A water source environment monitoring device
By designing a water source environmental monitoring device that includes a collection mechanism and a collection mechanism, the problem of difficulty in classifying sampling and preservation of existing equipment is solved, and the efficient, automated and pollution-free effect of water sample collection and preservation is achieved.
Patent Information
- Application Number
- CN202410090951.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-01-23
- Publication Date
- 2025-07-01
- Estimated Expiration
- 2044-01-23
AI Technical Summary
Existing water source sampling equipment is not convenient for classification sampling and storage, and it is difficult to avoid water sample reflux and mutual contamination of samples.
A water source environmental monitoring device is designed, including a waterproof shell, a collection mechanism and a collection mechanism. The collection mechanism realizes water samples collected and discharged through the water inlet and drainage, and the collection mechanism realizes automatic collection and storage of water samples through automated collection tubes and sealing plates.
This device can effectively avoid water sample reflux and sample contamination, realize efficient collection and storage of water samples, and facilitate subsequent processing. At the same time, the automated collection process simplifies operational steps and improves work efficiency.
Smart Images

Figure CN117990431B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the field of environmental monitoring, and specifically to a water source environmental monitoring device. Background Art
[0002] One important monitoring area in environmental monitoring is water source monitoring. Samples are taken from different water sources and the water quality of the water source is monitored according to the real-time test results. However, sampling devices are required for the tests.
[0003] When taking samples from a water source, it is necessary to prevent the sampled water from flowing back, and it is necessary to take multiple samples at one time, or take multiple samples at different sampling points in the same water area. However, the current sampling equipment is not convenient for classified sampling and preservation. Summary of the Invention
[0004] The purpose of the present invention is to provide a water source environmental monitoring device to solve the problems raised in the above background art.
[0005] To achieve the above purpose, the present invention provides the following technical solution: A water source environmental monitoring device includes a waterproof shell. A power chamber is provided inside the waterproof shell. A collection mechanism and a collection and storage mechanism are connected to the lower end wall of the power chamber. The collection mechanism is used to collect water at the sampling point, and the collection and storage mechanism is used to store the sampled water source.
[0006] The collection mechanism includes a telescopic device fixedly connected to the lower end wall of the power chamber. The telescopic device is power-connected to a telescopic rod. The upper end wall of the waterproof shell is fixedly connected with a collection block. A collection chamber is provided inside the collection block. A collection sliding plate is slidably connected to the collection chamber. The upper end of the telescopic rod is fixedly connected to the collection sliding plate. The telescopic rod is fixedly connected with a clamping plate. The collection block is communicated with a water inlet device and a water drainage device located outside the waterproof shell. The water inlet device is used to extract water samples, and the water drainage device is used to drain the water samples into the collection and storage mechanism.
[0007] A first button and a second button are provided at the lower end of the collection block.
[0008] The water inlet device includes a water inlet pipe fixedly connected to the upper end of the collection block. A water inlet pipe chamber communicated with the collection chamber is provided inside the water inlet pipe. The cross-sectional area of the water inlet pipe chamber gradually decreases from top to bottom. A water inlet blocking ball is connected to the water inlet pipe chamber through a plurality of water inlet springs. The upper end of the water inlet pipe chamber is open.
[0009] The water drainage device includes a conical pipe fixedly connected to the upper end of the collection block. A drainage chamber communicated with the collection chamber is provided inside the conical pipe. The cross-sectional area of the drainage chamber gradually increases from top to bottom. A drainage blocking ball is connected to the drainage chamber through a plurality of drainage springs. The upper end of the conical pipe is open.
[0010] The collection mechanism includes a control block fixedly connected to the lower end wall of the power chamber. A control chamber is provided inside the control block. An electromagnet is provided on the lower end wall of the control chamber. A magnetic sliding plate connected to the electromagnet by a return spring is slidably connected inside the control chamber. The upper end of the magnetic sliding plate is fixedly connected to a motor with the upper end located outside the control block. The motor is power-connected to a motor shaft. The motor shaft is fixedly connected to a mounting disc. The mounting disc is fixedly connected to a number of mounting seats through a number of connecting rods respectively. The mounting seats are detachably fixed with collection pipes.
