Bottle receiving mechanism and bottle blowing machine

By designing the bottle coupling mechanism and using the cooperation of the bottle feeding device and the lifting device, the problem of scattered bottles when the bottle blower is discharged is solved, and the bottles are stable reception and output one by one are achieved, thereby improving production efficiency.

CN223161340UActive Publication Date: 2025-07-29GUANGDONG TAISEN INTELLIGENT EQUIP CO LTD
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Patent Information

Application Number
CN202422285610.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-18
Publication Date
2025-07-29
Estimated Expiration
2034-09-18

AI Technical Summary

Technical Problem

When the existing bottle blower is released, the bottle is prone to scattering and falling off, which leads to difficulty in subsequent sorting and affects production efficiency.

Method used

A bottle-collecting mechanism is designed, including a bottle feeding device, a baffle and a lifting device. The lifting device is controlled to control the lifting and lowering of the bottle feeding device to ensure stable reception and output of the bottle one by one, and the bottle is sorted and outputted in combination with the bottle exit channel.

Benefits of technology

The stability of the bottle in the reception and output process is achieved, the subsequent sorting process is eliminated, and the working connection efficiency between the bottle blower and subsequent equipment is improved.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a bottle receiving mechanism and a bottle blowing machine, the bottle receiving mechanism comprises: a bottle receiving assembly comprising a bottle feeding device, a first baffle plate and a second baffle plate, the first baffle plate and the second baffle plate are arranged at an interval, the bottle feeding device, the first baffle plate and the second baffle plate are enclosed to form a bottle receiving channel, and a lifting device can drive the bottle feeding device to lift; the upper side of the bottle outlet conveying device is provided with two bottle outlet baffles arranged at intervals, the two bottle outlet baffles and the bottle outlet conveying device define a bottle outlet channel, and one end of the bottle outlet channel is in butt joint communication with the bottle receiving channel; the bottle receiving channel is used for receiving bottles output by the bottle blowing machine, and the lifting device can drive the bottle conveying device to descend to the position matched with the bottom wall of the bottle outlet channel so that the bottle conveying device can convey the bottles in the bottle receiving channel to the bottle outlet channel. The bottle receiving mechanism provided by the utility model can receive the bottles output by the bottle blowing machine and output the bottles one by one, so that the work connection between the bottle blowing machine and other subsequent equipment is facilitated, and the overall production efficiency is favorably improved.
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Description

Technical Field

[0001] The utility model relates to the technical field of bottle blowing machines, in particular to a bottle receiving mechanism and a bottle blowing machine. Background Art

[0002] With some existing bottle blowing machines, after completing bottle blow molding, the blow mold of the bottle blowing machine pushes the bottle downward at the bottle discharge station, causing the bottle to fall. In order to receive the bottles, a storage frame or a belt conveyor is generally set at the bottle discharge station. However, when the bottles fall onto the storage frame or the belt conveyor, the bottles usually fall over due to the collision. In addition, the bottle blowing machine generally arranges multiple blow molds in a row, and discharges multiple bottles at the same time when discharging the bottles. When multiple bottles fall onto the storage frame or the belt conveyor, they are usually in a scattered state. In order to carry out subsequent processes such as leak detection or packaging, the bottles need to be sorted by robots or other bottle-handling mechanisms before the subsequent processes can be carried out. The working connection between the bottle blowing machine and subsequent equipment is relatively troublesome, affecting the overall production efficiency. Utility Model Content

[0003] The present invention aims to solve at least one of the technical problems existing in the prior art. To this end, the present invention provides a bottle receiving mechanism that can receive bottles output by a bottle blowing machine and output the bottles one by one, thereby facilitating the connection between the bottle blowing machine and other subsequent equipment, thereby improving overall production efficiency.

[0004] The utility model also provides a bottle blowing machine with the bottle receiving mechanism.

