A copper post sleeve o-ring apparatus

By designing a copper column O-ring fitting device, and utilizing the coordinated work of rotating components and multiple components, the automated fitting of copper columns and O-rings is achieved, solving the problem of low efficiency in manual operation and improving production efficiency.

CN119772575BActive Publication Date: 2025-12-16NINGBO CITY QUANSHENG SHELL
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Patent Information

Application Number
CN202411988690.6
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-12-31
Publication Date
2025-12-16
Estimated Expiration
2044-12-31

AI Technical Summary

Technical Problem

In existing technologies, the process of fitting O-rings onto copper pillars relies on manual operation, resulting in low production efficiency.

Method used

A copper column O-ring fitting device was designed. Through the coordinated work of a rotating component, a copper column feeding component, an O-ring feeding component, a spreading component, a lower ring component, and a fitting moving component, the copper column and O-ring are automatically fitted together.

Benefits of technology

The process of fitting O-rings onto copper pillars has been fully automated, improving production efficiency and reducing manual intervention.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application provides a copper column sleeve O-shaped ring device, and belongs to the technical field of production equipment, and comprises a base, a rotating assembly, a copper column feeding assembly, an O-shaped ring feeding assembly, a opening assembly, a lower ring assembly and a sleeve ring moving assembly. The rotating assembly comprises a rotating disc and a rotating driving element. The opening assembly comprises an opening block and an opening driving element. The lower ring assembly comprises a lower ring seat and a lower ring driving element. The sleeve ring moving assembly is used to drive the opening assembly and the lower ring assembly to move and lift. The application has the beneficial effect that the copper column feeding assembly feeds copper columns by rotating the rotating assembly, the O-shaped ring feeding assembly feeds O-shaped rings by rotating the rotating assembly, the opening assembly removes O-shaped rings by moving and lifting the sleeve ring moving assembly, and the lower ring assembly pushes O-shaped rings to copper columns by moving and lifting the sleeve ring moving assembly, so that the copper column sleeve O-shaped ring is completed, and the whole process is automatically completed without manual operation.
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Description

TECHNICAL FIELD

[0001] The application belongs to the technical field of production equipment, and relates to a copper column sleeve O-shaped ring device. BACKGROUND

[0002] At present, copper columns need to be sleeved with O-shaped rings in the production and manufacturing process of electric energy meters, and the existing technology is manual sleeving, which is low in production efficiency and has great improvement space. SUMMARY

[0003] The application aims at the above problems existing in the prior art and provides a copper column sleeve O-shaped ring device.

[0004] The purpose of the application can be achieved by the following technical scheme: a copper column sleeve O-shaped ring device, comprising:

[0005] a base station comprising a first position and a second position;

[0006] a rotating assembly comprising a rotating disc and a rotating driving element, the rotating disc is provided with a workpiece groove, and the rotating driving element can drive the rotating disc to rotate so as to drive the workpiece groove to be located at the first position or the second position;

[0007] a copper column feeding assembly, which is used for pushing a copper column into the workpiece groove when the workpiece groove is located at the first position;

[0008] an O-shaped ring feeding assembly, which is used for providing an O-shaped ring;

[0009] a strutting assembly comprising a strutting block and a strutting driving element, the number of the strutting blocks is at least two, each strutting block is connected with the strutting driving element, and the strutting driving element can drive each strutting block to approach or move away from each other;

[0010] a lower ring assembly comprising a lower ring seat and a lower ring driving element, the lower ring seat is connected with the lower ring driving element, and the lower ring driving element can drive the lower ring seat to ascend and descend;

[0011] a sleeve moving assembly, which is used for driving the strutting assembly and the lower ring assembly to move and ascend and descend;

[0012] When the workpiece groove is located at the second position, the sleeve ring moving assembly drives the expansion assembly and the lower ring assembly to move and lift until each expansion block is located in the O-shaped ring, the expansion driving element drives each expansion block to move away from each other to expand the O-shaped ring to take out the O-shaped ring, the sleeve ring moving assembly drives the expansion assembly and the lower ring assembly to move and lift to the second position, and the lower ring driving element can drive the lower ring seat to lower to push the O-shaped ring on the expansion block to the copper column located at the second position.

