Row bottle body detection device

By designing a bottle-in-row inspection device, which uses a conveyor belt and multiple inspection mechanisms to automatically inspect the bottles in rows, the problem of resource waste and low efficiency caused by manual inspection is solved, and efficient automated inspection is achieved.

CN224101268UActive Publication Date: 2026-04-10SHANGHAI ZHULONG HUISHI INTELLIGENT TECHNOLOGY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-25
Publication Date
2026-04-10

AI Technical Summary

Technical Problem

In the existing technology, BFS (Browser-Free Forming) bottle bodies require manual inspection after production, which leads to a waste of human resources and low inspection efficiency.

Method used

A device for detecting bottles in a row is designed, including a conveyor belt and a bottle detection mechanism, which includes detection mechanisms for the bottle body, bottle head, bottle top and bottle bottom. The device automatically detects each part of the bottle in a row using a camera and a light source.

Benefits of technology

It enables automatic detection of bottle arrays, saving manpower and improving detection efficiency.

✦ Generated by Eureka AI based on patent content.

Smart Images

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    Figure CN224101268U_ABST
Patent Text Reader

Abstract

The utility model discloses a row bottle body detection device. The row bottle body detection device comprises a conveying belt and a bottle body detection mechanism, the conveying belt is used for conveying the bottle bodies in rows; the bottle body detection mechanism is arranged corresponding to the conveying assembly and comprises a bottle body detection mechanism, a bottle head detection mechanism and a bottle top detection mechanism; the bottle body detection mechanism is used for sequentially detecting the first side and the second side of the bottle body of the row-connected bottle body, and the bottle head detection mechanism is used for sequentially detecting the first side and the second side of the bottle head of the row-connected bottle body; and the bottle top detection mechanism is used for detecting the bottle tops of the row bottles. According to the utility model, the row-connected bottle bodies can be automatically detected, manpower resources are saved, and the detection efficiency of the row-connected bottle bodies is improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to rowed bottle body detection equipment technical field, especially rowed bottle body detection device. BACKGROUND

[0002] BFS rowed bottle body refers to the rowed plastic container produced by adopting blow -fill -seal integration technology, and is mainly used in the sterile packaging field of medicine, food, cosmetics and the like. After the production of BFS rowed bottle body is completed, the bottle body, bottle head, bottle bottom and bottle top of rowed bottle body need to be detected to ensure the product qualification. In the prior art, after the production of BFS rowed bottle body is completed, the rowed bottle body is usually detected by manual, and the bottle body, bottle head, bottle bottom and bottle top are detected by manual by taking up rowed bottle body. Since rowed bottle body is conveyed on the conveying belt, usually multiple workers need to be detected to meet the production demand, and human resources are wasted, therefore, it is particularly important to provide a detection device for automatically detecting rowed bottle body. SUMMARY

[0003] According to the utility model embodiment, a rowed bottle body detection device is provided, which comprises: a conveying belt and a bottle body detection mechanism.

[0004] The conveying belt is used for conveying rowed bottle body.

[0005] The bottle body detection mechanism is arranged corresponding to the conveying assembly, and comprises: a bottle body detection mechanism, a bottle head detection mechanism and a bottle top detection mechanism.

[0006] The bottle body detection mechanism is used for detecting the first side and the second side of the bottle body of rowed bottle body in turn, and the bottle head detection mechanism is used for detecting the first side and the second side of the bottle head of rowed bottle body in turn.

[0007] The bottle top detection mechanism is used for detecting the bottle top of rowed bottle body.

[0008] Further, the bottle body detection mechanism comprises: a first detection mechanism and a second detection mechanism.

[0009] The first detection mechanism is used for detecting the first side of the bottle body of rowed bottle body, and the second detection mechanism is used for detecting the second side of the bottle body of rowed bottle body.

[0010] Further, the bottle head detection mechanism comprises: a third detection mechanism and a fourth detection mechanism.

[0011] The third detection mechanism is used for detecting the first side of the bottle head of rowed bottle body, and the fourth detection mechanism is used for detecting the second side of the bottle head of rowed bottle body.

[0012] Further, the first detection mechanism, the second detection mechanism, the third detection mechanism and the fourth detection mechanism each comprise a detection frame, a shooting camera, a ring-shaped light source and a plane light source.

