Auxiliary tool for correcting bottle conveying position

By using digital measurement tools and calibration measurement components, the inconvenience of measuring the reference position of bottles after equipment overhaul has been resolved, enabling efficient and accurate generation of measurement results and monitoring of equipment status, thereby reducing failure rate and safety hazards.

CN224046351UActive Publication Date: 2026-03-27COCA-COLA BOTTLING BUSINESS PROD SHIJIAZHUANG CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-05-09
Publication Date
2026-03-27

AI Technical Summary

Technical Problem

In existing technologies, the measurement of the reference position of the bottle after equipment overhaul relies on manual measurement, which has problems such as inconvenience in operation, low accuracy, high labor intensity and safety hazards.

Method used

Using digital measuring tools, the device is fixed to the surface of the equipment by suction cups. Combined with the calibration measuring components and sensing components on the adjustment bracket, the gap of the bottle docking jaws is automatically measured, generating accurate measurement results and establishing a database.

Benefits of technology

It improves measurement efficiency, reduces failure rate, reduces the subjectivity and labor intensity of manual measurement, provides a safe measurement environment, and supports long-term monitoring of equipment status.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an auxiliary tool for correcting a bottle conveying position. The auxiliary tool comprises a suction cup and an adjusting support connected with the suction cup. The calibration device comprises an adjusting support and a calibration measurement assembly arranged on the adjusting support, the calibration measurement assembly comprises two sensing assemblies moving relative to the adjusting support and a calibration block assembly arranged between the two sensing assemblies and installed on the adjusting support in a sliding mode, the distance between the two sensing assemblies is set to be A, the distance between the two sensing assemblies is set to be A, and the distance between the two sensing assemblies is set to be B; the thickness of the calibration block assembly is set to be D, and the two sensing assemblies respectively measure the distances between the two sensing assemblies and the calibration block assembly to obtain B and C. According to the utility model, through the application of a digital measuring tool, the working efficiency is greatly improved, the overhaul and debugging period is shortened, the failure rate of bottle conveying of equipment is reduced, and meanwhile, the problems of subjective measuring results, low measuring precision, high working intensity and potential safety hazards caused by manual measurement are solved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of correction equipment, specifically to a bottle conveying position correction auxiliary tool. BACKGROUND

[0002] After equipment overhaul, the device needs to restore the bottle conveying reference position, in order to prevent the bottle mouth from being not connected smoothly, the gap of the front and rear bottle conveying butt joint clamping jaw needs to be kept consistent, therefore, the bottle clamp state position measurement plays a crucial role, but the existing bottle clamp state position measurement is mostly artificial with a feeler gauge measurement debugging, and the following inconveniences exist in this way.

[0003] Firstly, the operation is inconvenient, and whether it is appropriate depends on artificial judgment, and the subjective measurement accuracy is low.

[0004] Secondly, artificial measurement needs to measure each bottle position, and the measurement time is long and the labor intensity is large.

[0005] Thirdly, the measurement environment has safety hazards.

[0006] Therefore, the present application provides a bottle conveying position correction auxiliary tool. UTILITY MODEL CONTENT

[0007] The utility model discloses a kind of bottle conveying position correction auxiliary tool, and the application of digital measurement tool greatly improves work efficiency, shortens overhaul debugging period, reduces the failure rate of device bottle conveying, while solve the problems of subjectivity of measurement result caused by artificial measurement, low measurement accuracy, high work intensity and have safety hazards.

[0008] To achieve the above object, the utility model provides the following technical scheme: a kind of bottle conveying position correction auxiliary tool, comprising: suction cup, adjustment support connected with suction cup, wherein the suction cup can be fixedly adsorbed on the surface of equipment;And correction measurement component is set on the adjustment support, for measuring the gap of front and rear bottle conveying butt joint clamping jaw;The correction measurement component includes two sensing components opposite to the adjustment support and the calibration block component slidably installed between the two sensing components and the adjustment support, wherein the interval between the two sensing components is set as A, the thickness of the calibration block component is set as D, and the two sensing components measure the interval between them and the calibration block component and obtain B, C respectively.

