CEMS probe filtering device

By designing the filter device of fixtures, limiting components, filter parts, slip parts and return springs on the CEMS system probe, the problem of the probe being blocked due to impurities in the flue gas is solved, the normal use of the probe and the regular cleaning of the filter screen are achieved, and the operation efficiency of the device is maintained.

WO2025103087A1PCT designated stage expired Publication Date: 2025-05-22FANPING BRANCH OF HUANENG GANSU ENERGY DEVELOPMENT CO LTD

Patent Information

Application Number
PCT/CN2024/126182
Authority / Receiving Office
WO · WO
Patent Type
Applications
Current Assignee / Owner
Priority Date
2023-11-13
Filing Date
2024-10-21
Publication Date
2025-05-22

AI Technical Summary

Technical Problem

After long-term use, the CEMS system probe is easily blocked by solid impurities such as dust and dust in the flue gas, which will affect the use of the device.

Method used

A probe filter device including a fixing member, a limiting assembly, a filter part, a slip member and a return spring is designed. The flue gas is filtered through the arrangement of the fixing member and the filter, and the rotating member is combined with the positioning member to realize the regular cleaning of the filter.

Benefits of technology

It effectively avoids clogging of the probe and the heat-trapping pipe, prevents damage to the device, and maintains its filtering effect by cleaning the filter regularly.

✦ Generated by Eureka AI based on patent content.

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Abstract

Disclosed in the present invention is a CEMS probe filtering device, comprising: a mounting part comprising a fixed member, a limiting assembly provided on the fixed member, and a filtering portion provided in the fixed member; and an elastic part comprising sliding members provided on the limiting assembly and reset springs provided on the outer sides of the sliding members, wherein the sliding members are connected to the filtering portion, and a first through-slot and a second through-slot are respectively formed at two ends of the fixed member. According to the present invention, by arranging the fixed member and a filter screen, flue gas entering a probe is filtered, thereby avoiding blockage of the probe and a heat tracing pipe, and preventing the device from being damaged; and by means of cooperation of a rotating part and a positioning part, when the filter screen is suctioned to slide, a cleaning assembly can clean the filter screen, thereby achieving the effect of regularly cleaning the filter screen, avoiding blockage of the filter screen, and keeping the filtering effect of the filter screen.
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Description

A CEMS system probe filtering device Technical Field

[0001] The present invention relates to the technical field of CEMS systems, and in particular to a CEMS system probe filtering device. Background Art

[0002] The CEMS system refers to an automatic flue gas monitoring system, which is used to continuously monitor the concentration and total amount of gaseous pollutants and particulate matter emitted by atmospheric pollution sources, and transmit real-time monitoring information. When in use, the system extracts flue gas through a probe for monitoring. However, after long-term use, solid impurities such as dust and dust particles mixed in the flue gas can easily cause blockage of the probe or heating pipe, thereby affecting the use of the device.

[0003] Summary of the Invention

[0004] In view of the above-mentioned problems existing in the existing CEMS system probe filtering device, the present invention is proposed.

[0005] Therefore, an object of the present invention is to provide a CEMS system probe filtering device.

[0006] In order to solve the above technical problems, the present invention provides the following technical solutions: comprising:

[0007] The mounting component includes a fixing member, a limiting assembly provided on the fixing member, and a filter portion provided in the fixing member;

[0008] The elastic component comprises a sliding member provided on the limiting assembly and a return spring provided outside the sliding member;

[0009] Wherein, the sliding member is connected to the filter portion, and a through slot 1 and a through slot 2 are respectively formed at two ends of the fixing member.

[0010] As a preferred solution of the CEMS system probe filter device of the present invention, wherein: the limiting assembly includes a limiting ring provided in the fixing member and a stopper provided on the inner wall of the fixing member;

[0011] The filter portion includes a fixing frame slidably arranged in the fixing member and a filter screen arranged in the fixing frame;

[0012] Wherein, the fixing frame is arranged between the limiting ring and the stop block, the sliding member is arranged on the limiting ring, and the limiting ring is provided with a circular groove corresponding to the sliding member.

