Improved cap cutting and bottling machine for bottling and packaging bearings

By installing bottle cap and bottle body debris extractors at the cap cutting and bottling stations, and using a vacuum head and drive module to absorb the debris into a dust collection bag, the problem of debris falling during the bearing bottling process is solved, and the service life of the bearing is increased.

CN223384835UActive Publication Date: 2025-09-26KUNSHAN AXIS RES AUTOMATION EQUIP CO LTD
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Patent Information

Application Number
CN202421839809.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-31
Publication Date
2025-09-26
Estimated Expiration
2034-07-31

AI Technical Summary

Technical Problem

In the prior art, the debris generated by cutting during the bottling process of the bearing easily falls into the bearing, affecting its service life.

Method used

Bottle cap and bottle body debris extractors are installed at the cap cutting and bottling stations respectively, and the vacuum head and drive module are used to absorb the debris into the dust collection bag to prevent the debris from entering the bearings.

Benefits of technology

It effectively removes the debris of the bottle cap and bottle body after cutting, and increases the service life of the bearing.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an improved cap cutting bottling machine used for bearing bottling packaging, which comprises a cap cutting station, a bottling station and a linear module used for connecting the cap cutting station and the bottling station, a cutter, a bottle cap clamping block group and a bottle body clamping block group are arranged at the cap cutting station, a bottling machine is arranged at the bottling station, and the linear module is used for connecting the bottle body clamping block group and the bottle body clamping block group. The linear module is used for driving the bottle body clamping block set to move to the bottling station, a bottle cap chipping extractor is arranged at the cap cutting station, and a bottle body chipping extractor is arranged at the bottling station. According to the utility model, chippings falling into the bottle body or the bottle cap can be reduced, so that the service life of the bearing in the packaging bottle is prolonged.
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Description

Technical Field

[0001] The utility model relates to the field of capping and bottling of bearing packaging bottles, in particular to an improved capping and bottling machine for bearing bottling. Background Art

[0002] Currently, the bottling of bearings requires cutting off the bottle cap and bottle body of the packaging bottle, and then installing the bearing into the bottle body. In an invention patent for a fully automatic atomizing oiling bottling and cartoning machine for bearings, published on July 21, 2023, with publication number CN116461802A, a capping and bottling mechanism is disclosed, which includes a capping structure and a bottling structure. The capping structure is located on one side of the bottling structure, and the two are connected by a linear module. After the bottle body is cut off, it is moved to the bottling structure through the linear module for bottling. Since debris will be generated after the bottle cap and bottle body of the packaging bottle are cut, if the debris is not removed in time, for some bearings without dust covers, the debris will fall into the steel balls of the bearing, thereby affecting the service life of the bearing. Utility Model Content

[0003] In order to overcome the above shortcomings, the purpose of the present invention is to provide an improved cutting and capping bottling machine for bearing bottling packaging, which reduces the falling of debris into the bottle body or bottle cap and thereby increases the service life of the bearings in the packaging bottle.

[0004] In order to achieve the above purpose, the technical solution adopted by the utility model is: an improved capping and bottling machine for bearing bottling and packaging, comprising a capping station, a bottling station and a linear module for connecting the two, wherein the capping station is provided with a cutter, a bottle cap clamping block group, and a bottle body clamping block group, the bottling station is provided with a bottling machine, the linear module is used to drive the bottle body clamping block group to move to the bottling station, the capping station is provided with a bottle cap scrap extractor, the bottle cap scrap extractor comprises a bottle cap vacuum head, a bottle cap driving module and a bottle cap vacuum pump, wherein the bottle cap vacuum head can move toward or away from the bottle cap clamped by the bottle cap clamping block group through the bottle cap driving module, and the bottle cap vacuum head is connected to the bottle cap vacuum pump through the bottle cap pipe; a bottle body debris extractor is provided at the bottling station, and the bottle body debris extractor includes a bottle body vacuum head, a bottle body driving module and a bottle body vacuum pump, wherein the bottle body vacuum head can move toward or away from the bottle body clamped by the bottle body clamping block group through the bottle body driving module, and the bottle body vacuum head is connected to the bottle body vacuum pump through the bottle body pipe.

[0005] The utility model uses a bottle cap chip extractor and a bottle body chip extractor to be respectively arranged at the cap cutting station and the bottling station after cutting, so as to remove the waste materials generated after the bottle cutting by vacuum adsorption, thereby preventing the chips generated by the bottle caps and bottle bodies after cutting from entering the steel balls of the bearings in the bottle and then affecting the normal use of the bearings, thereby improving the service life of the bearings in the bottle.

