is characterized in that the side wall of the terminal body is embedded with at least one filter screen, and the filter screens are arranged in one-to-one correspondence with one surface of the fan, which is away from the return pipe.
In one possible implementation, the terminal provided by the application, the refrigerator is a semiconductor refrigerator.
In one possible implementation manner, the terminal provided by the application has the advantages that the end, far away from the terminal body, of the exhaust fan is provided with the screen, the surface, far away from the exhaust fan, of the screen is provided with the ash removing rod, and the ash removing rod is rotationally connected with the output shaft of the exhaust fan.
In one possible implementation manner, the terminal provided by the application further comprises at least one mounting plate, one end of the exhaust fan facing the terminal body is fixedly connected with the mounting plate, the mounting plate is fixedly connected with the top of the terminal body through bolts, the top of the terminal body is provided with a heat dissipation channel, and the exhaust fan is communicated with the inside of the terminal body through the heat dissipation channel.
In a possible implementation manner, the terminal provided by the application is characterized in that the inner side wall of the terminal body is fixedly connected with a baffle, one side of the baffle is provided with a groove corresponding to a return pipe, the return pipe is inserted into the groove, the baffle is provided with a plurality of through holes, and the refrigerator and the fan are positioned below the baffle.
In a possible implementation manner, the terminal provided by the application further comprises a moving assembly, wherein the moving assembly comprises at least one hydraulic rod, at least two universal wheels and a connecting plate, the hydraulic rod is embedded at the bottom of the terminal body, the moving end of the hydraulic rod penetrates through the bottom of the terminal body and is fixedly connected with one end of the connecting plate, which faces the terminal body, and the universal wheels are rotatably connected with one end of the connecting plate, which faces away from the terminal body, through a rotating shaft.
In one possible implementation manner, the terminal provided by the application is provided with at least three supporting blocks at the bottom of the terminal body.
In one possible implementation, the terminal provided by the application has an access door rotatably connected to the back side of the terminal body.
According to the terminal provided by the application, the return pipe is arranged in the terminal body, water is injected into the return pipe, water cooling and heat dissipation are carried out in the terminal body, then heat is discharged to the outside of the terminal body through the exhaust fan at the top of the terminal body, meanwhile, the refrigerating assembly is arranged in the terminal body, the refrigerating assembly comprises the refrigerator and at least one fan, the refrigerator is started to cool the inside of the terminal body, and then the fan on the side wall of the terminal body is used for circulating cold air generated at the cold end of the refrigerator through air, so that the efficient heat dissipation of the terminal is realized, and the service life and practicability of the terminal are improved.
Detailed Description
In order to make the objects, technical solutions and advantages of the present application more apparent, the technical solutions in the preferred embodiments of the present application will be described in more detail with reference to the accompanying drawings in the preferred embodiments of the present application. It is apparent that the described embodiments are only some embodiments of the present application, not all embodiments, and that all other embodiments obtained by persons of ordinary skill in the art without making creative efforts based on the embodiments in the present application are within the protection scope of the present application.
It should be noted that, in the description of the embodiments of the present application, terms such as "upper," "lower," "inner," "outer," and terms of orientation or positional relationship are based on the directions or positional relationships shown in the drawings, and are merely for convenience of description, not to indicate or imply that the apparatus or components must have a specific orientation, be configured and operated in a specific orientation, and thus should not be construed as limiting the embodiments of the present application.
Furthermore, it should be noted that the terms "first," "second," and the like are used for descriptive purposes only and are not to be construed as indicating or implying a relative importance or implicitly indicating the number of technical features indicated, whereby a feature defining "first," "second," or the like may explicitly or implicitly include one or more such features, and in the description of the present application, the meaning of "plurality" is two or more unless otherwise specifically limited.
In the present application, unless explicitly specified and limited otherwise, the terms "mounted," "connected," "secured," and the like are to be construed broadly, and may be, for example, fixedly connected, detachably connected, or integrally formed, mechanically connected, electrically connected, or in communication with each other, directly connected, indirectly connected via an intermediate medium, or in communication between two elements or in an interaction relationship between two elements. The specific meaning of the above terms in the present application can be understood by those of ordinary skill in the art according to the specific circumstances.
Big data is a data set which takes large capacity, multiple types, high access speed and high application value as main characteristics, and the big data in the modern society is analyzed, so that the expected accurate result can be obtained according to various requirements. The terminal is needed in the big data analysis and processing, and the data display, the data input and the data output are realized through the terminal.
The terminal can produce a large amount of heat in the operation process, and heat dissipation equipment is required to cool the terminal, and the existing terminal generally uses a fan to dissipate heat.
But adopt fan radiating mode radiating efficiency low, the inside heat of terminal can not high-efficient quick diffusion to outside, uses for a long time can lead to the terminal machine to crash, reduces the life and the practicality of terminal machine.
