Selenium-enriched drinking water rapid filling equipment capable of reducing spilling and leakage
By introducing a combination design of adjusting and conveying components into the selenium-enriched drinking water bottling equipment, the problem of inaccurate water bucket positioning was solved, achieving precise filling and reducing nozzle damage, thus improving filling efficiency and accuracy.
Patent Information
- Application Number
- CN202423258625.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-30
- Publication Date
- 2025-11-28
- Estimated Expiration
- 2034-12-30
AI Technical Summary
Existing selenium-enriched drinking water bottling equipment has difficulty in effectively positioning the water bucket during transport, resulting in misalignment between the nozzle and the water inlet of the bucket, which affects the bottling accuracy and shortens the nozzle life.
The design incorporates a combination of adjusting and conveying components, including a barrier frame, motor, screw, positioning strip, and nozzle. Through barrier, positioning, and guiding functions, it ensures that the water inlet of the bucket is aligned with the nozzle, achieving precise filling.
It improves filling accuracy, reduces nozzle damage and waste, and ensures the continuity and efficiency of the filling process.
Smart Images

Figure CN223605896U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the technical field of selenium -enriched drinking water filling, specifically to a selenium -enriched drinking water quick filling equipment of reducing spilling. BACKGROUND
[0002] In the production process of selenium-enriched drinking water, it needs corresponding filling equipment to carry out filling treatment, referring to the quick filling equipment for drinking water of the utility model discloses a kind of, including rack, the top surface of rack is equipped with conveying belt, the upper portion of rack is equipped with multiple water collecting tanks that can reciprocate up and down, the outside of multiple water collecting tanks is equipped with booster pump machine, water in water collecting tank can be pressurized, and reciprocating piston is installed in the inside of water collecting tank, drinking water can be pressurized again, so that drinking water in water collecting tank can be sprayed under great pressure, improve the flow rate of drinking water, to a certain extent, it can improve filling speed, as described in the above patent, when using the existing selenium-enriched drinking water filling quick filling equipment of reducing spilling, most of them are difficult to block and clamp positioning treatment to water bucket during water bucket transmission according to the position of filling nozzle, and the nozzle is prone to damage due to the misalignment of the water inlet hole at the top of the water bucket and the nozzle, which affects the service life of the nozzle, and affects the filling accuracy and causes waste. SUMMARY
[0003] In view of the defects of the prior art, the utility model provides a selenium-enriched drinking water quick filling equipment of reducing spilling, which solves the problems that the device cannot effectively position and adjust the water bucket, causing the misalignment of the nozzle and the water inlet hole of the water bucket and affecting the filling accuracy.
[0004] To achieve the above purpose, the utility model realizes the following technical scheme: a selenium-enriched drinking water quick filling equipment of reducing spilling, comprising a frame, the frame is connected with a filling assembly for selenium-enriched drinking water filling, the filling assembly comprises:
[0005] A conveying part is installed on the frame for guiding and conveying the drinking water bucket.
[0006] An adjusting part is installed on the frame for positioning and adjusting the drinking water bucket, the adjusting part comprises a first cylinder assembly arranged on the top of the frame, the bottom of the first cylinder assembly is provided with a blocking frame, the front side of the blocking frame is provided with a motor, the rear side output end of the motor is coaxially fixedly connected with a screw rod rotatably connected with the blocking frame, the left side of the blocking frame is provided with three groups of pressure sensors, and the screw rod is threadedly connected with a positioning strip slidably connected with the blocking frame on the two sides close to the pressure sensors.
[0007] The irrigation part is installed on the top of the frame body for irrigation of selenium-rich water, and comprises a booster pump installed on the top of the frame body, a bifurcated pipe is installed on the water outlet end of the booster pump, three groups of bellows are installed on the left side of the bifurcated pipe, a second air cylinder assembly is vertically arranged on the left side of the top of the frame body, and an elongated end of the top of the second air cylinder assembly is provided with three groups of traction frames which are fixedly connected with the three groups of bellows, respectively, three groups of spray heads are vertically installed on the lower side of the traction frames, springs are arranged on the outer side of the traction frames close to the spray heads, and the springs are provided with blocking rings close to the lower side of the spray heads.
[0008] Preferably, the conveying part comprises three groups of conveying belt assemblies arranged on the frame body along the X-axis, and the three groups of conveying belt assemblies are located below the three groups of spray heads, respectively; a supporting frame is fixedly connected to the frame body and is in close contact with the conveying belts in the conveying belt assemblies; and guide frames are arranged on both ends of the upper side of the supporting frame close to the conveying belt assemblies.
