Stable base of precision manufacturing and machining center

By designing a combination of a stable base body, a fixed frame, and a clamping frame, and utilizing support rods, screws, limit blocks, and gear and rack transmission, the problems of single equipment installation position and insufficient stability in existing technologies are solved, achieving stable support and precise clamping of the processing equipment and improving processing accuracy.

CN223684855UActive Publication Date: 2025-12-19HUBEI JINGJULI PRECISION COMPONENTS CO LTD
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Patent Information

Application Number
CN202423136996.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-19
Publication Date
2025-12-19
Estimated Expiration
2034-12-19

AI Technical Summary

Technical Problem

In the existing technology, the installation position of the processing equipment is singular, which cannot be adjusted according to the actual size of the machine bed, thus affecting the stability of the processing. Furthermore, the single installation position cannot be adjusted according to the actual size of the punch press, thus affecting the stability of subsequent processing.

Method used

A stable base was designed, comprising a stable base body, a fixing frame, a clamping frame, and a drive mechanism. Through a combination of support rods, screws, limit blocks, gear rack transmission, and lead screws, the height, position, and clamping of the processing equipment can be flexibly adjusted to ensure stable support and installation.

Benefits of technology

It effectively avoids loosening and displacement caused by processing vibration, and realizes flexible adjustment and stable support according to equipment specifications, thereby improving processing accuracy and stability.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of machining equipment installation, in particular to a stable base of a precision manufacturing machining center. According to the technical scheme, the stable base comprises a stable base body, a fixing frame, a clamping frame and a third driving mechanism, and a supporting rod is welded to the bottom end face of the stable base body; a machining equipment body is placed on the top end face of the stable base body. A sliding groove plate is installed on the bottom end face of the inner wall of the stabilizing base body, and a rack plate is connected into the sliding groove plate in a sleeved mode. A gear is arranged on an output shaft of the third driving mechanism and is in meshing transmission with the rack plate. Connecting frames are welded to the two ends of the rack plate. A driving mechanism II is mounted on the side end surface of the connecting frame; a first driving mechanism is installed on the top end face of the fixing frame. And a limiting block is welded on the clamping frame. According to the utility model, processing equipment can be installed, stable supporting and limiting can be carried out after installation, and adjustment and fixation can be carried out according to the size of the processing equipment during limiting.
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Description

TECHNICAL FIELD

[0001] The utility model relates to processing equipment installation technical field, concretely is a stable base of precision manufacturing machining center. BACKGROUND

[0002] Punching part processing includes blanking, bending, drawing, forming, finishing and the like. The material of punching part processing is mainly hot-rolled or cold-rolled (mainly cold-rolled) metal plate strip material, such as carbon steel plate, alloy steel plate, spring steel plate, galvanized plate, tinned plate, stainless steel plate, copper and copper alloy plate, aluminum and aluminum alloy plate and the like.

[0003] The punching part can be precisely manufactured and processed by using a numerical control punch press, but in the processing, it is directly installed on the base for use, but in long-time use, the numerical control punch press will produce pressure and cause deviation to affect the processing precision, and the base installation position is single in installation limiting, cannot be adjusted according to the actual punch size to affect the stability of the later processing, thus it still needs to be improved. UTILITY MODEL CONTENTS

[0004] The utility model discloses a stable base of precision manufacturing machining center to solve the problem in the background art.

[0005] To achieve the above object, the utility model provides the following technical scheme: a stable base of precision manufacturing machining center, including stable base body, fixed frame, clamping frame and drive mechanism three,

[0006] The bottom end surface of the stable base body is welded with a supporting rod;

[0007] The top end surface of the stable base body is placed with a processing equipment body;

[0008] The inner wall bottom end surface of the stable base body is installed with a sliding groove plate, and the sliding groove plate is sleeved with a rack plate;

[0009] The output shaft of the drive mechanism three is provided with a gear, and the gear is engaged with the rack plate to drive;

[0010] Both ends of the rack plate are welded with a connecting frame;

[0011] The side end surface of the connecting frame is installed with a drive mechanism two, and the output shaft of the drive mechanism two is provided with a second screw rod;

[0012] The top end surface of the fixed frame is installed with a drive mechanism one, and the output shaft of the drive mechanism one is provided with a first screw rod;

[0013] The clamping frame is welded with a limiting block.

[0014] Preferably, a screw rod is installed in the support rod through screw thread, and a support block is welded to the bottom end face of the screw rod.

[0015] Preferably, four support rods are arranged, and the four support rods are arranged in a rectangular array relative to the stable base body.

[0016] Preferably, the mounting frame is installed on the driving mechanism three, and the bottom end face of the mounting frame is installed in the stable base body.

