A bottle mounting device on a bottle body, a soft mist agent bottle production system and method

By designing the bottle on the bottle body, using the blanking plate, inclined blanking channel and thimble structure, the problems of inverting and crushing bottles in the production of soft atomizer bottles are solved, and the upright placement and efficient production of each bottle body are achieved.

CN115180567BActive Publication Date: 2025-07-29TRUKING TECH LTD
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Patent Information

Application Number
CN202210976107.4
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-08-15
Publication Date
2025-07-29
Estimated Expiration
2042-08-15

AI Technical Summary

Technical Problem

During the production process of existing soft atomizer bottles, it is difficult to ensure that each bottle body is placed on the conveying device in a vertical state, resulting in problems of inverting and breaking bottles.

Method used

A bottle-mounted bottle device is adopted, including a blanking plate and an inclined blanking channel, combined with a reciprocating and translational blanking slider and thimble structure to ensure that the soft atomizer bottle is placed upright during the blanking process, and precise loading is achieved through vibrating the bottle handler and bottle discharge mechanism.

Benefits of technology

It effectively avoids the inverting and breaking of soft atomizer bottles, ensuring that each bottle body is in a vertical state on the conveying device, and improving production efficiency and safety.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention discloses a bottle loading device for a bottle body, which includes a blanking plate and a blanking channel located below the blanking plate and having an inclined surface. A reciprocating translatable blanking slide plate is provided between the blanking plate and the blanking channel. A material receiving hole penetrating up and down is provided on the blanking plate. A blanking port is provided at a position corresponding to the material receiving hole of the blanking slide plate on the blanking plate. A bottle blocking portion is provided on the blanking plate, and a thimble that can be inserted into the bottle mouth of the soft mist agent bottle is provided on one side of the bottle blocking portion corresponding to the material receiving hole. The present invention also discloses a soft mist agent bottle production system, which includes a filling device, a capping device, a conveying device for conveying the soft mist agent bottles, and the above-mentioned bottle loading device for the bottle body. The bottle loading device for the bottle body, the filling device, and the capping device are sequentially arranged along the conveying direction of the conveying device. The present invention also discloses a soft mist agent bottle production method, which includes the following steps: bottle loading; bottle dropping. The bottle loading device for the bottle body, the soft mist agent bottle production system, and the method have the advantages of being able to ensure that each bottle body is placed in an upright state on the conveying device and being able to avoid bottle inversion and bottle breakage.
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Description

Technical Field

[0001] The present invention relates to the technical field of food and medicine packaging machinery and equipment, and in particular to a bottle loading device, a soft mist bottle production system and a method. Background Art

[0002] During the production process, soft aerosol bottles generally require filling and capping. To improve production efficiency, soft aerosol bottles are generally processed in an assembly line. Therefore, in terms of the feeding of soft aerosol bottles and the supply of caps, existing soft aerosol bottles are generally sorted by a vibrating sorter before being conveyed to a bottle conveyor line. However, it is difficult to ensure that each soft aerosol bottle is placed upright on the bottle conveyor line. Inverted soft aerosol bottles cannot match the bottle conveyor line, resulting in falling and broken bottles. Furthermore, existing caps are generally sorted by a vibrating sorter before being output for supply, resulting in an intermittent supply of bottle caps and low production efficiency. Summary of the Invention

[0003] The technical problem to be solved by the present invention is to overcome the shortcomings of the existing technology and provide a bottle loading device, a soft aerosol bottle production system and a method that can ensure that each bottle is placed in an upright state on a conveying device and can avoid bottle falling and breaking.

[0004] In order to solve the above technical problems, the present invention adopts the following technical solutions:

[0005] A bottle loading device comprises a blanking plate and a blanking channel located below the blanking plate and having an inclined surface, a blanking slide plate which can move back and forth between the blanking plate and the blanking channel, a material receiving hole which passes through the blanking plate from top to bottom, a blanking opening at a position corresponding to the material receiving hole of the blanking slide plate, a bottle blocking portion being provided on the blanking plate, and a thimble which can be inserted into the bottle opening of a soft mist bottle being provided on one side of the material receiving hole of the blanking plate.

