CN214846716U - Intelligent elastic protection device based on complex line environment - Google Patents

Intelligent elastic protection device based on complex line environment Download PDF

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Publication number
CN214846716U
CN214846716U CN202121192883.2U CN202121192883U CN214846716U CN 214846716 U CN214846716 U CN 214846716U CN 202121192883 U CN202121192883 U CN 202121192883U CN 214846716 U CN214846716 U CN 214846716U
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China
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protection
strip
frame
device based
bar
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裘雪敬
金磐石
杨晓勤
范鹏
王洪
陈东平
王建伟
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China Construction Bank Corp
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China Construction Bank Corp
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Abstract

The utility model discloses an intelligence elasticity protection device based on complicated circuit environment, include: a frame for placement on a line side of the device; the protection mechanism is detachably arranged on the frame and is used for being matched with the important line clamping position of the equipment. Through this scheme so that under complicated circuit environment, can provide the protection mechanism who prevents mistake plug for the important circuit of equipment, reduce the probability of the important circuit mistake plug that artificial operation mode arouses in the traditional fortune dimension mode, reduce the operation risk that equipment arouses because of the circuit is plugged by the mistake to can avoid causing unnecessary incident and loss.

Description

Intelligent elastic protection device based on complex line environment
Technical Field
The utility model relates to an enterprise level storage fortune dimension technical field, in particular to intelligence elasticity protection device based on complicated line environment.
Background
In the management process of the enterprise-level storage resource pool, the devices are connected through a line. In daily operation and maintenance work, due to the replacement of equipment firmware such as a storage or storage switch, operations such as plugging and unplugging lines are often involved. The important lines are usually plugged and unplugged by using a manual operation mode, and the important lines usually lack necessary protection measures.
However, the network line connection environment between the enterprise-level storage devices is generally complex, and under the condition that no protection measures are provided for the line, a maintenance worker cannot accurately judge whether the line to be unplugged is correct, so that the hidden trouble of plugging the line by mistake exists. If the misoperation causes the circuit which does not need to be operated originally to be pulled out, the risk that the equipment cannot normally operate is caused, and further certain loss is brought to enterprises or users.
SUMMERY OF THE UTILITY MODEL
In view of this, the utility model provides an intelligence elasticity protection device based on complicated circuit environment can provide the protection machanism who prevents mistake plug for the important circuit of equipment, reduces the probability of the important circuit mistake plug that artificial operation mode arouses in the traditional fortune dimension mode, reduces the operation risk that equipment arouses because of the circuit is plugged by the mistake to can avoid causing unnecessary incident and loss.
In order to achieve the above object, the utility model provides a following technical scheme:
an intelligent elastic protection device based on a complex line environment comprises:
a frame for placement on a line side of the device;
the protection mechanism is detachably arranged on the frame and is used for being matched with the important line clamping position of the equipment.
Preferably, the protection mechanism comprises: two protection bars;
the two protection strips are arranged side by side and can be detachably arranged between two opposite side frames of the frame and are respectively used for tightly adhering to two sides of the edge of the important line.
Preferably, the protection strip can be elastically inserted between two opposite side frames of the frame;
and two opposite side frames of the frame are respectively provided with inserting holes which are used for being matched with two ends of the protection strip one by one.
Preferably, at least the first end of the protective strip is resiliently compressible in the axial direction.
Preferably, the protective strip comprises: the protection strip shell, the compression strip, the handle and the spring;
at least a second end and a middle part of the compression bar can be arranged in the protection bar shell in an axial sliding mode; the protection strip shell is provided with a through chute along the axial direction; the handle is slidably arranged in the sliding groove, one end of the handle is positioned in the protection strip shell and connected with the middle part of the compression strip, and the other end of the handle is positioned outside the protection strip shell; the spring is located protection strip casing and cover are located the mid portion of expansion strip, and can be in the compression strip slides the compression provides elastic restoring force for it when the spring.
Preferably, the protective strip further comprises: a compression ring and a support ring;
