An intelligently controllable electric control cabinet
By designing intelligent control protection plate and buffer system in the drawer-type electrical control cabinet, the problem of easy bumps when the drawer is drawn from a high place is solved, the plug is protected and the reliability of power transmission is improved.
Patent Information
- Application Number
- CN202411019125.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-29
- Publication Date
- 2025-05-23
- Estimated Expiration
- 2044-07-29
AI Technical Summary
In the drawer type electrical control cabinet, when the staff pull the drawer out from a high place, it is easy for the drawer to bump into the electrical control cabinet due to unstable force, damage the plug, and affecting the power transmission.
An intelligently controlled electrical control cabinet is designed to protect the plug and provide buffering during the movement of the drawer to avoid bumps through the combination of protection plate, hook part and buffer plate.
It effectively protects the plug, avoids damage and offset caused by bumps, improves the reliability of power transmission, and reduces the labor intensity and safety risks of staff through buffer plates.
Smart Images

Figure CN119029674B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of electric control cabinets, and in particular to an intelligently controllable electric control cabinet. Background Art
[0002] Drawer-type electric control cabinet is a kind of electrical equipment commonly used in power system. It is mainly used in power distribution systems of industry, commerce and large buildings.
[0003] When it is necessary to inspect and repair the components in the drawer-type electric control cabinet, the staff usually pulls out the drawer in the drawer-type electric control cabinet first, and then inspects the components in the drawer. However, in the process of pulling out the drawer on the upper side of the drawer-type electric control cabinet, since the drawer is located at a high place and there are many components in the drawer, the drawer is heavy. Therefore, after the staff pulls out the drawer, it is very easy for the staff to cause the back of the drawer to collide with the drawer-type electric control cabinet due to unstable force, causing the plug on the back of the drawer to collide with the drawer-type electric control cabinet, causing damage to the plug, affecting the subsequent power transmission to the components in the drawer. Summary of the invention
[0004] In order to overcome the disadvantage that the drawer is located at a high place and the staff may easily cause the back of the drawer to collide with the drawer-type electric control cabinet due to unstable force, resulting in the plug at the back of the drawer to collide with the drawer-type electric control cabinet, causing damage to the plug and affecting the subsequent power transmission to the components in the drawer, the present invention provides a digital intelligent electric control cabinet.
[0005] The technical solution is: an intelligently controllable electric control cabinet, comprising an electric control cabinet and a drawer; a plurality of drawers are connected to the electric control cabinet; a plurality of first heat dissipation holes are provided on the electric control cabinet; a plurality of guide grooves are provided on the electric control cabinet; a plurality of placement cavities are provided on the electric control cabinet; a plurality of second heat dissipation holes are provided on each drawer; each second heat dissipation hole is connected to the adjacent first heat dissipation hole; it also includes a connecting component, a protective plate, a limiting component, a locking component and a buffer plate; each drawer is connected to a connecting component; each connecting component is connected to a protective plate; each protective plate is provided with a hook-shaped portion; a plurality of limiting components for limiting the connecting components are connected to the electric control cabinet; each drawer is connected to a locking component for preventing the protective plate from loosening; a plurality of buffer plates for facilitating the removal of high drawers from the electric control cabinet are connected to the electric control cabinet; each buffer plate is provided with a plurality of small through grooves, and the width of the small through grooves is less than the thickness of the hook-shaped portion.
[0006] Furthermore, the connecting assembly includes a slider, a connecting rod, a limit rod, an elastic member and a fan; each drawer is slidably connected to a plurality of sliders; a card slot is provided on the rear side of each slider; a connecting rod is rotatably connected to two adjacent sliders; each connecting rod is fixedly connected to an adjacent protective plate; each drawer is fixedly connected to a plurality of limit rods; each slider is slidably connected to the adjacent limit rods; an elastic member is fixedly connected to the front side of each slider; the other end of each elastic member is fixedly connected to the drawer; each elastic member is sleeved on the adjacent limit rod; and a plurality of fans are fixedly connected to the left side of the electric control cabinet.
[0007] Furthermore, the limit assembly includes a plug and a card block; a number of plugs are fixedly connected to the rear side of each drawer; a number of sockets are arranged in the electric control cabinet; each socket corresponds one-to-one to an adjacent plug; a number of card blocks are fixedly connected to the electric control cabinet; each card block is located on the moving path of an adjacent slider.