[0013] The detection frame is arranged on one side of the conveying belt, the plane light source is arranged on the other side of the conveying belt, the plane light source is arranged towards the conveying belt, the shooting camera and the ring-shaped light source are fixed on the detection frame, the ring-shaped light source is arranged towards the conveying belt, and the shooting camera is arranged corresponding to the center of the ring-shaped light source and has a shooting direction towards the aligned bottles on the conveying belt.

[0014] Further, the shooting cameras of the first detection mechanism and the third detection mechanism are located on a first side of the aligned bottles, and the shooting cameras of the second detection mechanism and the fourth detection mechanism are located on a second side of the aligned bottles.

[0015] Further, when the ring-shaped light source is turned on, the plane light source is in an off state, and the shooting camera shoots the aligned bottles.

[0016] When the plane light source is turned on, the ring-shaped light source is in an off state, and the shooting camera shoots the aligned bottles.

[0017] Further, the bottle top detection mechanism comprises an adjusting frame, a vertical light source and a vertical camera.

[0018] The adjusting frame is fixed on one side of the conveying belt, the vertical light source and the vertical camera are arranged on the adjusting frame, the vertical camera is located above the vertical light source, the vertical light source is in a ring shape, and an output end of the vertical camera is arranged corresponding to the center of the vertical light source.

[0019] Further, the bottle body detection mechanism comprises a bottle bottom detection mechanism.

[0020] The bottle bottom detection mechanism is used for detecting the bottle bottom of the aligned bottles.

[0021] According to the aligned bottle detection device provided by the embodiment of the present application, the aligned bottles are conveyed by the conveying belt, the two sides of the aligned bottles are detected by the bottle body detection mechanism, the two sides of the aligned bottles are detected by the bottle head detection mechanism, and the bottle top of the aligned bottles is detected by the bottle top detection mechanism, so that the automatic detection of the aligned bottles is realized, the human resources are saved, and the detection efficiency of the aligned bottles is improved.

[0022] It is to be understood that both the foregoing general description and the following detailed description are exemplary and intended to provide further explanation of the subject technology. BRIEF DESCRIPTION OF DRAWINGS

[0023] Fig. 1It is a structure diagram of a row of bottle body detection device according to an embodiment of the utility model;

[0024] Fig. 2 It is a structure diagram of a row of bottle body detection device according to an embodiment of the utility model;

[0025] Fig. 3 It is a structure diagram of bottle body detection mechanism of a row of bottle body detection device according to an embodiment of the utility model;

[0026] Fig. 4 It is a structure diagram of bottle top detection mechanism of a row of bottle body detection device according to an embodiment of the utility model.

[0027] In the drawing, reference numeral 1 is a conveying belt, 2 is a first detection mechanism, 21 is a detection frame, 22 is a shooting camera, 23 is a ring light source, 3 is a second detection mechanism, 4 is a third detection mechanism, 5 is a fourth detection mechanism, 6 is a bottle top detection mechanism, 61 is an adjusting frame, 62 is a vertical light source, 63 is a vertical camera, 7 is a plane light source, and 8 is a connecting bridge detection equipment. DETAILED DESCRIPTION

[0028] The preferred embodiments of the utility model will be described in detail below with reference to the drawings, and the utility model will be further described.

[0029] Firstly, the utility model will be described in combination with Figs. 1-4 A row of bottle body detection device according to an embodiment of the utility model is described, which is used for detecting the bottle body, bottle head, bottle bottom and bottle top of a row of bottle body.

[0030] As shown in Figs. 1-4 A row of bottle body detection device according to an embodiment of the utility model, comprising: conveying belt 1 and bottle body detection mechanism;

[0031] The conveying belt 1 is used for conveying a row of bottle body;

[0032] The bottle body detection mechanism and the bottle cap detection mechanism are both arranged corresponding to the conveying assembly, and the bottle body detection mechanism comprises: bottle body detection mechanism, bottle head detection mechanism and bottle top detection mechanism 6;

[0033] The bottle body detection mechanism is used for detecting the first side and the second side of the bottle body of a row of bottle body in sequence, and the bottle head detection mechanism is used for detecting the first side and the second side of the bottle head of a row of bottle body in sequence;

[0034] The bottle top detection mechanism 6 is used for detecting the bottle top of a row of bottle body.

[0035] The application realizes automatic detection of the double-row bottle body, saves human resources, and improves the detection efficiency of the double-row bottle body.

