Water body environment water quality inspection device convenient to operate
By introducing rack and pin pin spring cooperation into the water quality inspection device, the automatic extension and quick connection of the splicing plate are achieved, which solves the labor-intensive problem caused by weight increase during splicing and improves the convenience and efficiency of the device.
Patent Information
- Application Number
- CN202422520136.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-10-18
- Publication Date
- 2025-07-11
- Estimated Expiration
- 2034-10-18
AI Technical Summary
During the splicing process of existing water environmental water quality inspection devices, as the splicing length increases, the weight continues to increase, resulting in inconvenient and laborious installation, reducing the effectiveness of the device.
The splicing plate is equipped with rack and gear structure. By rotating the drive gear, the splicing plate is automatically extended, and the splicing plate is quickly connected and disassembled through the cooperation of the locking pin rod and the spring, and water quality detection is carried out in combination with the remote control system.
It realizes labor-saving operation during the splicing process, reduces the labor intensity of staff, improves the convenience and efficiency of the device, and is suitable for long-distance water quality inspection.
Smart Images

Figure CN223090359U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of water quality inspection devices, in particular to a water quality inspection device for water environment that is convenient to operate. Background Technique
[0002] Water resources are an important part of natural resources and an important resource guarantee for China's modernization drive. Safe water is required for both residential life and enterprise production. Therefore, it is necessary to conduct real-time detection of water resources. By online detecting the conventional characteristic parameters of water bodies, abnormal situations in water bodies can be discovered in time, early warnings can be given in time, and detection work on other characteristic parameters can be carried out;
[0003] Upon inquiry, the publication (announcement) number: CN218331509 discloses a water quality inspection device for water environment that is convenient to operate. In this technology, it is disclosed that "including a column, the upper surface of the column is connected with a support plate through a bearing, and a storage battery is fixed on one side below the support plate. In the utility model, by arranging a plurality of splicing parts in sequence, the connecting ears of adjacent two splicing parts are inserted into the connecting grooves, etc. technical solutions, which have the technical effects of arranging a plurality of splicing parts in sequence, inserting the connecting ears of adjacent two splicing parts into the connecting grooves, and cooperating with a pin shaft to sequentially penetrate through the through holes and connecting ears provided corresponding to the connecting grooves on the splicing parts, so that a plurality of splicing parts form a whole, which is convenient for long-distance water quality detection";
[0004] When the above design is in use, although it makes a plurality of splicing parts form a whole and is convenient for long-distance water quality detection, during the splicing process of this device, the splicing parts are first spliced to a certain length and then installed. As the splicing continues, the weight continuously increases, which brings inconvenience to the installation, is more laborious, does not have the operation of driving and extending the splicing parts while splicing, and reduces the use effect of the device. Therefore, we propose a water quality inspection device for water environment that is convenient to operate to solve the above existing problems. Content of the Utility Model
[0005] Aiming at the deficiencies of the prior art, the utility model provides a water quality inspection device for water environment that is convenient to operate, which solves the problems that during the splicing process of this device, the splicing parts are first spliced to a certain length and then installed. As the splicing continues, the weight continuously increases, which brings inconvenience to the installation, is more laborious, does not have the operation of driving and extending the splicing parts while splicing, and reduces the use effect of the device.
[0006] To achieve the above purposes, the utility model is realized through the following technical solutions: A water quality inspection device for water environment that is convenient to operate, including a fixed base, a support seat fixed on the upper surface of the fixed base, and a water quality detection mechanism arranged on one side of the support seat for water quality detection, and a plurality of splicing plates are arranged on the support seat;
[0007] A splicing mechanism is installed on the splicing plate, and adjacent two groups of splicing plates can be spliced with each other through the splicing mechanism;
[0008] A rack is fixed on the upper surface of the splicing plate, a gear is meshed and connected to the upper surface of the rack, and a turning handle capable of driving the gear to rotate is installed on the support base.
