Fixing structure capable of being turned over for machining

By designing a fixed structure for reversible machining, and utilizing components such as an active rotating seat and drive shaft to achieve workpiece reversal, the problem of excessive equipment load and low production efficiency caused by the inability to reverse workpieces is solved, thereby improving machining accuracy and equipment lifespan.

CN223531921UActive Publication Date: 2025-11-11新东鑫(江苏)机械科技有限公司
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Patent Information

Application Number
CN202421698437.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-17
Publication Date
2025-11-11
Estimated Expiration
2034-07-17

AI Technical Summary

Technical Problem

The inability of workpieces to be flipped during processing leads to problems such as excessive load on processing equipment, accelerated equipment wear, low production efficiency, and decreased product quality.

Method used

A fixed structure for flip-type machining was designed, including components such as an active rotating seat, a stabilizing rotating shaft, an inner bearing, a limit block, a drive shaft, and a movable chuck. The workpiece can be flipped and stabilized for machining by a motor drive.

Benefits of technology

It enables the flexibility of multi-faceted workpiece processing, reduces equipment load, extends equipment life, and improves production efficiency and processing accuracy.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223531921U_ABST
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Abstract

The utility model provides a fixing structure capable of turning over and machining, which comprises a side seat I and a machining part, a driving rotating seat for driving the machining part to turn over is arranged on the right side of the side seat I, and a group of machining parts for turning over and machining a workpiece are arranged on the right side of the driving rotating seat. The right side of the machining component is provided with a set of stable rotating shafts used for keeping the turnover position of the machining component limited, and the right side of each stable rotating shaft is provided with a set of inner bearings used for keeping stable rotation of the corresponding stable rotating shaft. Compared with the prior art, the turning device has the advantages that the limiting block is used for limiting the turning angle of the machined part, the driving shaft and the driving rotating seat are used for driving the machined part to be turned and adjusted, and the driven rotating seat is used for keeping the turning stability of the machined part; the movable chuck and the clamping electric cylinder are used for clamping, overturning and machining a large workpiece, and the first mounting plate and the second mounting plate are used for fixing, overturning and machining a small workpiece.
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Description

Technical Field

[0001] This utility model belongs to the field of workpiece processing technology and relates to a fixed structure that can be flipped for processing. Background Technology

[0002] Workpiece machining is a crucial step in manufacturing, involving the transformation of raw materials or semi-finished products into finished products through a series of processes. This process typically includes multiple steps, such as cutting, drilling, turning, milling, and grinding, to precisely control the dimensions and shape of the workpiece. During machining, appropriate cutting conditions, such as depth and speed, must be selected, and specialized equipment and tools must be used. If the workpiece cannot be rotated during machining, it will lead to a series of problems, severely impacting machining quality and production efficiency.

[0003] Many workpieces require machining on multiple sides, such as drilling, milling, and grinding. If the workpiece cannot be flipped, the machining equipment can only operate on one side, meaning more equipment and time are needed to complete the machining of the entire workpiece. Furthermore, due to the limited machining position, the required machining accuracy may not be achieved, leading to a decrease in product quality.

[0004] Because the workpiece cannot be flipped, the processing equipment may need to continuously process the same side for a long time. This will cause the equipment's cutting tools, bearings, and other components to bear excessive loads, thus accelerating wear. In the long run, the equipment failure rate will increase significantly, affecting the stability and reliability of the production line. Therefore, there is an urgent need for a fixed structure that allows for flipping processing to solve the above problems. Utility Model Content

[0005] In view of the shortcomings of the existing technology, the purpose of this utility model is to provide a fixed structure that can be flipped and processed to solve the problems mentioned in the background technology.

[0006] This utility model is achieved through the following technical solution: a fixed structure for reversible processing, comprising: a side seat and a processing component, wherein the right side of the side seat is provided with an active rotating seat for driving the processing component to rotate;

[0007] The right side of the active rotary seat is provided with a set of processing components for flipping the workpiece, and the right side of the processing components is provided with a set of stable rotary shafts for maintaining the flipping position of the processing components.