[0005] The bottle receiving mechanism of the first embodiment of the present invention comprises a bottle receiving assembly and a bottle discharging conveying device, wherein the bottle receiving assembly comprises a bottle feeding device, a first baffle, a second baffle and a lifting device, wherein the first baffle and the second baffle are spaced apart, the bottle feeding device, the first baffle and the second baffle are enclosed to form a bottle receiving chute opening facing upward, the lifting device is connected to the bottle feeding device, and the lifting device is capable of driving the bottle feeding device to rise and fall; two bottle discharging baffles spaced apart are provided on the upper side of the bottle discharging conveying device, the two bottle discharging baffles and the bottle discharging conveying device are enclosed to form a bottle discharging chute, one end of the bottle discharging chute is butt-connected with the bottle receiving chute; wherein the bottle receiving chute is used to receive bottles output by a bottle blowing machine, the lifting device is capable of driving the bottle feeding device to descend to a position matching a bottom wall of the bottle discharging chute so that the bottle feeding device can convey the bottles in the bottle receiving chute to the bottle discharging chute, and the bottle discharging chute away from the bottle receiving chute is capable of outputting bottles one by one.

[0006] The bottle receiving mechanism according to the embodiments of the present utility model has at least the following beneficial effects: The bottle receiving mechanism provided by the present utility model can be arranged at the bottle outlet station of the blow molding machine. During the process of receiving bottles, the lifting device first raises the bottle feeding device to make the bottle feeding device approach the bottle fixed on the blow mold of the blow molding machine. During the process of the blow mold of the blow molding machine pushing the bottle downward, the lifting device can drive the bottle feeding device to cooperate with the blow mold to descend, so that the bottle feeding device can stably receive the bottle, avoiding the situation that the bottle collides strongly with the bottle receiving component and topples. When the bottle feeding device descends to a position matching the bottom wall of the bottle outlet channel, the bottle feeding device transports the bottle in the bottle receiving channel to the bottle outlet channel, and the bottles are output one by one through the bottle outlet channel. Subsequently, the subsequent equipment can receive the bottles output from the bottle outlet channel to perform processes such as leak detection or packaging. Therefore, the bottle receiving mechanism provided by the present utility model can complete the sorting of bottles and output the bottles one by one during the process of receiving bottles, eliminating the process of configuring other bottle sorting mechanisms to sort the bottles, facilitating the work connection between the blow molding machine and other subsequent equipment, and being beneficial to improving the overall production efficiency.

[0007] According to some embodiments of the present utility model, the bottle feeding device includes a bottle receiving bottom plate, a bottle pushing plate and a bottle pushing driving module. The bottle receiving channel is formed by enclosing the bottle receiving bottom plate, the first baffle plate and the second baffle plate. The lifting device is connected to the bottle receiving bottom plate and can drive the bottle receiving bottom plate to lift and lower. The bottle pushing plate is slidably installed on the bottle receiving bottom plate and is located in the bottle receiving channel. The bottle pushing driving module is installed on the bottle receiving bottom plate and can drive the bottle pushing plate to move in the bottle receiving channel.

[0008] According to some embodiments of the present utility model, the bottle receiving channel extends in the left-right direction. The first baffle plate and the second baffle plate are spaced apart in the front-back direction. One end of the bottle outlet channel extends in the front-back direction and is connected and communicated with the bottle receiving channel by using a transition channel. At least part of the opposite side walls of the transition channel are arc-shaped.

[0009] According to some embodiments of the present utility model, the width of the end of the bottle outlet channel close to the bottle receiving channel is greater than the width of the end of the bottle outlet channel far from the bottle receiving channel.

[0010] According to some embodiments of the present utility model, it includes a first position adjusting structure for adjusting the distance between the first baffle plate and the second baffle plate, and the rising stroke of the lifting device is adjustable.

[0011] According to some embodiments of the present utility model, it includes a second position adjusting structure and a third position adjusting structure. The second position adjusting structure is used to adjust the left-right position of the first baffle plate, and the third position adjusting structure is used to adjust the left-right position of the second baffle plate.

[0012] According to some embodiments of the present utility model, the bottle discharging conveying device is connected with a mounting plate. The mounting plate is provided with a sliding plate which is slidably mounted back and forth through the first position adjusting structure. The first baffle is slidably mounted left and right on the sliding plate through the second position adjusting structure. The second baffle is slidably mounted left and right on the mounting plate through the third position adjusting structure. One of the opposite side walls of the transition channel is connected with the first baffle, and the other is connected with the second baffle.