[0006] Preferably, the bottle cap vacuum head includes: a bottle cap circular body, the front of the bottle cap circular body is provided with a plurality of bottle cap through holes for vacuuming, and the interior is hollow; a connecting block, the bottle cap circular body is fixed on the connecting block, the hollow interior of the connecting block is connected to the back of the bottle cap circular body, the connecting block is provided with a bottle cap pipe interface for connecting to the bottle cap pipe, and the connecting block is driven by a bottle cap driving module to rise, fall, and translate. The bottle cap circular body is adapted to the shape of the bottle cap and is used to remove debris generated on the bottle cap as much as possible. The bottle cap driving module drives the connecting block to move, and then drives the bottle cap circular body to rise and fall. When the bottle cap circular body rises, it sucks debris, and when the bottle cap circular body falls, it makes way for other operations.

[0007] Preferably, the bottle cap driving module includes: a bottle cap longitudinal cylinder, the connecting block is locked and fixed to the end of the telescopic shaft of the bottle cap longitudinal cylinder; a bottle cap frame; a bottle cap slide rail, the bottle cap slide rail is fixed on the bottle cap frame, the bottle cap longitudinal cylinder is slidably set on the bottle cap slide rail, the direction of the bottle cap slide rail is parallel to the direction of the linear module; a bottle cap horizontal cylinder, the bottle cap horizontal cylinder is fixed on the bottle cap frame, and its telescopic shaft is fixedly connected to the bottle cap longitudinal cylinder.

[0008] Preferably, two limiters are provided on the bottle cap rack, and the bottle cap longitudinal cylinder is limited by the two limiters.

[0009] Preferably, the bottle body vacuum head includes: a circular body of the bottle body, the front of the circular body of the bottle body is provided with a plurality of bottle body through holes for vacuuming, and the interior of the circular body of the bottle body is hollow; a bottle body rod body, the interior of the bottle body rod body is hollow, and one end of the bottle body rod body is connected to the back of the circular body of the bottle body; a slider, the interior of the slider is hollow, the slider is driven to move by the bottle body driving module, the other end of the bottle body rod body is fixed on the slider and is connected to the slider, and the slider is provided with a bottle body pipe interface for connecting to the bottle body pipe. Similarly, the circular body of the bottle body is adapted to the shape of the bottle body and is used to suck out debris generated by the bottle body as much as possible. The slider is driven by the bottle body driving module to move, which in turn drives the bottle body rod body to move, and finally drives the circular body of the bottle body to translate. When the circular body of the bottle body is close to the bottle body, it sucks debris, and when the circular body of the bottle body is away from the bottle body, it makes way for other operations.

[0010] Preferably, the bottle body driving module includes: a bottle body frame; a bottle body slide rail, which is fixed on the bottle body frame and parallel to the central axis of the bottle body, and the slider is slidably set on the bottle body slide rail; a bottle body horizontal cylinder, which is fixed at one end of the bottle body frame, and its telescopic shaft is connected to the slider, which is used to drive the slider to move back and forth in the direction close to or away from the bottle body.

[0011] Preferably, a limit cylinder is provided at the other end of the bottle body frame, and the telescopic axis of the limit cylinder is in an up-and-down direction; a limit block is provided at the end of the telescopic axis of the limit cylinder; when the limit block is driven to an ascending state by the limit cylinder, the limit block blocks the slider; when the limit block is driven to a descending state by the limit cylinder, the limit block is lower than the slider.

[0012] Preferably, the ends of the bottle cap pipe and the bottle body pipe are both connected to dust collection bags for collecting debris. BRIEF DESCRIPTION OF THE DRAWINGS

[0013] Figure 1 A perspective view of the embodiment in cooperation with the bearing conveying mechanism;

[0014] Figure 2 is a perspective view of this embodiment;

[0015] Figure 3 This is a three-dimensional diagram of the coordination between the material stringing shaft and the push plate in this embodiment;

[0016] Figure 4 This is a three-dimensional view of the bottle body clamping group and the baffle in the embodiment of the present invention from a first angle;

[0017] Figure 5 This is a three-dimensional view of the bottle body clamping group and the baffle in this embodiment from a second angle. DETAILED DESCRIPTION

[0018] The preferred embodiments of the present invention are described in detail below in conjunction with the accompanying drawings so that the advantages and features of the present invention can be more easily understood by those skilled in the art, thereby making a clearer and more precise definition of the protection scope of the present invention.