[0006] As a further improvement of the above technical solution:

[0007] It also includes a vibrating bottle unscrambler and a bottle discharging mechanism. The bottle inlet end of the bottle discharging mechanism is connected to the outlet of the vibrating bottle unscrambler. The blanking plate is connected to the bottle discharging end of the bottle discharging mechanism on the other side of the material receiving hole. The bottle discharging end of the bottle discharging mechanism is provided with a bottle discharging limiting mechanism.

[0008] The blanking channel is a tapered channel.

[0009] A bottle arrival detection mechanism for detecting whether the soft mist bottle is in place is provided above the blanking plate.

[0010] A soft mist bottle production system includes a filling device, a capping device, a conveying device for conveying soft mist bottles and the above-mentioned bottle loading device, wherein the bottle loading device, the filling device and the capping device are arranged in sequence along the conveying direction of the conveying device.

[0011] As a further improvement of the above technical solution:

[0012] The capping device includes a vibrating cap sorter, a cap discharging mechanism, a material receiving plate that can reciprocate and translate along the length direction, a capping station arranged on the conveying device, and a first transfer mechanism arranged between the material receiving plate and the capping station. The cap discharging end of the cap discharging mechanism is connected to the outlet of the vibrating cap sorter, the material receiving plate is located at the cap discharging end of the cap discharging mechanism, and a row of material receiving grooves arranged at intervals along the length direction of the material receiving plate are provided on the side of the material receiving plate facing the cap discharging mechanism.

[0013] The cap discharging end of the cap discharging mechanism is provided with a cap in place detection mechanism for detecting whether the bottle cap is in place; the conveying device is provided with a cap pressing device and a waste rejection device arranged in sequence along the conveying direction downstream of the capping station.

[0014] The capping device includes a baffle plate located above the conveying device and a plurality of bottle-lifting assemblies located below the conveying device and arranged side by side. The bottle-lifting assemblies are used to tighten the soft aerosol bottles on the conveying device onto the baffle plate to achieve capping. A finished product temporary storage area is provided on one side of the capping device, and the conveying device is provided with a finished product output device downstream of the capping device.

[0015] The waste rejection device includes a capping detection mechanism, a material guide trough located above the conveying device, a pushing assembly located below the conveying device, and a temporary storage box located below the opening side of the material guide trough. The pushing assembly is used to push the soft mist bottle on the conveying device into the material guide trough.

[0016] A method for producing a soft mist bottle is provided, using the bottle loading device described above, and the method comprises the following steps:

[0017] S1. Bottle loading: The receiving hole and the blanking port of the blanking plate are staggered in the width direction of the receiving hole. The soft mist bottle is placed flat on the receiving hole from the side of the blanking plate opposite to the ejector pin. At this time, the bottle mouth of the soft mist bottle with the bottle mouth facing forward is inserted into the corresponding ejector pin, and the bottle bottom of the soft mist bottle with the bottle bottom facing forward is against the ejector pin, and the bottle mouth is placed on the blanking plate;

[0018] S2. Bottle dropping: the dropping slide moves along the width direction of the receiving hole to push the soft mist bottle to the dropping port, and the bottom of the soft mist bottle falls downward into the dropping channel and falls under the guidance of the dropping channel.

[0019] Compared with the prior art, the advantages of the present invention are:

[0020] For the bottle loading device of the present invention, when the soft mist bottle is on the blanking plate, the receiving hole and the blanking port are arranged offset in the width direction of the receiving hole, that is, the non-opening part of the blanking slide block blocks below the receiving hole, preventing the soft mist bottle from falling downward before it reaches the position. After the soft mist bottle reaches the position on the blanking plate, the mouth of the soft mist bottle with the mouth facing forward is sleeved in the corresponding thimble, the bottom of the soft mist bottle with the bottom facing forward abuts against the thimble, the mouth is placed on the blanking plate on the bottle inlet side of the receiving hole, and the bottom is suspended above the receiving hole under the supporting action of the blanking slide block. In this way, when the blanking slide block slides to align the receiving hole and the blanking port vertically, under the blocking action of the thimble and the blanking plate on the bottle inlet side of the receiving hole, the bottom also drops, avoiding the soft mist bottle from falling upside down. Moreover, under the guiding action of the inclined surface of the blanking channel, it is ensured that each bottle body is placed upright on the conveying device, avoiding bottle inversion and breakage. This bottle loading device of the present invention can ensure that each bottle body is placed upright on the conveying device and can avoid bottle inversion and breakage.