[0013] According to some embodiments of the present utility model, the first position adjusting structure includes a first locking bolt and a first elongated hole extending in the front-rear direction. The first elongated hole is provided on the sliding plate. One end of the first locking bolt abuts against the sliding plate, and the other end passes through the first elongated hole and is screwed with the mounting plate.

[0014] According to some embodiments of the present utility model, it includes a fourth position adjusting structure, and the fourth position adjusting structure is used to adjust the distance between the two bottle discharging baffles.

[0015] According to some embodiments of the present utility model, the fourth position adjusting structure includes at least two groups of position adjusting components arranged between the bottle discharging baffle and the bottle discharging conveying device. The position adjusting component includes a mounting block, an adjusting column and a connecting piece. The mounting block is mounted on the bracket of the bottle discharging conveying device. The adjusting column is vertically penetrated through the mounting block in a slidable and rotatable manner. The mounting block locks the adjusting column through a second locking bolt. The connecting piece is horizontally penetrated through the upper end of the adjusting column in a slidable manner. The adjusting column locks the connecting piece through a third locking bolt. The connecting piece is connected with the corresponding bottle discharging baffle.

[0016] The blow molding machine according to the second aspect embodiment of the present utility model includes the above-mentioned bottle receiving mechanism.

[0017] The bottle blowing machine according to the embodiment of the present utility model has at least the following beneficial effects: For the above-mentioned bottle receiving mechanism, its bottle receiving assembly can be arranged at the bottle outlet station of the bottle blowing machine. During the process of the bottle receiving mechanism receiving bottles, the lifting device first raises the bottle feeding device to make the bottle feeding device close to the bottle fixed on the blowing mold of the bottle blowing machine. During the process of the blowing mold of the bottle blowing machine pushing the bottle downward, the lifting device can drive the bottle feeding device to cooperate with the blowing mold to descend, so that the bottle feeding device can stably receive the bottle, avoiding the situation that the bottle strongly collides with the bottle receiving assembly and causes the bottle to fall. When the bottle feeding device descends to a position matching the bottom wall of the bottle outlet channel, the bottle feeding device transports the bottle in the bottle receiving channel to the bottle outlet channel, and the bottles are output one by one through the bottle outlet channel. Subsequently, the subsequent equipment can receive the bottles output from the bottle outlet channel to perform processes such as leak detection or packaging. Thus, the bottle blowing machine provided by the present utility model can complete the sorting of bottles and output the bottles one by one during the process of receiving bottles by using the bottle receiving mechanism, eliminating the process of configuring other bottle sorting mechanisms to sort the bottles, facilitating the work connection between the bottle blowing machine and other subsequent equipment, and being conducive to improving the overall production efficiency.

[0018] Additional aspects and advantages of the present utility model will be given in part in the following description, become apparent in part from the following description, or be understood through the practice of the present utility model. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] The above and / or additional aspects and advantages of the present utility model will become apparent and be readily understood from the following description of the embodiments in conjunction with the accompanying drawings, in which:

[0020] Figure 1 is a schematic diagram of a bottle receiving mechanism according to an embodiment of the present utility model;

[0021] Figure 2 is Figure 1 another schematic diagram of a bottle receiving mechanism shown;

[0022] Figure 3 is Figure 1 an enlarged view of part A in

[0023] Reference numerals:

[0024] Bottle feeding device 110, bottle receiving bottom plate 111, bottle pushing plate 112, bottle pushing drive module 113, first baffle 120, second baffle 130, lifting device 140, bottle receiving channel 150, transition channel 160, bottle discharging conveying device 210, bottle discharging baffle 220, bottle discharging channel 230, first position adjusting structure 300, first locking bolt 310, first strip-shaped hole 320, second position adjusting structure 400, third position adjusting structure 500, mounting plate 610, sliding plate 620, fourth position adjusting component 700, mounting block 710, adjusting column 720, connecting piece 730, second locking bolt 740, third locking bolt 750. Detailed implementation mode

[0025] The embodiments of the present invention will be described in detail below. The examples of the embodiments are shown in the drawings, in which the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions throughout. The embodiments described below with reference to the drawings are exemplary and are only used to explain the present invention, and should not be construed as a limitation of the present invention.