[0036] The order of detection of the bottle body, the bottle head, the bottle bottom, and the bottle top of the double-row bottle body in the embodiment is not limited, as long as the bottle body, the bottle head, the bottle bottom, and the bottle top of the double-row bottle body can be detected.

[0037] As shown in Figs. 1-2 The bottle body detection mechanism includes a first detection mechanism 2 and a second detection mechanism 3.

[0038] The first detection mechanism 2 is used for detecting the first side of the bottle body of the double-row bottle body, and the second detection mechanism 3 is used for detecting the second side of the bottle body of the double-row bottle body.

[0039] The bottle head detection mechanism includes a third detection mechanism 4 and a fourth detection mechanism 5.

[0040] The third detection mechanism 4 is used for detecting the first side of the bottle head of the double-row bottle body, and the fourth detection mechanism 5 is used for detecting the second side of the bottle head of the double-row bottle body.

[0041] The shooting cameras 22 of the first detection mechanism 2 and the third detection mechanism 4 are located on the first side of the double-row bottle body, and the shooting cameras 22 of the second detection mechanism 3 and the fourth detection mechanism 5 are located on the second side of the double-row bottle body.

[0042] In the embodiment, the first detection mechanism 2 and the second detection mechanism 3 are used for detecting the two sides of the bottle body of the double-row bottle body, and the third detection mechanism 4 and the fourth detection mechanism 5 are used for detecting the two sides of the bottle head of the double-row bottle body, so as to realize detection of the bottle body and the bottle head of the double-row bottle body.

[0043] As shown in Figs. 1-3 The first detection mechanism 2, the second detection mechanism 3, the third detection mechanism 4, and the fourth detection mechanism 5 each include a detection frame 21, a shooting camera 22, a ring-shaped light source 23, and a plane light source 7.

[0044] The detection frame 21 is arranged on one side of the conveying belt 1, the plane light source 7 is arranged on the other side of the conveying belt 1, the plane light source 7 is arranged towards the conveying belt 1, the shooting camera 22 and the ring-shaped light source 23 are fixed on the detection frame 21, the ring-shaped light source 23 is arranged towards the conveying belt 1, and the shooting camera 22 is arranged at the center of the ring-shaped light source 23 and has a shooting direction towards the double-row bottle body on the conveying belt 1.

[0045] When the ring light source 23 is turned on, the planar light source 7 is in an off state, and the shooting camera 22 shoots the aligned bottles.

[0046] When the planar light source 7 is turned on, the ring light source 23 is in an off state, and the shooting camera 22 shoots the aligned bottles.

[0047] In the detection process of the embodiment, the ring light source 23 and the planar light source 7 are alternately turned on to irradiate the aligned bottles. The planar light source 7 can provide large-area, shadow-free or low-glare uniform illumination, and the ring light source 23 can provide axisymmetric light emission, which can reduce shadows and enhance the edge contrast of the target object. The shooting camera 22 shoots the aligned bottles twice to ensure the qualification of the aligned bottles.

[0048] As shown in Figs. 1-3 The bottle top detection mechanism 6 includes an adjusting frame 61, a vertical light source 62 and a vertical camera 63.

[0049] The adjusting frame 61 is fixed on one side of the conveying belt 1, the vertical light source 62 and the vertical camera 63 are arranged on the adjusting frame 61, the vertical camera 63 is located above the vertical light source 62, the vertical light source 62 is annular, and the output end of the vertical camera 63 corresponds to the center of the vertical light source 62.

[0050] The vertical light source 62 is located above the aligned bottles and is used for irradiating the aligned bottles vertically downward, and the vertical camera 63 shoots the aligned bottles to detect the bottle top of the aligned bottles.

[0051] The bottle detection mechanism includes a bottle bottom detection mechanism.

[0052] The bottle bottom detection mechanism is used for detecting the bottle bottom of the aligned bottles.

[0053] In other embodiments, the conveying belt 1 is further provided with a connecting bridge detection device 8 for detecting the connecting bridge between the bottles. The bottle body detection mechanism, the bottle head detection mechanism and the bottle top detection mechanism 6 in the application can be arranged on the same side of the connecting bridge detection device 8 or on the two sides of the connecting bridge detection device 8. The bottle bottom detection mechanism is arranged at the connecting bridge detection device 8. When the connecting bridge is detected, the bottle bottom detection mechanism detects the bottle bottom. The bottle bottom detection mechanism is located below the bottle body. After the connecting bridge detection device 8 grabs the bottle body, the bottle bottom detection mechanism can detect the bottle bottom of the bottle body. The connecting bridge detection device 8 is a detection device in the prior art.