[0017] Preferably, the bottom end face of the mounting frame is welded with a guide block, the guide block is slidably sleeved in the connecting frame, and the guide block is installed on the screw rod two through screw thread.

[0018] Preferably, the limiting block is slidably sleeved in the mounting frame, and the limiting block is installed on the screw rod one through screw thread.

[0019] Preferably, the clamping frame limits the processing equipment body, and the inner wall of the clamping frame is attached with a silica gel pad.

[0020] Compared with the prior art, the beneficial effects of the utility model are as follows:

[0021] 1. The utility model discloses a stable base body is set up, when the personnel need to support the machining equipment body of precision manufacturing machining center stably, can place the machining equipment body in the stable base body inside. In the process of placing, personnel can rotate four screw rods respectively according to the flatness of the foundation. By adjusting the depth of screw rod into support rod, the height and position of stable base body can be adjusted, and the purpose of stable support is achieved. In addition, when supporting, in order to adjust the clamping according to the height of the machining equipment body, personnel can make the limiting block slide sleeve joint in the fixed frame, so as to realize the function of limiting and guiding. At the same time, the limiting block is installed on the screw rod one through the thread, so that personnel can start the driving mechanism one, drive the screw rod one to rotate. According to the rotating direction of the screw rod one, the clamping frame can move up and down, so as to realize the adjustment of the clamping height of the clamping frame, to meet the clamping installation demand of the clamping frame to the machining equipment body. In this way, after the clamping installation is completed, the loosening deviation caused by machining vibration can be effectively avoided.

[0022] 2. The utility model discloses a fixed frame and connecting frame are set up, when the personnel support the machining equipment body of precision manufacturing machining center stably, personnel can open driving mechanism three and drive the gear to rotate according to the specification of the machining equipment body, when the gear rotates, the rack plate can move back and forth in the sliding slot plate, when the rack plate moves back and forth, the fixed frame can be driven to move back and forth through the connecting frame, so that the clamping frame clamps on the machining equipment body, and at the same time of clamping, the limiting and guiding of the guiding block slide sleeve joint in the connecting frame, at the same time of limiting and guiding, the guiding block is installed on the screw rod two through the thread, so that personnel can open driving mechanism two and drive the screw rod two to rotate, according to the rotating direction of the screw rod two, the guiding block and the fixed frame can move left and right, so as to adjust the position of the fixed frame and the clamping frame, and then when clamping the machining equipment body, the actual specification can be adjusted and stably supported and installed. When the personnel need to support the machining equipment body of precision manufacturing machining center stably, if corresponding adjustment is needed according to the specification of the machining equipment body, personnel can start driving mechanism three, make the gear start to rotate. In the process of gear rotation, it will be meshed with the rack plate, so that the rack plate can move back and forth in the sliding slot plate. When the rack plate moves back and forth, it will drive the fixed frame to move back and forth through the connecting frame, so that the clamping frame can clamp the machining equipment body. In the process of clamping, the guiding block will slide sleeve joint in the connecting frame, play the role of limiting and guiding. At the same time, the guiding block is installed on the screw rod two through the thread, so that personnel can start driving mechanism two, drive the screw rod two to rotate. According to the rotating direction of the screw rod two, the guiding block and the fixed frame can move left and right, so as to realize the adjustment of the position of the fixed frame and the clamping frame. In this way, when clamping the machining equipment body, the actual specification can be adjusted flexibly, to ensure stable support and installation. Attached Figure Description

[0023] Figure 1 This is a schematic diagram of the main structure of this utility model;

[0024] Figure 2 This is a schematic diagram of the installation structure of the processing equipment body of this utility model;

[0025] Figure 3 This is a cross-sectional view of the stable base body of this utility model;

[0026] Figure 4 This is a schematic diagram of the unfolded structure of the fixing frame and connecting frame of this utility model.

[0027] In the diagram: 1. Support block; 2. Stabilizing base body; 3. Processing equipment body; 4. Screw; 5. Support rod; 6. Drive mechanism one; 7. Fixing frame; 8. Clamping frame; 9. Guide block; 10. Drive mechanism two; 11. Connecting frame; 12. Drive mechanism three; 13. Rack plate; 14. Slide plate; 15. Gear; 16. Mounting frame; 17. Lead screw two; 18. Lead screw one; 19. Limit block. Detailed Implementation

[0028] 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.

[0029] Example 1

[0030] like Figures 1-4 As shown, the present invention proposes a stabilizing base for a precision manufacturing machining center, comprising a stabilizing base body 2, a fixing frame 7, a clamping frame 8, and a driving mechanism 12.

[0031] A support rod 5 is welded to the bottom end face of the stable base body 2;

[0032] The processing equipment body 3 is placed on the top surface of the stable base body 2;

[0033] A sliding groove plate 14 is installed on the bottom surface of the inner wall of the stable base body 2, and a toothed plate 13 is sleeved inside the sliding groove plate 14.