[0021] For the soft mist bottle production system of the present invention, the production process is as follows: First, the soft mist bottle is loaded onto the conveying device through the bottle loading device of the present invention; then, the soft mist bottle is conveyed by the conveying device to the filling device for filling; then, the soft mist bottle is conveyed by the conveying device to the capping device for capping. This soft mist bottle production system has all the advantages of the bottle loading device, that is, it can ensure that each soft mist bottle is placed upright on the conveying device and can avoid bottle inversion and breakage.

[0022] For the soft mist bottle production method of the present invention, when the soft mist bottle is on the blanking plate, the receiving hole and the blanking port are arranged offset in the width direction of the receiving hole, that is, the non-opening part of the blanking slide block blocks below the receiving hole, preventing the soft mist bottle from falling downward before it reaches the position. After the soft mist bottle reaches the position on the blanking plate, the mouth of the soft mist bottle with the mouth facing forward is sleeved in the corresponding thimble, the bottom of the soft mist bottle with the bottom facing forward abuts against the thimble, the mouth is placed on the blanking plate on the bottle inlet side of the receiving hole, and the bottom is suspended above the receiving hole under the supporting action of the blanking slide block. In this way, when the blanking slide block slides to align the receiving hole and the blanking port vertically, under the blocking action of the thimble and the blanking plate on the bottle inlet side of the receiving hole, the bottom also drops, avoiding the soft mist bottle from falling upside down. Moreover, under the guiding action of the inclined surface of the blanking channel, it is ensured that each bottle body is placed upright on the conveying device, avoiding bottle inversion and breakage. This soft mist bottle production method can ensure that each bottle body is placed upright on the conveying device and can avoid bottle inversion and breakage. Description of the Drawings

[0023] Figure 1 is an exploded view of the bottle loading device of the present invention.

[0024] Figure 2 is a schematic structural view of the blanking plate of the bottle loading device of the present invention.

[0025] Figure 3 It is a schematic structural view of the blanking slide plate of the bottle loading device on the bottle body of the present invention.

[0026] Figure 4 It is a process diagram of the bottle loading process of the bottle loading device on the bottle body of the present invention.

[0027] Figure 5 It is a schematic three-dimensional structural view of the soft mist bottle production system of the present invention.

[0028] Figure 6 Figure 5 An enlarged view of part A in the figure.

[0029] Figure 7 Figure 5 An enlarged view of part B in the figure.

[0030] Figure 8 Figure 5 An enlarged view of part C in the figure.

[0031] Figure 9 It is a schematic structural view of the capping device of the soft mist bottle production system of the present invention.

[0032] Figure 10 It is a schematic structural view of the cap pressing device and the waste rejection device of the soft mist bottle production system of the present invention.

[0033] Each label in the figure represents:

[0034] 1. Conveyor device; 11. Bottle placing hole; 2. Bottle loading device on the bottle body; 21. Vibration bottle aligner; 22. Bottle discharging mechanism; 23. Blanking plate; 24. Blanking channel; 25. Blanking slide plate; 251. Blanking port; 26. Bottle blocking part; 27. Thimble; 28. Bottle discharging limiting mechanism; 29. Bottle in-place detection mechanism; 3. Filling device; 4. Capping device; 41. Vibration cap aligner; 42. Cap discharging mechanism; 43. Material receiving plate; 431. Material receiving groove; 44. Capping station; 45. First transfer mechanism; 46. Cap in-place detection mechanism; 5. Soft mist bottle; 6. Cap pressing device; 61. Blocking cover plate; 62. Bottle top assembly; 7. Waste rejection device; 71. Guide chute; 72. Pushing assembly; 73. Temporary storage box; 74. Cap pressing detection mechanism; 8. Finished product temporary storage area; 9. Finished product output device. Detailed implementation mode

[0035] The present invention will be further described in detail below with reference to the accompanying drawings of the specification and specific embodiments.