[0009] Preferably, the blocking frame is provided with two groups of sliding rods which are in sliding connection with the positioning strips, and a plurality of movable grooves which are in sliding connection with the positioning strips are arranged in the blocking frame.
[0010] Preferably, a torque sensor is arranged between the blocking frame and the motor and the screw rod, and the pressure sensor and the torque sensor are electrically connected with an external controller.
[0011] Preferably, the screw rod is provided with two groups of threads which are opposite in direction at the end close to the pressure sensor, and a water pumping pipe for pumping selenium-rich water is arranged on the water pumping end of the booster pump.
[0012] Preferably, the three groups of spray heads are fixedly connected with and communicated with the three groups of bellows, respectively, and a through groove is vertically arranged in the middle of the blocking ring and penetrates the blocking ring corresponding to the spray heads.
[0013] The utility model provides a kind of selenium-rich drinking water quick filling equipment for reducing spilling, compared with prior art has the following beneficial effects:
[0014] (1), the selenium-rich drinking water quick filling equipment for reducing spilling, by setting adjusting part in device, when conveying part conveys water bucket to be filled in process, blocking frame is blocked to water bucket, after three groups of water buckets are blocked, let motor and screw rod, a plurality of positioning strips cooperate, respectively positioning clamping processing to three groups of water buckets, to make water bucket upper side water inlet end be located in the lower side of spray head, it is helpful to subsequent spray head accurate insertion in water bucket, improve filling accuracy, reduce that spray head is damaged due to spray head and water inlet hole of water bucket misregistration, after filling is completed, the height of blocking frame is adjusted by first air cylinder assembly, so that the water bucket filled is passed adjusting part, it is helpful to subsequent continuous filling operation.
[0015] (2), the reduced spilling of selenium-enriched drinking water filling equipment, through the setting of conveying part in the device, in the three groups of conveying belt assembly to the water bucket conveying process, the support frame provides corresponding support for the lower side of the conveying belt, prevents the conveying belt from collapsing, when the water bucket passes through the guide frame, two groups of guide frame guide the water bucket, promote the water bucket to move to the middle part of the conveying belt assembly, facilitate the subsequent positioning of the positioning strip positioning operation. BRIEF DESCRIPTION OF DRAWINGS
[0016] Figure 1 It is a perspective view of the utility model;
[0017] Figure 2 It is an enlarged view of the front view of the adjusting part of the utility model;
[0018] Figure 3 It is an enlarged view of the rear view of the adjusting part of the utility model;
[0019] Figure 4 It is an enlarged view of the pouring part of the utility model.
[0020] In the figure: 1, frame body; 2, conveying part; 21, conveying belt assembly; 22, support frame; 23, guide frame; 3, adjusting part; 31, first cylinder assembly; 32, blocking frame; 33, motor; 34, screw; 35, positioning strip; 36, pressure sensor; 4, pouring part; 41, booster pump; 42, bifurcated pipe; 43, corrugated pipe; 44, second cylinder assembly; 45, traction frame; 46, spray head; 47, spring; 48, blocking ring. DETAILED DESCRIPTION
[0021] The technical scheme in the embodiments of the utility model will be described clearly and completely below in conjunction with the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, not all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the utility model.
[0022] Reference Figures 1-4 The utility model provides the following two technical schemes:
[0023] The first embodiment is a rich selenium drinking water filling equipment capable of reducing spillage, which comprises a frame 1, wherein a filling assembly for filling rich selenium drinking water is connected to the frame 1, and the filling assembly comprises a conveying part 2 installed on the frame 1 for guiding and conveying a drinking water bucket, and an adjusting part 3 installed on the frame 1 for positioning and adjusting the drinking water bucket, wherein the adjusting part 3 comprises a first cylinder assembly 31 arranged on the top of the frame 1, a blocking frame 32 arranged at the bottom of the first cylinder assembly 31, a motor 33 arranged at the front side of the blocking frame 32, a screw rod 34 coaxially and fixedly connected to the rear side output end of the motor 33 and rotatably connected to the blocking frame 32, and three groups of pressure sensors 36 arranged at the left side of the blocking frame 32, wherein the screw rod 34 is threadedly connected to the blocking frame 32 at the left and right sides of the pressure sensors 36 and slidably connected to the blocking frame 32, and a positioning strip 35 is arranged at the left side of the blocking frame 32 and slidably connected to the blocking frame 32.