[0013] As a preferred solution of the CEMS system probe filtering device of the present invention, wherein: the sliding member includes a guide rod slidably connected to the limit ring, and a circular plate provided at the end of the guide rod;

[0014] The guide rod is connected to the fixed frame, the limiting ring is slidably connected to the guide rod through a circular groove, and the reset spring is sleeved on the outside of the guide rod.

[0015] As a preferred solution of the CEMS system probe filtering device of the present invention, it further comprises a rotating component, which includes a fixing frame provided on one side of the fixing frame and a cleaning component provided on the fixing frame;

[0016] A positioning component, comprising a top frame provided at the end of the fixing member, a guide portion provided on the top frame, and a follower provided on the cleaning assembly;

[0017] The follower can be guided to rotate by the guide portion.

[0018] As a preferred solution of the CEMS system probe filtering device of the present invention, wherein: the cleaning assembly includes a rotating shaft provided on a fixed frame, and a brush plate provided at the end of the rotating shaft;

[0019] Wherein, the follower is arranged outside the rotating shaft.

[0020] As a preferred embodiment of the CEMS system probe filter device of the present invention, the guide portion includes a connecting column provided on the top frame, a cylinder provided at the end of the connecting column, and a spiral groove provided on the outer side of the cylinder;

[0021] The spiral groove can guide the follower.

[0022] As a preferred solution of the CEMS system probe filtering device of the present invention, wherein: the follower includes a side frame provided on the rotating shaft and a guide column provided on one side of the side frame;

[0023] Wherein, the guide column extends into the spiral groove.

[0024] As a preferred embodiment of the CEMS system probe filter device of the present invention, it further comprises a striking component, which includes a sleeve member provided on the connecting column, a reset component provided on the rotating shaft, and an abutment component provided on the reset component;

[0025] Wherein, the sleeve member is sleeved with the cylinder, and the abutment assembly abuts against the sleeve member and can rotate.

[0026] As a preferred embodiment of the CEMS system probe filter device of the present invention, the reset assembly includes an articulated seat provided on the outside of the rotating shaft, a connecting groove provided in the articulated seat, a fixed shaft provided in the connecting groove, a cylinder sleeved on the outside of the fixed shaft, and a disc spring provided between the fixed shaft and the cylinder;

[0027] Wherein, the interference component is arranged on the outside of the sleeve.

[0028] As a preferred embodiment of the CEMS system probe filter device of the present invention, the interference assembly includes a long rod provided on the outside of the sleeve, a first fixing post provided on the long rod, a short rod provided on the outside of the sleeve, and a second fixing post provided on the short rod;

[0029] The first fixing column contacts the outer side of the sleeve, and the rotation of the short rod can drive the second fixing column to contact the filter.

[0030] The beneficial effects of the present invention are as follows: by setting the fixing part and the filter, the flue gas entering the probe is filtered, thus avoiding blockage of the probe and the heating pipe and preventing damage to the device; by cooperating with the rotating part and the positioning part, the cleaning component can clean the filter when the filter is sucked and slides, thereby achieving the effect of regularly cleaning the filter, avoiding blockage of the filter, and maintaining the filtering effect of the filter. BRIEF DESCRIPTION OF THE DRAWINGS

[0031] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the following briefly introduces the drawings required for describing the embodiments. Obviously, the drawings described below are only some embodiments of the present invention. For those skilled in the art, other drawings can be derived from these drawings without inventive effort. Among them:

[0032] FIG1 is a schematic diagram of the overall structure of the CEMS system probe filtering device of the present invention.

[0033] FIG2 is a schematic structural diagram of the filter unit in the present invention.

[0034] FIG3 is a cross-sectional view of the fixing member of the present invention.

[0035] FIG4 is a schematic structural diagram of the rotating component in the present invention.

[0036] FIG5 is a schematic structural diagram of the positioning component in the present invention.

[0037] FIG6 is a schematic structural diagram of the striking component of the present invention.

[0038] FIG7 is a cross-sectional view of the sleeve member of the present invention.