[0036] Embodiment 1:

[0037] Figures 1 to 4An embodiment of the bottle loading device of the present invention is shown, which includes a blanking plate 23 and a blanking channel 24 located below the blanking plate 23 and having an inclined surface. A blanking slide 25 that can move back and forth is provided between the blanking plate 23 and the blanking channel 24. A material receiving hole that passes through the blanking plate 23 is provided. A blanking opening 251 is provided at a position corresponding to the material receiving hole of the blanking slide 25 and the blanking plate 23. A bottle blocking portion 26 is provided on the blanking plate 23. The bottle blocking portion 26 is provided with a pin 27 on one side of the material receiving hole that can be inserted into the bottle mouth of the soft mist bottle 5.

[0038] The loading process of the soft mist bottle 5: First, the receiving hole of the blanking plate 23 and the blanking opening 251 are staggered in the width direction of the receiving hole, and the soft mist bottle 5 lies flat on the receiving hole from the side of the blanking plate 23 opposite to the ejector pin 27. At this time, the bottle mouth of the soft mist bottle 5 facing forward is inserted into the corresponding ejector pin 27, and the bottle bottom of the soft mist bottle 5 facing forward is against the ejector pin 27, and the bottle mouth is placed on the blanking plate 23; then, the blanking slide 25 moves along the width direction of the receiving hole to push the soft mist bottle 5 to the blanking opening 251, and the soft mist bottle 5 falls into the blanking channel 24 with the bottom of the bottle facing downward, and falls to the conveying device 1 below under the guidance of the blanking channel 24.

[0039] The receiving hole and the blanking opening 251 are in the shape of a strip longer than the soft mist bottle 5. When the soft mist bottle 5 is blanked by the blanking plate 23, the receiving hole and the blanking opening 251 are staggered in the width direction of the receiving hole, that is, the non-opening portion of the blanking slide 25 is blocked below the receiving hole, preventing the soft mist bottle 5 from falling down before it reaches the designated position. After the soft mist bottle 5 is in place on the blanking plate 23, the bottle mouth of the soft mist bottle 5 with the bottle mouth facing forward is inserted into the corresponding ejector pin 27, and the bottle bottom of the soft mist bottle 5 with the bottle bottom facing forward abuts against the ejector pin 27. The bottle mouth is placed on the blanking plate 23 on the bottle inlet side of the material receiving hole. The bottle bottom is suspended above the material receiving hole under the support of the blanking slide 25. In this way, when the blanking slide 25 slides to align the material receiving hole and the blanking hole 251, the bottle bottom falls downward due to the resistance of the ejector pin 27 and the blanking plate 23 on the bottle inlet side of the material receiving hole, as well as the telescopic movement of the ejector pin 27, preventing the soft mist bottle 5 from falling upside down. Moreover, under the guidance of the inclined surface of the blanking channel 24, each bottle is ensured to be placed upright on the conveying device 1, preventing the bottle from falling or being broken. This bottle loading device can ensure that each bottle is placed upright on the conveying device 1 and can prevent the bottle from falling or being broken.

[0040] Specifically, at least one inner surface of the drop channel 24 is an inclined surface, so that the drop channel 24 forms a structure that is larger at the top and smaller at the bottom, which has a guiding effect on the falling of the bottle.

[0041] This embodiment also includes a vibrating bottle unscrambler 21 and a bottle discharge mechanism 22. The bottle inlet end of the bottle discharge mechanism 22 is connected to the outlet of the vibrating bottle unscrambler 21. A blanking plate 23 abuts against the bottle discharge end of the bottle discharge mechanism 22 on the other side of the material receiving hole. The bottle discharge end of the bottle discharge mechanism 22 is equipped with a bottle discharge restriction mechanism 28. The blanking plate 23 has a material blocking side on one side of the material receiving hole, i.e., the side equipped with an ejector pin 27. The blanking plate 23 has a material feeding side on the other side of the material receiving hole, i.e., the side abutting against the bottle discharge end of the bottle discharge mechanism 22. Bottles from the vibrating bottle unscrambler 21 are introduced into the material receiving hole of the blanking plate 23 through the bottle discharge mechanism 22.

[0042] In this embodiment, the drop channel 24 is a tapered channel, which has a good guiding effect on the falling process of the bottle.