[0009] Preferably, an installation groove is opened on the lower surface of the splicing plate, and the water quality detection mechanism is connected to the installation groove opened on the frontmost group of splicing plates through bolts for connection and fixation between the water quality detection mechanism and the splicing plate.
[0010] Preferably, a moving hole is opened inside the support base, and the splicing plate can slide in the moving hole opened on the support base.
[0011] Preferably, the splicing mechanism includes a socket fixed at one end of the splicing plate, a pair of locking pin rods symmetrically arranged and sliding inside the socket, and a spring fixed between the locking pin rods and the socket;
[0012] A slot for inserting the socket is opened at one end of the splicing plate away from the socket, and a locking hole adapted to the locking pin rod is opened on one side of the splicing plate close to the slot;
[0013] Moving grooves adapted to the locking pin rods are opened on both sides of the socket, and the locking pin rods and the socket are slidably connected through the moving grooves.
[0014] Preferably, a disengaging mechanism is installed on the support base, and the disengaging mechanism includes a limiting groove opened inside the support base, a U-shaped plate arranged in the limiting groove, and an adjusting screw rod rotatably connected to the top end of the U-shaped plate through a bearing;
[0015] The support base is threadedly connected to the adjusting screw rod through a threaded hole opened;
[0016] The gear and the turning handle are fixedly connected, the turning handle is rotatably connected to the U-shaped plate through a bearing, the U-shaped plate is attached to the side wall of the limiting groove opened on the support base for limiting the movement of the U-shaped plate, and a strip-shaped hole for the up-and-down movement of the turning handle is opened on one side of the support base.
[0017] Preferably, a storage box for storing the splicing plates is fixed on the upper surface of the fixed base.
[0018] Beneficial effects
[0019] The utility model provides a water body environment water quality inspection device which is convenient to operate. Compared with the prior art, the following beneficial effects are achieved:
[0020] The water quality inspection device for water environment that is convenient to operate can continuously extend the spliced splicing plates into the river during the splicing process of the splicing plates. Compared with the installation after overall splicing, this method is more labor-saving, reduces the labor intensity of the staff, and this device is convenient and practical, improving the use effect of the device. Brief Description of the Drawings
[0021] Figure 1 It is a schematic diagram of the overall structure of the present utility model;
[0022] Figure 2 It is a partial view of the overall structure of the present utility model;
[0023] Figure 3 It is a partial cross-sectional view of the structure of the splicing plate of the present utility model;
[0024] Figure 4 It is the present utility model Figure 3 The enlarged schematic diagram of the structure at A.
[0025] In the figure: 101, fixed base; 102, support base; 103, water quality detection mechanism; 104, splicing plate; 105, rack; 106, gear; 107, turning handle; 108, installation groove; 109, storage box; 2, splicing mechanism; 201, socket; 202, slot; 203, locking pin rod; 204, spring; 3, detachment mechanism; 301, adjusting screw rod; 302, limiting groove; 303, U-shaped plate. Detailed Description of the Embodiment
[0026] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments. Based on the embodiments in the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present utility model.
[0027] As Figure 1 shown:
[0028] A water quality inspection device for water environment that is convenient to operate includes a fixed base 101, a support base 102 fixed on the upper surface of the fixed base 101, and a water quality detection mechanism 103 disposed on one side of the support base 102 for water quality detection.
[0029] In this embodiment: The existing device {Publication (Announcement) Number}: CN218331509U discloses a water quality inspection device for easy operation. The water quality detection mechanism 103 in this application document uses the same technical means as in this prior art. This technical means will not be elaborated here one by one. Regarding this existing main body, this application makes further improvements. For details, refer to the disclosed technology below; To solve the technical problems existing in this prior art, as disclosed in the background art above, "When the above design is in use, although multiple splicing parts form a whole, which is convenient for long-distance water quality detection, during the splicing process of this device, the splicing parts are first spliced to a certain length and then installed. As the splicing continues, the weight continuously increases, which brings inconvenience to the installation and is more laborious. It does not have the operation of driving and extending the splicing parts while splicing, reducing the use effect of the device." In combination, this problem is obviously a real and relatively difficult problem to solve.