the compression ring is positioned in the protection strip shell and fixedly sleeved on the outer wall of the middle part of the compression strip; the outer ring of the support ring is fixedly sleeved on the inner wall of the protection bar shell, and the middle part of the compression bar penetrates through the inner ring of the support ring; the spring abuts between the compression ring and the support ring.
Preferably, the protection mechanism further comprises:
the locking mechanism is arranged on the frame, is used for matching with the first end of the protection strip, and is used for locking the first end of the protection strip after the protection strip is spliced.
Preferably, the locking mechanism comprises: the locking mechanism comprises a locking mechanism shell, a rolling wheel and a clamping strip;
at least the first end of the clamping strip can be arranged in the locking mechanism shell in an axial sliding mode; the rolling wheel is arranged between the inner wall of the locking mechanism shell and the outer wall of the first end of the clamping strip;
the first end of the protection strip is provided with a groove along the radial direction, and the groove is used for being matched with the second end of the clamping strip.
Preferably, the method further comprises the following steps: the device comprises an instruction input module, a control command analysis module and a self-locking module;
the instruction input module and the control command analysis module are sequentially in communication connection with the self-locking module; the self-locking module can control unlocking and locking of the locking mechanism.
Preferably, the number of the protection mechanisms is multiple, and the protection mechanisms are arranged on the frame side by side and all can be detached.
According to the technical scheme, the utility model provides an among the intelligent elastic protection device based on complicated circuit environment to under complicated circuit environment, can provide the protection mechanism who prevents mistake plug for the important circuit of equipment, reduce the probability of the important circuit mistake plug that artificial operation mode arouses in the traditional fortune dimension mode, reduce equipment and be pulled out the operation risk that arouses because of the circuit is by the mistake, thereby can avoid causing unnecessary incident and loss.
Drawings
In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings used in the description of the embodiments or the prior art will be briefly described below, it is obvious that the drawings in the following description are only some embodiments of the present invention, and for those skilled in the art, other drawings can be obtained according to these drawings without creative efforts.
Fig. 1 is a schematic view of an apparatus provided in an embodiment of the present invention;
fig. 2 is a front view of the device according to the embodiment of the present invention;
fig. 3 is a diagram illustrating a first perspective of an apparatus according to an embodiment of the present invention;
fig. 4 is a structural diagram of a second viewing angle of the apparatus according to the embodiment of the present invention;
fig. 5 is a schematic diagram of the insertion of the protection strip and the clamping of the locking mechanism and the protection strip according to the embodiment of the present invention;
fig. 6 is a front view of a structure of a protection strip according to an embodiment of the present invention;
fig. 7 is a front view of a locking mechanism according to an embodiment of the present invention.
Wherein, 1 is a power supply module; 2, a protection bar clamping recording module; 3 is an instruction input module; 4 is a micro display module; 5 is a control command analysis module; 6 is a self-locking module; 7 is a first mounting hole of the frame; 8 is a second mounting hole of the frame; 9 is a third mounting hole of the frame; 10 is a fourth mounting hole of the frame; 11 is a protection strip, 11-1 is a protection strip shell, 11-2 is a compression strip, 11-3 is a handle, 11-4 is a spring, 11-5 is a compression ring, 11-6 is a support ring, 11-7 is a groove, 11-8 is a first positioning head, and 11-9 is a second positioning head; 12 is a locking mechanism, 12-1 is a locking mechanism shell, 12-2 is a first station, 12-3 is a second station, 12-4 is a rolling wheel, and 12-5 is a clamping strip; 13 is a frame; 14 is a plug hole; 15 is a device; 16 is a first mounting hole of the equipment; 17 is a second mounting hole of the equipment; 18 is a third mounting hole of the equipment; 19 is a fourth mounting hole of the equipment; 20 is a first frame; and 21 is a second frame.
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. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
The embodiment of the utility model provides an intelligence elasticity protection device based on complicated circuit environment, as shown in fig. 2, include:
a frame 13 for being disposed at a line side of the device 15; wherein, the line side of the device 15 refers to the end of the device 15 where the connector lug of the line is located, such as the end of the device 15 provided with four mounting holes in fig. 1, the line is not shown in the figure;
a protection mechanism detachably mounted on the frame 13 for cooperating with a key circuit card of the device 15. Of course, the protection mechanism in this scheme may also constrain important lines in other ways, such as: clamping, and the like.