[0026] In the description of the present invention, it should be understood that the orientation or positional relationship indicated by terms such as up, down, front, back, left, right, etc. is based on the orientation or positional relationship shown in the drawings, and is only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of the present invention.

[0027] In the description of the present invention, the meaning of "several" is one or more, the meaning of "multiple" is two or more, and understandings such as "greater than", "less than", "exceeding", etc. do not include the present number, and understandings such as "above", "below", "within", etc. include the present number. If there is a description of "first" and "second", it is only for the purpose of distinguishing technical features, and should not be construed as indicating or implying relative importance or implicitly indicating the quantity of the indicated technical features or implicitly indicating the sequence relationship of the indicated technical features.

[0028] In the description of the present invention, unless otherwise clearly defined, words such as "set", "installed", "connected", etc. should be understood in a broad sense, and those skilled in the art can reasonably determine the specific meanings of the above words in the present invention in combination with the specific content of the technical solution.

[0029] According to the first embodiment of the present invention, the bottle receiving mechanism includes a bottle receiving assembly and a bottle delivery conveying device 210. The bottle receiving assembly includes a bottle delivery device 110, a first baffle 120, a second baffle 130 and a lifting device 140. The first baffle 120 and the second baffle 130 are spaced apart. The bottle delivery device 110, the first baffle 120 and the second baffle 130 are enclosed to form a bottle receiving channel 150 with an upward opening. The lifting device 140 is connected to the bottle delivery device 110 and can drive the bottle delivery device 110 to rise and fall. Two bottles are provided on the upper side of the bottle delivery conveying device 210. The bottle discharging baffles 220 are spaced apart from each other. The two bottle discharging baffles 220 and the bottle discharging conveying device 210 enclose a bottle discharging chute 230. One end of the bottle discharging chute 230 is connected to the bottle receiving chute 150. The bottle receiving chute 150 is used to receive bottles discharged by the bottle blowing machine. The lifting device 140 can drive the bottle feeding device 110 to a position that matches the bottom wall of the bottle discharging chute 230 so that the bottle feeding device 110 can convey the bottles in the bottle receiving chute 150 to the bottle discharging chute 230. The end of the bottle discharging chute 230 away from the bottle receiving chute 150 can discharge bottles one by one. The position where the bottle feeding device 110 matches the bottom wall of the bottle discharging chute 230 means that the surface of the bottle feeding device 110 that receives the bottle is aligned with the bottom wall of the bottle discharging chute 230, or the height of the surface of the bottle feeding device 110 that receives the bottle is slightly higher than the bottom wall of the bottle discharging chute 230. The height difference can be controlled within 2 mm.

[0030] The bottle receiving mechanism provided by the present invention has a bottle receiving assembly which can be arranged at the bottle discharging station of the bottle blowing machine. During the process of receiving the bottle, the lifting device 140 first lifts the bottle feeding device 110 so that the bottle feeding device 110 is close to the bottle fixed on the blow mold of the bottle blowing machine. During the process of the blow mold of the bottle blowing machine pushing the bottle downward, the lifting device 140 can drive the bottle feeding device 110 to cooperate with the blow mold to descend, so that the bottle feeding device 110 can stably receive the bottle and avoid the situation where the bottle strongly collides with the bottle receiving assembly and causes it to fall. When the bottle feeding device 110 is lowered to the bottom of the bottle discharging channel 230, the bottle feeding device 110 is lifted and lowered to the bottom of the bottle discharging channel 230. When the bottle receiving mechanism 150 is in a position that matches the wall, the bottle feeding device 110 conveys the bottles in the bottle receiving chute 150 to the bottle discharging chute 230, and the bottles are discharged one by one through the bottle discharging chute 230. The subsequent equipment can receive the bottles output by the bottle discharging chute 230 to perform leak detection or packaging and other processes. Therefore, the bottle receiving mechanism provided by the utility model can complete the bottle sorting and output the bottles one by one during the bottle receiving process, eliminating the need to configure other bottle-storing mechanisms for sorting the bottles, facilitating the connection between the bottle blowing machine and other subsequent equipment, and helping to improve the overall production efficiency.