In view of the above, the terminal provided by the application has the advantages that the return pipe is arranged in the terminal main body, water is injected into the return pipe, water cooling and heat dissipation are performed in the terminal main body, then heat is discharged to the outside of the terminal main body through the exhaust fan at the top of the terminal main body, meanwhile, the refrigerating assembly is arranged in the terminal main body, the refrigerating assembly comprises the refrigerator and at least one fan, the refrigerator is started to cool the inside of the terminal main body, and then the fan on the side wall of the terminal main body is used for circulating cold air generated at the cold end of the refrigerator through air, so that the efficient heat dissipation of the terminal is realized, and the service life and practicability of the terminal are improved.
The application will now be described in detail with reference to the drawings and to specific embodiments.
Fig. 1 is a schematic structural view of a terminal according to an embodiment of the present application, fig. 2 is a cross-sectional view of a section A-A in fig. 1, fig. 3 is a schematic structural view of an exhaust fan in fig. 1, fig. 4 is a schematic structural view of a partition in fig. 2, and fig. 5 is a schematic structural view of a moving assembly in the terminal according to an embodiment of the present application.
Referring to fig. 1 and 2, the present application provides a terminal comprising a terminal body 100, a heat dissipation assembly 200 and a cooling assembly 300, wherein the heat dissipation assembly 200 comprises a return pipe 210 and at least one exhaust fan 220, the return pipe 210 is arranged inside the terminal body 100, the exhaust fan 220 is arranged at the top of the terminal body 100 to exhaust heat in the terminal body 100, the cooling assembly 300 comprises a refrigerator 310 and at least one fan 320, the refrigerator 310 is arranged at the inner bottom wall of the terminal body 100, the cold end of the refrigerator 310 faces the return pipe 210, the hot end of the refrigerator 310 faces away from the return pipe 210, and the fan 320 is arranged on the side wall of the terminal body 100 to accelerate ventilation of air above the refrigerator 310.
In the present application, the return pipe 210 performs heat exchange inside the terminal body 100, and the water is injected into the return pipe 210 to perform water cooling and heat dissipation inside the terminal body 100, so that the heat exchange contact area can be increased by adopting the return design, and the heat exchange effect can be improved.
Meanwhile, in order to discharge the heat generated by the terminal to the outside of the terminal body 100, an exhaust fan 220 is provided at the top of the terminal body 100, and the exhaust fan 220 is started to discharge the heat generated when the terminal body 100 operates to the outside of the terminal body 100, and the number and layout of the exhaust fans 220 are given as examples only, and specifically may be set by itself according to actual needs, which is not limited herein.
Specifically, a refrigerator 310 is provided on the inner bottom wall of the terminal body 100, and cool air is produced at the cold end of the refrigerator 310 to reduce the temperature inside the terminal body 100 and further improve the heat dissipation efficiency inside the terminal body 100. Meanwhile, the fan 320 is installed on the side wall of the terminal body 100, and the fan 320 is started to circulate cool air generated by the refrigerator 310 in the terminal body 100 through air, thereby improving cooling efficiency.
It should be understood that the number and layout of the fans 320 are given only as examples, and the specific embodiments may be set according to actual requirements, which are not limited herein.
Therefore, through the cooperation of the return pipe 210, the exhaust fan 220, the refrigerator 310 and the fan 320, the efficient heat dissipation of the terminal is realized, and the service life and the practicability of the terminal are improved.
Referring to fig. 1 and 2, in the embodiment of the present application, one side of the terminal body 100 is provided with a water inlet 110 communicating with a return pipe 210, and the other side of the terminal body 100 is provided with a water outlet 120 communicating with the return pipe 210.
Wherein, in order to realize the water-cooling heat transfer, set up water inlet 110 and delivery port 120 that have control valve in one side of terminal machine main part 100, and water inlet 110 and delivery port 120 communicate with the both ends of return pipe 210 respectively, open the control valve that sets up at water inlet 110, make external water enter into the inside return pipe 210 of terminal machine main part 100 through water inlet 110, and then carry out the heat exchange to the inside of terminal machine main part 100 through the water, and accomplish the dissipation of the inside heat of terminal machine main part 100 through delivery port 120, from this, can reduce the inside temperature of terminal machine main part 100, guarantee the normal operating of terminal machine main part 100, improve the life of the inside electrical component of terminal machine main part 100.
Referring to fig. 1 and 2, in the embodiment of the present application, at least one filter screen 130 is embedded in a side wall of the terminal body 100, and the filter screen 130 and one side of the fan 320 facing away from the return pipe 210 are disposed in a one-to-one correspondence.