In this embodiment, it should be further explained that the protection mechanism is used to block the edge of the important line of the equipment 15, so that the important line can be pulled out only by removing the protection mechanism, so as to avoid mistakenly pulling out the important line of the equipment 15. Of course, after the important lines of the equipment 15 are plugged, the protection mechanism is installed in advance; when the important line is maintained, the protection mechanism is detached, and the important line is pulled out, so that the problem of major faults caused by misoperation of the important line by operation and maintenance personnel in a complex line environment is solved. That is to say, this scheme does not influence under the prerequisite that original circuit normally worked, provides the safeguard measure of preventing the mistake and pulling out for the maintenance of important circuit to reduce the probability that has important circuit mistake plug phenomenon to take place in traditional artifical fortune dimension mode to the at utmost.
According to the technical scheme, the embodiment of the utility model provides an among the intelligent elastic protection device based on complicated circuit environment to under complicated circuit environment, can provide the protection mechanism who prevents the mistake and pull out for the important circuit of equipment, reduce the probability of the important circuit mistake plug that artificial operation mode arouses in the traditional fortune dimension mode, reduce equipment and be pulled out the operation risk that arouses because of the circuit is by the mistake, thereby can avoid causing unnecessary incident and loss.
In this aspect, as shown in fig. 2, the protection mechanism includes: two protection bars 11;
the two protection strips 11 are arranged side by side and detachably disposed between two opposite frames (a first frame 20 and a second frame 21) of the frame 13, and are respectively used for tightly adhering to two sides of an edge of an important line. This scheme is promptly through the tight effect of subsides of side by side mated protection strip to the effect of important circuit edge both sides has been blocked in the counterpoint to the realization. That is to say, this scheme is through placing protection strip 11 in the marginal both sides department of important circuit to make present important circuit be in by the fixed state, prevent to operate and maintain personnel and to the mistake operation of inserting and pulling out of important circuit, avoid the influence that artificial misoperation brought. Of course, this scheme so designs, still has simple structure, easy and simple to handle and dismantles characteristics such as convenient. In addition, when using two protection strips 11 to protect important circuit, the distance between two protection strips 11 will guarantee to paste the both sides at important circuit edge tightly, and will be less than the width of important circuit plug, just so can guarantee to play the guard action of preventing the plug to important circuit in the fortune dimension in-process.
Specifically, the protection bar 11 can be elastically inserted between two opposite side frames of the frame 13;
as shown in fig. 3 and 4, two opposite side frames of the frame 13 are respectively provided with insertion holes 14 for matching with two ends of the protection bar 11 one by one. This scheme so designs for the installation of protection strip 11 is firm more, reliable and convenient. Of course, in order to ensure that the protective strip 11 can be inserted normally, the insertion holes 14 of two opposite side frames of the frame 13 are aligned.
In this embodiment, at least the first end of the protective strip 11 is elastically compressible in the axial direction. That is, the protection bar 11 can be quickly inserted by pressing the first end of the protection bar 11. In addition, the protection strip 11 in the scheme is designed into a single-end pressing elastic insertion structure, and the number of matched locking mechanisms is reduced.
Further, as shown in fig. 6, the protective strip 11 includes: a protection bar shell 11-1, a compression bar 11-2, a handle 11-3 and a spring 11-4;
at least the second end and the middle part of the compression bar 11-2 can be arranged in the protection bar shell 11-1 in an axial sliding mode; most parts of the compression strips 11-2 can be arranged in the protection strip shell 11-1 in an axially sliding manner, so that the sliding stability of the compression strips 11-2 is ensured; the protection bar shell 11-1 is provided with a through chute along the axial direction; the handle 11-3 is slidably arranged in the sliding groove, one end of the handle is positioned in the protection bar shell 11-1 and connected with the middle part of the compression bar 11-2, and the other end of the handle is positioned outside the protection bar shell 11-1, so that the handle 11-3 drives the compression bar 11-2 to slide, the effect of controlling the flexibility of the first end of the protection bar 11 is achieved, and the protection bar can be smoothly inserted into the insertion hole 14 of the corresponding frame; the spring 11-4 is located in the protection bar housing 11-1 and sleeved on the middle portion of the expansion bar 11-2, and is capable of providing an elastic restoring force to the compression bar 11-2 when sliding to compress the spring 11-4. Namely, the spring 11-4 can provide a reverse resilience force for the compression of the telescopic bar 11-2, so that after the handle 11-3 is released, the first end of the protection bar 11 is fixed in the inserting hole 14 of the corresponding frame under the action of resilience force, thereby realizing the effect of elastic compression and resilience fixation of the single end of the protection bar 11. The protection strip 11 in this scheme is so designed, has simple structure, grafting reliable and dismantle characteristics such as convenient.
