Automatic filling device in barreled water production line
By introducing worm gear transmission and spring clamping mechanism into the bottled water production line, the problem of water barrels tilting during the filling process is solved, achieving stable clamping and precise filling of water barrels.
Patent Information
- Application Number
- CN202520373062.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-05
- Publication Date
- 2026-02-13
- Estimated Expiration
- 2035-03-05
AI Technical Summary
Existing automatic bottled water filling equipment lacks an effective fixing mechanism, which makes the water barrels prone to tilting during the filling process, causing water to overflow and making filling inconvenient.
An automatic filling device was designed, which adopts a worm gear drive and a spring clamping mechanism. Through the self-locking of the worm gear and the adjustment function of the spring, the water bucket is stably clamped, ensuring the stability and accuracy of the filling process.
This device can automatically adjust the clamping force according to the shape and size of the water bucket to prevent the water bucket from shaking or shifting during the filling process, ensuring the accuracy and stability of the filling and avoiding damage to the water bucket.
Smart Images

Figure CN223906528U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to filling equipment technical field, concretely is automatic filling device in barrelled water production line. BACKGROUND
[0002] Barrelled water refers to the pure water or mineral spring water that adopts tap water or extracts underground water, is handled by modern industrial technology (such as reverse osmosis, electrodialysis, distillation, resin softening etc.) and is filled to PC barrel by filling production line and obtains the product.
[0003] The existing barrelled water automatic filling equipment mostly fills by conveying belt to convey the containing barrel to the lower of water gun and fills, and the containing barrel lacks fixing mechanism in the filling process, can cause the barrelled water to incline in the containing process due to the impact force of water flow, causes water overflow, causes the filling inconvenience, in view of this, present a kind of automatic filling device in barrelled water production line. UTILITY MODEL CONTENT
[0004] (One) the technical problem solved
[0005] In view of the deficiencies of prior art, the utility model provides an automatic filling device in barrelled water production line, solves the problem of barrelled water filling inconvenience.
[0006] (Two) technical scheme
[0007] To achieve the above object, the utility model provides the following technical scheme: an automatic filling device in barrelled water production line, including conveying belt, the upper surface of conveying belt is fixedly installed with protective shell, and the left surface of protective shell is equipped with guide slot;
[0008] Among them, filling mechanism is provided on conveying belt, and filling mechanism includes water storage tank, water supply hose, water pump, first air cylinder, fixed block, water gun, second air cylinder, moving block, sliding slot, motor, worm, worm wheel, transmission roller, first support rod, second support rod, sliding block, L-shaped fixed plate, sliding roller, clamping plate and spring.
[0009] Preferably, the water storage tank is provided on the left surface of the conveying belt, and the output end of the water supply hose is fixedly installed on the upper surface of the water storage tank.
[0010] Among them, water pump is fixedly installed on the upper surface of water storage tank, and water pump is connected with water supply hose.
[0011] Preferably, the first air cylinder is fixedly installed on the upper surface of the protective shell top plate, and the output end of the first air cylinder penetrates through the lower surface of the protective shell horizontal plate.
[0012] Among them, fixed block is fixedly installed on the output end of first air cylinder, and fixed block is fixedly installed on the output end of water supply hose.
[0013] The water injection gun is fixedly installed on the lower surface of the fixed block.
[0014] Preferably, the two second air cylinders are fixedly installed on two sides of the protective shell, and the output ends of the two second air cylinders penetrate into the inner wall of the protective shell.
[0015] The two moving blocks are fixedly installed on the output ends of the two second air cylinders, and four sliding grooves are formed on the opposite surfaces of the two moving blocks.
[0016] Preferably, the two motors are fixedly installed on the inner surfaces of the two moving blocks, and the two worms are fixedly installed on the output ends of the two motors.
[0017] The two worm wheels are meshingly connected to the inner surfaces of the two worms, and the two transmission rollers are fixedly sleeved on the inner surfaces of the two worm wheels, and the opposite ends of the two transmission rollers penetrate out of the inner surfaces of the two moving blocks.
[0018] Preferably, the two first supporting rods are fixedly sleeved on the outer surfaces of the two transmission rollers, and the four second supporting rods are rotatably connected to the two ends of the two first supporting rods.
[0019] The four sliding blocks are rotatably connected to the ends of the four second supporting rods away from the two first supporting rods, and the four sliding blocks are slidably connected with the four sliding grooves.
[0020] Preferably, the four L-shaped fixed plates are fixedly installed on the opposite surfaces of the four sliding blocks, and the eight sliding rollers are slidably sleeved on the inner surfaces of the four L-shaped fixed plates.