[0011] A collection pipe chamber is provided inside the collection pipe. An inlet cavity is provided at the lower end of the collection pipe chamber. A sealing clamping plate capable of clamping into the side wall of the conical pipe is fixedly connected to the lower end of the collection pipe chamber.
[0012] A sealing plate slidably connected to the inlet cavity and connected to the collection pipe chamber through a number of sealing springs is provided. When the sealing plate enters the collection pipe chamber, the inlet cavity is communicated with the collection pipe chamber.
[0013] Compared with the prior art, the beneficial effects of the present invention are as follows:
[0014] Through the provided collection mechanism, water can be taken from the outside through the water inlet device provided in the collection mechanism, and the collected water source samples can be discharged, collected and preserved through the provided drain device, avoiding the possible mutual contamination between the water source samples inside, and the water source samples are collected on the outside, which is convenient for processing;
[0015] Through the provided collection pipe, the drainage process of the drain device can be automatically opened and automatically sealed after drainage is completed, avoiding the cumbersome steps of collecting and preserving the water source samples, and facilitating the preservation of the water source samples. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Figure 1 FIG. is an overall three-dimensional schematic diagram of a water source environment monitoring device proposed by the invention;
[0017] Figure 2 FIG. is an internal three-dimensional schematic diagram of a water source environment monitoring device proposed by the invention;
[0018] Figure 3 For Figure 2 the right view of;
[0019] Figure 4 FIG. is an internal structural diagram of the collection mechanism part in a water source environment monitoring device proposed by the invention;
[0020] Figure 5 FIG. is an internal structural diagram of the drain device part in a water source environment monitoring device proposed by the invention;
[0021] Figure 6 Internal structure diagram of the water inlet part in a water source environment monitoring device proposed for the invention;
[0022] Figure 7 Internal structure diagram of the collection mechanism part in a water source environment monitoring device proposed for the invention;
[0023] Figure 8 Internal structure diagram of the mounting base and collection pipe parts in a water source environment monitoring device proposed for the invention.
[0024] In the figure: 101, waterproof shell; 102, power chamber; 103, telescopic device; 104, telescopic rod; 105, collection block; 106, collection chamber; 107, collection slide plate; 108, clamping plate; 109, first button; 110, collection mechanism; 111, second button; 112, water inlet; 113, drainer; 114, control block; 115, control chamber; 116, electromagnet; 117, return spring; 118, magnetic slide plate; 119, motor; 120, collection mechanism; 121, motor shaft; 122, mounting disc; 123, connecting rod; 124, mounting base; 125, collection pipe; 126, collection pipe chamber; 127, water inlet chamber; 128, sealing spring; 129, sealing plate; 131, sealing clamping plate; 132, conical pipe; 133, drain chamber; 134, drain spring; 135, drain plug ball; 136, water inlet pipe; 137, water inlet pipe chamber; 138, water inlet spring; 139, water inlet plug ball. Detailed implementation manners
[0025] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without making creative efforts shall fall within the protection scope of the present invention.
[0026] Embodiment 1:
[0027] Please refer to Figures 1-8 , the present invention provides a technical solution: a water source environment monitoring device, including a waterproof shell 101. A power chamber 102 is provided inside the waterproof shell 101. A collection mechanism 110 and a collection mechanism 120 are connected to the lower end wall of the power chamber 102. The collection mechanism 110 is used to collect water at the sampling point, and the collection mechanism 120 is used to store the sampled water source;
[0028] The collection mechanism 110 includes a telescopic device 103 fixedly connected to the lower end wall of the power chamber 102. The telescopic device 103 is power-connected to a telescopic rod 104. The upper end wall of the waterproof housing 101 is fixedly connected to a collection block 105. A collection chamber 106 is provided in the collection block 105. A collection slide plate 107 is slidably connected in the collection chamber 106. The upper end of the telescopic rod 104 is fixedly connected to the collection slide plate 107. The telescopic rod 104 is fixedly connected to a clamping plate 108. The collection block 105 is communicatively provided with a water inlet device 112 and a water drainage device 113 located outside the waterproof housing 101. The water inlet device 112 is used for extracting water samples, and the water drainage device 113 is used for discharging water samples into the collection mechanism 120.