[0030] It should be noted that: The accessories used by the water quality detection mechanism 103 have been disclosed by the publication number CN218331509U, and its use effect can be referred to the publication number CN218331509U (that is, the "connection ear, carrier plate, threaded column, lead ear, electric push rod, fixed shell, water quality detector and battery components" disclosed in this prior art).
[0031] Furthermore:
[0032] As Figures 1-4 shown:
[0033] Combined with the above content: Multiple sets of splicing plates 104 are provided on the support base 102;
[0034] A splicing mechanism 2 is installed on the splicing plate 104. Through the splicing mechanism 2, two adjacent sets of splicing plates 104 can be spliced with each other;
[0035] The splicing mechanism 2 includes a socket 201 fixed at one end of the splicing plate 104, a pair of locking pin rods 203 symmetrically arranged and sliding inside the socket 201, and a spring 204 fixed between the locking pin rods 203 and the socket 201;
[0036] A slot 202 for facilitating the insertion of the socket 201 is opened at one end of the splicing plate 104 away from the socket 201, and a locking hole adapted to the locking pin rod 203 is opened on one side of the splicing plate 104 close to the slot 202;
[0037] Moving grooves adapted to the locking pin rods 203 are opened on both sides of the socket 201, and the locking pin rods 203 and the socket 201 are slidably connected through these moving grooves;
[0038] The upper surface of the splicing plate 104 is fixed with a rack 105, the upper surface of the rack 105 is meshed with a gear 106, and a turning handle 107 capable of driving the gear 106 to rotate is installed on the support seat 102;
[0039] The lower surface of the splicing plate 104 is provided with an installation groove 108, and the water quality detection mechanism 103 is connected to the installation groove 108 opened in the front-end group of splicing plates 104 through bolts for connecting and fixing the water quality detection mechanism 103 and the splicing plate 104;
[0040] A moving hole is provided inside the support seat 102, and the splicing plate 104 can slide in the moving hole opened in the support seat 102.
[0041] In this implementation: When using this water body environment water quality inspection device that is easy to operate, first fix the fixed base 101 on the shore of the water area to be measured through a bolt, and then install the water quality detection mechanism 103 on a group of splicing plates 104. When long-distance water quality detection is required;
[0042] First, splice multiple groups of splicing plates 104. By inserting the socket 201 of a group of splicing plates 104 into the slot 202 opened in the splicing plate 104 installed on the support seat 102. During this process, press the two locking pin rods 203 and compress the spring 204 until the locking pin rod 203 is completely compressed into the socket 201. At the same time, insert the socket 201 into the slot 202. At this time, the locking pin rod 203 corresponds to the locking hole opened in the splicing plate 104, and the spring 204 rebounds to drive the locking pin rod 203 to insert into the locking hole, thereby realizing the splicing operation of the two splicing plates 104;
[0043] Through this operation, multiple groups of splicing plates 104 can be spliced;
[0044] During this process, the turning handle 107 can be rotated, which in turn drives the gear 106 to rotate. Since the gear 106 and the rack 105 are meshed, when the gear 106 rotates, it drives the splicing plate 104 to continuously move on the support seat 102, so that the spliced splicing plate 104 continuously extends into the river. Through this operation, during the splicing of the splicing plate 104, the spliced splicing plate 104 can be continuously extended into the river. Compared with installing after overall splicing, this method is more labor-saving, reduces the labor intensity of the staff, this device is convenient and practical, and improves the use effect of the device;
[0045] By extending the splicing plate 104, the water quality detection mechanism 103 is continuously transported to a long-distance water quality area, and the electric push rod of the water quality detection mechanism 103 is driven through a remote control system to drive the water quality detector to detect the water quality.
[0046] It should be noted that this device is equipped with a remote control system, which can control the electric push rod through the controller to drive the water quality detector to detect the water quality.