[0008] Furthermore, the locking assembly includes a clamping plate and an electric lock; a clamping plate is fixedly connected to the rear side of each drawer; and a plurality of electric locks are fixedly connected to the rear side of each drawer.
[0009] Furthermore, each buffer plate is provided with a large through slot, and the width of the large through slot is greater than the thickness of the hook-shaped portion.
[0010] Furthermore, it also includes side panels; each protective plate is fixedly connected to a plurality of side panels; and a plurality of air holes are opened on the rear side of the drawer.
[0011] Furthermore, it also includes an air blocking plate and a guide plate; an air blocking plate is fixedly connected to the second heat dissipation hole on the upper side of the protective plate in each drawer; a plurality of guide plates are fixedly connected to the lower side of each drawer; a flow groove is opened in the second heat dissipation hole on the upper side of the protective plate in each drawer; an air inlet groove is opened on each drawer; each air inlet groove is connected to all adjacent flow grooves; an air outlet groove is opened on each drawer; each air outlet groove is connected to adjacent air inlet grooves; and a plurality of through holes are opened on each protective plate.
[0012] Furthermore, each protection plate is arranged in the form of an arc-shaped plate with the middle portion bent downward.
[0013] Furthermore, each air blocking plate is arranged to be inclined upwardly toward the adjacent flow groove.
[0014] Furthermore, each guide plate is arranged in the form of an arc-shaped plate with the middle portion bent toward the electric control cabinet.
[0015] The beneficial effects are as follows: the present invention realizes the protection of the plug by the protection plate. When the staff pulls the drawer out of the electric control cabinet, it is prevented that the staff accidentally causes the drawer to collide with the electric control cabinet due to the excessive weight of the components in the drawer, so that the plug is damaged and deviated under the collision, which affects the subsequent connection between the plug and the socket in the electric control cabinet.
[0016] The hook-shaped part and the small through-slot enable the protective plate to move downward slowly, thereby achieving buffering for the drawer, so as to prevent the worker from pulling out the drawer. After the drawer is pulled out, the worker needs to fully straighten his arm to take it out because the drawer is too high, which causes the worker's arm to become sore, and the drawer falls down, posing a threat to the worker's personal safety.
[0017] The airflow ejected from the air outlet slot is guided by the guide plate, so that the airflow blows away the impurities and dust on the protection plate, thereby preventing a large amount of impurities and dust on the surface of the protection plate from falling into the plug, making it difficult to clean and affecting the insertion of the plug into the socket; BRIEF DESCRIPTION OF THE DRAWINGS
[0018] Figure 1 It is a schematic diagram of the three-dimensional structure of the intelligently controllable electric control cabinet of the present invention;
[0019] Figure 2 It is a schematic diagram of the three-dimensional structure of the electric control cabinet, drawer and buffer plate combination of the present invention, wherein the electric control cabinet is cut away;
[0020] Figure 3 For the present invention Figure 2 A magnified image of the area in the middle;
[0021] Figure 4 It is a side view of the electric control cabinet, drawer, protection plate, locking assembly and plug assembly of the present invention, wherein the electric control cabinet is cut away;
[0022] Figure 5 It is a schematic diagram of the combined three-dimensional structure of the protection plate and the connection assembly of the present invention;
[0023] Figure 6 It is a schematic diagram of the rotation state of the protection plate of the present invention;
[0024] Figure 7 It is a schematic diagram of the three-dimensional structure of the drawer, protection plate, air blocking plate and guide plate combination of the present invention, in which the drawer is cut away.
[0025] Parts names and serial numbers in the figure: 1-electric control cabinet, 1001-first heat dissipation hole, 1002-guide groove, 1003-placing cavity, 2-drawer, 2001-second heat dissipation hole, 2002-flow groove, 2003-air guide groove, 2004-air outlet groove, 2005-air hole, 3-protection plate, 3001-hook-shaped part, 3002-through hole, 4-buffer plate, 4001-small through groove, 4002-large through groove, 101-plug, 102-slider, 10201-card slot, 103-connecting rod, 104-limiting rod, 105-elastic member, 106-card block, 107-side plate, 108-fan, 201-plywood, 202-electric lock, 301-air blocking plate, 302-guide plate. DETAILED DESCRIPTION
[0026] The technical solution of the present invention is further described below in conjunction with the accompanying drawings.