[0029] A first button 109 and a second button 111 are provided at the lower end of the collection block 105.
[0030] The water inlet device 112 includes a water inlet pipe 136 fixedly connected to the upper end of the collection block 105. A water inlet pipe chamber 137 communicating with the collection chamber 106 is provided in the water inlet pipe 136. The cross-sectional area of the water inlet pipe chamber 137 gradually decreases from top to bottom. A water inlet blocking ball 139 is connected in the water inlet pipe chamber 137 through a plurality of water inlet springs 138. The upper end of the water inlet pipe chamber 137 is open.
[0031] The water drainage device 113 includes a conical tube 132 fixedly connected to the upper end of the collection block 105. A drainage chamber 133 communicating with the collection chamber 106 is provided in the conical tube 132. The cross-sectional area of the drainage chamber 133 gradually increases from top to bottom. A drainage blocking ball 135 is connected in the drainage chamber 133 through a plurality of drainage springs 134. The upper end of the conical tube 132 is open.
[0032] The collection mechanism 120 includes a control block 114 fixedly connected to the lower end wall of the power chamber 102. A control chamber 115 is provided in the control block 114. An electromagnet 116 is provided on the lower end wall of the control chamber 115. A magnetic slide plate 118 connected to the electromagnet 116 through a return spring 117 is slidably connected in the control chamber 115. The upper end of the magnetic slide plate 118 is fixedly connected to a motor 119 with the upper end located outside the control block 114. The motor 119 is power-connected to a motor shaft 121. The motor shaft 121 is fixedly connected to a mounting disc 122. The mounting disc 122 is fixedly connected to a plurality of mounting seats 124 through a plurality of connecting rods 123 respectively. The collection tube 125 is detachably fixed to the mounting seat 124.
[0033] A collection tube chamber 126 is provided in the collection tube 125. An inlet cavity 127 is provided at the lower end of the collection tube chamber 126. A sealing clamping plate 131 capable of being clamped into the side wall of the conical tube 132 is fixedly connected to the lower end of the collection tube chamber 126.
[0034] A sealing plate 129 which is slidably connected to the oral cavity 127 and connected to the collection lumen 126 by a plurality of sealing springs 128. When the sealing plate 129 enters the collection lumen 126, the oral cavity 127 communicates with the collection lumen 126.
[0035] The second button 111 and the first button 109 are pressed by the clamping plate 108 in the initial state. When the clamping plate 108 moves downward and no longer presses, the first button 109 can activate the electromagnet 116 to drive the magnetic slide plate 118 to move upward, so that the corresponding collection tube 125 is separated from the conical tube 132 before. Then the second button 111 can activate the motor 119 to drive the motor shaft 121 to rotate to another mounting seat 124 facing the drainer 113.
[0036] Working principle:
[0037] During use, the waterproof case 101 is installed on the mobile device, and the waterproof case 101 is moved to the position for collecting water source samples through the mobile device;
[0038] Then activate the telescopic device 103 to drive the collection slide plate 107 to move downward through the telescopic rod 104. At this time, the water inlet blocking ball 139 is attracted to move downward and stretch the water inlet spring 138. At this time, the water inlet lumen 137 communicates with the external water source, and the external water source enters the collection cavity 106 through the water inlet lumen 137. At the same time, the drain blocking ball 135 is attracted downward, but due to being blocked by the drain cavity 133, the drain blocking ball 135 cannot move and the drain cavity 133 does not communicate with the collection cavity 106;
[0039] At the same time, the telescopic rod 104 drives the clamping plate 108 to move downward, so that the first button 109 is activated, and the corresponding collection tube 125 before is separated from the conical tube 132. Then the second button 111 activates the motor 119 to drive another mounting seat 124 to face the drainer 113, completing the replacement of the collection part.