[0021] The eight clamping plates are fixedly installed on the opposite ends of the eight sliding rollers, the eight springs are fixedly installed on the opposite surfaces of the eight clamping plates, and the opposite ends of the eight springs are fixedly installed on the opposite surfaces of the four L-shaped fixed plates.
[0022] (Three) beneficial effects
[0023] Compared with the prior art, the automatic filling device for the barreled water production line has the following beneficial effects:
[0024] 1. The automatic filling device for the barreled water production line can automatically adjust the clamping force according to the shape and size of the water bucket through the spring, avoid damaging the water bucket due to excessive extrusion, and also ensure that appropriate clamping force is provided for the water bucket during the clamping process of the water bucket with different diameters, so as to clamp the water bucket, fix the water bucket at the filling position, prevent the water bucket from shaking or deviating due to factors such as water impact force during the filling process, and ensure the accuracy and stability of filling.
[0025] 2. The automatic filling device in the barrel water production line, through the self-locking property of the worm gear and the worm, the self-locking property is used to compensate for the function that the clamping assembly does not have the self-locking property, the clamping assembly can be fixed to the barrel, and the stability of the water barrel during the filling process is ensured. BRIEF DESCRIPTION OF DRAWINGS
[0026] Figure 1 It is a structure schematic view of the automatic filling device in the barrel water production line.
[0027] Figure 2 It is the utility model Figure 1 It is an enlarged view of structure A.
[0028] Figure 3 It is a structure schematic view of the conveying belt.
[0029] Figure 4 It is the utility model Figure 3 It is an enlarged view of structure B.
[0030] In the figure: 1, conveying belt; 2, protective shell; 3, water storage tank; 4, water delivery hose; 5, water pump; 6, guide groove; 7, first air cylinder; 8, fixed block; 9, water injection gun; 10, second air cylinder; 11, moving block; 12, sliding groove; 13, motor; 14, worm; 15, worm gear; 16, transmission roller; 17, first supporting rod; 18, second supporting rod; 19, sliding block; 20, L-shaped fixed plate; 21, sliding roller; 22, clamping plate; 23, spring. DETAILED DESCRIPTION
[0031] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to 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 protection scope of the utility model.
[0032] Please refer to Figures 1-4 The utility model provides a new technical scheme: an automatic filling device in a barrel water production line, including conveying belt 1, the upper surface of conveying belt 1 is fixedly installed with protective shell 2, the left surface of protective shell 2 is equipped with guide groove 6;
[0033] The filling mechanism is arranged on the conveying belt 1, and comprises a water storage tank 3, a water conveying hose 4, a water pump 5, a first air cylinder 7, a fixed block 8, a water injection gun 9, a second air cylinder 10, a moving block 11, a sliding groove 12, a motor 13, a worm 14, a worm wheel 15, a transmission roller 16, a first supporting rod 17, a second supporting rod 18, a sliding block 19, an L-shaped fixed plate 20, a sliding roller 21, a clamping plate 22 and a spring 23.
[0034] Further, the water storage tank 3 is arranged on the left surface of the conveying belt 1, the output end of the water conveying hose 4 is fixedly installed on the upper surface of the water storage tank 3, and the water conveying hose 4 is slidably connected with the guide groove 6.
[0035] The water pump 5 is fixedly installed on the upper surface of the water storage tank 3, and the water pump 5 is connected with the water conveying hose 4.
[0036] Further, the first air cylinder 7 is fixedly installed on the upper surface of the top plate of the protective shell 2, and the output end of the first air cylinder 7 penetrates through the lower surface of the horizontal plate of the protective shell 2.
[0037] The fixed block 8 is fixedly installed on the output end of the first air cylinder 7, and the fixed block 8 is fixedly installed on the output end of the water conveying hose 4.
[0038] The water injection gun 9 is fixedly installed on the lower surface of the fixed block 8.
[0039] Further, the two second air cylinders 10 are fixedly installed on the two sides of the protective shell 2, and the output ends of the two second air cylinders 10 penetrate into the inner wall of the protective shell 2.
[0040] The two moving blocks 11 are fixedly installed on the output ends of the two second air cylinders 10, and the four sliding grooves 12 are formed in the opposite surfaces of the two moving blocks 11.
[0041] Further, the two motors 13 are fixedly installed on the inner surfaces of the two moving blocks 11, and the two worms 14 are fixedly installed on the output ends of the two motors 13.