[0043] In this embodiment, a bottle in place detection mechanism 29 for detecting whether the soft mist bottle 5 is in place is provided above the blanking plate 23. The bottle in place detection mechanism 29 is used to detect whether the soft mist bottle 5 is in place to prevent the soft mist bottle 5 from falling when it is not in place.

[0044] In this embodiment, the ejector pin 27 has a telescopic function, which can apply appropriate pressing force to the bottle body with the bottom facing forward (reverse) against the ejector pin 27. In this way, after the blanking slide 25 slides to align the receiving hole and the blanking port 251 up and down, the bottle body in the reverse direction can be delayed by the pressing action of the ejector pin 27. After the bottle body in the forward direction falls an appropriate distance first, the ejector pin 27 contracts to make the bottle body in the reverse direction fall, thereby displacing the bottles in the forward and reverse directions by a certain distance, thereby preventing the bottles from being squeezed and broken.

[0045] Embodiment 2:

[0046] Figures 5 to 10 An embodiment of the soft mist bottle production system of the present invention is shown, which includes a filling device 3, a capping device 4, a conveying device 1 for conveying soft mist bottles 5, and the bottle loading device 2 of the first embodiment. The bottle loading device 2, the filling device 3 and the capping device 4 are arranged in sequence along the conveying direction of the conveying device 1.

[0047] Production process: First, the soft aerosol bottles 5 are loaded onto the conveyor 1 by the bottle loading device 2. Next, the soft aerosol bottles 5 are conveyed by the conveyor 1 to the filling device 3, where they are filled. Finally, the soft aerosol bottles 5 are conveyed by the conveyor 1 to the capping device 4, where they are capped. This soft aerosol bottle production system has all the advantages of the bottle loading device 2, namely, it ensures that each soft aerosol bottle 5 is placed upright on the conveyor 1 and prevents bottles from falling or breaking.

[0048] In this embodiment, Figure 8 and Figure 9As shown in the figure, the capping device 4 includes a vibrating cap aligner 41, a cap discharging mechanism 42, a receiving plate 43 that can reciprocate linearly along its length direction, a capping station 44 provided on the conveying device 1, and a first transfer mechanism 45 provided between the receiving plate 43 and the capping station 44. The cap discharging end of the cap discharging mechanism 42 is connected to the outlet of the vibrating cap aligner 41. The receiving plate 43 is located at the cap discharging end of the cap discharging mechanism 42. On the side of the receiving plate 43 facing the cap discharging mechanism 42, there is a row of receiving grooves 431 arranged at intervals along the length direction of the receiving plate 43. The row of receiving grooves 431 on the receiving plate 43 can be divided into three groups arranged along the length direction of the receiving plate 43, corresponding to three groups of bottle caps respectively. The cap discharging mechanism 42 discharges one group of bottle caps at a time, and the first transfer mechanism 45 transfers one group of bottle caps at a time.

[0049] The vibrating cap aligner 41 aligns the bottle caps, and the cap discharging mechanism 42 guides the bottle caps into the receiving grooves 431 of the receiving plate 43. Through reciprocating motion, the receiving plate 43 makes each group of receiving grooves 431 dock with the cap discharging end of the cap discharging mechanism 42 respectively. When the receiving grooves 431 of the last group dock with the cap discharging end of the cap discharging mechanism 42, the bottle caps in the previous two groups of receiving grooves 431 can be transferred to the soft mist bottles 5 at the capping station 44 through the first transfer mechanism 45, realizing the combination of the soft mist bottles 5 and the bottle caps. In this way, the receiving plate 43 is set to be able to reciprocate linearly along its length direction, and the three groups of receiving grooves 431 reciprocate and dock with the discharging end of the cap discharging mechanism 42 in sequence. When the last group of receiving grooves 431 receives the bottle caps, it does not affect the transfer of the bottle caps in the previous two groups of receiving grooves 431 by the first transfer mechanism 45, improving the production efficiency.

[0050] Specifically, there are a plurality of bottle placing holes 11 arranged at intervals along the conveying direction on the conveying device 1, which are convenient for placing the soft mist bottles 5 with irregular bottle bottoms to prevent the bottles from falling over.