[0013] In the copper column sleeve O-shaped ring device, a blanking assembly is further included, the base further includes a third position, and the rotating driving element can drive the rotating disc to rotate to drive the workpiece groove to be located at the third position. The blanking assembly is used to push the product out of the workpiece groove when the workpiece groove is located at the third position.

[0014] In the copper column sleeve O-shaped ring device, the blanking assembly includes a blanking moving block and a blanking moving driving element. The blanking moving block is connected with the blanking moving driving element, and the blanking moving driving element can drive the blanking moving block to move.

[0015] In the copper column sleeve O-shaped ring device, a detection assembly is further included, the base further includes a fourth position, the rotating driving element can drive the rotating disc to rotate to drive the workpiece groove to be located at the fourth position, and the fourth position is located between the second position and the third position. The detection assembly is used to detect the sleeve ring condition of the product when the workpiece groove is located at the fourth position.

[0016] In the copper column sleeve O-shaped ring device, the detection assembly includes a detection moving block, a detection moving driving element and a sensor. The detection moving block is connected with the detection moving driving element, the sensor is aligned with the moving block, the detection moving driving element can drive the detection moving block to move towards the sleeve ring position of the product when the workpiece groove is located at the fourth position, and the sensor is used to detect the contact condition of the detection moving block and the O-shaped ring or the copper column.

[0017] In the copper column sleeve O-shaped ring device, the copper column feeding assembly includes a copper column fixing seat, a copper column moving block and a copper column moving driving element. The copper column fixing seat is connected with the base, the copper column fixing seat includes a first feeding position and a first conveying position, the copper column moving block is connected with the copper column moving driving element, and the copper column moving driving element can drive the copper column moving block to move along the copper column fixing seat from the first feeding position to the first conveying position.

[0018] In the copper column sleeve O-shaped ring device, the copper column feeding assembly further comprises a copper column feeding disc connected with the base, which can provide copper columns for the first feeding position.

[0019] In the copper column sleeve O-shaped ring device, the O-shaped ring feeding assembly comprises an O-shaped ring fixing seat connected with the base, a second feeding position and a second conveying position, an O-shaped ring moving block connected with the O-shaped ring moving driving element, and the O-shaped ring moving driving element can drive the O-shaped ring moving block to move along the O-shaped ring fixing seat from the second feeding position to the second conveying position.

[0020] In the copper column sleeve O-shaped ring device, the O-shaped ring feeding assembly further comprises an O-shaped ring feeding disc connected with the base, which can provide O-shaped rings for the second feeding position.

[0021] In the copper column sleeve O-shaped ring device, the sleeve ring moving assembly comprises a sleeve ring moving seat connected with the sleeve ring moving driving element, the sleeve ring moving driving element connected with the base, the sleeve ring moving driving element can drive the sleeve ring moving seat to move, a sleeve ring lifting seat connected with the sleeve ring lifting driving element, and the sleeve ring lifting driving element connected with the sleeve ring moving seat, the sleeve ring lifting driving element can drive the sleeve ring lifting seat to lift, and the opening driving element and the lower ring driving element are both connected with the sleeve ring lifting seat.

[0022] Compared with the prior art, the present application has the following beneficial effects:

[0023] 1. The copper column feeding assembly is fed with copper columns by rotating the rotating assembly, the O-shaped ring feeding assembly is fed with O-shaped rings by rotating the rotating assembly, the opening assembly is used to take away the O-shaped rings by moving and lifting the sleeve ring moving assembly, and the lower ring assembly is used to push the O-shaped rings to the copper columns by moving and lifting the sleeve ring moving assembly, so that the copper column sleeve O-shaped ring is completed, and the whole process is automatically completed without manual operation.

[0024] 2. The feeding moving driving element can drive the feeding moving block to move, so as to push the copper column with the O-shaped ring out of the workpiece groove.

[0025] 3、Detection mobile drive element can drive detection mobile block to the position of the product's sleeve ring, and the mobile sensor can detect the state of the mobile block, when the copper column is sleeved with O-ring, the mobile block contacts with O-ring, at this time, the blanking assembly can be controlled to push the copper column with O-ring out of the workpiece groove, when the copper column is not sleeved with O-ring or the sleeving position is wrong, the mobile block contacts with the copper column, at this time, the blanking assembly does not need to be controlled to make the copper column return to the first position.