Still further, in order to achieve the effect of elastic compression and rebound of a single end (first end) of the protection bar 11, it is required that the outer wall of the middle part of the compression bar 11-2 is provided with a compression structure for being matched with one end of the spring 11-4, the inner wall of the protection bar shell 11-1 is provided with a support structure (limit structure) for being matched with the other end of the spring 11-4, and the spring 11-4 is abutted between the compression structure and the support structure; accordingly, as shown in fig. 6, the protective strip 11 further includes: a compression ring 11-5 and a support ring 11-6;
wherein, the compression ring 11-5 is used as the compression structure, the compression ring 11-5 is positioned in the protection bar shell 11-1 and fixedly sleeved on the outer wall of the middle part of the compression bar 11-2; the support ring 11-6 is used as the support structure, the outer ring of the support ring 11-6 is fixedly sleeved on the inner wall of the protection bar shell 11-1, and the middle part of the compression bar 11-2 passes through the inner ring of the support ring 11-6; the spring 11-4 abuts between the compression ring 11-5 and the support ring 11-6.
In this aspect, as shown in fig. 2, the protection mechanism further includes:
a first frame 20 arranged on the frame 13 and used for matching with the first end of the protection strip 11, and a locking mechanism 12 used for locking the first end of the protection strip 11 after the protection strip is inserted. The scheme is designed so as to realize the locking effect on the elastic inserting end of the protection strip 11, so that the handle 11-3 of the protection strip 11 can not be operated in a sliding manner, and the misoperation of the handle 11-3 by operation and maintenance personnel can be effectively prevented, thereby avoiding the mistaken taking-off of the protection strip 11. That is to say, this scheme has played through the screens effect of protection strip 11 to important circuit in case the mistake is pulled out and is inserted the purpose of important circuit, and then locking mechanism 12 has realized the locking function to protection strip 11 after pegging graft to play further reinforcing and prevent pulling out the purpose of inserting important circuit in case the mistake.
Specifically, as shown in fig. 7, the locking mechanism 12 includes: a locking mechanism shell 12-1, a rolling wheel 12-4 and a clamping strip 12-5;
at least the first end of the clamping strip 12-5 can be arranged in the locking mechanism shell 12-1 in an axial sliding manner; the rolling wheel 12-4 is arranged between the inner wall of the locking mechanism shell 12-1 and the outer wall of the first end of the clamping strip 12-5;
the first end of the protection bar 11 is provided with a groove 11-7 along the radial direction for matching with the second end of the clamping bar 12-5, the structure of which can be seen in fig. 6, of course, the groove 11-7 is mainly used for ensuring the locking state of the protection bar 11. That is to say, in the scheme, the rolling wheel 12-4 drives the clamping strip 12-5 to slide, so that the clamping strip 12-5 is clamped into the groove 11-7 at the first end of the protection strip 11 when sliding out to the first station 12-2, and slides back to the second station 12-3 to be separated from the groove 11-7 at the first end of the protection strip 11, and therefore the effect of sliding clamping the first end of the protection strip 11 is achieved, and the clamping device has the characteristics of simple structure, convenience in locking and the like. Of course, as shown in fig. 5, the locking mechanism 12 is disposed perpendicular to the first end of the protective stripping 11.
Further, as shown in fig. 2, the embodiment of the present invention provides an intelligent elastic protection device based on a complex circuit environment, which further includes: the device comprises an instruction input module 3, a control command analysis module 5 and a self-locking module 6;
the instruction input module 3 and the control command analysis module 5 are sequentially in communication connection with the self-locking module 6; the self-locking module 6 is capable of controlling the unlocking and locking of the locking mechanism 12. Namely, the self-locking module 6 can control the running of the rolling wheel 12-4 of the locking mechanism 12, so as to control the sliding state of the clamping strip 12-5, namely, the self-locking module 6 can control the matching condition of the clamping strip 12-5 and the groove at the first end of the protection strip 11. More specifically, according to the scheme, firstly, an unlocking or locking instruction (also including inputting corresponding position information of the protection bar 11) is input through the instruction input module 3, then the instruction input module 3 sends the input instruction to the control instruction analysis module 5, the control instruction analysis module 5 analyzes the input instruction, and then an instruction analysis result is sent to the self-locking module 6; the operation of the locking mechanism is controlled by the self-locking module 6 according to the instruction analysis result (unlocking or locking), so that the intelligent unlocking or locking of the protection bar 11 is realized, and intelligent protection measures are realized for preventing the mistaken plugging and unplugging of important lines, so that the use experience of operation and maintenance personnel can be promoted.