[0031] According to some embodiments of the present utility model, the bottle feeding device 110 includes a bottle receiving bottom plate 111, a bottle pushing plate 112 and a bottle pushing driving module 113. The bottle receiving channel 150 is formed by enclosing the bottle receiving bottom plate 111 with a first baffle 120 and a second baffle 130. The lifting device 140 is connected to the bottle receiving bottom plate 111 and can drive the bottle receiving bottom plate 111 to lift and lower. The bottle pushing plate 112 is slidably installed on the bottle receiving bottom plate 111 and is located within the bottle receiving channel 150. The bottle pushing driving module 113 is installed on the bottle receiving bottom plate 111 and can drive the bottle pushing plate 112 to move within the bottle receiving channel 150. During the process of receiving bottles, the lifting device 140 first raises the bottle receiving bottom plate 111 to make the bottle receiving bottom plate 111 approach the bottle fixed on the blowing mold of the blow molding machine. During the process of the blowing mold of the blow molding machine pushing the bottle downward, the lifting device 140 can drive the bottle receiving bottom plate 111 to cooperate with the blowing mold to descend, so that the bottle receiving bottom plate 111 can stably receive the bottle, avoiding the situation that the bottle strongly collides with the bottle receiving assembly and causes it to fall. When the bottle receiving bottom plate 111 descends to a position matching the bottom wall of the bottle discharging channel 230, the bottle pushing driving module 113 drives the bottle pushing plate 112 to slide, so that the bottle pushing plate 112 pushes the bottle in the bottle receiving channel 150 into the bottle discharging channel 230, and the bottles are output one by one through the bottle discharging channel 230.

[0032] It should be noted that in some other embodiments, the above bottle feeding device 110 can also adopt other setting methods. For example, the bottle feeding device 110 can be set as a belt conveying assembly. At this time, the above-mentioned pushing plate can be not provided.

[0033] According to some embodiments of the present utility model, the bottle receiving channel 150 extends in the left-right direction. At this time, the first baffle 120 and the second baffle 130 are spaced apart in the front-back direction. The bottle receiving bottom plate 111 extends in the left-right direction. One end of the bottle discharging channel 230 extends in the front-back direction and is connected to the bottle receiving channel 150 through a transition channel 160. At least part of the opposite side walls of the transition channel 160 are arc-shaped. Thus, the bottle in the bottle receiving channel 150 can be more smoothly conveyed into the bottle discharging channel 230 by using the transition channel 160. Among them, when the blow molding machine arranges multiple blowing molds in a row as a group, the above-mentioned bottle receiving channel 150 can simultaneously receive the bottles pushed out by the multiple blowing molds arranged in a row. Then, after the multiple bottles are conveyed into the bottle discharging channel 230, under the action of the bottle discharging channel 230, the bottle discharging channel 230 can output the multiple bottles one by one.

[0034] Specifically, as long as the width of the outlet of the bottle discharging channel 230 is set to be greater than or equal to the diameter of one bottle and less than the sum of the diameters of two bottles, the bottle discharging channel 230 can output the multiple bottles one by one.

[0035] According to some embodiments of the present utility model, the width of one end of the bottle outlet channel 230 close to the bottle receiving channel 150 is greater than the width of the end of the bottle outlet channel 230 far from the bottle receiving channel 150. Through the above arrangement, the bottle outlet channel 230 can better receive multiple bottles at the same time, and can more effectively arrange the multiple bottles gathered together in a row step by step along the conveying direction of the bottle outlet channel 230, so that the bottle outlet channel 230 can output the multiple bottles one by one.

[0036] According to some embodiments of the present utility model, it includes a first position adjustment structure 300. The first position adjustment structure 300 is used to adjust the distance between the first baffle 120 and the second baffle 130. Thus, according to the diameter of the bottles produced by the blow molding machine, the distance between the first baffle 120 and the second baffle 130 can be adjusted, so that the bottle receiving channel 150 can receive bottles with corresponding diameters. Through the above arrangement, the bottle receiving mechanism provided by the present utility model can receive bottles with different diameters produced by the blow molding machine.

[0037] According to some embodiments of the present utility model, the ascending stroke of the lifting device 140 is adjustable. Thus, according to the axial dimension of the bottles, the ascending stroke of the lifting device 140 can be adjusted, and further the height position of the bottle receiving bottom plate 111 after rising during the bottle receiving process can be adjusted, so that the bottle receiving channel 150 can stably receive bottles with different axial dimensions.