[0026] 4、The copper column mobile drive element can drive the copper column mobile block to move along the copper column fixing seat from the first feeding position to the first conveying position, so as to complete the automatic feeding of the copper column.

[0027] 5、The O-ring mobile drive element can drive the O-ring mobile block to move along the O-ring fixing seat from the second feeding position to the second conveying position, so as to complete the automatic feeding of the O-ring. BRIEF DESCRIPTION OF DRAWINGS

[0028] Figure 1 It is a structural schematic view of the copper column O-ring sleeving equipment of the present application.

[0029] Figure 2 It is a structural schematic view of the copper column O-ring sleeving equipment of the present application from another perspective.

[0030] Figure 3 It is a structural schematic view of the copper column O-ring sleeving equipment of the present application from another perspective.

[0031] Figure 4 It is a structural schematic view of the copper column O-ring sleeving equipment of the present application from another perspective.

[0032] Figure 5 It is a structural schematic view of the copper column O-ring sleeving equipment of the present application from another perspective.

[0033] Figure 6 It is an exploded view of the copper column O-ring sleeving equipment of the present application.

[0034] Figure 7 It is a structural schematic view of the copper column O-ring sleeving equipment of the present application from another perspective.

[0035] In the figure, 100, base; 210, rotating disc; 211, workpiece groove; 220, rotating driving element; 310, copper column fixing seat; 320, copper column moving block; 330, copper column moving driving element; 340, copper column feeding disc; 410, O-ring fixing seat; 420, O-ring moving block; 430, O-ring moving driving element; 440, O-ring feeding disc; 510, prop open block; 520, prop open driving element; 610, lower ring seat; 620, lower ring driving element; 710, sleeve ring moving seat; 720, sleeve ring moving driving element; 730, sleeve ring lifting seat; 740, sleeve ring lifting driving element; 810, unloading moving block; 820, unloading moving driving element; 910, detection moving block; 920, detection moving driving element; 930, sensor. DETAILED DESCRIPTION

[0036] The following is a specific embodiment of the present application and further describes the technical solutions of the present application in conjunction with the drawings, but the present application is not limited to these embodiments.

[0037] It should be noted that all directional indications, such as upper, lower, left, right, front, back, etc., in the embodiments of the present application are only used to explain the relative positional relationship, movement condition, etc. between components in a certain posture (as shown in the drawings), and if the certain posture changes, the directional indications also change accordingly.

[0038] In addition, the description such as "first", "second", "one" and the like in the present application is only for the purpose of description, and cannot be understood as indicating or implying the relative importance of the indicated technical features or implicitly indicating the number of the indicated technical features. Therefore, the features defined as "first" and "second" can explicitly or implicitly include at least one of the features. In the description of the present application, the meaning of "a plurality of" is at least two, such as two, three, etc., unless otherwise specifically limited.

[0039] In the present application, unless otherwise specifically defined and limited, the terms "connection", "fixing" and the like should be understood broadly, for example, "fixing" can be fixed connection, or detachable connection, or integral; can be mechanical connection, or electrical connection; can be directly connected, or indirectly connected through an intermediate medium; can be the internal connection of two elements or the interaction relationship between two elements, unless otherwise specifically defined. For those skilled in the art, the specific meaning of the above terms in the present application can be understood according to the specific circumstances.

[0040] In addition, the technical solutions of each embodiment of the present application can be combined with each other, but it must be based on the fact that a person skilled in the art can realize it, and when the combination of technical solutions appears contradictory or unachievable, it should be considered that the combination of technical solutions does not exist, nor is it within the scope of protection required by the present application.

[0041] The specific embodiments described herein are merely illustrative of the spirit of the application. Various modifications or supplements or replacements of the specific embodiments described or similar ways can be made by those skilled in the art without departing from the spirit of the application or exceeding the scope defined by the appended claims.