[0039] FIG8 is an enlarged view of point A in FIG7 of the present invention. DETAILED DESCRIPTION

[0040] In order to make the above-mentioned objects, features and advantages of the present invention more obvious and easy to understand, the specific embodiments of the present invention are described in detail below with reference to the accompanying drawings.

[0041] In the following description, many specific details are set forth to facilitate a full understanding of the present invention. However, the present invention may also be implemented in other ways different from those described herein. Those skilled in the art may make similar generalizations without violating the connotation of the present invention. Therefore, the present invention is not limited to the specific embodiments disclosed below.

[0042] Secondly, the term "one embodiment" or "embodiment" herein refers to a specific feature, structure, or characteristic that may be included in at least one implementation of the present invention. The phrase "in one embodiment" appearing in various places throughout this specification does not necessarily refer to the same embodiment, nor does it refer to a separate or selective embodiment that is mutually exclusive of other embodiments.

[0043] Furthermore, the present invention is described in detail with reference to schematic diagrams. For ease of illustration, when describing the embodiments of the present invention, cross-sectional views illustrating device structures may be partially enlarged and not to scale. Furthermore, the schematic diagrams are merely illustrative and should not limit the scope of protection of the present invention. Furthermore, in actual production, the three-dimensional dimensions of length, width, and depth should be included.

[0044] Example 1

[0045] 1 to 3 , a CEMS system probe filtering device is provided, comprising a mounting component 100 including a fixing member 101 , a limiting assembly 102 disposed on the fixing member 101 , and a filtering portion 103 disposed in the fixing member 101 ;

[0046] The elastic component 200 includes a sliding member 201 provided on the limiting assembly 102 and a return spring 202 provided on the outside of the sliding member 201; wherein the sliding member 201 is connected to the filter part 103, and a through groove 101a and a through groove 2 101b are respectively provided at both ends of the fixing member 101. The fixing member 101 is cylindrical as a whole, and is sleeved on the outside of the probe S through the through groove 101a at the end, and fixes the fixing member 101 on the probe S. A limiting assembly 102 is fixedly provided in the fixing member 101, and the filter part 103 is slidably provided in the fixing member 101, and the filter part 103 is located at the front end of the probe S. The limiting assembly 102 can limit the stroke of the filter part 103, and the edge of the filter part 103 is in contact with the inner wall of the fixing member 101, so that the filter part 103 always corresponds to the end of the probe S, so that the flue gas must pass through the filter part 103 before entering the probe S, thereby preventing impurities from entering the equipment and then preventing the probe S and the heating pipe from being blocked.

[0047] Furthermore, the limiting assembly 102 includes a limiting ring 102a provided in the fixing member 101, and a stopper 102b provided on the inner wall of the fixing member 101; the filter portion 103 includes a fixing frame 103a slidably provided in the fixing member 101, and a filter screen 103b provided in the fixing frame 103a; wherein the fixing frame 103a is provided between the limiting ring 102a and the stopper 102b, the sliding member 201 is provided on the limiting ring 102a, the limiting ring 102a has a circular groove 102c corresponding to the sliding member 201, and the limiting ring 102a is fixedly provided on the inner wall of the fixing member 101 , the limiting ring 102a is at a certain distance from the end of the probe S, and a stopper 102b is fixedly provided on the inner wall of the fixing part 101 away from the limiting ring 102a. The fixing frame 103a is slidably arranged between the fixed limiting ring 102a and the stopper 102b, so that the limiting ring 102a and the stopper 102b can limit the sliding stroke of the fixing frame 103a. A filter screen 103b is fixed in the fixing frame 103a, and the edge of the fixing frame 103a is in contact with the inner wall of the fixing part 101, so that the filter screen 103b remains in a corresponding state with the end of the probe S, ensuring that the smoke entering the probe S can be filtered.