[0042] The two worm wheels 15 are meshingly connected with the inner surfaces of the two worms 14, the two transmission rollers 16 are fixedly sleeved on the inner surfaces of the two worm wheels 15, and the opposite ends of the two transmission rollers 16 penetrate through the inner surfaces of the two moving blocks 11.
[0043] Further, the two first supporting rods 17 are fixedly sleeved on the outer surfaces of the two transmission rollers 16, and the four second supporting rods 18 are rotatably connected with the two ends of the two first supporting rods 17.
[0044] The four sliding blocks 19 are rotatably connected with the one ends of the four second supporting rods 18 away from the two first supporting rods 17, and the four sliding blocks 19 are slidably connected with the four sliding grooves 12.
[0045] Further, four L-shaped fixed plates 20 are respectively fixedly installed on the opposite faces of the four sliding blocks 19, and eight sliding rollers 21 are respectively slidably sleeved on the inner surfaces of the four L-shaped fixed plates 20;
[0046] Among them, eight clamping plates 22 are respectively fixedly installed on the opposite ends of the eight sliding rollers 21, eight springs 23 are respectively fixedly installed on the opposite faces of the eight clamping plates 22, and the opposite ends of the eight springs 23 are respectively fixedly installed on the opposite faces of the four L-shaped fixed plates 20;
[0047] When the automatic filling device in the barrel water production line is used, the barrel is conveyed by the conveying belt 1, and when it is conveyed to the lower side of the water injection gun 9, the second cylinder 10 is started, and the second cylinder 10 applies a pushing force to the opposite faces of the two fixed blocks 8 fixedly installed on the output end through operation, so that the two fixed blocks 8 move towards the opposite faces. At this time, the motor 13 is started, and the motor 13 drives the worm 14 to rotate through operation, the worm 14 drives the worm wheel 15 meshed and connected on the outer surface to rotate, the worm wheel 15 drives the transmission roller 16 fixedly sleeved on the inner surface to rotate, the transmission roller 16 drives the first branch rod 17 fixedly sleeved on the outer surface to rotate, the first branch rod 17 drives the two second branch rods 18 rotatably connected at both ends to move towards the opposite faces, the two second branch rods 18 pull the two sliding blocks 19 to move towards the opposite faces, the two sliding blocks 19 drive the two L-shaped fixed plates 20 to move towards the opposite faces, and the two L-shaped fixed plates 20 drive the plurality of clamping plates 22 to move towards the opposite faces. At this time, the plurality of clamping plates 22 are attached to the outer surface of the barrel water, and at this time, the clamping plates 22 apply a pushing force to the opposite faces of the sliding rollers 21, and the clamping plates 22 apply a pressure to the springs 23 fixedly installed on the opposite faces, so that the springs 23 are shrunk. At this time, the clamping plates 22 are pushed by the springs 23 to stably clamp the barrel, and at this time, the first cylinder 7 is started, and the first cylinder 7 applies a downward pushing force to the fixed block 8 fixedly installed on the lower surface through operation. At this time, the water injection gun 9 provided below the fixed block 8 is inserted into the barrel opening of the barrel, and at this time, water injection can be performed. At this time, the water pump 5 is started, and the water pump 5 pumps out the water in the water storage tank 3 and transports it through the water hose 4;
[0048] The automatic filling device in the barrel water production line can automatically adjust the clamping force according to the shape and size of the water barrel through the spring 23, avoid damaging the water barrel due to excessive extrusion, and also ensure that appropriate clamping force is provided during the clamping process of water barrels of different diameters to clamp the water barrel, fix the water barrel at the filling position, prevent the water barrel from shaking or deviating due to factors such as water impact force during the filling process, and ensure the accuracy and stability of the filling. The automatic filling device in the barrel water production line uses the self-locking property of the worm wheel 15 and the worm 14 to compensate for the function of the clamping assembly not having self-locking property, which can keep the clamping assembly fixed to the barrel and ensure the stability of the water barrel during the filling process.
[0049] Structure Description:
[0050] Conveying belt 1: used for conveying the water buckets to be filled, making them pass through each station of the filling device in sequence, realizing continuous and automatic filling process.
[0051] Protective shell 2: plays a protective role on the internal filling mechanism, preventing foreign matter from entering and affecting the filling process, and also preventing water from splashing to a certain extent, ensuring the safety of the working environment and the normal operation of the equipment.
[0052] Water storage tank 3: stores water for filling, providing water source for the entire filling process, ensuring sufficient water for filling the water buckets.