[0051] In this embodiment, a cap-in-place detection mechanism 46 for detecting whether the bottle caps are in place is provided at the cap discharging end of the cap discharging mechanism 42. Downstream of the capping station 44 on the conveying device 1, a capping device 6 and a rejection device 7 are arranged in sequence along the conveying direction. The cap-in-place detection mechanism 46 is used to detect whether the bottle caps are in place, which is beneficial for the cap discharging mechanism 42 to accurately guide the bottle caps into the receiving grooves 431. After the soft mist bottles 5 and the bottle caps are combined at the capping station 44 (the bottle caps are only placed on the soft mist bottles 5 at the capping station 44 by the first transfer mechanism 45), the conveying device 1 then transports the combination of the soft mist bottles 5 and the bottle caps to the capping device 6, and the capping device 6 presses the bottle caps completely onto the soft mist bottles 5 to achieve the complete combination of the soft mist bottles 5 and the bottle caps, achieving the effect of sealing the bottle mouth. If the combination of the soft mist bottles 5 and the bottle caps with insufficient capping, they will be rejected by the rejection device 7 downstream of the capping device 6.

[0052] In this embodiment, as Figure 7 and Figure 10As shown, the capping device 6 includes a baffle plate 61 located above the conveying device 1 and a plurality of bottle-lifting assemblies 62 located below the conveying device 1 and arranged side by side. The bottle-lifting assemblies 62 are used to push the soft mist bottles 5 on the conveying device 1 onto the baffle plate 61 to achieve capping. A finished product storage area 8 is provided on one side of the capping device 6, and the conveying device 1 is provided with a finished product output device 9 downstream of the capping device 6.

[0053] During the capping process, the bottle-lifting assembly 62 presses the soft aerosol bottle 5 on the conveying device 1 against the blocking plate 61. The clamping action of the bottle-lifting assembly 62 and the blocking plate 61 achieves capping, completely covering the bottle mouth of the soft aerosol bottle 5. Specifically, the bottle-lifting assembly 62 lifts the soft aerosol bottle 5 on the conveying device 1, while the blocking plate 61 limits the height of the bottle cap. The tightening force of the bottle-lifting assembly 62 compresses the soft aerosol bottle 5 and the bottle cap assembly.

[0054] In this embodiment, Figure 7 and Figure 10 As shown, the waste rejection device 7 includes a capping detection mechanism 74, a material guide trough 71 located above the conveying device 1, a pushing assembly 72 located below the conveying device 1, and a temporary storage box 73 located below the opening side of the material guide trough 71. The pushing assembly 72 is used to push the soft mist bottle 5 on the conveying device 1 out into the material guide trough 71.

[0055] The capping detection mechanism 74 detects whether the soft aerosol bottle 5 and bottle cap are in place. If not, the ejection assembly 72 rises, ejecting the soft aerosol bottle 5 from the conveyor 1 into the guide chute 71. Guided by the guide chute 71, the soft aerosol bottle 5 falls to one side into the temporary storage box 73, thereby achieving waste disposal. The structure is simple and easy to operate. Specifically, the upper portion of the guide chute 71 is tilted toward the temporary storage box 73, guiding the rising soft aerosol bottle 5 toward the temporary storage box 73.

[0056] Embodiment three:

[0057] A method for producing a soft mist bottle is provided, using the bottle loading device 2 of the first embodiment. The method comprises the following steps:

[0058] S1. Bottle loading: The receiving hole of the blanking plate 23 and the blanking port 251 are staggered in the width direction of the receiving hole. The soft mist bottle 5 lies flat on the receiving hole from the side of the blanking plate 23 opposite the ejector pins 27. At this time, the bottle mouth of the soft mist bottle 5 with the bottle mouth facing forward is inserted into the corresponding ejector pins 27, and the bottle bottom of the soft mist bottle 5 with the bottle bottom facing forward is against the ejector pins 27, and the bottle mouth is placed on the blanking plate 23;

[0059] S2. Bottle dropping: the dropping slide 25 moves along the width direction of the receiving hole to push the soft mist bottle 5 to the dropping port 251 , and the soft mist bottle 5 falls bottom-down into the dropping channel 24 and falls under the guidance of the dropping channel 24 .