[0048] Furthermore, the sliding member 201 includes a guide rod 201a slidably connected to the limiting ring 102a and a circular plate 201b provided at the end of the guide rod 201a; wherein the guide rod 201a is connected to the fixed frame 103a, the limiting ring 102a is slidably connected to the guide rod 201a through the circular groove 102c, the return spring 202 is sleeved on the outside of the guide rod 201a, and the guide rod 201a is provided with multiple groups, and the multiple groups of guide rods 201a are all slidably provided on the limiting ring 102a. In the circular groove 102c of the positioning ring 102a, a circular plate 201b is fixedly provided at one end of the guide rod 201a close to the probe S. The diameter of the circular plate 201b is larger than the diameter of the circular groove 102c. The other end of the guide rod 201a is fixed on the fixed frame 103a to prevent the guide rod 201a from detaching from the limiting plate. The two ends of the reset spring 202 respectively conflict with the limiting ring 102a and the fixed frame 103a. The conflict of the reset spring 202 prevents the displacement of the filter part 103.

[0049] Example 2

[0050] 1 to 5 , this embodiment differs from the first embodiment in that it further includes a rotating member 300 , which includes a fixing frame 301 disposed on one side of the fixing frame 103 a and a cleaning assembly 302 disposed on the fixing frame 301 ;

[0051] The positioning component 400 includes a top frame 401 provided at the end of the fixing member 101, a guide portion 402 provided on the top frame 401, and a follower 403 provided on the cleaning component 302; wherein the follower 403 can be guided to rotate by the guide portion 402, the fixing frame 301 is "L"-shaped, fixedly provided on one side of the fixing frame 103a, the cleaning component 302 is rotatably connected to the fixing frame 301, the top frame 401 is fixedly provided at the top end of the fixing member 101, the top frame 401 is fixedly provided with a guide portion 402, and the guide portion 402 is located at the cleaning component At the front end of 302, the follower 403 is movably connected to the guide part 402. When the filter 103b is used for a period of time and becomes clogged, the probe S sucks the filter 103b toward it when extracting smoke. The fixed frame 103a slides and drives the follower 403 to move outside the guide part 402. The guide part 402 guides the follower 403, so that the follower 403 drives the cleaning component 302 to rotate. The impurities on the surface of the filter 103b are cleaned by the rotation of the cleaning component 302. After cleaning, the return spring 202 pushes the filter 103b to reset.

[0052] Furthermore, the cleaning assembly 302 includes a rotating shaft 302a provided on the fixed frame 301, and a brush plate 302b provided at the end of the rotating shaft 302a; wherein the follower 403 is provided on the outside of the rotating shaft 302a, the rotating shaft 302a is rotatably connected to the fixed frame 301, and the rotating shaft 302a corresponds to the center of the filter 103b, and the brush plate 302b is fixed at the end of the rotating shaft 302a, and the length of the brush plate 302b is the same as the radius of the filter 103b, so that the rotating shaft 302a can be cleaned. The surface of the filter 103b can be completely cleaned by rotating the shaft 302a one circle. The bristles on the brush plate 302b fit the surface of the filter 103b, so that it can clean the filter 103b. The follower 403 is fixedly arranged on the outside of the rotating shaft 302a, so that when the fixed frame 103a drives the rotating shaft 302a, it can drive the follower 403 to slide synchronously. Then, the guide part 402 guides the follower 403, so that the brush plate 302b can rotate to clean the surface of the filter 103b.

[0053] Furthermore, the guide portion 402 includes a connecting column 402a provided on the top frame 401, a cylinder 402b provided at the end of the connecting column 402a, and a spiral groove 402c opened on the outside of the cylinder 402b; wherein, the spiral groove 402c can guide the follower 403, and the connecting column 402a is fixedly provided on the top frame 401, and the end of the connecting column 402a is fixedly connected to the cylinder 402b, and the center of the cylinder 402b is on the same line as the center of the rotating shaft 302a to prevent the follower 403 from separating from the cylinder 402b. The cylinder 402b is located at the front end of the rotating column, and a spiral groove 402c is opened on the surface of the cylinder 402b. When the follower 403 slides, the spiral groove 402c guides the follower 403 to rotate, and then drives the brush plate 302b to rotate through the rotating shaft 302a.