[0008] The right side of the stabilizing shaft is provided with an inner bearing for maintaining the stability of the shaft's rotation, and the outer side of the inner bearing is provided with a second side seat for limiting and fixing the inner bearing.

[0009] In a preferred embodiment, both side seat one and side seat two are provided with a set of bases for supporting them at their lower ends. The upper front side of the base is provided with two sets of limiting blocks for restricting the flipping position of the processing part. The flipping angle of the processing part can be restricted by using the limiting blocks.

[0010] In a preferred embodiment, the two sets of side seats one and two are of the same specifications. The side seat one is equipped with a motor for driving the active rotating seat. The right side of the motor is equipped with a drive shaft for power transmission. The right side of the drive shaft is connected and fixed to the middle position of the active rotating seat, so that the processing part can be rotated and adjusted by using the drive shaft and the active rotating seat.

[0011] In a preferred embodiment, the active rotary seat is fixedly connected to the left side of the processing component, and the right side of the processing component is provided with a driven rotary seat for connection with a stabilizing rotary shaft. The active rotary seat and the driven rotary seat are of the same specifications, and the rotation stability of the processing component can be maintained by using the driven rotary seat.

[0012] In a preferred embodiment, the processing component includes a clamping electric cylinder and a hinge. The clamping electric cylinder has a set of side support arms on its outer side for connecting and supporting the inner support arm. There are two sets of side support arms.

[0013] In a preferred embodiment, the left side support arm is provided with a connecting plate for connecting to the active rotating seat at the middle position on the left side, and an inner support arm is provided on the inner side of the middle position of the two sets of side support arms for connecting to the first mounting plate and the second mounting plate. The front end of the inner support arm is provided with the first mounting plate for connecting and fixing to the workpiece.

[0014] In a preferred embodiment, the rear end of the inner support arm is provided with a second mounting plate for connecting and fixing with the workpiece. The lower ends of the left and right sides of the first mounting plate are each provided with a set of side support rods for supporting the first mounting plate. The lower ends of the left and right sides of the second mounting plate are each provided with a set of side support rods for supporting the second mounting plate.

[0015] The outer sides of mounting plate one and mounting plate two are connected and fixed to several groups of workpieces to be processed. Each group of side support arms has a set of movable chucks on the front and rear sides for clamping large workpieces. Each set of movable chucks is connected to a set of clamping electric cylinders. Large workpieces can be clamped and flipped for processing by using movable chucks and clamping electric cylinders, and small workpieces can be fixed and flipped for processing by using mounting plate one and mounting plate two.

[0016] After adopting the above technical solution, the beneficial effects of this utility model are: the rotation angle of the processing part is limited by using a limit block; the processing part is rotated and adjusted by using a drive shaft and an active rotary seat; the rotation of the processing part is kept stable by using a driven rotary seat; large workpieces are clamped and rotated by using a movable chuck and a clamping electric cylinder; and small workpieces are fixed and rotated by using mounting plate one and mounting plate two. Attached Figure Description

[0017] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0018] Figure 1 This is a top view of the right front oblique side of a fixed structure that can be flipped and processed according to this utility model;

[0019] Figure 2 This is a top view of the right oblique front side of the side seat one and side seat two in a fixed structure that can be flipped and processed according to this utility model.

[0020] Figure 3 This is a schematic diagram of the right oblique side bottom view of the processing component in a fixed structure that can be flipped for processing according to this utility model;

[0021] Figure 4 This is an enlarged view of point A in a reversible fixed structure of this utility model;

[0022] In the diagram: 100-Side seat 1, 110-Active rotary seat, 120-Base, 130-Limiting block, 140-Side seat 2, 150-Processed component;

[0023] 15a-Clamping electric cylinder, 15b-Connecting plate, 15c-Inner support arm, 15d-Side support arm, 15e-Mounting plate one, 15f-Side support rod one, 15g-Mounting plate two, 15h-Side support rod two, 15i-Driven plate, 15j-Hinge. Detailed Implementation

[0024] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0025] Please see Figures 1-4 A fixed structure for reversible processing includes: a side seat 100 and a processing component 150. The right side of the side seat 100 is provided with an active rotating seat 110 for driving the processing component 150 to rotate.