[0009] Preferably, each sensing component is composed of a first connecting rod slidably installed with the adjustment support and a sensing unit connected with the first connecting rod;The calibration block component includes a second connecting rod and a calibration piece fixedly connected with the second connecting rod, and the sensing units of the two sensing components are arranged on the two sides of the calibration piece of the calibration block component.

[0010] Preferably, the calibration piece further comprises front and rear bottle clamps, and a space is arranged between the front and rear bottle clamps, wherein the front bottle clamp is set as E in thickness, the rear bottle clamp is set as F in thickness, and the space is set as S.

[0011] Preferably, the adjusting support comprises a base, a support rod arranged on the base, and a fastening assembly arranged on the support rod, wherein the fastening assembly comprises three mounting blocks, a first locking assembly arranged at one end of each mounting block and used for locking the mounting block and the support rod, and three second locking assemblies used for locking the two first connecting rods, the second connecting rod and the three mounting blocks, so as to adjust the horizontal position of the sensing assembly and the calibration block assembly.

[0012] Preferably, the first locking assembly comprises a groove arranged at one end of each mounting block, wherein the groove comprises a first mounting groove, a first through groove communicated with the first mounting groove, and a first screw hole arranged at one end of the mounting block and penetrating through the first through groove, and further comprises a locking bolt used for locking the mounting block and the support rod when the locking bolt is screwed into the first screw hole; the second locking assembly has the same structure as the first locking assembly.

[0013] Preferably, a transmission member for adjusting the direction of the base and the support rod is arranged between the base and the support rod, and the transmission member comprises a support disc fixed to the upper surface of the base, and a pin shaft arranged at the lower part of the support disc and rotationally arranged with the support rod; further comprising a limiting groove arranged at the upper part of the support disc, and a limiting bolt arranged in the limiting groove, wherein the limiting bolt is threadedly connected by penetrating through the limiting groove and a threaded hole arranged at the lower part of the support rod.

[0014] Preferably, the corner of the base is provided with a supporting leg.

[0015] Compared with the prior art, the utility model has the beneficial effects as follows:

[0016] The utility model discloses a digital measurement tool is applied, greatly promotes work efficiency, shortens the overhaul debugging period, reduces the failure rate of equipment bottle transmission, and simultaneously solves the problems, such as the subjectification of the measurement result caused by manual measurement, low measurement accuracy, great work intensity and the security hidden danger, and the application can generate the measurement result automatically, and the establishment of database is convenient, and data support is provided for the long -term state monitoring of equipment, and the CBM monitoring of equipment develops the new channel, and the digital measurement can more objective feedback measurement result, and the skill and the perception requirement of personnel are reduced. BRIEF DESCRIPTION OF DRAWINGS

[0017] Figure 1 It is the first perspective three-dimensional structure schematic diagram of the utility model;

[0018] Figure 2 It is the second perspective three-dimensional structure schematic diagram of the utility model;

[0019] Figure 3 It is rear view structure schematic view of the utility model;

[0020] Figure 4 It is side view structure schematic view of the utility model;

[0021] Figure 5 It is Figure 1 First local enlarged structure schematic view of;

[0022] Figure 6 It is Figure 1 Second local enlarged structure schematic view of;

[0023] Figure 7 It is first embodiment schematic view of calibration block assembly;

[0024] Figure 8 It is second embodiment schematic view of calibration block assembly.

[0025] In the figure: 111, base;112, support leg;113, suction cup;211, support disc;212, support rod;213, pin shaft;214, limit slot;215, limit bolt;311, first connecting rod;312, second connecting rod;313, sensing unit;314, calibration piece;411, mounting block;412, groove body;413, locking bolt. DETAILED DESCRIPTION

[0026] In the description of the utility model, it is understood that the terms "length", "width", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer" and the like indicate the orientation or positional relationship based on the orientation or positional relationship shown in the drawings, and are only for the convenience of describing the utility model and simplifying the description, and do not indicate or imply that the indicated device or element must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation on the utility model. The embodiments of the utility model will be described in detail below with reference to the drawings.