[0054] Furthermore, the follower 403 includes a side frame 403a provided on the rotating shaft 302a, and a guide column 403b provided on one side of the side frame 403a; wherein the guide column 403b extends into the spiral groove 402c, and the side frame 403a is fixedly provided on the outside of the rotating shaft 302a, and the side frame 403a is provided at a position of the rotating shaft 302a away from the fixed frame 301 and close to the cylinder 402b, so as to prevent the side frame 403a from colliding with the fixed frame 301 during rotation. Interference, and the side frame 403a is partially located on one side of the cylinder 402b, and a guide column 403b is fixedly provided on the side of the side frame 403a close to the surface of the cylinder 402b, and the guide column 403b extends into the spiral groove 402c. When the side frame 403a moves following the rotation shaft 302a, the spiral groove 402c guides the guide column 403b, so that the side frame 403a rotates around the axis of the cylinder 402b, and then drives the rotation shaft 302a to rotate.

[0055] The rest of the structure is the same as that of Example 1.

[0056] Operation process: In the initial state, the fixing frame 103a contacts the stopper 102b, the fixing post is located in the spiral groove 402c on the side close to the connecting post 402a, and the spring contacts the filter 103b to prevent it from sliding, so that the filter 103b filters the smoke entering the probe S;

[0057] When the filter screen 103b is clogged, the probe S draws air to drive the filter screen 103b to slide closer to it. When the filter screen 103b slides, the guide rod 201a guides and limits it. At the same time, the fixed frame 103a slides and squeezes the return spring 202 to compress. The fixed frame 103a drives the side frame 403a to slide through the movable frame. Since the side frame 403a is rotatably connected to the fixed frame 301 through the rotating shaft 302a, and the cylinder 402b is in a fixed state, when the side frame 403a slides, the guide column 403b is guided by the spiral groove 402c, so that the side frame 403a The brush plate 302b is driven to rotate by the rotating shaft 302a, and the brush plate 302b rotates to clean the surface of the filter screen 103b. When the guide column 403b moves to the end of the spiral groove 402c, the brush plate 302b rotates one circle, so that the filter screen 103b is fully cleaned. When the filter screen 103b is cleaned, it can no longer be sucked by the probe S. The reset spring 202 pushes the filter screen 103b back to its original position through the fixed frame 103a. The cleaned impurities fall into the fixed part 101. When the filter screen 103b is reset, the fixed frame 103a pushes the impurities out of the fixed part 101.

[0058] By setting the fixing part 101 and the filter 103b, the flue gas entering the probe S is filtered to avoid blockage of the probe S and the heating pipe, and to prevent damage to the device. By cooperating with the rotating part 300 and the positioning part 400, when the filter 103b is sucked and slid, the cleaning component 302 can clean the filter 103b, thereby achieving the effect of regularly cleaning the filter 103b, avoiding blockage of the filter 103b, and maintaining the filtering effect of the filter 103b.

[0059] Example 3

[0060] 1 to 8 , this embodiment is different from the above embodiment in that it further includes a striking component 500, which includes a sleeve member 501 provided on the connecting column 402a, a reset assembly 502 provided on the rotating shaft 302a, and a resistance assembly 503 provided on the reset assembly 502; wherein the sleeve member 501 is sleeved with the cylinder 402b, and the resistance assembly 503 is rotatable in resistance with the sleeve member 501, the sleeve member 501 is fixedly provided on the connecting column 402a, and the sleeve member 501 is sleeved on the outer side of the cylinder 402b, and the inner wall thereof is at a certain distance from the surface of the cylinder 402b to ensure the movement of the follower 403, the sleeve member 501 is concentric with the cylinder 402b, and a plurality of groups of protrusions P are fixedly provided on the surface of the sleeve member 501, and a certain distance is provided between the plurality of groups of protrusions P, and the surface of the protrusions P is arc-shaped to prevent the resistance assembly 503 from getting stuck with the protrusions P when resetting;