[0040] Then reverse-activate the telescopic device 103 to drive the collection slide plate 107 to reset through the telescopic rod 104. At this time, the water inlet blocking ball 139 is pushed to move upward, but the water inlet blocking ball 139 is blocked by the water inlet lumen 137 and cannot move. At this time, the water inlet lumen 137 does not communicate with the external water source. At the same time, the drain blocking ball 135 is attracted upward. At this time, the drain cavity 133 communicates with the collection cavity 106. At the same time, the drain blocking ball 135 enters the oral cavity 127 and pushes the sealing plate 129 to move upward, so that the oral cavity 127 communicates with the collection lumen 126, and the water in the collection cavity 106 enters the collection lumen 126 through the drain cavity 133 and the oral cavity 127 for collection.
[0041] Although embodiments of the present invention have been shown and described, it will be understood by those of ordinary skill in the art that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principles and spirit of the present invention, and the scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. A water source environment monitoring device, comprising a waterproof shell (101), wherein a power chamber (102) is provided in the waterproof shell (101), characterized in that: The lower end wall of the power chamber (102) is connected with a collection mechanism (110) and a collecting mechanism (120); The collecting mechanism (110) comprises a telescopic device (103) fixedly connected to the lower end wall of the power cavity (102), the telescopic device (103) being dynamically connected to a telescopic rod (104), a collecting block (105) being fixedly connected to the upper end wall of the waterproof shell (101), a collecting cavity (106) being provided in the collecting block (105), a collecting slide plate (107) being slidably connected to the collecting cavity (106), an upper end of the telescopic rod (104) being fixedly connected to the collecting slide plate (107), a clamping plate (108) being fixedly connected to the telescopic rod (104), and the collecting block (105) being connected to a water inlet (112) and a drainer (113) located outside the waterproof shell (101); the collecting mechanism (120) comprises The invention relates to a control block (114) fixedly connected to the lower end wall of the power cavity (102), wherein a control cavity (115) is provided in the control block (114), wherein an electromagnet (116) is provided on the lower end wall of the control cavity (115), wherein a magnetic slide plate (118) connected to the electromagnet (116) and having a return spring (117) is slidably connected in the control cavity (115), wherein the upper end of the magnetic slide plate (118) is fixedly connected to a motor (119) whose upper end is located outside the control block (114), wherein the motor (119) is connected to a motor shaft (121) in a power manner, wherein the motor shaft (121) is fixedly connected to a mounting plate (122), wherein the mounting plate (122) is respectively fixedly connected to a plurality of mounting seats via a plurality of connecting rods (123) (124), the mounting seat (124) is detachably fixed with a collecting tube (125); a collecting tube cavity (126) is provided in the collecting tube cavity (125), an inlet cavity (127) is provided at the lower end of the collecting tube cavity (126), and a sealing card plate (131) is fixedly connected to the lower end of the collecting tube cavity (126); the inlet cavity (127) is slidably connected to a sealing plate (129) connected to the collecting tube cavity (126) via a plurality of sealing springs (128); a first button (109) and a second button (111) are provided at the lower end of the collecting block (105); the water inlet device (112) comprises a water inlet pipe (136) fixedly connected to the upper end of the collecting block (105), and a sealing card plate (131) is fixedly connected to the lower end of the collecting tube cavity (126); The water inlet pipe cavity (137) is connected to the collecting cavity (106), the cross-sectional area of the water inlet pipe cavity (137) gradually decreases from top to bottom, the water inlet pipe cavity (137) is connected to a water inlet blocking ball (139) via a plurality of water inlet springs (138), and the upper end of the water inlet pipe cavity (137) is open; the drainer (113) comprises a conical tube (132) fixedly connected to the upper end of the collecting block (105), the conical tube (132) is provided with a drainage cavity (133) connected to the collecting cavity (106), the cross-sectional area of the drainage cavity (133) gradually increases from top to bottom, the drainage cavity (133) is connected to a drainage blocking ball (135) via a plurality of drainage springs (134), and the upper end of the conical tube (132) is open.
Citation Information
Patent Citations
Water quality sampling device for environmental monitoring
CN208999162U
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