[0026] The right side of the active rotary seat 110 is provided with a set of processing components 150 for flipping the workpiece, and the right side of the processing components 150 is provided with a set of stable rotating shafts for maintaining the flipped position of the processing components 150.

[0027] The right side of the stabilizing shaft is provided with an inner bearing for maintaining the stability of the stabilizing shaft's rotation, and the outer side of the inner bearing is provided with a side seat 140 for limiting and fixing the inner bearing.

[0028] Both side seat 100 and side seat 2 140 are provided with a set of bases 120 for supporting them. The upper front side of the base 120 is provided with two sets of limiting blocks 130 for limiting the flipping position of the processing part 150. The flipping angle of the processing part 150 can be limited by using the limiting blocks 130.

[0029] The two sets of side seats 100 and side seats 140 are of the same specifications. The side seat 100 is equipped with a motor for driving the active rotating seat 110. The right side of the motor is equipped with a drive shaft for power transmission. The right side of the drive shaft is connected and fixed to the middle position of the active rotating seat 110. The machining part 150 can be rotated and adjusted by using the drive shaft and the active rotating seat 110.

[0030] The active rotary seat 110 is fixedly connected to the left side of the processing component 150. The right side of the processing component 150 is provided with a driven rotary seat for connection with the stabilizing rotary shaft. The active rotary seat 110 and the driven rotary seat are of the same specifications and can maintain the rotation stability of the processing component 150 by using the driven rotary seat.

[0031] The processing component 150 includes a clamping electric cylinder 15a and a hinge 15j. The clamping electric cylinder 15a has a set of side support arms 15d on its outer side for connecting and supporting the inner support arm 15c. There are two sets of side support arms 15d.

[0032] The left side support arm 15d has a connecting plate 15b at the middle position on the left side for connecting with the active rotating seat 110. The inner side of the middle position of the two sets of side support arms 15d has an inner support arm 15c for connecting with mounting plate 15e and mounting plate 15g. The front end of the inner support arm 15c has a mounting plate 15e for connecting and fixing with the workpiece.

[0033] The rear end of the inner support arm 15c is provided with a second mounting plate 15g for connecting and fixing with the workpiece. The lower ends of the left and right sides of the first mounting plate 15e are provided with a set of side support rods 15f for supporting the first mounting plate 15e. The lower ends of the left and right sides of the second mounting plate 15g are provided with a set of side support rods 15h for supporting the second mounting plate 15g.

[0034] The outer sides of mounting plate 15e and mounting plate 2 15g are connected and fixed to several sets of workpieces to be processed. Each set of side support arms 15d has a set of movable chucks on the front and rear sides for clamping large workpieces. Each set of movable chucks is connected to a set of clamping electric cylinders 15a. Large workpieces can be clamped and flipped for processing by using the movable chucks and clamping electric cylinders 15a, and small workpieces can be fixed and flipped for processing by using mounting plate 1 and mounting plate 2 15g.

[0035] Please see Figures 1-4 As the first embodiment of this utility model: In order to solve the problem that many workpieces need to be processed on multiple sides, such as drilling, milling, grinding, etc., if the workpiece cannot be flipped, then the processing equipment can only operate on one side of the workpiece, which means that more equipment and time are needed to complete the entire workpiece processing, the operator first places the small workpiece to be processed on the outer surface of mounting plate 15e or mounting plate 2 15g. Then, multiple workpieces are fixed to mounting plate 15e and mounting plate 2 15g by bolts. When the operator needs to process the workpiece, the operator starts the motor inside side seat 100. Since side seat 100 is equipped with a motor for driving active rotating seat 110, and the right side of the motor is equipped with a drive shaft for power transmission, the right side of the drive shaft is connected and fixed to the middle position of active rotating seat 110. The drive shaft drives active rotating seat 110 to rotate, thereby causing the processing part 150 to flip and process the workpiece fixed on the outer side of mounting plate 15e and mounting plate 2 15g.