[0042] As shown in the drawings, a copper column sleeve O-ring device comprises: Figures 1-7

[0043] a base 100 comprising a first position and a second position;

[0044] a rotating assembly comprising a rotating disc 210 and a rotating driving element 220, the rotating disc 210 is provided with a workpiece groove 211, the rotating driving element 220 can drive the rotating disc 210 to rotate so as to drive the workpiece groove 211 to be located at the first position or the second position;

[0045] a copper column feeding assembly for pushing a copper column into the workpiece groove 211 when the workpiece groove 211 is located at the first position;

[0046] an O-ring feeding assembly for providing an O-ring;

[0047] a dilating assembly comprising a dilating block 510 and a dilating driving element 520, the number of the dilating block 510 is at least two, each of the dilating block 510 is connected with the dilating driving element 520, and the dilating driving element 520 can drive each of the dilating block 510 to approach or move away from each other;

[0048] a lower ring assembly comprising a lower ring seat 610 and a lower ring driving element 620, the lower ring seat 610 is connected with the lower ring driving element 620, and the lower ring driving element 620 can drive the lower ring seat 610 to ascend or descend;

[0049] a sleeve moving assembly for driving the dilating assembly and the lower ring assembly to move and ascend or descend;

[0050] Specifically, when the workpiece groove 211 is located at the second position, the sleeve moving assembly drives the dilating assembly and the lower ring assembly to move and ascend or descend until each of the dilating block 510 is located in the O-ring, the dilating driving element 520 drives each of the dilating block 510 to move away from each other so as to dilate the O-ring and take away the O-ring, the sleeve moving assembly drives the dilating assembly and the lower ring assembly to move and ascend or descend to the second position, and the lower ring driving element 620 can drive the lower ring seat 610 to descend so as to push the O-ring on the dilating block 510 to the copper column located at the second position.​

[0051] Specifically, the rotation drive element 220 is a motor.

[0052] Specifically, the expansion drive element 520 is a pneumatic cylinder, a hydraulic cylinder, or an electric cylinder.

[0053] Specifically, the lower drive element 620 is a pneumatic cylinder, a hydraulic cylinder, or an electric cylinder.

[0054] Specifically, the ring moving assembly includes a ring moving seat 710, a ring moving drive element 720, a ring lifting seat 730, and a ring lifting drive element 740. The ring moving seat 710 is connected to the ring moving drive element 720, and the ring moving drive element 720 is connected to the base 100. The ring moving drive element 720 can drive the ring moving seat 710 to move. The ring lifting seat 730 is connected to the ring lifting drive element 740, and the ring lifting drive element 740 is connected to the ring moving seat 710. The ring lifting drive element 740 can drive the ring lifting seat 730 to rise and fall. The spreading drive element 520 and the lower ring drive element 620 are both connected to the ring lifting seat 730.

[0055] More specifically, the ring movement drive element 720 is a pneumatic cylinder, a hydraulic cylinder, or an electric cylinder.

[0056] More specifically, the ring lifting drive element 740 is a pneumatic cylinder, a hydraulic cylinder, or an electric cylinder.

[0057] In this embodiment, the rotating component rotates to allow the copper column feeding component to feed the copper column, the rotating component rotates to allow the O-ring feeding component to feed the O-ring, the ring moving component moves and rises to allow the spreading component to remove the O-ring, and the ring moving component moves and rises to allow the lower ring component to push the O-ring onto the copper column, thereby completing the O-ring fitting of the copper column automatically without manual intervention.

[0058] like Figures 1-7 As shown, based on the above embodiment, a feeding assembly is also included. The base 100 also includes a third position. The rotation drive element 220 can drive the rotating disk 210 to rotate, thereby causing the workpiece groove 211 to be located in the third position. When the workpiece groove 211 is located in the third position, the feeding assembly is used to push the product out of the workpiece groove 211.

[0059] Specifically, the feeding assembly includes a feeding moving block 810 and a feeding moving drive element 820. The feeding moving block 810 is connected to the feeding moving drive element 820, and the feeding moving drive element 820 can drive the feeding moving block 810 to move.

[0060] In the embodiment, the blanking moving driving element 820 can drive the blanking moving block 810 to move, so as to push the copper column with the O-ring out of the workpiece groove 211.