[0027] Please refer to Figures 1 to 8 The utility model preferably provides technical scheme: a bottle conveying position correction auxiliary tool, include: suction cup 113, with the adjustment support that connects with suction cup 113, wherein, suction cup 113 can be fixedly adsorbed on the equipment surface, and correction measurement subassembly is set up on the adjustment support, is used for measuring the clearance of front and rear bottle conveying butt joint clamping jaw, correction measurement subassembly includes two sensing subassembly with the opposite movement of adjustment support, and the calibration block subassembly is placed between two sensing subassembly and with the sliding installation of adjustment support, wherein, the interval between two sensing subassembly is set as A, the thickness of calibration block subassembly is set as D, two sensing subassembly measures the interval between it and calibration block subassembly respectively and obtains B, C.

[0028] It is known that the device needs to restore the device bottle conveying reference position after overhaul, and the bottle clamp state position measurement plays a crucial role. In the prior art, the staff needs to enter the inside of the device to measure under the star wheel transfer, and a plug gauge is used for measurement, and it is necessary to continuously convert the plug gauge specifications for comparison. There are some shortcomings in the operation process.

[0029] Firstly, the subjective measurement accuracy is low during the plug gauge comparison process.

[0030] Secondly, manual recording of measurement results is not easy to save, and a device state database cannot be formed.

[0031] Thirdly, due to equipment overhaul, the safety of internal measurement of the point device is insufficient.

[0032] Finally, manual measurement needs to measure each bottle position, the measurement time is long, and the labor intensity is large.

[0033] Considering the above problems, the two sensing assemblies installed on the adjusting support and the calibration block assembly can measure the thickness of the calibration block assembly. Similarly, the front and rear bottle conveying positions or the bottle clamp gap measurement data are obtained. To ensure the accuracy of the measurement, the calibration block assembly can have two implementation modes, and the specific content can be known by referring to the following text. Here, the calibration work of the sensing assembly is mainly explained.

[0034] The calibration work of the sensing assembly is combined Figure 7 ;

[0035] Firstly, open two sensing assemblies, the distance measurement data between the two sensing assemblies is A, then place the calibration block assembly between the two sensing assemblies, then the two sensing assemblies measure the distance to the calibration block assembly and get B and C, and the thickness of the calibration block assembly is set as D. Therefore, whether D is equal to A-B-C is used to judge whether the calibration result of the two sensing assemblies is correct. If not, continue to adjust. If normal, enter the formal measurement process. The measurement process is basically the same as the calibration work, please refer to the following text.

[0036] Further, each sensing assembly is composed of a first connecting rod 311 slidably installed with the adjusting support, and a sensing unit 313 connected with the first connecting rod 311; the calibration block assembly includes a second connecting rod 312, and a calibration piece 314 fixedly connected with the second connecting rod 312, wherein the sensing units 313 of the two sensing assemblies are arranged on both sides of the calibration piece 314 of the calibration block assembly.

[0037] Combined with Figure 1 , 2, 3, 5, because the sensing unit 313 and the calibration member 314 are respectively slidably installed through the first connecting rod 311 and the second connecting rod 312 and the adjusting bracket, so that the distance between the sensing unit 313 and the two calibration members 314 is adjusted, so as to adjust the measurement parameters of the device.

[0038] As another embodiment of the calibration block assembly, the calibration member 314 further comprises front and rear bottle clamps, and a distance is provided between the front and rear bottle clamps, wherein the thickness of the front bottle clamp is set as E, the thickness of the rear bottle clamp is set as F, and the distance is set as S.