[0036] Please see Figures 1-4 As a second embodiment of this utility model: Based on the description in the above embodiments, further, since each set of side support arms 15d is provided with a set of movable chucks for clamping large workpieces on both the front and rear sides, and each set of movable chucks is connected to a set of clamping electric cylinders 15a respectively, when the operator needs to flip and adjust the large workpiece, the large workpiece is first placed between the two sets of movable chucks, and then the two sets of movable chucks are driven by the corresponding two sets of clamping electric cylinders 15a to clamp the large workpiece, and the large workpiece is processed according to the flipping angle of the processing component 150.

[0037] The above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.

Claims

1. A reversible, processable fixing structure, comprising: Side seat 1 (100), active rotating seat (110) and processing component (150), characterized in that: the right side of the side seat 1 (100) is provided with an active rotating seat (110) for driving the processing component (150) to rotate. The active rotary seat (110) has a set of processing components (150) on the right side for flipping the workpiece, and a set of stable rotating shafts on the right side of the processing components (150) for maintaining the flipped position of the processing components (150). The right side of the stabilizing shaft is provided with a set of inner bearings for maintaining the rotation stability of the stabilizing shaft, and the outer side of the inner bearing is provided with a set of side seats (140) for limiting and fixing the inner bearing.

2. The reversible fixed structure according to claim 1, characterized in that: Both the first side seat (100) and the second side seat (140) are provided with a set of bases (120) for supporting them. The upper front side of the base (120) is provided with two sets of limiting blocks (130) for limiting the flipping position of the processing part (150).

3. The reversible fixed structure according to claim 2, characterized in that: The two sets of side seats one (100) and side seat two (140) have the same specifications. The side seat one (100) is equipped with a motor for driving the active rotating seat (110). The right side of the motor is equipped with a drive shaft for power transmission. The right side of the drive shaft is connected and fixed to the middle position of the active rotating seat.

4. The reversible fixing structure according to claim 3, characterized in that: The active rotary seat (110) is fixedly connected to the left side of the processing component (150), and the right side of the processing component (150) is provided with a driven rotary seat for connecting to the stabilizing rotary shaft. The active rotary seat (110) and the driven rotary seat have the same specifications.

5. The reversible fixing structure according to claim 4, characterized in that: The processing component (150) includes a clamping electric cylinder (15a), an inner support arm (15c), a side support arm (15d), and a hinge (15j). The clamping electric cylinder (15a) has a set of side support arms (15d) on its outer side for connecting and supporting the inner support arm (15c). There are two sets of side support arms (15d).

6. The reversible fixing structure according to claim 5, characterized in that: The left side support arm (15d) is provided with a connecting plate (15b) for connecting with the active rotating seat (110) at the middle position on the left side. The inner side of the middle position of the two sets of side support arms (15d) is provided with an inner support arm (15c) for connecting with mounting plate one (15e) and mounting plate two (15g). The front end of the inner support arm (15c) is provided with mounting plate one (15e) for connecting and fixing with the workpiece.

7. The reversible fixed structure according to claim 6, characterized in that: The inner support arm (15c) is provided with a second mounting plate (15g) for connecting and fixing with the workpiece at its rear end. The lower ends of the left and right sides of the first mounting plate (15e) are provided with a set of side support rods (15f) for supporting the first mounting plate (15e). The lower ends of the left and right sides of the second mounting plate (15g) are provided with a set of side support rods (15h) for supporting the second mounting plate (15g). The outer sides of the first mounting plate (15e) and the second mounting plate (15g) are connected and fixed to several sets of workpieces to be processed. Each set of side support arms (15d) has a set of movable chucks on the front and rear sides for clamping large workpieces. Each set of movable chucks is connected to a set of clamping electric cylinders (15a).