[0061] As shown in the above embodiment, on the basis of the above embodiment, the detection assembly is further included, the base 100 further includes a fourth position, the rotating driving element 220 can drive the rotating disc 210 to rotate so as to drive the workpiece groove 211 to be located at the fourth position, the fourth position is located between the second position and the third position, and the detection assembly is used for detecting the sleeving condition of the product when the workpiece groove 211 is located at the fourth position. Figures 1-7 Specifically, the detection assembly includes a detection moving block 910, a detection moving driving element 920 and a sensor 930, the detection moving block 910 is connected with the detection moving driving element 920, the sensor 930 is aligned with the moving block, the detection moving driving element 920 can drive the detection moving block 910 to move towards the sleeving position of the product when the workpiece groove 211 is located at the fourth position, and the sensor 930 is used for detecting the contact condition between the detection moving block 910 and the O-ring or the copper column.

[0062] Specifically, the detection moving element is a pneumatic cylinder or a hydraulic cylinder or an electric cylinder.

[0063] In the embodiment, the detection moving driving element 920 can drive the detection moving block 910 to move towards the sleeving position of the product, and the sensor 930 can detect the state of the detection moving block 910, the detection moving block 910 is in contact with the O-ring when the copper column is sleeved with the O-ring, at this time, the blanking assembly can be controlled to push the copper column with the O-ring out of the workpiece groove 211, and the detection moving block 910 is in contact with the copper column when the copper column is not sleeved with the O-ring or the sleeving position is wrong, at this time, the blanking assembly does not need to be controlled to make the copper column return to the first position.

[0064] As shown in the above embodiment, on the basis of the above embodiment, the copper column feeding assembly includes a copper column fixing seat 310, a copper column moving block 320 and a copper column moving driving element 330, the copper column fixing seat 310 is connected with the base 100, the copper column fixing seat 310 includes a first feeding position and a first conveying position, the copper column moving block 320 is connected with the copper column moving driving element 330, and the copper column moving driving element 330 can drive the copper column moving block 320 to move along the copper column fixing seat 310 from the first feeding position to the first conveying position.

[0065] Figures 1-7 In the embodiment, the detection moving driving element 920 can drive the detection moving block 910 to move towards the sleeving position of the product, and the sensor 930 can detect the state of the detection moving block 910, the detection moving block 910 is in contact with the O-ring when the copper column is sleeved with the O-ring, at this time, the blanking assembly can be controlled to push the copper column with the O-ring out of the workpiece groove 211, and the detection moving block 910 is in contact with the copper column when the copper column is not sleeved with the O-ring or the sleeving position is wrong, at this time, the blanking assembly does not need to be controlled to make the copper column return to the first position.

[0066] ​In this embodiment, the copper column moving drive element 330 can drive the copper column moving block 320 to move along the copper column fixed seat 310 from the first feeding position to the first transport position, thereby completing the automatic feeding of the copper column.

[0067] Preferably, the copper column feeding assembly further includes a copper column feeding tray 340, which is connected to the base 100 and can provide a copper column for the first feeding position.

[0068] like Figures 1-7 As shown, based on the above embodiment, the O-ring feeding assembly includes an O-ring fixing seat 410, an O-ring moving block 420, and an O-ring moving drive element 430. The O-ring fixing seat 410 is connected to the base 100. The O-ring fixing seat 410 includes a second feeding position and a second transport position. The O-ring moving block 420 is connected to the O-ring moving drive element 430. The O-ring moving drive element 430 can drive the O-ring moving block 420 to move along the O-ring fixing seat 410 from the second feeding position to the second transport position.

[0069] Specifically, the O-ring moving drive element 430 is a pneumatic cylinder, a hydraulic cylinder, or an electric cylinder.

[0070] In this embodiment, the O-ring moving drive element 430 can drive the O-ring moving block 420 to move along the O-ring fixing seat 410 from the second feeding position to the second transport position, thereby completing the automatic feeding of the O-ring.

[0071] Preferably, the O-ring feeding assembly further includes an O-ring feeding tray 440, which is connected to the base 100 and can provide O-rings for the second feeding position.