[0024] A filling part 4 is arranged on the top of the frame 1 for filling the rich selenium water, wherein the filling part 4 comprises a booster pump 41 arranged on the top of the frame 1, a bifurcated pipe 42 arranged at the water outlet end of the booster pump 41, three groups of corrugated pipes 43 arranged at the left side of the bifurcated pipe 42, a second cylinder assembly 44 arranged vertically at the left side of the top of the frame 1, and a traction frame 45 arranged at the top elongated end of the second cylinder assembly 44 and fixedly connected to the three groups of corrugated pipes 43, respectively, wherein three groups of nozzles 46 are arranged vertically at the lower side of the traction frame 45, springs 47 are arranged at the outer side of the traction frame 45 close to the nozzles 46, and a blocking ring 48 is arranged at the lower side of the traction frame 45 close to the nozzles 46.
[0025] The rear side of the blocking frame 32 is provided with two groups of sliding rods slidably connected to the positioning strip 35, and a plurality of movable grooves slidably connected to the positioning strip 35 are arranged in the blocking frame 32; the blocking frame 32 is provided with a torque sensor between the motor 33 and the screw rod 34, and the pressure sensors 36 and the torque sensor are electrically connected to an external controller; the screw rod 34 is provided with two groups of threads with opposite directions at the end close to the pressure sensors 36, and the booster pump 41 is provided with a water pumping pipe for pumping the rich selenium water; the three groups of nozzles 46 are fixedly connected to and communicated with the three groups of corrugated pipes 43, and a through groove is vertically and throughly arranged in the middle of the blocking ring 48 and corresponds to the nozzles 46; when the conveying part 2 conveys the water bucket to be filled to the end of the blocking frame 32, the blocking frame 32 blocks the water bucket, and the pressure sensors 36 have a sensing function when the water bucket contacts the blocking frame 32; after the three groups of water buckets are blocked, the motor 33, the screw rod 34 and the plurality of positioning strips 35 are cooperated to respectively position and clamp the three groups of water buckets, so that the upper water inlet end of the water bucket is located below the nozzles 46, which is helpful for the subsequent accurate insertion of the nozzles 46 into the water bucket for filling treatment; after the filling is completed, the height of the blocking frame 32 is adjusted by the first cylinder assembly 31, so that the filled water bucket can pass through the adjusting part 3.
[0026] The second embodiment is mainly different from the first embodiment in that:
[0027] The conveying member 2 comprises three groups of conveying belt assemblies 21 arranged along the X axis on the frame body 1, the three groups of conveying belt assemblies 21 are respectively located below the three groups of nozzles 46, a supporting frame 22 is fixedly connected to the upper side of the frame body 1 and is in contact with the conveying belts in the conveying belt assemblies 21, the supporting frame 22 is in contact with the lower surface of the upper side of the conveying belts, thereby providing corresponding support during the conveying of the water buckets, the supporting frame 22 is provided with guide frames 23 near the upper sides of the two ends of the conveying belt assemblies 21, the two groups of guide frames 23 are symmetrically arranged on the supporting frame 22 corresponding to the conveying belt assemblies 21, the three groups of conveying belt assemblies 21 have the conveying function of the water buckets filled with water, when the water buckets pass through the guide frames 23, the two groups of guide frames 23 guide the water buckets, promoting the water buckets to move to the middle part of the conveying belt assemblies 21.
[0028] Meanwhile, the contents not described in detail in the specification all belong to the prior art known by those skilled in the art, and the model parameters of various electric appliances are not specifically limited and can be realized by using conventional devices.
[0029] In use, the user moves the three groups of drinking water buckets required to be filled with selenium-rich water to the conveying belt assemblies 21 through the external transmission member, the conveying belt assemblies 21 drive the drinking water buckets to move towards the filling member 4 during operation, when the drinking water buckets pass through the two groups of guide frames 23, the guide frames 23 guide the drinking water buckets, so that the drinking water buckets are close to the middle part of the conveying belt assemblies 21, after the drinking water buckets contact with the blocking frame 32, the blocking frame 32 blocks the drinking water buckets, after the blocking frame 32 blocks the three groups of drinking water buckets, the conveying belt assemblies 21 are closed, the motor 33 is started, the motor 33 drives the two groups of positioning strips 35 close to the two sides of the drinking water buckets to slide along the slide rods at the rear side of the blocking frame 32 through the screw rods 34, after the two groups of positioning strips 35 clamp the drinking water buckets, at this time, the water inlet holes at the top of the drinking water buckets are located below the nozzles 46;
[0030] The second cylinder assembly 44 is started, the second cylinder assembly 44 drives the traction frame 45, the three groups of nozzles 46, the spring 47 and the blocking ring 48 to move downwards, the blocking ring 48 first contacts the top of the drinking water bucket, under the reaction force of the drinking water bucket, the blocking ring 48 compresses the spring 47, and the elastic force generated by the compressed spring 47 makes the blocking ring 48 tightly contact the top of the drinking water bucket, after the nozzles 46 are accurately inserted into the drinking water bucket, the second cylinder assembly 44 is closed, the booster pump 41 is started, the booster pump 41 draws the selenium-rich water outside through the water suction pipe and pressurizes it, the pressurized selenium-rich water is quickly injected into the three groups of drinking water buckets through the bifurcated pipe 42, the three groups of corrugated pipes 43 and the nozzles 46, the blocking ring 48 covering the top of the drinking water bucket reduces the leakage of the selenium-rich water during the addition of the selenium-rich water, after the addition of the selenium-rich water into the drinking water bucket is completed, each link is reset, the height of the blocking frame 32 is adjusted by the first cylinder assembly 31, after the height of the blocking frame 32 is higher than the height of the water bucket, the conveying belt assemblies 21 continue to convey the water buckets, wherein the conveying belt assemblies 21 are prior art, and therefore the specific structure and working principle thereof will not be described in detail.