[0027] Example 1
[0028] like Figure 1-Figure 6 As shown, an intelligently controllable electric control cabinet comprises an electric control cabinet 1 and drawers 2; the electric control cabinet 1 is connected with a plurality of drawers 2; the electric control cabinet 1 is provided with a plurality of first heat dissipation holes 1001; the electric control cabinet 1 is provided with a plurality of guide grooves 1002; the electric control cabinet 1 is provided with a plurality of placement cavities 1003; each drawer 2 is provided with a plurality of second heat dissipation holes 2001; each second heat dissipation hole 2001 is connected with an adjacent first heat dissipation hole 1001;
[0029] It also includes a connecting component, a protection plate 3, a limit component, a locking component and a buffer plate 4; each drawer 2 is connected to a connecting component; each connecting component is connected to a protection plate 3; each protection plate 3 is provided with a hook-shaped portion 3001; the electric control cabinet 1 is connected to a number of limit components; each drawer 2 is connected to a locking component; the electric control cabinet 1 is connected to a number of buffer plates 4; each buffer plate 4 is provided with a number of small through grooves 4001, and the width of the small through grooves 4001 is less than the thickness of the hook-shaped portion 3001.
[0030] The connecting assembly includes a slider 102, a connecting rod 103, a limiting rod 104, an elastic member 105 and a fan 108; each drawer 2 is slidably connected to two left-right symmetrical sliders 102; a slot 10201 is provided on the rear side of each slider 102; two adjacent sliders 102 are rotatably connected to a connecting rod 103 on the opposite sides through a torsion spring; each connecting rod 103 is fixedly connected to the adjacent protective plate 3; each drawer 2 is fixedly connected to two left-right symmetrical limiting rods 104; each slider 102 is slidably connected to the adjacent limiting rods 104; an elastic member 105 is fixedly connected to the front side of each slider 102, and the elastic member 105 is a spring; the other end of each elastic member 105 is fixedly connected to the drawer 2; each elastic member 105 is sleeved on the adjacent limiting rod 104; a number of fans 108 are fixedly connected to the left side of the electric control cabinet 1.
[0031] The limit assembly includes a plug 101 and a card block 106; a plurality of plugs 101 are fixedly connected to the rear side of each drawer 2; a plurality of sockets are arranged in the electric control cabinet 1; each socket corresponds one-to-one to an adjacent plug 101; a plurality of card blocks 106 are fixedly connected to the electric control cabinet 1; each card block 106 is located on the moving path of an adjacent slider 102.
[0032] The locking assembly includes a clamping plate 201 and an electric lock 202; a clamping plate 201 is fixedly connected to the upper rear side of each drawer 2; and two left-right symmetrical electric locks 202 are fixedly connected to the upper rear side of each drawer 2.
[0033] The present invention repairs the components in the drawer 2 and removes the drawer 2 from the electric control cabinet 1, so that the protection plate 3 is Figure 4 Turn as shown Figure 6 In the state shown, the protection plate 3 protects the plug 101, and solves the problem that when the drawer 2 located on the upper side is pulled out from the electric control cabinet 1, the plug 101 collides with the electric control cabinet 1, causing the plug 101 to be damaged and offset, so that the plug 101 cannot be inserted into the socket in the electric control cabinet 1 again. The specific working content is as follows:
[0034] First, when it is necessary to inspect and repair the components in the drawer 2, the staff will pull the drawer 2 out of the electric control cabinet 1. It is worth noting that when the drawer 2 is located in the electric control cabinet 1, the protection plate 3 is restricted by the lower side of the drawer 2, and the slider 102 is restricted by the block 106, so that the torsion spring and the elastic member 105 on the connecting rod 103 are both in a compressed state, so that in the process of the drawer 2 being pulled forward from the electric control cabinet 1, the elastic member 105 gradually changes from a compressed state to its original state. As the drawer 2 moves forward, the protection plate 3, the slider 102 and the connecting rod 103 will slide backward relative to the drawer 2 under the drive of the elastic member 105 until the elastic member 105 completely returns to its original state, so that the protection plate 3, the slider 102 and the connecting rod 103 move to the position as shown in the figure. Figure 6 