[0039] The position change gap measurement of the front and rear bottle butt joint clamping jaws is combined with Figure 8 ;

[0040] First, place two sensing assemblies on both sides of the butt joint clamping jaw, wherein the upper bottle clamp in the Figure 8 is set as E, and the lower bottle clamp in the Figure 8 is set as F, and the distance is set as S;

[0041] It is worth noting that the two sensing units 313 first measure the distance between the upper and lower bottle clamps to obtain A in Figure 8 , and then the sensing units 313 measure the distance between them and the calibration member 314 to obtain B and C, and the thickness of the upper and lower bottle clamps is known as E and F, and then the data is transmitted to the computer in real time through the data line to establish a standard database, that is, the formula A-B-C-E-F is used to obtain the data of S 标 ;

[0042] Then, place the tool at the bottle conveying position to be detected by the device, connect the external air source, fix the suction cup 113 on the stainless steel surface of the device, then adjust the bracket, turn on the power of the central control box, measure and calculate the height of the upper and lower bottle clamps, and the device can complete the measurement of the gap between the bottle conveying positions after one continuous rotation. The measurement result S 实 is compared with the standard data S 标 , and the error value is the gap value, that is, the position change amount of the front and rear bottle butt joint clamping jaws compared with the standard butt joint clamping jaws.

[0043] The error value is automatically calculated by the computer software and output in an EXCEL table for easy viewing. The USB line is connected to the computer, and the data is monitored in real time on the software. The application can automatically generate measurement results, facilitate the establishment of a database, and provide data support for long-term state monitoring of the device. The CBM monitoring of the device has increased a new channel, and digital measurement can more objectively feedback the measurement results, and the skill and perception requirements of personnel are reduced.

[0044] Further, the adjusting support comprises a base 111, a support rod 212 arranged on the base 111, and a fastening assembly arranged on the support rod 212, wherein the fastening assembly comprises three mounting blocks 411, a first locking assembly arranged at one end of each mounting block 411 and used for locking the mounting block 411 and the support rod 212, and three second locking assemblies used for locking the two first connecting rods 311 and the second connecting rod 312 and the three mounting blocks 411, so as to adjust the transverse position of the sensing assembly and the calibration block assembly.

[0045] As shown in Figure 3 , 5 , one end of the three mounting blocks 411 is locked with the support rod 212 through the three first locking assemblies, and the distance between the two sensing assemblies and the calibration block assembly is adjusted, and the other end of the three mounting blocks 411 is locked with the two sensing assemblies and the calibration block assembly through the three second locking assemblies, and the transverse position of the two sensing assemblies and the calibration block assembly is adjusted to adapt to the internal environment of the equipment.

[0046] Further, the first locking assembly comprises a groove 412 arranged at one end of each mounting block 411, wherein the groove 412 comprises a first mounting groove, a first through groove communicated with the first mounting groove, and a first screw hole arranged at one end of the mounting block 411 and penetrating the first through groove, and further comprises a locking bolt 413 used for locking the mounting block 411 and the support rod 212 when the locking bolt 413 is screwed into the first screw hole; the second locking assembly has the same structure as the first locking assembly.

[0047] It is worth noting that the second locking assembly has the same structure as the first locking assembly, and the first locking assembly is taken as an example here: each groove 412 is composed of a first mounting groove and a first through groove communicated with the first mounting groove, and the first through groove divides the end of the mounting block 411 into two parts, and when the first mounting groove and the support rod 212 are penetrated and mounted, the end of the mounting block 411 is locked when the locking bolt 413 is screwed into the first screw hole penetrating the first through groove, so as to lock the mounting block 411 and the support rod 212.

[0048] Further, a transmission member for adjusting the direction of the base 111 and the support rod 212 is arranged between the base 111 and the support rod 212, and the transmission member comprises a support disc 211 fixed on the upper surface of the base 111, and a pin shaft 213 arranged at the lower part of the support disc 211 and rotationally mounted with the support rod 212; further comprising a limiting groove 214 arranged at the upper part of the support disc 211, and a limiting bolt 215 arranged in the limiting groove 214, wherein the limiting bolt 215 is threadedly connected with a threaded hole arranged at the lower part of the support rod 212 and penetrating the limiting groove 214.

[0049] As shown in Figure 6As shown, the known supporting rod 212 is rotatably installed with the supporting disc 211 through a pin shaft 213, the supporting rod 212 can be deflected and locked inside the limiting groove 214 through the limiting bolt 215, thereby realizing the adjustment of the angle of the supporting rod 212.

[0050] Further, the base 111 corner is provided with a supporting leg 112 for supporting, here the supporting leg 112 can be switched with the suction disc 113, combined with the Figure 6 As shown, the suction disc 113 is fixed, which can adapt to different operation sections for adapting to different measurement environments.