[0038] According to some embodiments of the present utility model, it includes a second position adjustment structure 400 and a third position adjustment structure 500. The second position adjustment structure 400 is used to adjust the left and right positions of the first baffle 120, and the third position adjustment structure 500 is used to adjust the left and right positions of the second baffle 130. One of the opposite side walls of the transition channel 160 is connected to the first baffle 120, and the other is connected to the second baffle 130. Through the above arrangement, during the adjustment of the front, back, left and right positions of the first baffle 120 and the second baffle 130, the position adjustment of the opposite side walls of the transition channel 160 can be completed at the same time. Thus, according to the diameter of the bottles produced by the blow molding machine, the sizes of the bottle receiving channel 150 and the transition channel 160 can be adjusted.

[0039] According to some embodiments of the present utility model, the bottle discharging conveying device 210 is connected to a mounting plate 610. The mounting plate 610 is slidably mounted with a sliding plate 620 through a first position adjusting structure 300. The first baffle 120 is slidably mounted on the sliding plate 620 through a second position adjusting structure 400, and the second baffle 130 is slidably mounted on the mounting plate 610 through a third position adjusting structure 500. Through the above settings, the front-back and left-right position adjustment of the first baffle 120 and the left-right position adjustment of the second baffle 130 can be realized. Among them, by adjusting the front-back position of the first baffle 120, the size of the bottle receiving channel 150 can be adjusted, and by adjusting the left-right position of the first baffle 120 and the left-right position of the second baffle 130, the size of the transition channel 160 can be adjusted.

[0040] According to some embodiments of the present utility model, the first position adjusting structure 300 includes a first locking bolt 310 and a first elongated hole 320 extending in the front-back direction. The first elongated hole 320 is provided on the sliding plate 620. One end of the first locking bolt 310 abuts against the sliding plate 620, and the other end passes through the first elongated hole 320 and is screwed to the mounting plate 610. Through the above settings, only by loosening the first locking bolt 310, the sliding plate 620 and the first baffle 120 mounted on the sliding plate 620 can be slidably adjusted back and forth through the cooperation of the first elongated hole 320 and the first locking bolt 310. After the adjustment is completed, by tightening the first locking bolt 310, the sliding plate 620 can be fixed, and the adjustment is relatively convenient and simple.

[0041] Of course, in some other embodiments, the first position adjusting structure 300 can also adopt other setting methods. For example, the first position adjusting structure 300 includes a guide rail assembly and a position adjusting cylinder. The sliding plate 620 is slidably mounted on the mounting plate 610 through the guide rail assembly. The position adjusting cylinder is mounted on the mounting plate 610 and connected to the sliding plate 620, and the position adjusting cylinder can drive the sliding plate 620 to slide back and forth.

[0042] It should be noted that the above-mentioned second position adjusting structure 400 and third position adjusting structure 500 can both adopt a structure similar to that of the first position adjusting structure 300, which will not be elaborated here.

[0043] According to some embodiments of the present utility model, it includes a fourth position adjusting structure. The fourth position adjusting structure is used to adjust the distance between the two bottle discharging baffles 220. Thus, the distance between the two bottle discharging baffles 220 can also be adjusted according to the diameter of the bottle, so that the bottle discharging channel 230 can convey bottles of different diameters.

[0044] According to some embodiments of the present utility model, the fourth position adjustment structure includes at least two sets of position adjustment components 700 disposed between the bottle outlet baffle 220 and the bottle outlet conveying device 210. The position adjustment component 700 includes a mounting block 710, an adjustment column 720, and a connecting member 730. The mounting block 710 is mounted on the bracket of the bottle outlet conveying device 210. The adjustment column 720 is vertically penetrated through the mounting block 710 in a vertically slidable and rotatable manner. The mounting block 710 locks the adjustment column 720 through a second locking bolt 740. The connecting member 730 is horizontally penetrated through the upper end of the adjustment column 720 in a slidable manner. The adjustment column 720 locks the connecting member 730 through a third locking bolt 750. The connecting member 730 is connected to the corresponding bottle outlet baffle 220.