Claims

1. A device for fitting O-rings onto copper pillars, characterized in that, include: The base includes a first position and a second position; A rotating assembly includes a rotating disk and a rotating drive element. The rotating disk is provided with a workpiece groove, and the rotating drive element can drive the rotating disk to rotate, thereby causing the workpiece groove to be located at the first position or the second position. A copper column feeding assembly is used to push a copper column into the workpiece slot when the workpiece slot is in the first position. O-ring feeding assembly, which is used to supply O-rings; A spreading component includes spreading blocks and spreading driving elements. The number of spreading blocks is at least two, and each spreading block is connected to the spreading driving element. The spreading driving element can drive each spreading block to move closer to or further away from each other. The lower ring assembly includes a lower ring seat and a lower ring drive element, wherein the lower ring seat is connected to the lower ring drive element, and the lower ring drive element can drive the lower ring seat to rise and fall. A ring-moving assembly is used to drive the spreading assembly and the lower ring assembly to move and rise / fall; When the workpiece groove is in the second position, the collar moving assembly drives the spreading assembly and the lower collar assembly to move and rise and fall until each of the spreading blocks is inside the O-ring. The spreading driving element drives each of the spreading blocks to move away from each other, thereby spreading the O-ring and removing the O-ring. The collar moving assembly drives the spreading assembly and the lower collar assembly to move and rise and fall to the second position. The lower collar driving element can drive the lower collar seat to descend, thereby pushing the O-ring on the spreading block to the copper pillar in the second position. It also includes a feeding assembly, and the base also includes a third position. The rotation drive element can drive the rotating disk to rotate, thereby causing the workpiece slot to be located in the third position. When the workpiece slot is located in the third position, the feeding assembly is used to push the product out of the workpiece slot. It also includes a detection component, and the base also includes a fourth position. The rotation drive element can drive the rotating disk to rotate, thereby causing the workpiece groove to be located in the fourth position. The fourth position is located between the second position and the third position. When the workpiece groove is located in the fourth position, the detection component is used to detect the ring condition of the product. The detection assembly includes a detection moving block, a detection moving drive element, and a sensor. The detection moving block is connected to the detection moving drive element, and the sensor is aligned with the moving block. When the workpiece groove is located at the fourth position, the detection moving drive element can drive the detection moving block to move toward the ring position of the product. The sensor is used to detect the contact between the detection moving block and the O-ring or copper post.

2. The copper column O-ring fitting device as described in claim 1, characterized in that: The feeding assembly includes a feeding moving block and a feeding moving drive element. The feeding moving block is connected to the feeding moving drive element, and the feeding moving drive element can drive the feeding moving block to move.

3. The copper column O-ring fitting device as described in claim 1, characterized in that: The copper column feeding assembly includes a copper column fixing base, a copper column moving block, and a copper column moving drive element. The copper column fixing base is connected to the base platform and includes a first feeding position and a first transport position. The copper column moving block is connected to the copper column moving drive element, and the copper column moving drive element can drive the copper column moving block to move along the copper column fixing base from the first feeding position to the first transport position.

4. The copper column O-ring fitting device as described in claim 3, characterized in that: The copper column feeding assembly also includes a copper column feeding tray, which is connected to the base and can provide a copper column for the first feeding position.

5. The copper column O-ring fitting device as described in claim 1, characterized in that: The O-ring feeding assembly includes an O-ring fixing seat, an O-ring moving block, and an O-ring moving drive element. The O-ring fixing seat is connected to the base and includes a second feeding position and a second transport position. The O-ring moving block is connected to the O-ring moving drive element, and the O-ring moving drive element can drive the O-ring moving block to move along the O-ring fixing seat from the second feeding position to the second transport position.

6. The copper column O-ring fitting device as described in claim 5, characterized in that: The O-ring feeding assembly also includes an O-ring feeding tray, which is connected to the base and can provide O-rings for the second feeding position.

7. The copper column O-ring fitting device as described in claim 1, characterized in that: The ring moving assembly includes a ring moving base, a ring moving drive element, a ring lifting base, and a ring lifting drive element. The ring moving base is connected to the ring moving drive element, and the ring moving drive element is connected to the base. The ring moving drive element can drive the ring moving base to move. The ring lifting base is connected to the ring lifting drive element, and the ring lifting drive element is connected to the ring moving base. The ring lifting drive element can drive the ring lifting base to rise and fall. The spreading drive element and the lower ring drive element are both connected to the ring lifting base.

Citation Information

Patent Citations

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