[0053] Water delivery hose 4: delivers water from the water storage tank 3 to the water injection gun 9, has a certain flexibility, can move flexibly within a certain range, and cooperates with the action of the water injection gun 9 to realize water injection to water buckets at different positions.
[0054] Water pump 5: provides power for the flow of water in the water delivery hose 4, pressurizes the water in the water storage tank 3 and delivers it to the water injection gun 9, ensuring that water can be sprayed from the water injection gun 9 at a certain pressure and flow rate, realizing rapid and efficient filling.
[0055] First air cylinder 7: drives the fixed block 8 and the water injection gun 9 to move up and down through the telescopic action, thereby controlling the position of the water injection gun 9, enabling it to accurately aim at the mouths of water buckets at different heights for water injection, and also adjusting the insertion depth of the water injection gun 9 according to the height of the water bucket.
[0056] Fixed block 8: used for fixing the output end of the water delivery hose 4 and the water injection gun 9, ensuring the stable connection between the water delivery hose 4 and the water injection gun 9, and at the same time transmitting the power of the first air cylinder 7 to the water injection gun 9, enabling it to move with the action of the first air cylinder 7.
[0057] Water injection gun 9: is the component that directly performs water injection operation, injecting the water delivered by the water delivery hose 4 into the water bucket, and its water outlet diameter and water flow speed, etc. can be adjusted according to the filling requirements to realize accurate and efficient filling.
[0058] Second air cylinder 10: installed on both sides of the protective shell 2, its output end drives the moving block 11 to move, thereby controlling the opening and closing of the clamping mechanism, realizing the clamping and loosening operation of the water bucket, ensuring the stability of the water bucket during the filling process.
[0059] Moving block 11: moves under the drive of the second air cylinder 10, provides a moving carrier for other components (such as motor 13, worm 14, etc.) installed on it, drives the whole clamping mechanism to move to adapt to the clamping needs of water buckets of different diameters.
[0060] Slide groove 12: provides a sliding track for sliding block 19, enabling sliding block 19 to slide on moving block 11 in a predetermined direction, ensuring the movement accuracy and stability of the clamping mechanism.
[0061] Motor 13: provides power for the rotation of worm 14, by controlling the rotation speed and direction of motor 13, the movement state of worm gear 15 and subsequent transmission components can be adjusted, thereby achieving precise control of the clamping force and position of clamping plate 22.
[0062] Worm 14: connected to the output end of motor 13, transmits the rotational motion of motor 13 to worm gear 15, and utilizes the transmission characteristics of worm and worm gear to achieve the effect of speed reduction and torque increase, enabling the clamping mechanism to provide sufficient force to clamp the bucket.
[0063] Worm gear 15: engages with worm 14, converts the motion of worm 14 into its own rotational motion, driving transmission roller 16 to rotate, and its transmission ratio makes the movement speed and force of the clamping mechanism more suitable for the operation of clamping the bucket.
[0064] Transmission roller 16: rotates under the drive of worm gear 15, moves sliding block 19 through first support rod 17 and second support rod 18, thereby achieving the opening and closing action of clamping plate 22, and its rotation angle and speed determine the clamping and releasing degree of clamping plate 22.
[0065] First support rod 17: fixedly sleeved on transmission roller 16, transmits the rotation of transmission roller 16 to second support rod 18, plays a role in force transmission and support, enabling the entire clamping mechanism to operate stably.
[0066] Second support rod 18: one end is rotationally connected with first support rod 17, and the other end is rotationally connected with sliding block 19, swings under the drive of first support rod 17, thereby pushing sliding block 19 to slide in slide groove 12, achieving the opening and closing movement of clamping plate 22.
[0067] Sliding block 19: slides in slide groove 12 under the push of second support rod 18, drives L-shaped fixed plate 20 and clamping plate 22 to move, achieving the clamping and releasing operation of the bucket, and its sliding distance and speed determine the clamping position and force of clamping plate 22.
[0068] L-shaped fixed plate 20: fixedly installed on sliding block 19, provides a mounting basis for sliding roller 21 and clamping plate 22, enabling clamping plate 22 to move in a predetermined direction under its action, and also plays a role in supporting and enhancing the stability of the structure.
[0069] Sliding roller 21: slidingly sleeved on the inner surface of L-shaped fixed plate 20, can freely slide on L-shaped fixed plate 20, provides guidance and support for the movement of clamping plate 22, reduces the friction force during the movement of clamping plate 22, enabling it to perform clamping and releasing actions more smoothly.
[0070] Clamping plate 22: under the action of spring 23, two opposite clamping plates 22 can clamp the water bucket, fix the water bucket in the filling position, prevent the water bucket from shaking or deviating during filling due to factors such as water impact force, and ensure the accuracy and stability of filling.