[0019] See Figure 1 As shown, this embodiment discloses an improved capping and bottling machine for bearing bottling and packaging, comprising a capping station 10, a bottling station 20, and a linear module 30 for connecting the two. The capping station 10 is provided with a cutter 11, a bottle cap clamping block group 12, and a bottle body clamping block group 40. The bottling station 20 is provided with a bottling machine. The linear module 30 is used to drive the bottle body clamping block group 40 to move to the bottling station 20. The capping station 10 is provided with a bottle cap debris extractor 50. The bottle cap debris extractor 50 comprises a bottle cap vacuum head 51, a bottle cap driving module 52, and a bottle cap vacuum machine. The bottle cap vacuum head 51 can move toward or away from the bottle cap clamped by the bottle cap clamping block group 12 through the bottle cap driving module 52. The bottle cap vacuum head 51 is connected to the bottle cap vacuum machine through a bottle cap pipe.

[0020] A bottle body debris extractor 60 is provided at the bottling station 20. The bottle body debris extractor 60 includes a bottle body vacuum head 61, a bottle body drive module 62 and a bottle body vacuum extractor 63. The bottle body vacuum head 61 can move toward or away from the bottle clamped by the bottle body clamping block group 40 through the bottle body drive module 62. The bottle body vacuum head 61 is connected to the bottle body vacuum extractor 63 through a bottle body pipe.

[0021] like Figure 2 、 Figure 3 As shown, the bottle cap vacuum head 51 of this embodiment includes:

[0022] The circular bottle cap body 51-1 has a plurality of vacuum-enhancing bottle cap through holes 51-2 on its front side, and is hollow inside.

[0023] The connecting block 51-3 and the bottle cap circular body 51-1 are fixed on the connecting block 51-3. The hollow interior of the connecting block 51-3 is connected to the back of the bottle cap circular body 51-1. The connecting block 51-3 is provided with a bottle cap pipe interface 51-4 for connecting to the bottle cap pipe. The connecting block 51-3 is driven by the bottle cap driving module 52 to lift and translate.

[0024] like Figure 2 、 Figure 3 As shown, the bottle cap driving module 52 of this embodiment includes:

[0025] The bottle cap longitudinal cylinder 52-1 and the connecting block 51-3 are locked and fixed to the end of the telescopic shaft of the bottle cap longitudinal cylinder 52-1;

[0026] Bottle cap rack 52-2;

[0027] Bottle cap slide rail 52-3, bottle cap slide rail 52-3 is fixed on bottle cap rack 52-2, as shown in FIG. Figure 3 As shown, the bottle cap slide rail 52-3 in this embodiment is fixed to the bottom of the bottle cap frame 52-2, and the bottle cap longitudinal cylinder 52-1 is slidably set on the bottle cap slide rail 52-3. The direction of the bottle cap slide rail 52-3 is parallel to the direction of the linear module 30.

[0028] The bottle cap horizontal cylinder 52-4 is fixed on the bottle cap frame 52-2, and its telescopic shaft is fixedly connected to the bottle cap longitudinal cylinder 52-1.

[0029] In addition, two limiters 52-5 are provided on the bottle cap frame 52-2, and the bottle cap longitudinal cylinder 52-1 is limited by the two limiters 52-5.

[0030] like Figure 4 、 Figure 5 As shown, the bottle vacuum head 61 includes:

[0031] The circular body 61-1 of the bottle body is provided with a plurality of through holes 61-2 for vacuuming on the front of the circular body 61-1, and the interior of the circular body 61-1 is hollow;

[0032] The bottle body rod 61-3 is hollow inside, and one end of the bottle body rod 61-3 is connected to the back of the bottle body circular body 61-1;

[0033] The slider 61-4 is hollow inside and is driven to move by the bottle body driving module 62. The other end of the bottle body rod 61-3 is fixed on the slider 61-4 and connected with it. The slider 61-4 is provided with a bottle body pipe interface 61-5 for connecting to the bottle body pipe.

[0034] like Figure 4 、 Figure 5 As shown, the bottle body driving module 62 includes: a bottle body frame 62-1; a bottle body slide rail 62-2, which is fixed on the bottle body frame 62-1. In this embodiment, the bottle body slide rail 62-2 is fixed on the upper surface of the bottle body frame 62-1 and is parallel to the central axis of the bottle body. The slider 61-4 is slidably set on the bottle body slide rail 62-2; the bottle body horizontal cylinder 62-3 is fixed at one end of the bottle body frame 62-1, and its telescopic shaft is connected to the slider 61-4, which is used to drive the slider 61-4 to move back and forth in the direction close to or away from the bottle body.