At this time, the torsion spring on the connecting rod 103 will gradually return to its original state, and the protection plate 3 and the connecting rod 103 will rotate clockwise to the position shown in FIG. Figure 6The position shown in the figure makes the end of the protection plate 3 that is not connected to the connecting rod 103 be inserted into the clamping plate 201, and then the clamping plate 201 is clamped to the protection plate 3 by the electric lock 202, so as to lock the protection plate 3, and cover the plug 101 by the protection plate 3, so as to protect the plug 101 by the protection plate 3. When the staff pulls out the drawer 2 from the electric control cabinet 1, it is avoided that the staff accidentally causes the drawer 2 and the electric control cabinet 1 to collide due to the excessive weight of the components in the drawer 2, so that the plug 101 is damaged and shifted under the collision, affecting the subsequent connection between the plug 101 and the socket in the electric control cabinet 1. Compared with the prior art, the prior art cannot protect the plug 101 and has low safety. Subsequently, after the drawer 2 is pulled out of the electric control cabinet 1, the staff moves the drawer 2 downward to prevent the protection plate 3 from being locked. The hook-shaped portion 3001 on the plate 3 contacts the buffer plate 4, and then the drawer 2 is slowly moved downward, so that the hook-shaped portion 3001 moves downward along the buffer plate 4. Since the width of the small through groove 4001 is smaller than the thickness of the hook-shaped portion 3001, the hook-shaped portion 3001 cannot completely hook the small through groove 4001, so that when the drawer 2 moves downward, the hook-shaped portion 3001 escapes from the small through groove 4001 and then enters the next small through groove 4001, so that the protection plate 3 moves slowly downward through the hook-shaped portion 3001 and the small through groove 4001, thereby achieving buffering of the drawer 2, avoiding that after the staff pulls out the drawer 2, the drawer 2 is too high, and the workers need to fully straighten their arms to remove the drawer 2, causing the staff's arms to be sore, and the drawer 2 falls downward, posing a threat to the staff's personal safety.
[0035] Then, after the staff has finished inspecting the components in the drawer 2, the staff will reinsert the drawer 2 into the corresponding position on the electric control cabinet 1. During the process of the drawer 2 moving backward, the electric lock 202 releases the locking of the clamping plate 201 on the protection plate 3. Then, the slider 102 is aligned with the corresponding card block 106, and the card block 106 is inserted into the card slot 10201 on the slider 102. During the process of pushing the drawer 2 backward to insert it into the electric control cabinet 1, the slider 102 cannot move backward, so that the slider 102, the protection plate 3 and the connecting rod 103 slide forward relative to the drawer 2, so that the elastic member 105 is gradually compressed. Subsequently, the drawer 2 continues to move backward, so that the protection plate 3 is squeezed by the drawer 2 and gradually rotates, compressing the torsion spring on the connecting rod 103, and the protection plate 3 rotates counterclockwise to the placement cavity 1003 when viewed from left to right. Subsequently, after the plug 101 is inserted into the socket on the electrical control cabinet 1, the drawer 2 stops moving, so that the drawer 2 is reinserted into the electrical control cabinet 1. When the components in the drawer 2 generate heat due to work, the fan 108 blows air to the first heat dissipation hole 1001, so that the airflow passes through the first heat dissipation hole 1001 and the second heat dissipation hole 2001, and then blows into the drawer 2, thereby achieving heat dissipation for the components in the drawer 2.
[0036] Each buffer plate 4 is provided with a large through groove 4002, and the width of the large through groove 4002 is greater than the thickness of the hook-shaped portion 3001; during the process of the protection plate 3 moving downward along the buffer plate 4, when the staff loses strength and the drawer 2 drops downward, the hook-shaped portion 3001 hooks the large through groove 4002 to limit the protection plate 3, thereby limiting the drawer 2, so that the drawer 2 is stuck on the buffer plate 4 under the action of the large through groove 4002 after dropping downward. Subsequently, the staff can remove the drawer 2 from the buffer plate 4 to prevent the drawer 2 from directly falling to the ground and damaging the components inside the drawer 2, thereby further improving the protection effect on the components inside the drawer 2.