In the present application, the filter screen 130 is embedded in the side wall of the terminal body 100, and the filter screen 130 may be rectangular, circular or other suitable shapes, and the purpose of the filter screen 130 is not limited herein, so as to filter dust, prevent the dust from entering the inside of the terminal body 100 through the fan 320, and ensure the normal use of the terminal.
When in installation, the filter screen 130 is arranged on one surface of the fan 320, which is away from the return pipe 210, and is arranged in one-to-one correspondence with the fan 320, so as to ensure the dust-proof effect of the filter screen 130.
Referring to fig. 2, in an embodiment of the present application, the refrigerator 310 is a semiconductor refrigerator.
In some embodiments, the refrigerator 310 may be a semiconductor refrigerator, which has the characteristics of no noise, no vibration, small volume, light weight, etc., and is reliable in operation, simple and convenient in operation, and easy in cold adjustment.
The size and model of the semiconductor refrigerator can be set according to the actual requirements, and the embodiment is not limited herein.
It can be appreciated that during the operation of the terminal body 100, the semiconductor refrigerator may be started by a controller (not shown), the cold end of the semiconductor refrigerator faces the return pipe 210, and cold air is manufactured through the cold end of the semiconductor refrigerator, so as to reduce the temperature inside the terminal body 100 and further improve the heat dissipation efficiency inside the terminal body 100.
Referring to fig. 3, in the embodiment of the present application, a screen 221 is disposed at an end of the exhaust fan 220 away from the terminal body 100, an ash removing rod 222 is disposed at a surface of the screen 221 away from the exhaust fan 220, and the ash removing rod 222 is rotatably connected with an output shaft of the exhaust fan 220.
In particular, the end of the exhaust fan 220 far from the terminal body 100 is provided with the screen 221, and the screen 221 is provided for filtering dust, so that the dust is reduced from falling into the terminal body 100, and the ventilation and heat dissipation effects of the exhaust fan 220 are not affected.
It can be appreciated that, in order to facilitate cleaning of dust on the surface of the screen 221, the output shaft of the exhaust fan 220 is rotatably connected with the ash removing rod 222, and the regular use of the ash removing rod 222 to clean dust accumulated on the surface of the screen 221 can effectively improve the air circulation rate of the terminal body 100, thereby improving the heat dissipation efficiency of the terminal body 100.
Referring to fig. 2 and 3, in the embodiment of the present application, at least one mounting plate 400 is further included, one end of the exhaust fan 220 facing the terminal body 100 is fixedly connected with the mounting plate 400, the mounting plate 400 is fixedly connected with the top of the terminal body 100 by bolts 500, the top of the terminal body 100 has a heat dissipation channel 600, and the exhaust fan 220 communicates with the inside of the terminal body 100 through the heat dissipation channel 600.
In order to fixedly mount the exhaust fan 220 on the top of the terminal body 100, the exhaust fan 220 may be first provided with the mounting plate 400 toward one end of the terminal body 100, and the mounting plate 400 and the exhaust fan 220 may be an integral part, so that it is convenient to process the exhaust fan 220 and the mounting plate 400. The exhaust fan 220 and the mounting plate 400 may be fixedly connected by a mounting method such as welding, so as to firmly mount the exhaust fan 220 on the mounting plate 400, which is not limited in this embodiment.
In the present application, when the installation is performed, the installation plate 400 is detachably connected with the top of the terminal body 100 through the bolts 500, so that the installation plate 400 is conveniently detached and installed, thereby facilitating the maintenance of the exhaust fan 220 and the cleaning of the screen 221.
It will be appreciated that the number and arrangement of the bolts 500 are given by way of example only, and the embodiment is not limited thereto, as the embodiment may be set by itself according to actual needs.
In particular, the exhaust fan 220 communicates with the inside of the terminal body 100 through the heat dissipation path 600 at the top of the terminal body 100, and the heat inside the terminal body 100 is exhausted to the outside of the terminal body 100 through the heat dissipation path 600 by the exhaust fan 220, thereby improving heat dissipation efficiency.
Referring to fig. 2 and 4, in the embodiment of the present application, a partition plate 140 is fixedly connected to an inner sidewall of the terminal body 100, one side of the partition plate 140 has a groove 141 corresponding to the return pipe 210, a portion of the return pipe 210 is inserted into the groove 141, the partition plate 140 is provided with a plurality of through holes 142, and the refrigerator 310 and the fan 320 are located below the partition plate 140.
In the present application, in order to increase the air flow rate inside the terminal body 100, the partition 140 may be provided inside the terminal body 100, and in order to attach and mount the partition 140 inside the terminal body 100, a groove 141 corresponding to the return pipe 210 may be provided on one side of the partition 140, whereby the return pipe 210 is partially inserted into the groove 141 when mounting is performed.
In some embodiments, the partition 140 may be fixedly connected to the inner side wall of the terminal body 100 through a plugging installation manner, and the partition 140 may also be installed through other connection manners, so that the partition 140 may be fixedly connected to the inner side wall of the terminal body 100.