[0047] Furthermore;
[0048] In an alternative embodiment, a detachment mechanism 3 is installed on the support base 102. The detachment mechanism 3 includes a limiting groove 302 opened inside the support base 102, a U-shaped plate 303 arranged in the limiting groove 302, and an adjusting screw rod 301 rotatably connected to the top end of the U-shaped plate 303 through a bearing;
[0049] The support base 102 is threadedly connected to the adjusting screw rod 301 through a threaded hole opened;
[0050] The gear 106 and the turning handle 107 are fixedly connected. The turning handle 107 is rotatably connected to the U-shaped plate 303 through a bearing. The U-shaped plate 303 is attached to the side wall of the limiting groove 302 opened in the support base 102 for limiting the movement of the U-shaped plate 303. A strip-shaped hole for the up and down movement of the turning handle 107 is opened on one side of the support base 102.
[0051] In this embodiment: By rotating the adjusting screw rod 301, the U-shaped plate 303 is driven to move upward, and then the gear 106 and the turning handle 107 are driven to move upward synchronously, so that there is a certain distance between the position of the gear 106 and the original rack 105. Through this operation, when the splicing plate 104 drives the rack 105 to be installed later, by reversely rotating the adjusting screw rod 301 to drive the U-shaped plate 303 and the gear 106 to move downward synchronously, the gear 106 can be meshed with the rack 105, so that the splicing plate 104 and the rack 105 can be conveniently and quickly installed on the support base 102, further improving the use effect of the device.
[0052] Furthermore;
[0053] In an alternative embodiment, a storage box 109 for storing the splicing plate 104 is fixed on the upper surface of the fixed base 101.
[0054] In this embodiment: When it is necessary to disassemble the splicing plate 104 after the detection is completed, the locking pin rod 203 can be pressed and compressed into the socket 201, and the spring 204 is compressed. Subsequently, two adjacent splicing plates 104 are disassembled, and the disassembled splicing plates 104 are placed in the storage box 109 for orderly overall storage, which is convenient for later transportation.
[0055] The working principle and usage process of the present utility model: For this water body environment water quality inspection device that is easy to operate, when in use, first fix the fixed base 101 on the shore of the water area to be measured through a bolt, and then install the water quality detection mechanism 103 on a group of splicing plates 104. When it is necessary to detect the water quality at a long distance;
[0056] First, splice multiple groups of splicing plates 104. By inserting the socket 201 of a group of splicing plates 104 into the slot 202 opened in the splicing plate 104 installed on the support base 102. During this process, press the two locking pin rods 203 and compress the spring 204 until the locking pin rods 203 are completely compressed into the interior of the socket 201. At the same time, insert the socket 201 into the slot 202. At this time, the locking pin rods 203 correspond to the locking holes opened in the splicing plate 104, and the spring 204 rebounds, driving the locking pin rods 203 to insert into the locking holes, so as to splice the two groups of splicing plates 104; through this operation, multiple groups of splicing plates 104 can be spliced; during this process, the turning handle 107 can be rotated, which in turn drives the gear 106 to rotate. Since the gear 106 and the rack 105 are meshed and connected, when the gear 106 rotates, the splicing plate 104 is driven to continuously move on the support base 102, so that the spliced splicing plates 104 continuously extend into the river. Through this operation, during the splicing of the splicing plates 104, the spliced splicing plates 104 can be continuously extended into the river. Compared with the installation after overall splicing, this method is more labor-saving, reducing the labor intensity of the staff. This device is convenient and practical, improving the use effect of the device; through the extension of the splicing plate 104, the water quality detection mechanism 103 is continuously transported to a long-distance water quality area, and the electric push rod of the water quality detection mechanism 103 is driven by a remote control system to drive the water quality detector to detect the water quality; when the detection is completed and the splicing plate 104 needs to be disassembled, the locking pin rod 203 can be pressed, and the locking pin rod 203 is compressed into the socket 201, and the spring 204 is compressed. Subsequently, the two adjacent splicing plates 104 are disassembled, and the disassembled splicing plates 104 are placed in the storage box 109 for orderly overall storage, which is convenient for later transportation; by rotating the adjusting screw rod 301, the U-shaped plate 303 is driven to move upward, which in turn drives the gear 106 and the turning handle 107 to move upward synchronously, so that there is a certain distance between the gear 106 and the original rack 105. Through this operation, when the splicing plate 104 drives the rack 105 to be installed later, by rotating the adjusting screw rod 301 in the reverse direction to drive the U-shaped plate 303 and the gear 106 to move downward synchronously, the gear 106 can be meshed with the rack 105, so that the splicing plate 104 and the rack 105 can be conveniently and quickly installed on the support base 102, further improving the use effect of the device.