[0037] Embodiment 2
[0038] On the basis of Embodiment 1, as Figure 4 and Figure 6 shown, it further includes side plates 107; two side plates 107 are fixedly connected to each protection plate 3; a plurality of air holes 2005 are provided at the rear side of the drawer 2; during the process of repairing the components inside the drawer 2, in order to pursue convenient and rapid repair, workers usually place the drawer 2 on the ground and repair the components in a squatting posture. There are usually a lot of dust and impurities on the ground. Therefore, the side plates 107 are used to block the sides of the protection plate 3, so that a sealed space is formed between the drawer 2, the protection plate 3 and the side plates 107 to prevent dust and impurities from entering the plug 101, further improving the protection effect on the plug 101. At this time, since the plug 101 is hot after being unplugged, the plug 101 is cooled through the air holes 2005.
[0039] Embodiment 3
[0040] On the basis of Embodiment 1, as Figure 1 、 Figure 4 and Figure 7 shown, it further includes an air-blocking plate 301 and a guiding plate 302; an air-blocking plate 301 is fixedly connected to each of the second heat dissipation holes 2001 above the protection plate 3 in each drawer 2; two symmetrically arranged guiding plates 302 are fixedly connected to the rear part of the lower side of each drawer 2; a flow groove 2002 is provided in each of the second heat dissipation holes 2001 above the protection plate 3 in each drawer 2; an air guiding groove 2003 is provided on each drawer 2; each air guiding groove 2003 is communicated with all adjacent flow grooves 2002; an air outlet groove 2004 is provided on each drawer 2; each air outlet groove 2004 is communicated with the adjacent air guiding groove 2003; a plurality of through holes 3002 are provided on each protection plate 3.
[0041] The following is an explanation using the air blocking plate 301 and the guide plate 302 located on the left side. When the drawer 2 is located in the electric control cabinet 1 and the fan 108 blows the airflow from the first heat dissipation hole 1001 to the second heat dissipation hole 2001, part of the airflow is intercepted by the air blocking plate 301, so that part of the airflow flows into the flow groove 2002, then enters the air induction groove 2003 along the flow groove 2002, and then is ejected from the air outlet groove 2004 along the air induction groove 2003. At this time, the airflow ejected from the air outlet groove 2004 is guided by the guide plate 302, so that the airflow is blown toward the protective plate 3. The airflow blows the impurities and dust on the protection plate 3, so that the impurities and dust move from left to right, and when passing through the through hole 3002, they flow out of the through hole 3002 into the placement cavity 1003. Since the front side of the bottom of the placement cavity 1003 is inclined upward, the dust and impurities falling into the placement cavity 1003 will flow backward along the placement cavity 1003, and then flow out of the guide groove 1002 to the outside of the electric control cabinet 1, thereby cleaning the surface of the protection plate 3 to avoid a large amount of impurities and dust on the surface of the protection plate 3. When the drawer 2 is pulled out, the protection plate 3 is rotated to Figure 6 In the process shown, impurities and dust on the protection plate 3 fall into the plug 101, making it difficult to clean and affecting the insertion of the plug 101 into the socket.
[0042] Each protection plate 3 is arranged in the form of an arc-shaped plate with the middle portion bent downward, which is beneficial for the protection plate 3 to guide the airflow, so that the airflow blowing toward the protection plate 3 moves from left to right along the protection plate 3, thereby improving the cleaning effect of the airflow on the protection plate 3.
[0043] Each air blocking plate 301 is inclined upward toward the adjacent flow groove 2002 , and is used to guide the airflow blocked by the air blocking plate 301 , so that the airflow blocked by the air blocking plate 301 flows downward, which is beneficial for the airflow to enter the flow groove 2002 .
[0044] Each guide plate 302 is arranged in the form of an arc-shaped plate with the middle portion bent toward the electric control cabinet 1; in the process of the guide plate 302 guiding the airflow, the airflow is converged toward the middle portion of the guide plate 302 to prevent the airflow from escaping, resulting in a decrease in the airflow velocity, which affects the cleaning of impurities and dust on the protective plate 3.
[0045] The above is only a preferred embodiment of the present invention. It should be pointed out that for ordinary technicians in this technical field, several improvements and modifications can be made without departing from the principle of the present invention. These improvements and modifications should also be regarded as the scope of protection of the present invention.