[0035] In addition, a limit cylinder 62-4 is provided at the other end of the bottle body frame 62-1, and the telescopic axis of the limit cylinder 62-4 is in an up-down direction; a limit block 62-5 is provided at the end of the telescopic axis of the limit cylinder 62-4; when the limit block 62-5 is driven by the limit cylinder 62-4 to the rising state, the limit block 62-5 blocks the slider 61-4; when the limit block 62-5 is driven by the limit cylinder 62-4 to the falling state, the limit block 62-5 is lower than the slider 61-4.

[0036] In this embodiment, the ends of the bottle cap pipe and the bottle body pipe are both connected to dust collection bags.

[0037] The working principle of this embodiment is as follows: the cap cutting station 10 cuts the bottle cap and bottle body of the packaging bottle. After cutting, the bottle cap is clamped by the bottle cap clamping block group 12 and remains in the cap cutting station 10, and the bottle cap debris extractor 50 extracts the debris from the bottle cap; the bottle body clamping block group 40 drives the bottle body to move to the bottling station 20, and the bottle body debris extractor 60 extracts the debris from the bottle body;

[0038] The principle of the bottle cap debris extractor 50 is as follows: the bottle cap longitudinal cylinder 52-1 and the bottle cap horizontal cylinder 52-4 synchronously drive the connecting block 51-3 and the bottle cap circular body 51-1 to move to the bottle cap to be cut, the bottle cap vacuum extractor is started, and the debris in the bottle cap is sucked from the bottle cap through hole 51-2 of the bottle cap circular body 51-1 to the connecting block 51-3, and then from the bottle body pipe connected to the bottle cap pipe interface 51-4 to the corresponding dust collecting bag. After the debris extraction of one bottle cap is completed, the bottle cap longitudinal cylinder 52-1 and the bottle cap horizontal cylinder 52-4 synchronously drive the connecting block 51-3 and the bottle cap circular body 51-1 to reset (i.e., give way) to make way for other operations.

[0039] The principle of the bottle body debris extractor 60 is as follows: the bottle body horizontal cylinder 62-3 drives the bottle body rod 61-3 and the bottle body circular body 61-1 toward the bottle body until they extend into the bottle body. The bottle body vacuum pump is activated, and the debris in the bottle cap is extracted through the bottle body through hole 61-2 of the bottle body circular body 61-1 to the bottle body rod 61-3, then from the bottle body rod 61-3 to the slider 61-4, and finally through the bottle body pipe connected to the bottle body pipe interface 61-5 to the corresponding dust collection bag. During the debris extraction, the limit cylinder 62-4 always drives the limit cylinder 62-4 to the upper position to provide a limit for the slider 61-4. When the debris is completely extracted and the bearing needs to be installed in the bottle body, the limit cylinder 62-4 always drives the limit cylinder 62-4 to the lower position to provide space for the bottling operation.

[0040] The above implementation methods are only for illustrating the technical concept and features of the utility model. Its purpose is to enable people familiar with this technology to understand the content of the utility model and implement it. It cannot be used to limit the scope of protection of the utility model. Any equivalent changes or modifications made according to the spirit of the utility model should be included in the scope of protection of the utility model.

Claims

1. An improved cutting and capping bottling machine for bearing bottling and packaging, comprising a cutting and capping station (10), a bottling station (20), and a linear module (30) for connecting the two, wherein the cutting and capping station (10) is provided with a cutter (11), a bottle cap clamping block group (12), and a bottle body clamping block group (40), and the bottling station (20) is provided with a bottling machine, and the linear module (30) is used to drive the bottle body clamping block group (40) to move to the bottling station (20), characterized in that: A bottle cap debris extractor (50) is provided at the cap cutting station (10), and the bottle cap debris extractor (50) comprises a bottle cap vacuum head (51), a bottle cap driving module (52) and a bottle cap vacuum extractor. The bottle cap vacuum head (51) can move toward or away from the bottle cap clamped by the bottle cap clamping block group (12) through the bottle cap driving module (52), and the bottle cap vacuum head (51) is connected to the bottle cap vacuum extractor through a bottle cap pipeline. The bottling station (20) is provided with a bottle body debris extractor (60), which comprises a bottle body vacuum head (61), a bottle body driving module (62) and a bottle body vacuum extractor (63). The bottle body vacuum head (61) can move toward or away from the bottle body clamped by the bottle body clamping block group (40) through the bottle body driving module (62). The bottle body vacuum head (61) is connected to the bottle body vacuum extractor (63) through a bottle body pipeline.