[0031] It is to be noted that, in the present document, relational terms such as first and second and the like can be used solely to distinguish one entity or action from another entity or action without necessarily requiring or implying any actual such relationship or order between such entities or actions. Moreover, the terms "comprises", "comprising", or any other variation thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but can include other elements not expressly listed or inherent to such process, method, article, or apparatus.
[0032] While embodiments of the present application have been shown and described, it is to be understood that the application is not limited to the details of the embodiments described, since the scope of the application is defined with respect to the appended claims.
Claims
1. A rapid bottling device for selenium-enriched drinking water that reduces spillage, comprising a frame, characterized in that: The frame is connected to a filling assembly for selenium-enriched drinking water, the filling assembly comprising: Conveying components, installed on the frame, are used for guiding and conveying drinking water barrels; An adjusting component, installed on a frame, is used for positioning and adjusting the drinking water bucket. The adjusting component includes a first cylinder assembly located at the top of the frame. A barrier frame is provided at the bottom extension end of the first cylinder assembly. A motor is provided at the front side of the barrier frame. A screw rod that is rotatably connected to the rear output end of the motor is coaxially fixedly connected to the barrier frame. Three sets of pressure sensors are provided on the left side of the barrier frame. Positioning strips that are slidably connected to the barrier frame are threaded on both sides of the screw rod near the pressure sensors. An injection unit, installed on the top of a frame for injecting selenium-enriched water, includes a booster pump installed on the top of the frame. The booster pump has a branch pipe installed at its drain end. Three sets of corrugated pipes are installed on the left side of the branch pipe. A second cylinder assembly is vertically installed on the left side of the top of the frame. A traction frame, which is fixedly connected to the three sets of corrugated pipes, is installed on the extended top end of the second cylinder assembly. Three sets of nozzles are vertically installed on the lower side of the traction frame. A spring is provided on the outer side of the traction frame near the nozzle. A blocking ring is provided on the lower side of the spring near the nozzle.
2. The rapid bottling equipment for selenium-enriched drinking water with reduced spillage according to claim 1, characterized in that: The conveying component includes three sets of conveyor belt assemblies arranged along the X-axis on the frame. The three sets of conveyor belt assemblies are located directly below the three sets of nozzles. A support frame that fits against the conveyor belt inside the conveyor belt assembly is fixedly connected to the upper side of the frame. Guide frames are provided at both ends of the support frame near the upper side of the conveyor belt assembly.
3. The rapid bottling equipment for selenium-enriched drinking water with reduced spillage according to claim 1, characterized in that: The rear side of the barrier frame is provided with two sets of sliding rods that are slidably connected to the positioning strip, and the barrier frame is provided with a number of movable grooves that are slidably connected to the positioning strip.
4. The rapid bottling equipment for selenium-enriched drinking water with reduced spillage according to claim 1, characterized in that: A torque sensor is installed near the motor and screw in the barrier frame. Both the pressure sensor and the torque sensor are electrically connected to an external controller.
5. The rapid bottling equipment for selenium-enriched drinking water with reduced spillage according to claim 1, characterized in that: The screw has two sets of threads in opposite directions near the pressure sensor end, and the booster pump is equipped with a pumping pipe for drawing selenium-rich water at the pumping end.
6. The rapid bottling equipment for selenium-enriched drinking water with reduced spillage according to claim 1, characterized in that: The three sets of nozzles are fixedly connected to and communicate with the three sets of corrugated pipes respectively, and the middle of the barrier ring is provided with a through groove perpendicular to the nozzle.
Citation Information
Patent Citations
Quick filling equipment for drinking water
CN221777574U