Claims
1. An intelligently controllable electric control cabinet, comprising an electric control cabinet (1) and a drawer (2); the electric control cabinet (1) is connected to a plurality of drawers (2); the electric control cabinet (1) is provided with a plurality of first heat dissipation holes (1001); the electric control cabinet (1) is provided with a plurality of guide grooves (1002); the electric control cabinet (1) is provided with a plurality of placement cavities (1003); each drawer (2) is provided with a plurality of second heat dissipation holes (2001); each second heat dissipation hole (2001) is connected to an adjacent first heat dissipation hole (1001); the characteristics are as follows: It also includes a connecting component, a protection plate (3), a limiting component, a locking component and a buffer plate (4); each drawer (2) is connected to a connecting component; each connecting component is connected to a protection plate (3); each protection plate (3) is provided with a hook-shaped portion (3001); the electric control cabinet (1) is connected to a plurality of limiting components for limiting the connecting components; each drawer (2) is connected to a locking component for preventing the protection plate (3) from loosening; the electric control cabinet (1) is connected to a plurality of buffer plates (4) for facilitating the removal of the high drawers (2) from the electric control cabinet (1); each buffer plate (4) is provided with a plurality of small through slots (4001), the width of the small through slots (4001) being less than the thickness of the hook-shaped portion (3001); It also includes side panels (107); each protective plate (3) is fixedly connected to a plurality of side panels (107); and a plurality of air holes (2005) are provided on the rear side of the drawer (2); It also comprises an air blocking plate (301) and a guide plate (302); an air blocking plate (301) is fixedly connected to the second heat dissipation hole (2001) located on the upper side of the protection plate (3) in each drawer (2); a plurality of guide plates (302) are fixedly connected to the lower side of each drawer (2); a flow groove (2002) is provided in the second heat dissipation hole (2001) located on the upper side of the protection plate (3) in each drawer (2); an air induction groove (2003) is provided on each drawer (2); each air induction groove (2003) is connected to all adjacent flow grooves (2002); an air outlet groove (2004) is provided on each drawer (2); each air outlet groove (2004) is connected to adjacent air induction grooves (2003); and a plurality of through holes (3002) are provided on each protection plate (3).
2. The intelligently controllable electric control cabinet according to claim 1, characterized in that: The connection assembly comprises a slider (102), a connecting rod (103), a limiting rod (104), an elastic member (105) and a fan (108); each drawer (2) is slidably connected to a plurality of sliders (102); a slot (10201) is provided on the rear side of each slider (102); a connecting rod (103) is rotatably connected to two adjacent sliders (102); each connecting rod (103) is fixedly connected to an adjacent protection plate (3); each drawer (2) is fixedly connected to a plurality of limiting rods (104); each slider (102) is slidably connected to an adjacent limiting rod (104); a front side of each slider (102) is fixedly connected to an elastic member (105); the other end of each elastic member (105) is fixedly connected to the drawer (2); each elastic member (105) is sleeved on an adjacent limiting rod (104); and a plurality of fans (108) are fixedly connected to the left side of the electric control cabinet (1).
3. The intelligently controllable electric control cabinet according to claim 2, characterized in that: The limit assembly comprises a plug (101) and a clamping block (106); a plurality of plugs (101) are fixedly connected to the rear side of each drawer (2); a plurality of sockets are arranged in the electric control cabinet (1); each socket corresponds to an adjacent plug (101) in a one-to-one manner; a plurality of clamping blocks (106) are fixedly connected to the electric control cabinet (1); each clamping block (106) is located on the moving path of an adjacent slider (102).
4. The intelligently controllable electric control cabinet according to claim 3, characterized in that: The locking assembly comprises a clamping plate (201) and an electric lock (202); a clamping plate (201) is fixedly connected to the rear side of each drawer (2); and a plurality of electric locks (202) are fixedly connected to the rear side of each drawer (2).
5. The intelligently controllable electric control cabinet according to claim 1, characterized in that: Each buffer plate (4) is provided with a large through slot (4002), and the width of the large through slot (4002) is greater than the thickness of the hook-shaped portion (3001).
6. The intelligently controllable electric control cabinet according to claim 1, characterized in that: Each protection plate (3) is arranged in the form of an arc-shaped plate with a middle portion bent downward.
7. The intelligently controllable electric control cabinet according to claim 1, characterized in that: Each air blocking plate (301) is arranged to be inclined upwardly toward the adjacent flow groove (2002).
8. The intelligently controllable electric control cabinet according to claim 1, characterized in that: Each guide plate (302) is arranged in the form of an arc-shaped plate with a middle portion bent toward the electric control cabinet (1).
Citation Information
Patent Citations
GCK drawer type low-voltage switch cabinet
CN218976110U