Still further, the quantity of protection mechanism is a plurality of, and a plurality of protection mechanisms are side by side and all can dismantle the setting at frame 13. This scheme so designs to played the effect of preventing mistake and pull out and insert a plurality of important circuits of equipment 15, so that this scheme is applicable to the protection work that a plurality of important circuits under the complicated line environment were prevented mistake and are pulled out and insert. As shown in fig. 2, a plurality of protection mechanisms (protection bars 11 paired side by side) of the present solution are detachably disposed side by side between the first frame 20 and the second frame 21 of the frame 13, so that the present solution can be applied to protection against mis-plugging and mis-plugging of a plurality of important lines located on the same vertical plane.
The scheme is further described by combining the specific embodiment as follows:
the utility model discloses the technical problem who solves:
in order to solve the problem of the major fault that fortune dimension personnel caused important circuit maloperation among the complicated line environment, the utility model provides an intelligence elasticity protection device based on complicated line environment, the suitable frame of geometric framework structure preparation according to equipment, the design theory of protection strip is introduced to the rethread, then recycle power module, protection strip screens record module, instruction input module, miniature display module, the analytic module of control command and self-locking module etc. under the prerequisite that does not influence original circuit normal work, maintenance for important circuit provides necessary safeguard measure, reduce the probability that has important circuit mistake plug phenomenon to take place in the artifical fortune dimension mode of tradition in the at utmost.
The technical scheme of the utility model:
the utility model relates to a technical field is an intelligence elasticity protection device based on complicated circuit environment, as shown in figure 2, this device mainly includes: the device comprises a power module, a protection bar clamping position recording module, an instruction input module, a micro display module, a control command analysis module, a self-locking module and the like.
The power module 1 mainly provides power for other modules.
The protection strip position-clamping recording module 2 is mainly used for recording the number of protection strips and the use condition. When an operation and maintenance person connects an important line, a protection strip is installed on the equipment according to the characteristics of the line, and the protection strip clamping recording module records corresponding position information inserted by the protection strip. When an operation and maintenance person needs to pull out an important line, the line protection strip should be taken down first, and the protection strip position clamping recording module deletes corresponding position information of the protection strip.
The instruction input module 3 is mainly used for inputting commands when the operation and maintenance personnel need to take off the protection strip at a certain position, and the operation and maintenance personnel sequentially comprises the following steps: unlocking, protecting the position information of the bar, confirming, and transmitting the command to a control command analysis module for analysis. When the operation and maintenance personnel need to install the protection strip at a certain position, the module is used for inputting commands, and the following steps are carried out in sequence: fixing, protecting the position information of the bar, confirming, and transmitting the command to a control command analysis module for analysis.
The micro-display module 4 is mainly used for displaying input information when the operation and maintenance personnel use the instruction input module.
The control command analysis module 5 mainly analyzes the control information transmitted by the instruction input module, judges that the current mode is a protection bar unlocking or fixing mode, and transmits an analysis result to the self-locking module.
The self-locking module 6 is mainly used for executing the command transmitted by the control command analysis module. When the control command transmitted by the command input module is in the protection strip unlocking state, the self-locking module controls the protection strip self-locking control module needing unlocking to be in the unlocking state, and operation and maintenance personnel take down the protection strip. When the control command transmitted by the command input module is in a protection strip fixing state, the self-locking module controls the protection strip self-locking control module needing unlocking to be in a locking state, and operation and maintenance personnel install the protection strip.
The main purpose of the device back plate fixing hole (for example, the mounting hole of the frame 13 in fig. 2 is a frame mounting hole) is to facilitate the fixed connection between the main structure of the device (i.e., the frame 13) and the equipment 15; of course, the equipment 15 is also provided with a mounting hole for matching with the frame 13 of the device, that is, the equipment mounting hole, and the equipment mounting hole and the frame mounting hole are both multiple and are arranged in one-to-one alignment, and the frame 13 can be fixedly assembled with the equipment 15 through screws.