[0061] When the rotating shaft 302a slides, the resistance component 503 is driven to move outside the sleeve 501. During the movement, the resistance component 503 contacts the protrusion P on the sleeve surface, so that the resistance component 503 rotates and knocks the surface of the filter 103b after the contact, and the knocking makes the impurities on the surface of the filter 103b fall off faster. When the resistance component 503 moves away from the protrusion P, the reset component 502 drives the resistance component 503 to reset, so that the resistance component 503 can repeatedly knock the filter. 103b surface, the end of the sleeve member 501 is aligned with the end of the cylinder 402b to prevent the interference component 503 from separating from the surface of the sleeve member 501. Since the guide column 403b will complete one rotation only when it moves to the end of the spiral groove 402c, and the protrusion P is only set to the middle position of the sleeve member 501, the interference component 503 will not contact the protrusion P when approaching the fixing frame 301, thereby preventing the fixing frame 301 from blocking the interference component 503 from rotating.

[0062] Furthermore, the reset assembly 502 includes a hinge seat 502a provided on the outside of the rotating shaft 302a, a connecting groove 502b provided in the hinge seat 502a, a fixed shaft 502c provided in the connecting groove 502b, a cylinder 502d sleeved on the outside of the fixed shaft 502c, and a disc spring 502e provided between the fixed shaft 502c and the cylinder 502d; wherein, the interference assembly 503 is provided on the outside of the sleeve, the hinge seat 502a is fixedly provided on the outside of the rotating shaft 302a, and the hinge seat 502a is provided on the rotating shaft 302a at a position away from the filter 103b, the hinge seat 502a is provided with a connecting groove 502b, and the hinge seat 502a is located in the connecting groove 502b. A fixed shaft 502c is fixedly provided, and a cylinder 502d is sleeved on the outside of the fixed shaft 502c. The two ends of the cylinder 502d are in contact with the inner wall of the connecting groove 502b to prevent the cylinder 502d from moving up and down. The interference component 503 is fixedly provided on the outside of the cylinder 502d, and a disc spring 502e is fixed between the outside of the fixed shaft 502c and the inner wall of the cylinder 502d. When the interference component 503 conflicts with the protrusion P of the sleeve member 501, the interference component 503 rotates and strikes the surface of the filter screen 103b. When the interference component 503 moves away from the protrusion P, the disc spring 502e drives the interference component 503 to reset. The spacing between the multiple groups of protrusions P enables the interference component 503 to rotate back and forth.

[0063] Furthermore, the interference assembly 503 includes a long rod 503a provided on the outside of the sleeve member 501, a fixing column 1 503b provided on the long rod 503a, a short rod 503c provided on the outside of the sleeve member 501, and a fixing column 2 503d provided on the short rod 503c; wherein the fixing column 1 503b interferes with the outside of the sleeve member 501, and the short rod 503c can drive the fixing column 2 503d to contact the filter screen 103b after rotating. The long rod 503a and the short rod 503c are fixed on the outside of the sleeve, and the long rod 503a and the short rod 503c are arranged in an "L" shape. The long rod 503a is located on one side of the sleeve member 501, and the long rod 503a is fixed with a fixing column 1 503b on the side close to the sleeve member 501. Driven by the disc spring 502e, the fixing column 1 503b is always in contact with the sleeve member 5 01 surface conflicts, the short rod 503c is arranged corresponding to the surface of the filter screen 103b, and the short rod 503c is fixed with a fixing column 2 503d on the side close to the filter screen 103b. When the hinge seat 502a drives the long rod 503a to move, the moving protrusion P of the fixing column 1 503b conflicts with the surface, so that the long rod 503a drives the cylinder 502d to rotate, and the rotation of the cylinder 502d drives the short rod 503c, and then the fixing column 2 503d knocks the surface of the filter screen 103b. When the fixing column 1 503b does not conflict with the protrusion P, there is a certain gap between the end of the fixing column 2 503d and the surface of the fixing frame 301, so that when the guide column 403b moves beyond the middle section of the cylinder 402b, the fixing column 2 503d can pass over the fixing frame 301, thereby preventing the fixing column 2 503d from being stuck by the fixing frame 301.

[0064] The rest of the structure is the same as that of Example 2.