[0045] In the specific implementation process, the distance between the two bottle outlet baffles 220 gradually decreases from the direction close to the bottle receiving channel 150 to the direction away from the bottle receiving channel 150. At least one of the two bottle outlet baffles 220 is inclined relative to the bottle outlet conveying device 210, so that the width of the end of the bottle outlet channel 230 close to the bottle receiving channel 150 is greater than the width of the end of the bottle outlet channel 230 away from the bottle receiving channel 150. In each set of position adjustment components 700, the adjustment column 720 can be rotated and lifted to rotate and adjust the angle of the connecting member 730 and lift the height of the connecting member 730. The connecting member 730 can also be horizontally slid to adjust the position. Thus, through the above-mentioned position adjustment components 700, the left and right positions and the inclination angle of the bottle outlet baffle 220 can be adjusted according to the diameter of the bottle, so as to flexibly adjust the width of the end of the bottle outlet channel 230 close to the bottle receiving channel 150 and the width of the end of the bottle outlet channel 230 away from the bottle receiving channel 150, so that the bottle outlet channel 230 can receive bottles with different diameters conveyed by the transition channel 160, and can also ensure that bottles with different diameters are output one by one.

[0046] It can be imagined that in some other embodiments, the above-mentioned fourth position adjustment structure can also adopt other settings. For example, the adjustment column 720 can be replaced with a telescopic air cylinder. The telescopic air cylinder is rotatably mounted on the mounting block 710, and the connecting member 730 is horizontally penetrated through the output rod of the telescopic air cylinder.

[0047] The blow molding machine according to the second aspect embodiment of the present utility model includes the above-mentioned bottle receiving mechanism.

[0048] For the above-mentioned bottle receiving mechanism, its bottle receiving assembly can be arranged at the bottle outlet station of the blow molding machine. During the process of the bottle receiving mechanism receiving bottles, the lifting device 140 first raises the bottle feeding device 110 to make the bottle feeding device 110 approach the bottle fixed on the blow mold of the blow molding machine. During the process of the blow mold of the blow molding machine pushing the bottle downward, the lifting device 140 can drive the bottle feeding device 110 to cooperate with the blow mold to descend, so that the bottle feeding device 110 can stably receive the bottle, avoiding the situation that the bottle collides strongly with the bottle receiving assembly and causes tipping. When the bottle feeding device 110 descends to a position matching the bottom wall of the bottle outlet channel 230, the bottle feeding device 110 conveys the bottle in the bottle receiving channel 150 to the bottle outlet channel 230, and the bottles are output one by one through the bottle outlet channel 230. Subsequently, the subsequent equipment can receive the bottles output from the bottle outlet channel 230 to perform processes such as leak detection or packaging. Thus, the blow molding machine provided by the present utility model can utilize the bottle receiving mechanism to complete the sorting of bottles and output the bottles one by one during the process of receiving bottles, eliminating the process of configuring other bottle sorting mechanisms to sort the bottles, facilitating the work connection between the blow molding machine and other subsequent equipment, and being conducive to improving the overall production efficiency.

[0049] The technical features of the above-described embodiments can be combined arbitrarily. For the sake of brevity of description, not all possible combinations of the technical features in the above-described embodiments are described. However, as long as there is no contradiction in the combination of these technical features, it should be considered as the scope recorded in this specification.

[0050] The above has described this embodiment in detail with reference to the drawings. However, the present utility model is not limited to the above embodiment. Within the knowledge scope of those of ordinary skill in the technical field, various changes can also be made without departing from the purpose of the present utility model.

Claims

1. A bottle receiving mechanism, characterized in that, Comprising: A bottle receiving assembly, including a bottle feeding device (110), a first baffle (120), a second baffle (130) and a lifting device (140). The first baffle (120) and the second baffle (130) are arranged at intervals. The bottle feeding device (110), the first baffle (120) and the second baffle (130) enclose a bottle receiving channel (150) with an upward opening. The lifting device (140) is connected to the bottle feeding device (110), and the lifting device (140) can drive the bottle feeding device (110) to lift and lower. A bottle discharging conveying device (210), with two spaced bottle discharging baffles (220) arranged on the upper side. The two bottle discharging baffles (220) and the bottle discharging conveying device (210) enclose a bottle discharging channel (230). One end of the bottle discharging channel (230) is butt - connected and communicated with the bottle receiving channel (150). Wherein, the bottle receiving channel (150) is used for receiving the bottles output by the blow molding machine. The lifting device (140) can drive the bottle feeding device (110) to descend to a position matching the bottom wall of the bottle discharging channel (230) so that the bottle feeding device (110) can convey the bottles in the bottle receiving channel (150) to the bottle discharging channel (230). The end of the bottle discharging channel (230) far from the bottle receiving channel (150) can output the bottles one by one.