[0054] The above, with reference to Figs. 1-4The application discloses a kind of row bottle detection device according to the embodiments of the utility model, and the application is conveyed to row bottle by conveying belt 1, and the two sides of row bottle are detected respectively by bottle body detection mechanism, and the two sides of row bottle are detected respectively by bottle head detection mechanism, and the bottle top of row bottle is detected by bottle top detection mechanism 6, realize the automatic detection of row bottle, save human resources, improve the detection efficiency of row bottle.

[0055] It should be noted that in the present specification, the terms "comprising", "including" or any other variant thereof are intended to cover non-exclusive inclusion, so that a process, method, article or apparatus including a series of elements not only includes those elements, but also includes other elements not explicitly listed or inherent to such a process, method, article or apparatus. Without more limitations, the elements defined by the statement "comprising" do not exclude the presence of other identical elements in the process, method, article or apparatus comprising the elements.

[0056] Although the content of the present application has been described in detail by the above preferred embodiments, it should be recognized that the above description should not be considered as a limitation of the present application. After reading the above content, various modifications and alternatives of the present application will be obvious to those skilled in the art. Therefore, the protection scope of the present application should be defined by the appended claims.

Claims

1. A device for detecting a row of bottles, characterized in that The application relates to a bottle detection mechanism and a bottle conveying device. The conveying belt is used for conveying the aligned bottles. The bottle detection mechanism is arranged corresponding to the conveying assembly, and comprises a bottle body detection mechanism, a bottle head detection mechanism and a bottle top detection mechanism. The bottle body detection mechanism is used for detecting the first side and the second side of the bottle body of the aligned bottles in sequence. The bottle head detection mechanism is used for detecting the first side and the second side of the bottle head of the aligned bottles in sequence. The bottle top detection mechanism is used for detecting the bottle top of the aligned bottles.

2. The inline bottle detection apparatus of claim 1, wherein The bottle body detection mechanism comprises a first detection mechanism and a second detection mechanism. The first detection mechanism is used for detecting the first side of the bottle body of the aligned bottles, and the second detection mechanism is used for detecting the second side of the bottle body of the aligned bottles.

3. The inline bottle inspection apparatus of claim 2, wherein The bottle head detection mechanism comprises a third detection mechanism and a fourth detection mechanism. The third detection mechanism is used for detecting the first side of the bottle head of the aligned bottles, and the fourth detection mechanism is used for detecting the second side of the bottle head of the aligned bottles.

4. The inline bottle inspection apparatus of claim 3, wherein The first detection mechanism, the second detection mechanism, the third detection mechanism and the fourth detection mechanism each comprise a detection frame, a shooting camera, a ring-shaped light source and a plane light source. The detection frame is arranged on one side of the conveying belt, the plane light source is arranged on the other side of the conveying belt, the plane light source is arranged towards the conveying belt, the shooting camera and the ring-shaped light source are fixed on the detection frame, the ring-shaped light source is arranged towards the conveying belt, and the shooting camera is arranged corresponding to the center of the ring-shaped light source and has a shooting direction towards the aligned bottles on the conveying belt.

5. The inline bottle inspection apparatus of claim 4, wherein The shooting cameras of the first detection mechanism and the third detection mechanism are located on the first side of the aligned bottles, and the shooting cameras of the second detection mechanism and the fourth detection mechanism are located on the second side of the aligned bottles.

6. The inline bottle inspection apparatus of claim 4, wherein When the ring-shaped light source is turned on, the plane light source is in an off state, and the shooting camera shoots the aligned bottles. When the plane light source is turned on, the ring-shaped light source is in an off state, and the shooting camera shoots the aligned bottles.

7. The inline bottle inspection apparatus of claim 1 wherein, The bottle top detection mechanism comprises an adjusting frame, a vertical light source and a vertical camera. The adjusting frame is fixed on one side of the conveying belt, the vertical light source and the vertical camera are arranged on the adjusting frame, the vertical camera is located above the vertical light source, the vertical light source is ring-shaped, and the output end of the vertical camera is arranged corresponding to the center of the vertical light source.

8. The inline bottle inspection apparatus of claim 1, wherein The bottle detection mechanism comprises a bottle bottom detection mechanism. The bottle bottom detection mechanism is used for detecting the bottle bottom of the aligned bottles.