[0065] Operation process: In the initial state, the fixing post 503b is located at the end of the sleeve 501 close to the connecting post 402a;

[0066] When the rotating shaft 302a slides, the long rod 503a is driven to move through the hinge seat 502a, and the fixed column 1 503b contacts the protrusion P during the sliding process, and then drives the short rod 503c to rotate through the cylinder 502d. When the short rod 503c rotates, the fixed column 2 503d knocks on the surface of the filter 103b, causing the surface of the filter 103b to vibrate, and the dust can fall quickly. When the fixed column 1 503b is away from the protrusion P, the disc spring 502e pushes the cylinder 502d to return to its original position, and the multiple groups of protrusions P are equidistantly arranged, so that the cylinder 502d rotates back and forth, and the fixed column 503d The second fixed post 503d can repeatedly strike the surface of the filter screen 103b in multiple groups. At the same time, because the rotating shaft 302a can rotate when sliding, the second fixed post 503d can evenly strike the surface of the filter screen 103b. When the guide post 403b moves beyond the middle section of the cylinder 402b and the second fixed post 503d gradually approaches the fixing frame 301, the protrusion P is only provided to the middle section of the sleeve member 501. At this time, the long rod 503a no longer interferes with the protrusion P. The second fixed post 503d is in a state of being away from the fixing frame 301, preventing the fixing frame 301 from getting stuck on the second fixed post 503d.

[0067] By setting the resistance component 503, while the cleaning component 302 cleans the surface of the filter 103b, the resistance component 503 can knock the surface of the filter 103b to make it vibrate. The vibration makes the impurities on the surface of the filter 103b fall off better, thereby improving the cleaning effect of the filter 103b.

[0068] It is important to note that the construction and arrangement of the present application shown in a number of different exemplary embodiments are merely illustrative. Although only a few embodiments are described in detail in this disclosure, it should be readily understood by those who refer to this disclosure that many modifications are possible (e.g., the size, scale, structure, shape, and proportion of various elements, as well as parameter values ​​(e.g., temperature, pressure, etc.), mounting arrangements, use of materials, color, changes in orientation, etc.) without departing substantially from the novel teachings and advantages of the subject matter described in this application. For example, an element shown as integrally formed may be composed of multiple parts or elements, the position of the element may be inverted or otherwise changed, and the nature, number, or position of the discrete elements may be altered or changed. Therefore, all such modifications are intended to be included within the scope of the present invention. The order or sequence of any process or method steps may be changed or reordered according to alternative embodiments. In the claims, any "means plus function" clause is intended to cover the structure described herein that performs the function, and is not only structurally equivalent but also equivalent structures. Other replacements, modifications, changes, and omissions may be made in the design, operating conditions, and arrangement of the exemplary embodiments without departing from the scope of the present invention. Therefore, the invention is not limited to the specific embodiments, but extends to various modifications that still fall within the scope of the appended claims.

[0069] Additionally, in order to provide a concise description of exemplary embodiments, all features of an actual embodiment (i.e., those features that are not relevant to the best mode presently contemplated for carrying out the invention or those that are not relevant to implementing the invention) may not be described.

[0070] It will be appreciated that in the development of any actual embodiment, as in any engineering or design project, numerous implementation-specific decisions may be made. Such a development effort may be complex and time-consuming, but will, for those of ordinary skill having the benefit of this disclosure, be a routine undertaking of design, fabrication, and production without undue experimentation.

[0071] It should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention and are not intended to limit the present invention. Although the present invention has been described in detail with reference to the preferred embodiments, those skilled in the art should understand that the technical solutions of the present invention may be modified or replaced by equivalents without departing from the spirit and scope of the technical solutions of the present invention, which should all be included in the scope of the claims of the present invention.

Claims

1. A CEMS system probe filter device, characterized in that: include, The mounting component (100) comprises a fixing member (101), a limiting assembly (102) arranged on the fixing member (101), and a filtering portion (103) arranged in the fixing member (101); An elastic component (200) comprises a sliding member (201) arranged on the limiting assembly (102) and a return spring (202) arranged outside the sliding member (201); The sliding member (201) is connected to the filter portion (103), and two ends of the fixing member (101) are respectively provided with a first through groove (101a) and a second through groove (101b).