2. The bottle receiving mechanism according to claim 1, characterized in that, The bottle feeding device (110) includes a bottle receiving bottom plate (111), a bottle pushing plate (112) and a bottle pushing driving module (113). The bottle receiving channel (150) is formed by enclosing the bottle receiving bottom plate (111), the first baffle (120) and the second baffle (130). The lifting device (140) is connected to the bottle receiving bottom plate (111) and can drive the bottle receiving bottom plate (111) to lift and lower. The bottle pushing plate (112) is slidably installed on the bottle receiving bottom plate (111) and is located in the bottle receiving channel (150). The bottle pushing driving module (113) is installed on the bottle receiving bottom plate (111) and can drive the bottle pushing plate (112) to move in the bottle receiving channel (150).

3. The bottle receiving mechanism according to claim 1, characterized in that, The bottle feeding device (110) extends in the left - right direction. The first baffle (120) and the second baffle (130) are spaced in the front - back direction. One end of the bottle discharging channel (230) extends in the front - back direction and is butt - connected and communicated with the bottle receiving channel (150) by using a transition channel (160). At least part of the opposite side walls of the transition channel (160) are arc - shaped.

4. The bottle receiving mechanism according to claim 3, wherein, The width of the end of the bottle discharging channel (230) close to the bottle receiving channel (150) is greater than the width of the end of the bottle discharging channel (230) far from the bottle receiving channel (150).

5. The bottle receiving mechanism according to claim 3, characterized in that, Including a first position adjusting structure (300). The first position adjusting structure (300) is used to adjust the distance between the first baffle (120) and the second baffle (130), and the upward stroke of the lifting device (140) is adjustable.

6. The bottle receiving mechanism according to claim 5, characterized in that, It includes a second position adjustment structure (400) and a third position adjustment structure (500). The second position adjustment structure (400) is used to adjust the left - right position of the first baffle (120), and the third position adjustment structure (500) is used to adjust the left - right position of the second baffle (130). One of the opposite side walls of the transition channel (160) is connected to the first baffle (120), and the other is connected to the second baffle (130).

7. The bottle receiving mechanism according to claim 6, wherein, The bottle - discharging conveying device (210) is connected with a mounting plate (610). The mounting plate (610) is slidably mounted with a sliding plate (620) through the first position adjustment structure (300). The first baffle (120) is slidably mounted on the sliding plate (620) through the second position adjustment structure (400), and the second baffle (130) is slidably mounted on the mounting plate (610) through the third position adjustment structure (500).

8. The bottle receiving mechanism according to claim 3, characterized in that, It includes a fourth position adjustment structure, and the fourth position adjustment structure is used to adjust the distance between the two bottle - discharging baffles (220).

9. The bottle receiving mechanism according to claim 8, characterized in that, The fourth position adjustment structure includes at least two groups of position adjustment components (700) arranged between the bottle - discharging baffle (220) and the bottle - discharging conveying device (210). The position adjustment component (700) includes a mounting block (710), an adjustment column (720) and a connecting piece (730). The mounting block (710) is mounted on the bracket of the bottle - discharging conveying device (210). The adjustment column (720) is vertically and slidably and rotatably penetrated through the mounting block (710). The mounting block (710) locks the adjustment column (720) through a second locking bolt (740). The connecting piece (730) is horizontally and slidably penetrated through the upper end of the adjustment column (720). The adjustment column (720) locks the connecting piece (730) through a third locking bolt (750). The connecting piece (730) is connected to the corresponding bottle - discharging baffle (220).

10. A blow molding machine, characterized in that, It includes the bottle - receiving mechanism according to any one of claims 1 to 9.