The line protection bar 11 is an elongated elastic expansion mechanism made of a metal material, and its structure is shown in fig. 6. The edge through at important circuit places the protection strip, makes current protection strip be in fixed state, prevents that fortune dimension personnel from pulling out the operation to the mistake of important circuit, avoids the influence that artificial misoperation brought. Wherein, the handle 11-3 of the protection bar is mainly used for controlling the flexibility of the protection bar so that the protection bar can be placed in the hole positions at the upper edge and the lower edge of the device. The spring structure is mainly used for ensuring that the upper end and the lower end of the protection strip can be fixed in corresponding hole positions of the device through the spring structure after operation and maintenance personnel loosen the operating handle. The grooves 11-7 are mainly intended to ensure the locking of the protective strip. The first positioning head 11-8 and the second positioning head 11-9 of the protection strip are mainly used for being respectively inserted into the insertion holes 14 of the upper frame and the lower frame (the first frame 20 and the second frame 21) of the device.
The protective bar locking mechanism 12 is mainly controlled by a self-locking module, and the main structure of the protective bar locking mechanism is shown in fig. 7. The main structure of the protection bar locking mechanism (i.e. the locking mechanism housing 12-1, as shown in fig. 2, as a small black square frame) can be fixed at the upper frame of the main structure of the device in fig. 2 (i.e. the frame 13), the first station 12-2 and the second station 12-3 respectively represent the moving range of the clamping bar 12-5, and the rolling wheel 12-4 of the locking mechanism is controlled by the self-locking module 6 to be in a working state.
When the self-locking mode is the locking state, the clamping strip 12-5 in fig. 7 slides into the groove 11-7 (as shown in fig. 6) of the protection strip, the clamping process of the clamping strip and the protection strip can be shown in fig. 5, at this time, the protection strip is in the locking state, and at this time, the protection strip cannot be taken out by sliding the handle 11-3 up and down; when the self-locking mode is the unlocking fixed state, the clamping strip 12-5 in the figure 7 slides out of the groove 11-7 of the protection strip, at the moment, the protection strip is in the unlocking state, and at the moment, the protection strip can be taken down by sliding the handle 11-3 up and down.
The protection strip inserting hole positions (namely the inserting holes 14) of the upper frame and the lower frame are corresponding to the protection strip locking mechanism, one protection strip inserting hole position of the upper frame (namely the first frame 20) corresponds to one protection strip locking mechanism, only the protection strip inserting hole position of the lower frame (namely the second frame 21) corresponds to the position of the hole positions of the upper frame and the lower frame, and therefore the protection strips can be placed smoothly. It should be noted that the distance between the holes should not be too large, and a certain number should be kept, so that the applicability of the device to different thickness lines can be ensured. When two protection strips are used for protecting an important line, the distance between the two protection strips is ensured to be close to the edge of the important line and smaller than the width of an important line plug, so that the plugging protection effect on the important line in the operation and maintenance process can be ensured.
The operation steps of the device can be divided into the following two conditions according to different use conditions of operation and maintenance personnel:
the first use case:
when the operation and maintenance personnel need to pull out the interface line of the important line of the equipment, the following operations are required:
step 1: when an operation and maintenance person needs to pull out an important line, the position information of the protection strip needs to be input into the instruction input module, and the operation is executed after the information is confirmed to be correct;
step 2: on the basis of the step 1, transmitting control information of the instruction input module to a control command analysis module, carrying out command analysis by the control command analysis module, determining corresponding position information of protective strips on two sides of an important line to be pulled down, and controlling a self-locking module at the position to be in an unlocking state;
and step 3: on the basis of the step 2, the locking mechanism at the target protection strip starts to work, the clamping strip state of the locking mechanism is controlled through the rolling wheel, the clamping strip in the current state is separated from the groove position of the protection strip, and the operating handle of the current protection strip can slide up and down;
and 4, step 4: on the basis of the step 3, the operation and maintenance personnel take down the protection strips at the corresponding positions by sliding the operation handle;
and 5: on the basis of the step 4, the protection strip position clamping recording module adjusts the use record with the protection strip taken down, and deletes the position information of the protection strip;
step 6: and (5) on the basis of the step 5, the operation and maintenance personnel unplug the important line plug to finish the operation of taking out the important line plug.
The second use case:
when the operation and maintenance personnel need to plug in an interface line of an important line of the equipment, the following operations are required:
step 1: when the operation and maintenance personnel need to plug an interface line of an important line, the line connection is carried out after finding the corresponding interface to confirm that the interface is correct;
step 2: on the basis of the step 1, taking out two protection strips according to the thickness characteristics of the interface line, and fixing the two sides of the interface line along the upper edge and the lower edge of the device;
and step 3: on the basis of the step 2, carrying out stability test on the protection strips to see whether the interface line is loosened or not; more specifically, after the plug wire is fixed by the protection strip, the protection strip is shaken or pressed by hands to see whether the plug wire is loosened;
and 4, step 4: on the basis of the step 3, if the interface line does not have a loose condition, inputting corresponding position information of the two protection strips in the instruction input module;
and 5: on the basis of the step 4, transmitting the control information of the instruction input module to a control command analysis module, carrying out command analysis by the control command analysis module, determining the corresponding position information of the protection strip, and controlling the self-locking module at the position to be in a locking state;
step 6: on the basis of the step 5, the locking mechanism at the target protection strip starts to work, the clamping strip state of the locking mechanism is controlled through the rolling wheel, the clamping strip in the current state is placed at the groove position of the protection strip, and the operating handle of the current protection strip cannot slide up and down;
and 7: and finishing important line access work and protective measures on the basis of the step 6.
The utility model discloses the beneficial effect who brings:
the utility model provides an intelligence elasticity protection device based on complicated circuit environment mainly is for providing necessary protection for important circuit under the current complicated circuit environment, reduces the probability of the important circuit mistake plug that artificial operation mode arouses in the traditional fortune dimension mode, can effectively solve traditional manual operation in-process inefficiency, safe risk scheduling problem through this protection device, avoids causing the unnecessary incident.
The utility model discloses a key point with want the guard point:
the utility model provides an intelligence elasticity protection device based on complicated circuit environment mainly can divide into device frame, protection strip, power module, protection strip screens record module, instruction input module, miniature display module, the analytic module of control command and from locking module etc. for important circuit under the complicated circuit environment connects and pulls out line protection work, mainly has following several to want the guard point:
the utility model discloses want to protect an intelligence elasticity protection device's overall structure design based on complicated circuit environment.
The utility model discloses want to protect a main part's of intelligence elasticity protection device mechanism design based on complicated circuit environment.
The utility model discloses want to protect the design of the device frame among the intelligence elasticity protection device based on complicated line environment.
The utility model discloses want to protect a power module's in intelligent elasticity protection device based on complicated circuit environment design.
The utility model discloses want to protect the design of the protection strip among the intelligence elasticity protection device based on complicated line environment.
The utility model discloses want to protect a design of protection strip locking mechanism among the intelligent elasticity protection device based on complicated line environment.
The utility model discloses want to protect a design of protection strip screens record module among the intelligence elasticity protection device based on complicated line environment.
The utility model discloses want to protect the design of an instruction input module among the intelligence elasticity protection device based on complicated line environment.
The utility model discloses want to protect the design of miniature display module among the intelligent elasticity protection device based on complicated circuit environment.
The utility model discloses want to protect the design of the analytic module of control command among the intelligent elasticity protection device based on complicated line environment.
The utility model discloses want to protect the design of the self-locking module among the intelligence elasticity protection device based on complicated line environment.
The embodiments in the present description are described in a progressive manner, each embodiment focuses on differences from other embodiments, and the same and similar parts among the embodiments are referred to each other.
The previous description of the disclosed embodiments is provided to enable any person skilled in the art to make or use the present invention. Various modifications to these embodiments will be readily apparent to those skilled in the art, and the generic principles defined herein may be applied to other embodiments without departing from the spirit or scope of the invention. Thus, the present invention is not intended to be limited to the embodiments shown herein but is to be accorded the widest scope consistent with the principles and novel features disclosed herein.