2. The CEMS system probe filter device according to claim 1, characterized in that: The limiting assembly (102) comprises a limiting ring (102a) arranged in the fixing member (101) and a stopper (102b) arranged on the inner wall of the fixing member (101); The filter portion (103) comprises a fixing frame (103a) slidably arranged in the fixing member (101), and a filter screen (103b) arranged in the fixing frame (103a); The fixing frame (103a) is arranged between the limiting ring (102a) and the stopper (102b), the sliding member (201) is arranged on the limiting ring (102a), and the limiting ring (102a) is provided with a circular groove (102c) corresponding to the sliding member (201).

3. The CEMS system probe filter device according to claim 2, characterized in that: The sliding member (201) comprises a guide rod (201a) slidably connected to the limiting ring (102a), and a circular plate (201b) arranged at the end of the guide rod (201a); The guide rod (201a) is connected to the fixed frame (103a), the limit ring (102a) is slidably connected to the guide rod (201a) via a circular groove (102c), and the return spring (202) is sleeved on the outside of the guide rod (201a).

4. The CEMS system probe filter device according to claim 2 or 3, characterized in that: It also includes a rotating component (300), which includes a fixing frame (301) arranged on one side of the fixing frame (103a) and a cleaning component (302) arranged on the fixing frame (301); A positioning component (400) comprising a top frame (401) provided at the end of the fixing member (101), a guide portion (402) provided on the top frame (401), and a follower (403) provided on the cleaning component (302); The follower (403) can be guided to rotate by the guide portion (402).

5. The CEMS system probe filter device according to claim 4, characterized in that: The cleaning assembly (302) comprises a rotating shaft (302a) arranged on a fixed frame (301) and a brush plate (302b) arranged at the end of the rotating shaft (302a); Wherein, the follower (403) is arranged outside the rotating shaft (302a).

6. The CEMS system probe filter device according to claim 5, characterized in that: The guide portion (402) comprises a connecting column (402a) disposed on the top frame (401), a cylinder (402b) disposed at the end of the connecting column (402a), and a spiral groove (402c) opened on the outside of the cylinder (402b); Wherein, the spiral groove (402c) can guide the follower (403).

7. The CEMS system probe filter device according to claim 6, characterized in that: The follower (403) comprises a side frame (403a) arranged on the rotating shaft (302a) and a guide column (403b) arranged on one side of the side frame (403a); Wherein, the guide column (403b) extends into the spiral groove (402c).

8. The CEMS system probe filter device according to claim 6 or 7, characterized in that: It also includes a striking component (500), which includes a sleeve member (501) arranged on the connecting column (402a), a reset component (502) arranged on the rotating shaft (302a), and an abutment component (503) arranged on the reset component (502); The sleeve member (501) is sleeved with the cylinder (402b), and the abutment assembly (503) abuts against the sleeve member (501) and is rotatable.

9. The CEMS system probe filter device according to claim 8, characterized in that: The reset assembly (502) comprises a hinge seat (502a) disposed outside the rotating shaft (302a), a connecting groove (502b) provided in the hinge seat (502a), a fixed shaft (502c) disposed in the connecting groove (502b), a cylinder (502d) sleeved on the outside of the fixed shaft (502c), and a disc spring (502e) disposed between the fixed shaft (502c) and the cylinder (502d); Wherein, the abutment component (503) is arranged on the outside of the sleeve.

10. The CEMS system probe filter device according to claim 9, characterized in that: The abutment assembly (503) comprises a long rod (503a) disposed outside the sleeve member (501), a first fixing column (503b) disposed on the long rod (503a), a short rod (503c) disposed outside the sleeve member (501), and a second fixing column (503d) disposed on the short rod (503c); The first fixing column (503b) contacts the outer side of the sleeve (501), and the short rod (503c) is able to drive the second fixing column (503d) to contact the filter (103b) after rotating.

Citation Information

Patent Citations

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