Disclosure of utility model
The utility model aims to provide a frequency conversion control cabinet with a shielding function, and aims to solve the problems in the prior art.
In order to achieve the above purpose, the present utility model provides the following technical solutions: the utility model provides a frequency conversion control cabinet with shielding function, includes the cabinet body, be equipped with a plurality of baffle on the inner wall of the cabinet body, the both sides at baffle top are all fixed mounting has the installation piece, the spout has been seted up at the top of installation piece, the inner wall sliding connection of spout has the slider, two be equipped with the shielding bottom plate between the slider, four corners at shielding bottom plate top all are equipped with the dead lever, a plurality of the surface of dead lever is equipped with shielding assembly;
The shielding assembly comprises a first shielding cover arranged on the surface of a plurality of fixing rods, a plurality of strip-shaped grooves are formed in the inner wall of the first shielding cover, a plurality of strip-shaped blocks are slidably connected with the inner wall of each strip-shaped groove and are arranged on the surface of the second shielding cover, the second shielding cover is in through connection with the top of the first shielding cover, limiting blocks are fixedly arranged at the bottom ends of the strip-shaped blocks, and moving grooves are formed in two ends of each limiting block and in sliding connection with two sides of the inner wall of each strip-shaped groove.
In order to facilitate the limiting of the second shielding cover, as a preferable mode of the utility model, a limiting frame is fixedly arranged at the top of the first shielding cover, a plurality of through grooves are formed in the surface of the limiting frame, the inner walls of the through grooves are connected with the surfaces of the strip-shaped blocks in a penetrating mode, and the width of the inner walls of the through grooves is consistent with that of the inner walls of the strip-shaped grooves.
In order to facilitate limiting and fixing of the adjusted second shielding cover, as one preferable mode of the utility model, a plurality of through holes are formed in two sides of the first shielding cover, and the inner walls of the through holes are in threaded connection with a plurality of hole grooves formed in the surfaces of the strip-shaped blocks through two groups of limiting pins.
In order to facilitate the installation and fixation of the first shielding cover and the shielding bottom plate, as one preferable mode of the utility model, a plurality of jacks are formed in the bottom of the first shielding cover, and the inner walls of the jacks are connected with the surfaces of the fixing rods in a penetrating mode.
In order to ensure the shielding property of the connection conveniently, as one preferable mode of the utility model, the bottom of the first shielding cover is fixedly provided with a shielding gasket, the surface of the shielding gasket is provided with a plurality of through holes, and the inner walls of the through holes are connected with the surfaces of the fixing rods in a penetrating way.
In order to facilitate the installation and the disassembly of the structure, as one preferable mode of the utility model, auxiliary blocks are fixedly arranged on two sides of the two sliding blocks, and auxiliary grooves are formed on the surfaces of the auxiliary blocks and two sides of the inner wall of the sliding groove in a sliding connection mode.
In order to facilitate the installation and maintenance of the structure of the device, as a preferred embodiment of the utility model, the edge of the inner wall of the cabinet body is provided with a cabinet door, and the inner wall of the cabinet body is provided with an installation device.
Compared with the prior art, the utility model has the beneficial effects that:
1) The two sets of limiting pins are inserted into corresponding through holes and through holes, so that the second shielding cover and the first shielding cover are limited and fixed, and the mounting devices with different sizes can be conveniently shielded;
2) Through remove two sliders in two spouts on two installation blocks, two sliders drive two sets of auxiliary blocks and remove in two sets of auxiliary grooves to drive shielding bottom plate and remove, be convenient for install and dismantle the structure in the switch board.
Detailed Description
The following description of the embodiments of the present utility model will be made clearly and completely with reference to the accompanying drawings, in which it is apparent that the embodiments described are only some embodiments of the present utility model, but not all embodiments. All other embodiments, which can be made by those skilled in the art based on the embodiments of the utility model without making any inventive effort, are intended to be within the scope of the utility model.
Example 1
Referring to fig. 1-4, the present utility model provides the following technical solutions: the utility model provides a frequency conversion control cabinet with shielding function, including cabinet body 1, be equipped with a plurality of baffle 11 on the inner wall of cabinet body 1, the both sides at top of baffle 11 in top all fixed mounting have installation piece 12, the spout 13 has been seted up at the top of installation piece 12, the inner wall sliding connection of spout 13 has slider 14, be equipped with shielding bottom plate 15 between two sliders 14, four corners at shielding bottom plate 15 top all are equipped with dead lever 16, the surface of a plurality of dead lever 16 is equipped with shielding assembly 2;
The shielding assembly 2 comprises a first shielding cover 21 arranged on the surface of a plurality of fixing rods 16, a plurality of strip-shaped grooves 22 are formed in the inner wall of the first shielding cover 21, a plurality of strip-shaped blocks 24 which are arranged on the surface of a second shielding cover 23 are all in sliding connection with the inner wall of the plurality of strip-shaped grooves 22, the second shielding cover 23 is in through connection with the top of the first shielding cover 21, limiting blocks 25 are fixedly arranged at the bottom ends of the strip-shaped blocks 24, and two ends of each limiting block 25 are in sliding connection with moving grooves 26 which are formed in two sides of the inner wall of each strip-shaped groove 22.