2. The improved cutting and capping bottling machine for bearing bottling packaging according to claim 1 is characterized in that: The bottle cap vacuum head (51) comprises: A circular bottle cap body (51-1), wherein a plurality of bottle cap through holes (51-2) for vacuuming are provided on the front side of the circular bottle cap body (51-1), and the interior of the circular bottle cap body (51-1) is hollow; A connecting block (51-3) is provided. The bottle cap circular body (51-1) is fixed on the connecting block (51-3). The connecting block (51-3) is hollow inside and communicates with the back of the bottle cap circular body (51-1). The connecting block (51-3) is provided with a bottle cap pipe interface (51-4) for connecting to the bottle cap pipe. The connecting block (51-3) is driven by a bottle cap driving module (52) to perform lifting and translation.

3. The improved cutting and capping bottling machine for bearing bottling packaging according to claim 2 is characterized in that: The bottle cap driving module (52) comprises: A bottle cap longitudinal cylinder (52-1), wherein the connecting block (51-3) is locked and fixed to the end of the telescopic shaft of the bottle cap longitudinal cylinder (52-1); Bottle cap rack (52-2); A bottle cap slide rail (52-3), the bottle cap slide rail (52-3) is fixed on the bottle cap frame (52-2), the bottle cap longitudinal cylinder (52-1) is slidably arranged on the bottle cap slide rail (52-3), and the direction of the bottle cap slide rail (52-3) is parallel to the direction of the linear module (30); A bottle cap horizontal cylinder (52-4) is fixed on a bottle cap frame (52-2), and a telescopic shaft thereof is fixedly connected to the bottle cap longitudinal cylinder (52-1).

4. The improved cutting and capping bottling machine for bearing bottling packaging according to claim 3 is characterized in that: Two limiters (52-5) are provided on the bottle cap frame (52-2), and the bottle cap longitudinal cylinder (52-1) is limited by the two limiters (52-5).

5. The improved cutting and capping bottling machine for bearing bottling packaging according to claim 1 is characterized in that: The bottle body vacuum head (61) comprises: A circular bottle body (61-1), wherein a plurality of bottle body through holes (61-2) for vacuuming are provided on the front of the circular bottle body (61-1), and the interior of the circular bottle body (61-1) is hollow; A bottle body rod (61-3), wherein the bottle body rod (61-3) is hollow inside and one end thereof is connected to the back side of the bottle body circular body (61-1); A slider (61-4) is hollow inside and is driven to move by a bottle body driving module (62). The other end of the bottle body rod (61-3) is fixed on the slider (61-4) and communicated with the slider. The slider (61-4) is provided with a bottle body pipeline interface (61-5) for connecting to a bottle body pipeline.

6. The improved cutting and capping bottling machine for bearing bottling packaging according to claim 5 is characterized in that: The bottle body driving module (62) includes: Bottle rack (62-1); The bottle body slide rail (62-2) is fixed on the bottle body frame (62-1) and is parallel to the central axis of the bottle body. The slider (61-4) is slidably arranged on the bottle body slide rail (62-2); The bottle body horizontal cylinder (62-3) is fixed to one end of the bottle body frame (62-1), and its telescopic shaft is connected to the slider (61-4) for driving the slider (61-4) to move back and forth in a direction close to or away from the bottle body.

7. The improved cutting and capping bottling machine for bearing bottling packaging according to claim 6 is characterized in that: A limiting cylinder (62-4) is provided at the other end of the bottle body frame (62-1), and the telescopic axis of the limiting cylinder (62-4) is in an up-down direction; A limiting block (62-5) is provided at the end of the telescopic shaft of the limiting cylinder (62-4); When the limiting block (62-5) is driven by the limiting cylinder (62-4) to an ascending state, the limiting block (62-5) blocks the sliding block (61-4); When the limiting block (62-5) is driven by the limiting cylinder (62-4) to a descending state, the limiting block (62-5) is lower than the sliding block (61-4).

8. The improved cutting and capping bottling machine for bearing bottling packaging according to claim 1 is characterized in that: The ends of the bottle cap pipe and the bottle body pipe are both connected with dust collection bags.

Citation Information

Patent Citations

  • Full-automatic atomizing, oiling, bottling and boxing machine for bearings

    CN116461802A