[0060] When the soft mist bottle 5 is being dropped onto the blanking plate 23, the receiving hole and the blanking opening 251 are staggered in the width direction of the receiving hole, that is, the non-opening portion of the blanking slide plate 25 is blocked below the receiving hole to prevent the soft mist bottle 5 from falling down before it is in place. After the soft mist bottle 5 is in place on the blanking plate 23, the bottle mouth of the soft mist bottle 5 with the bottle mouth facing forward is inserted into the corresponding ejector pin 27, and the bottle bottom of the soft mist bottle 5 with the bottle bottom facing forward abuts against the ejector pin 27. The bottle mouth is placed on the blanking plate 23 on the bottle inlet side of the material receiving hole. The bottle bottom is suspended above the material receiving hole under the support of the blanking slide 25. In this way, when the blanking slide 25 slides to align the material receiving hole and the blanking opening 251, the bottle bottom also falls under the resistance of the ejector pin 27 and the blanking plate 23 on the bottle inlet side of the material receiving hole, preventing the soft mist bottle 5 from falling upside down. Moreover, under the guidance of the inclined surface of the blanking channel 24, each bottle is ensured to be placed in an upright position on the conveying device 1, preventing the bottle from falling or breaking. This soft mist bottle production method can ensure that each bottle is placed in an upright position on the conveying device 1 and can prevent the bottle from falling or breaking.

[0061] Embodiment 4:

[0062] A method for producing a soft mist bottle is provided, using the soft mist bottle production system of Example 2. The method comprises the following steps:

[0063] S1. Bottle loading: The receiving hole of the blanking plate 23 and the blanking port 251 are staggered in the width direction of the receiving hole. The soft mist bottle 5 lies flat on the receiving hole from the side of the blanking plate 23 opposite the ejector pins 27. At this time, the bottle mouth of the soft mist bottle 5 with the bottle mouth facing forward is inserted into the corresponding ejector pins 27, and the bottle bottom of the soft mist bottle 5 with the bottle bottom facing forward is against the ejector pins 27, and the bottle mouth is placed on the blanking plate 23;

[0064] S2. Bottle dropping: the dropping slide 25 moves along the width direction of the receiving hole to push the soft mist bottle 5 to the dropping port 251 , and the soft mist bottle 5 falls bottom-down into the dropping channel 24 and falls onto the conveying device 1 under the guidance of the dropping channel 24 .

[0065] S3, filling: the soft mist bottle 5 is transported by the conveying device 1 to the filling device 3 for filling;

[0066] S4, capping: the soft aerosol bottle 5 is transported by the transport device 1 to the capping device 4 for capping.

[0067] The soft mist bottle production method has all the advantages of the soft mist bottle production system, that is, it can ensure that each soft mist bottle is placed in an upright state on the conveying device 1 and can avoid bottle falling and breaking.

[0068] Although the present invention has been disclosed above with reference to preferred embodiments, this is not intended to limit the present invention. Any person skilled in the art can, without departing from the scope of the technical solution of the present invention, utilize the technical content disclosed above to make many possible changes and modifications to the technical solution of the present invention, or modify it into an equivalent embodiment with equivalent changes. Therefore, any simple modification, equivalent change, and modification made to the above embodiments based on the technical essence of the present invention without departing from the content of the technical solution of the present invention shall fall within the scope of protection of the technical solution of the present invention.

Claims

1. A bottle mounting device (2) on a bottle body, characterized in that: It includes a blanking plate (23) and a blanking channel (24) located below the blanking plate (23) and having an inclined surface. A reciprocatingly translatable blanking slide plate (25) is provided between the blanking plate (23) and the blanking channel (24). A material receiving hole penetrating up and down is provided on the blanking plate (23). A blanking port (251) is provided at a position corresponding to the material receiving hole of the blanking plate (23) on the blanking slide plate (25). A bottle blocking portion (26) is provided on the blanking plate (23). A thimble (27) that can be inserted into the mouth of the soft mist agent bottle (5) is provided on one side of the bottle blocking portion (26) with respect to the material receiving hole. The blanking slide plate (25) moves to stagger and align the blanking port (251) with the material receiving hole. The thimble (27) has a telescopic function and can press against the reverse bottle body to delay the falling of the reverse bottle body.