Wherein, the partition 140 is provided with a through hole 142 for air circulation, a channel formed by separating the partition 140 from the inner bottom wall of the terminal body 100 forms an air channel, the refrigerator 310 and the fan 320 are started, the fan 320 uniformly passes the cold air generated at the cold end of the refrigerator 310 through the through hole 142 and enters the inside of the terminal body 100, the air circulation rate inside the terminal body 100 is improved, the heat dissipation inside the terminal body 100 is accelerated under the action of the exhaust fan 220, and the temperature inside the terminal body 100 is reduced.
It will be appreciated that the number and layout of the through holes 142 are given as examples, and the specific configuration may be set according to the actual requirements, and the present embodiment is not limited herein.
Referring to fig. 2 and 5, in the embodiment of the present application, the mobile device further includes a moving assembly 700, wherein the moving assembly 700 includes at least one hydraulic rod 710, at least two universal wheels 720 and a connecting plate 730, the hydraulic rod 710 is embedded in the bottom of the terminal body 100, the moving end of the hydraulic rod 710 penetrates through the bottom of the terminal body 100 and is fixedly connected with one end of the connecting plate 730 facing the terminal body 100, and the universal wheels 720 are rotatably connected with one end of the connecting plate 730 facing away from the terminal body 100 through a rotating shaft.
In the present application, in order to facilitate the movement of the terminal body 100, a moving assembly 700 is provided at the bottom of the terminal body 100, wherein a hydraulic rod 710 is embedded at the bottom of the terminal body 100, and the expansion and contraction of the hydraulic rod 710 is adjusted to drive the movement of the connection plate 730.
It can be understood that the universal wheel 720 is rotatably connected with one end of the connecting plate 730, which is away from the terminal body 100, that is, the extension of the hydraulic rod 710 drives the connecting plate 730 to move towards the ground, so as to control the universal wheel 720 to contact with the ground, and the terminal body 100 is driven to move through the movement of the universal wheel 720 on the ground, so that the convenience of use is improved.
After the terminal body 100 is moved to a proper position, the adjusting hydraulic rod 710 is retracted to drive the connecting plate 730 to move away from the ground, so as to control the universal wheel 720 to be separated from the ground, thereby fixedly placing the terminal body 100.
Referring to fig. 1, in an embodiment of the present application, the bottom of the terminal body 100 is provided with at least three support blocks 150.
The bottom of the terminal body 100 is provided with the supporting blocks 150, and the number and layout of the supporting blocks 150 are given as examples, which can be specifically set according to actual requirements, so as to ensure the placement stability of the terminal body 100, which is not limited herein.
In a specific implementation, the support block 150 may be fixed to the bottom of the terminal body 100 by welding, and the support block 150 and the terminal body 100 may be connected by other means, so as to stably support the terminal body 100 by the support block 150.
That is, after the terminal body 100 is moved to a corresponding position via the universal wheel 720, the adjustment hydraulic lever 710 is contracted so that the universal wheel is separated from the ground and is converted into contact with the ground by the support block 150, thereby realizing the fixed placement of the terminal body 100.
Referring to fig. 1, in an embodiment of the present application, an access door 160 is rotatably connected to the rear side of the terminal body 100.
In the application, the back side of the terminal body 100 is rotatably connected with the access door 160 with a handle, when in use, a worker can open the access door 160 through the handle, and further drive the universal wheel 720 to lift through the adjusting hydraulic rod 710, and meanwhile, the access door 160 is arranged, so that the worker can conveniently overhaul the electric elements in the terminal body 100, and the practicability and the service life of the terminal are improved.
In summary, according to the terminal provided by the application, the return pipe 210 is arranged in the terminal body 100, water is injected into the return pipe 210, water cooling and heat dissipation are performed in the terminal body 100, then heat is discharged to the outside of the terminal body 100 through the exhaust fan 220 at the top of the terminal body 100, meanwhile, the refrigerating assembly 300 is arranged in the terminal body 100, the refrigerating assembly 300 comprises the refrigerator 310 and at least one fan 320, the refrigerator 310 is started to cool the inside of the terminal body 100, and then the fan 320 on the side wall of the terminal body 100 is used for circulating air generated at the cold end of the refrigerator 310, so that the efficient heat dissipation of the terminal is realized, and the service life and practicability of the terminal are improved.
It should be noted that the above embodiments are merely for illustrating the technical solution of the present application and not for limiting the same, and although the present application has been described in detail with reference to the above embodiments, it should be understood by those skilled in the art that the technical solution described in the above embodiments may be modified or some or all of the technical features may be equivalently replaced, and these modifications or substitutions do not make the essence of the corresponding technical solution deviate from the scope of the technical solution of the embodiments of the present application.