Claims (10)

1. An intelligent elastic protection device based on a complex line environment is characterized by comprising:
a frame (13) for being disposed at a line side of the device (15);
and the protection mechanism is detachably arranged on the frame (13) and is used for being matched with an important line clamp position of the equipment (15).
2. The intelligent resilient protection device based on complex line environment of claim 1, wherein said protection mechanism comprises: two protective strips (11);
the two protection strips (11) are arranged side by side and can be detachably arranged between two opposite side frames of the frame (13) and are respectively used for tightly adhering to two sides of the edge of the important line.
3. The intelligent elastic protection device based on the complex line environment is characterized in that the protection strip (11) can be elastically inserted between two opposite side frames of the frame (13);
two opposite side frames of the frame (13) are respectively provided with inserting holes (14) which are used for being matched with two ends of the protection strip (11) one by one.
4. Intelligent elastic protection device based on complex line environment according to claim 3, characterized in that at least the first end of the protection bar (11) is elastically compressible in axial direction.
5. Intelligent elastic protection device based on complex line environment according to claim 4, characterized by that, the protection bar (11) comprises: a protection bar shell (11-1), a compression bar (11-2), a handle (11-3) and a spring (11-4);
at least the second end and the middle part of the compression bar (11-2) can be arranged in the protection bar shell (11-1) in an axial sliding mode; the protection strip shell (11-1) is provided with a through chute along the axial direction; the handle (11-3) is slidably arranged in the sliding groove, one end of the handle is positioned in the protection bar shell (11-1) and connected with the middle part of the compression bar (11-2), and the other end of the handle is positioned outside the protection bar shell (11-1); the spring (11-4) is positioned in the protection strip shell (11-1) and sleeved at the middle part of the compression strip (11-2), and can provide elastic restoring force for the compression strip (11-2) when the compression strip (11-2) slidably compresses the spring (11-4).
6. Intelligent elastic protection device based on complex line environment, according to claim 5, characterized by that said protection bar (11) further comprises: a compression ring (11-5) and a support ring (11-6);
the compression ring (11-5) is positioned in the protective strip shell (11-1) and fixedly sleeved on the outer wall of the middle part of the compression strip (11-2); the outer ring of the support ring (11-6) is fixedly sleeved on the inner wall of the protection bar shell (11-1), and the middle part of the compression bar (11-2) penetrates through the inner ring of the support ring (11-6); the spring (11-4) is abutted between the compression ring (11-5) and the support ring (11-6).
7. The intelligent resilient protection device based on complex line environment of claim 4, wherein said protection mechanism further comprises:
the first frame (20) is arranged on the frame (13) and used for being matched with the first end of the protection strip (11), and the locking mechanism (12) is used for locking the first end of the protection strip (11) after the protection strip is spliced.
8. The intelligent resilient protection device based on complex line environment as claimed in claim 7, wherein the locking mechanism (12) comprises: a locking mechanism shell (12-1), a rolling wheel (12-4) and a clamping strip (12-5);
at least the first end of the clamping strip (12-5) can be arranged in the locking mechanism shell (12-1) in an axial sliding mode; the rolling wheel (12-4) is arranged between the inner wall of the locking mechanism shell (12-1) and the outer wall of the first end of the clamping strip (12-5);
the first end of the protection strip (11) is provided with a groove (11-7) which is matched with the second end of the clamping strip (12-5) along the radial direction.
9. The intelligent resilient protection device based on complex line environment of claim 7, further comprising: the device comprises an instruction input module (3), a control command analysis module (5) and a self-locking module (6);
the instruction input module (3) and the control command analysis module (5) are sequentially in communication connection with the self-locking module (6); the self-locking module (6) can control unlocking and locking of the locking mechanism (12).
10. Intelligent elastic protection device based on complex line environment according to any one of claims 1-8, characterized by that, the number of protection mechanisms is multiple, and multiple protection mechanisms are arranged side by side and all detachable at the frame (13).
CN202121192883.2U 2021-05-31 2021-05-31 Intelligent elastic protection device based on complex line environment Active CN214846716U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202121192883.2U CN214846716U (en) 2021-05-31 2021-05-31 Intelligent elastic protection device based on complex line environment

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202121192883.2U CN214846716U (en) 2021-05-31 2021-05-31 Intelligent elastic protection device based on complex line environment

Publications (1)

Publication Number Publication Date
CN214846716U true CN214846716U (en) 2021-11-23

Family

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN202121192883.2U Active CN214846716U (en) 2021-05-31 2021-05-31 Intelligent elastic protection device based on complex line environment

Country Status (1)

Country Link
CN (1) CN214846716U (en)

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