[0071] Spring 23: installed between the clamping plate 22 and the L-shaped fixed plate 20, which plays a role in buffering and adjusting the clamping force. When the clamping plate 22 clamps the water bucket, the spring 23 can automatically adjust the clamping force according to the shape and size of the water bucket, avoid excessive extrusion of the water bucket and damage, and also ensure that appropriate clamping force can be provided during the clamping process of water buckets with different diameters.
[0072] Although the embodiments of the utility model have been shown and described, it can be understood by those skilled in the art that various changes, modifications, replacements and variations can be made to these embodiments without departing from the principles and spirits of the utility model, and the scope of the utility model is defined by the appended claims and their equivalents.
Claims
1. An automatic filling device in a line for the production of bottled water, comprising a conveyor belt (1), characterized in that: The upper surface of the conveying belt (1) is fixedly provided with a protective shell (2), and the left surface of the protective shell (2) is provided with a guide groove (6); The conveying belt (1) is provided with a filling mechanism, and the filling mechanism comprises a water storage tank (3), a water conveying hose (4), a water pump (5), a first air cylinder (7), a fixed block (8), a water injection gun (9), a second air cylinder (10), a moving block (11), a sliding groove (12), a motor (13), a worm (14), a worm wheel (15), a transmission roller (16), a first supporting rod (17), a second supporting rod (18), a sliding block (19), an L-shaped fixed plate (20), a sliding roller (21), a clamping plate (22) and a spring (23).
2. The automatic filling device in a bottled water production line according to claim 1, characterized in that: The water storage tank (3) is arranged on the left surface of the conveying belt (1), and the output end of the water conveying hose (4) is fixedly arranged on the upper surface of the water storage tank (3); the water conveying hose (4) is slidably connected with the guide groove (6). The water pump (5) is fixedly arranged on the upper surface of the water storage tank (3), and the water pump (5) is connected with the water conveying hose (4).
3. The automatic filling device in a bottled water production line according to claim 1, characterized in that: The first air cylinder (7) is fixedly arranged on the upper surface of the top plate of the protective shell (2), and the output end of the first air cylinder (7) penetrates through the lower surface of the horizontal plate of the protective shell (2). The fixed block (8) is fixedly arranged on the output end of the first air cylinder (7), and the fixed block (8) is fixedly arranged on the output end of the water conveying hose (4). The water injection gun (9) is fixedly arranged on the lower surface of the fixed block (8).
4. The automatic filling device in a bottled water production line according to claim 1, characterized in that: The two second air cylinders (10) are fixedly arranged on the two sides of the protective shell (2), and the output ends of the two second air cylinders (10) penetrate into the inner wall of the protective shell (2). The two moving blocks (11) are fixedly arranged on the output ends of the two second air cylinders (10), and the four sliding grooves (12) are arranged on the opposite surfaces of the two moving blocks (11).
5. The automatic filling device in a bottled water production line according to claim 1, characterized in that: The two motors (13) are fixedly arranged on the inner surfaces of the two moving blocks (11), and the two worms (14) are fixedly arranged on the output ends of the two motors (13). The two worm wheels (15) are meshingly connected with the inner surfaces of the two worms (14), the two transmission rollers (16) are fixedly sleeved on the inner surfaces of the two worm wheels (15), and the opposite ends of the two transmission rollers (16) penetrate out of the inner surfaces of the two moving blocks (11).
6. The automatic filling device in a bottled water production line according to claim 1, characterized in that: The two first supporting rods (17) are fixedly sleeved on the outer surfaces of the two transmission rollers (16), and the four second supporting rods (18) are rotatably connected with the two ends of the two first supporting rods (17). The four sliding blocks (19) are rotatably connected with the ends of the four second supporting rods (18) away from the two first supporting rods (17), and the four sliding blocks (19) are slidably connected with the four sliding grooves (12).
7. The automatic filling device in a bottled water production line according to claim 1, characterized in that: The four L-shaped fixed plates (20) are fixedly arranged on the opposite surfaces of the four sliding blocks (19), and the eight sliding rollers (21) are slidably sleeved on the inner surfaces of the four L-shaped fixed plates (20). Eight clamping plates (22) are fixedly installed at opposite ends of the eight sliding rollers (21), and eight springs (23) are fixedly installed at opposite sides of the eight clamping plates (22), and opposite ends of the eight springs (23) are fixedly installed at opposite sides of the four L-shaped fixed plates (20).