[0051] In the utility model, unless another definite provision and limitation, the term "installation", "connection", "connection", "fix" and so on term should do broad sense understanding, for example, can be fixed connection, also can be detachable connection, or be integrated;Can be mechanical connection;Can be directly connected, also can pass through intermediate medium indirectly connects. Among them, the detachable installation mode has many, for example, can pass through the way of inserting and buckling cooperation, again for example, pass through the bolt connection mode and so on.

[0052] The above embodiment is only used for further illustrating the utility model, and cannot be understood as the limitation of the protection scope of the utility model. The skilled in the art can make some non-essential improvements and adjustments to the utility model according to the above utility model, which falls within the protection scope of the utility model.

Claims

1. A bottle passing position correction assisting tool characterized by, The device comprises: a suction cup (113) and an adjusting support connected with the suction cup (113), wherein the suction cup (113) can be fixedly adsorbed on the surface of a device; and a correction measurement assembly arranged on the adjusting support, used for measuring the gap between front and rear bottle transfer docking clamps; the correction measurement assembly comprises two sensing assemblies movably arranged opposite to the adjusting support, and a calibration block assembly arranged between the two sensing assemblies and slidably arranged on the adjusting support, wherein the distance between the two sensing assemblies is set as A, the thickness of the calibration block assembly is set as D, and the two sensing assemblies respectively measure the distance between the sensing assemblies and the calibration block assembly to obtain B and C.

2. The bottle transfer position correction auxiliary tool according to claim 1, wherein: each of the sensing assemblies is composed of a first connecting rod (311) slidably arranged on the adjusting support, and a sensing unit (313) connected with the first connecting rod (311); the calibration block assembly comprises a second connecting rod (312) and a calibration member (314) fixedly connected with the second connecting rod (312), and the sensing units (313) of the two sensing assemblies are arranged on the two sides of the calibration member (314) of the calibration block assembly.

3. The bottle transfer position correction auxiliary tool according to claim 2, wherein: the calibration member (314) further comprises front and rear bottle clamps, and a gap is arranged between the front and rear bottle clamps, wherein the thickness of the front bottle clamp is set as E, the thickness of the rear bottle clamp is set as F, and the gap is set as S.

4. The bottle transfer position correction auxiliary tool according to claim 1, wherein: the adjusting support comprises a base (111), a support rod (212) arranged on the base (111), and a fastening assembly arranged on the support rod (212), wherein the fastening assembly comprises three mounting blocks (411), a first locking assembly arranged at one end of each of the mounting blocks (411) and used for locking the mounting blocks (411) and the support rod (212), and three second locking assemblies used for locking the two first connecting rods (311) and the second connecting rod (312) and the three mounting blocks (411), so as to adjust the horizontal positions of the sensing assemblies and the calibration block assembly.

5. The bottle transfer position correction auxiliary tool according to claim 4, wherein: the first locking assembly comprises a groove (412) arranged at one end of each of the mounting blocks (411), wherein the groove (412) comprises a first mounting groove, a first through groove communicated with the first mounting groove, and a first screw hole arranged at one end of the mounting block (411) and penetrating through the first through groove, and further comprises a locking bolt (413) used for locking the mounting block (411) and the support rod (212) when the locking bolt (413) is screwed into the first screw hole; the second locking assembly has the same structure as the first locking assembly.

6. The bottle transfer position correction auxiliary tool according to claim 4, wherein: The transmission member for adjusting the direction of the base (111) and the support rod (212) includes a support disc (211) fixed on the upper surface of the base (111), and a pin shaft (213) arranged at the lower part of the support disc (211) and rotatably connected with the support rod (212); Further comprising a limiting slot (214) opened at the upper part of the support disc (211), and a limiting bolt (215) arranged in the limiting slot (214), wherein the limiting bolt (215) is screwed into the threaded hole opened at the lower part of the support rod (212).

7. The bottle position correction auxiliary tool according to claim 4, wherein: The base (111) is provided with a supporting leg (112) at the corner.