When the shielding device is specifically used, the plurality of jacks 212 on the first shielding cover 21 are connected with the plurality of fixing rods 16 on the shielding bottom plate 15 in a penetrating way, so that the jacks and the fixing rods are fixedly installed, the second shielding cover 23 is moved, the plurality of strip-shaped blocks 24 are driven to move in the plurality of strip-shaped grooves 22, the plurality of strip-shaped blocks 24 drive the plurality of limiting blocks 25 to move in the plurality of moving grooves 26, the plurality of penetrating grooves 28 on the limiting frame 27 are matched, and therefore the movement of the second shielding cover 23 is limited.
In this embodiment, a limiting frame 27 is fixedly mounted on the top of the first shielding case 21, a plurality of through grooves 28 are formed in the surface of the limiting frame 27, the inner walls of the through grooves 28 are connected with the surfaces of the plurality of bar blocks 24 in a penetrating manner, and the width of the inner walls of the through grooves 28 is consistent with that of the inner walls of the bar grooves 22.
When the shielding device is specifically used, the plurality of bar blocks 24 drive the plurality of limiting blocks 25 to move in the plurality of moving grooves 26, and the plurality of bar blocks are matched with the plurality of penetrating grooves 28 on the limiting frame 27, so that the movement of the second shielding cover 23 is limited.
In this embodiment, a plurality of through holes 29 are formed on both sides of the first shielding case 21, and inner walls of the plurality of through holes 29 are in threaded connection with a plurality of hole grooves 211 formed on surfaces of the plurality of bar blocks 24 through two sets of limiting pins 210.
In specific use, the two sets of limiting pins 210 are inserted into the corresponding through holes 29 and the corresponding hole grooves 211, so that the second shielding cover 23 and the first shielding cover 21 are limited and fixed, and the shielding function of the mounting devices with different sizes is realized conveniently.
In this embodiment, a plurality of insertion holes 212 are formed in the bottom of the first shielding case 21, and inner walls of the plurality of insertion holes 212 are connected with surfaces of the plurality of fixing rods 16 in a penetrating manner.
In specific use, the plurality of jacks 212 on the first shielding cover 21 are connected with the plurality of fixing rods 16 on the shielding bottom plate 15 in a penetrating way, so that the jacks and the fixing rods are installed and fixed.
In this embodiment, a shielding gasket 213 is fixedly installed at the bottom of the first shielding case 21, a plurality of through holes 214 are formed in the surface of the shielding gasket 213, and the inner walls of the plurality of through holes 214 are connected with the surfaces of the plurality of fixing rods 16 in a penetrating manner.
In specific use, the fixing rods 16 are connected with the through holes 214 on the shielding gasket 213 in a penetrating way, so that the shielding performance of the connection between the first shielding cover 21 and the shielding bottom plate 15 is improved.
In this embodiment, the two sides of the two sliders 14 are fixedly provided with auxiliary blocks 17, and the surfaces of the auxiliary blocks 17 are slidably connected with the auxiliary grooves 18 formed in the two sides of the inner wall of the chute 13.
When the shielding bottom plate is specifically used, the two sliding blocks 14 move in the two sliding grooves 13 on the two mounting blocks 12, the two sliding blocks 14 drive the two groups of auxiliary blocks 17 to move in the two groups of auxiliary grooves 18, so that the shielding bottom plate 15 is driven to move, and the structure in the control cabinet is convenient to mount and dismount.
In this embodiment, the edge of the inner wall of the cabinet body 1 is provided with a cabinet door 19, and the inner wall of the cabinet body 1 is provided with a mounting device.
When the control cabinet is particularly used, the cabinet door 19 on the cabinet body 1 is utilized to be convenient for protecting the structure inside the control cabinet.
Working principle: when the device is used, the device is connected with an external power supply, firstly, the plurality of jacks 212 on the first shielding cover 21 are connected with the plurality of fixing rods 16 on the shielding bottom plate 15 in a penetrating way, the plurality of fixing rods 16 are connected with the plurality of through holes 214 on the shielding gasket 213 in a penetrating way, so that shielding performance of connection between the first shielding cover 21 and the shielding bottom plate 15 is conveniently increased, the second shielding cover 23 is moved to drive the plurality of strip-shaped blocks 24 to move in the plurality of strip-shaped grooves 22, the plurality of strip-shaped blocks 24 drive the plurality of limiting blocks 25 to move in the plurality of moving grooves 26, and the plurality of penetrating grooves 28 on the limiting frame 27 are matched, so that the movement of the second shielding cover 23 is limited, the two groups of limiting pins 210 are inserted into the corresponding penetrating holes 29 and the corresponding penetrating grooves 211, so that the second shielding cover 23 is limited and the first shielding cover 21 are fixed, shielding functions are conveniently realized on installation devices with different sizes, the two sliding blocks 14 are driven to move in the two sliding grooves 13 on the two installation blocks 12, the two sliding blocks 14 drive the two groups of auxiliary blocks 17 to move in the two groups of auxiliary blocks 18, and the two groups of auxiliary blocks 18 move in the two groups of auxiliary blocks 18, so that the inner shielding bottom plates 15 are driven to move, and the inner control and the structure is convenient to detach.
Finally, it should be noted that: the foregoing description is only a preferred embodiment of the present utility model, and the present utility model is not limited thereto, but it is to be understood that modifications and equivalents of some of the technical features described in the foregoing embodiments may be made by those skilled in the art, although the present utility model has been described in detail with reference to the foregoing embodiments. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present utility model should be included in the protection scope of the present utility model.