2. The bottle mounting device (2) on the bottle body according to claim 1, characterized in that: It further includes a vibrating bottle aligner (21) and a bottle discharging mechanism (22). The bottle inlet end of the bottle discharging mechanism (22) is connected to the outlet of the vibrating bottle aligner (21). The blanking plate (23) is butted against the bottle outlet end of the bottle discharging mechanism (22) on the other side of the material receiving hole. A bottle discharging limiting mechanism (28) is provided at the bottle outlet end of the bottle discharging mechanism (22).

3. The bottle mounting device (2) on the bottle body according to claim 1, characterized in that: The blanking channel (24) is a conical channel.

4. The bottle mounting device (2) on the bottle body according to claim 1, characterized in that: Above the blanking plate (23), a bottle in-place detection mechanism (29) for detecting whether the soft mist agent bottle (5) is in place is provided.

5. A soft mist bottle production system, characterized in that: It includes a filling device (3), a capping device (4), a conveying device (1) for conveying the soft mist agent bottles (5), and the bottle loading device (2) according to any one of claims 1 to 4. The bottle loading device (2), the filling device (3), and the capping device (4) are sequentially arranged along the conveying direction of the conveying device (1).

6. The soft mist bottle production system according to claim 5, wherein: The capping device (4) includes a vibrating cap aligner (41), a cap discharging mechanism (42), a receiving plate (43) that can reciprocatingly translate along the length direction, a capping station (44) provided on the conveying device (1), and a first transfer mechanism (45) provided between the receiving plate (43) and the capping station (44). The cap outlet end of the cap discharging mechanism (42) is connected to the outlet of the vibrating cap aligner (41). The receiving plate (43) is located at the cap outlet end of the cap discharging mechanism (42). A row of receiving grooves (431) arranged at intervals along the length direction of the receiving plate (43) are provided on one side of the receiving plate (43) facing the cap discharging mechanism (42).

7. The soft mist bottle production system according to claim 6, characterized in that: A cap in-place detection mechanism (46) for detecting whether the cap is in place is provided at the cap outlet end of the cap discharging mechanism (42). Downstream of the capping station (44) on the conveying device (1), a capping device (6) and a rejection device (7) are sequentially arranged along the conveying direction.

8. The soft mist inhaler bottle production system according to claim 7, characterized in that: The capping device (6) includes a blocking cover plate (61) located above the conveying device (1) and a plurality of bottle jacking assemblies (62) located below the conveying device (1) and arranged side by side. The bottle jacking assemblies (62) are used to jack the soft mist agent bottles (5) on the conveying device (1) against the blocking cover plate (61) to achieve capping. A finished product temporary storage area (8) is provided on one side of the capping device (6). A finished product output device (9) is provided on the conveying device (1) downstream of the capping device (6).

9. The soft mist bottle production system according to claim 7, characterized in that: The rejection device (7) includes a capping detection mechanism (74), a guide chute (71) located above the conveying device (1), a pushing assembly (72) located below the conveying device (1), and a temporary storage box (73) located below the opening side of the guide chute (71). The pushing assembly (72) is used to push the soft mist agent bottle (5) on the conveying device (1) into the guide chute (71).

10. A method for producing a soft mist bottle, which is carried out by using the bottle body loading device (2) described in any one of claims 1 to 4, characterized in that: The method for producing the soft mist agent bottle includes the following steps: S1. Bottle feeding: The receiving hole of the blanking plate (23) and the blanking port (251) are arranged offset in the width direction of the receiving hole. The soft mist agent bottle (5) enters the receiving hole horizontally from the side of the blanking plate (23) opposite to the ejector pin (27). At this time, the mouth of the soft mist agent bottle (5) with the mouth facing forward is sleeved on the corresponding ejector pin (27), the bottom of the soft mist agent bottle (5) with the bottom facing forward abuts against the ejector pin (27), and the mouth is placed on the blanking plate (23). S2. Bottle dropping: The blanking slide plate (25) moves along the width direction of the receiving hole to push the soft mist agent bottle (5) to the blanking port (251), so that the bottom of the soft mist agent bottle (5) faces downward and drops into the blanking channel (24), and drops under the guiding action of the blanking channel (24).

Citation Information

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