[0057] At the same time, the content not described in detail in this specification belongs to the well-known prior art in the art.
Claims
1. A water quality inspection device for convenient operation, comprising a fixed base (101), a support base (102) fixed on the upper surface of the fixed base (101), and a water quality inspection mechanism (103) arranged on one side of the support base (102) for water quality detection, characterized in that, A plurality of splicing plates (104) are provided on the support base (102); A splicing mechanism (2) is installed on the splicing plate (104), and adjacent two groups of splicing plates (104) can be spliced with each other through the splicing mechanism (2); A rack (105) is fixed on the upper surface of the splicing plate (104), a gear (106) is meshed and connected to the upper surface of the rack (105), and a turning handle (107) capable of driving the gear (106) to rotate is installed on the support base (102).
2. The water quality inspection device for water environment that is easy to operate according to claim 1, characterized in that: An installation groove (108) is formed on the lower surface of the splicing plate (104), and the water quality detection mechanism (103) is connected to the installation groove (108) formed in the frontmost group of splicing plates (104) through bolts for connection and fixation between the water quality detection mechanism (103) and the splicing plate (104).
3. The water quality inspection device for water environment that is convenient to operate according to claim 2, wherein: A moving hole is formed inside the support base (102), and the splicing plate (104) can slide in the moving hole formed in the support base (102).
4. The water quality inspection device for water environment that is convenient to operate according to claim 2, characterized in that: The splicing mechanism (2) includes a socket (201) fixed at one end of the splicing plate (104), a locking pin rod (203) symmetrically arranged and sliding inside the socket (201), and a spring (204) fixed between the locking pin rod (203) and the socket (201); A slot (202) facilitating the insertion of the socket (201) is formed at one end of the splicing plate (104) away from the socket (201), and a locking hole adapted to the locking pin rod (203) is formed on one side of the splicing plate (104) close to the slot (202); Moving grooves adapted to the locking pin rod (203) are formed on both sides of the socket (201), and the locking pin rod (203) and the socket (201) are slidably connected through the moving grooves.
5. The water quality inspection device for a water environment that is convenient to operate according to claim 1, wherein: A detachment mechanism (3) is installed on the support base (102), and the detachment mechanism (3) includes a limiting groove (302) formed inside the support base (102), a U-shaped plate (303) arranged in the limiting groove (302), and an adjusting screw rod (301) rotatably connected to the top end of the U-shaped plate (303) through a bearing; The support base (102) is threadedly connected to the adjusting screw rod (301) through a threaded hole formed; The gear (106) and the turning handle (107) are fixedly connected, the turning handle (107) is rotatably connected to the U-shaped plate (303) through a bearing, the U-shaped plate (303) is attached to the side wall of the limiting groove (302) formed in the support base (102) for limiting the movement of the U-shaped plate (303), and a strip-shaped hole for the up and down movement of the turning handle (107) is formed on one side of the support base (102).
6. The water quality inspection device for water environment that is convenient to operate according to claim 1, characterized in that: A storage box (109) for storing the splicing plates (104) is fixed on the upper surface of the fixed base (101).
Citation Information
Patent Citations
Water body environment water quality inspection device convenient to operate
CN218331509U
Cited By
A water quality inspection device
CN224788725U