[0034] A gear 15 is provided on the output shaft of the drive mechanism 3 12, and the gear 15 meshes with the rack plate 13 for transmission;

[0035] Both ends of the rack plate 13 are welded with connecting brackets 11;

[0036] A drive mechanism 2 10 is mounted on the side end face of the connecting frame 11, and a lead screw 2 17 is provided on the output shaft of the drive mechanism 2 10.

[0037] A drive mechanism 6 is mounted on the top surface of the fixed frame 7, and a lead screw 18 is provided on the output shaft of the drive mechanism 6.

[0038] Limiting blocks 19 are welded onto the clamping frame 8.

[0039] A screw rod 4 is threadedly installed inside the support rod 5, and a support block 1 is welded to the bottom end face of the screw rod 4. The support block 1 allows personnel to support and install the stable base body 2 by means of the support block 1 after the screw rod 4 is installed inside the support rod 5.

[0040] There are four support rods 5 in total, and the four support rods 5 are arranged in a rectangular array relative to the stable base body 2. The four support rods 5 can be used to install four screws 4.

[0041] The limiting block 19 is slidably sleeved in the fixed frame 7, and the limiting block 19 is threadedly installed on the lead screw 18. The limiting block 19 is slidably sleeved in the fixed frame 7 for limiting and guiding. At the same time as limiting and guiding, the limiting block 19 is threadedly installed on the lead screw 18, so that the personnel can open the drive mechanism 6 to drive the lead screw 18 to rotate. According to the rotation direction of the lead screw 18, the clamping frame 8 can be moved up and down.

[0042] Based on Example 1: When personnel provide stable support for the machining equipment body 3 of the precision manufacturing machining center, they can place the machining equipment body 3 inside the stable base body 2. During placement, personnel can rotate the four screws 4 according to the flatness of the foundation, and adjust the height and position of the stable base body 2 according to the depth of the screws 4 entering the support rod 5, thereby providing stable support. When adjusting the clamping according to the height of the machining equipment body 3 during support, personnel can use the limiting block 19 to slide and fit inside the fixed frame 7 for limiting and guiding. At the same time as limiting and guiding, the limiting block 19 is threaded onto the lead screw 18, allowing personnel to open the drive mechanism 6 to drive the lead screw 18 to rotate. According to the rotation direction of the lead screw 18, the clamping frame 8 can be moved up and down, thereby adjusting the clamping height of the clamping frame 8, thus satisfying the clamping and installation of the machining equipment body 3 by the clamping frame 8, and preventing loosening and displacement caused by machining vibration after clamping and installation.

[0043] Example 2

[0044] like Figures 1-4 As shown, the present invention proposes a stable base for a precision manufacturing machining center. Compared to Embodiment 1, this embodiment further includes: a stable base body 2, a fixing frame 7, a clamping frame 8, and a driving mechanism 12.

[0045] The bottom end face of the stable base body 2 is welded with a supporting rod 5;

[0046] The top end face of the stable base body 2 is placed with a processing equipment body 3;

[0047] The inner wall bottom end face of the stable base body 2 is installed with a sliding groove plate 14, and the sliding groove plate 14 is sleeved with a rack plate 13;

[0048] The output shaft of the driving mechanism three 12 is provided with a gear 15, and the gear 15 is engaged with the rack plate 13 for transmission;

[0049] Both ends of the rack plate 13 are welded with a connecting frame 11;

[0050] The side end face of the connecting frame 11 is installed with a driving mechanism two 10, and the output shaft of the driving mechanism two 10 is provided with a lead screw two 17;

[0051] The top end face of the fixed frame 7 is installed with a driving mechanism one 6, and the output shaft of the driving mechanism one 6 is provided with a lead screw one 18;

[0052] The clamping frame 8 is welded with a limiting block 19.

[0053] And as known to those skilled in the art, the driving mechanism one 6, the driving mechanism two 10 and the driving mechanism three 12 are provided as usual, the driving mechanism one 6, the driving mechanism two 10 and the driving mechanism three 12 can be powered by external wires, and the control switch can be used for control when powered, and the control switch can be installed on the front end face of the stable base body 2 for use, which belongs to conventional means or common knowledge, and will not be described here. The driving mechanism one 6, the driving mechanism two 10 and the driving mechanism three 12 respectively drive the lead screw one 18, the lead screw two 17 and the gear 15 to rotate.

[0054] The driving mechanism three 12 is installed with a mounting frame 16, and the bottom end face of the mounting frame 16 is installed in the stable base body 2, and the driving mechanism three 12 can be installed in the stable base body 2 through the mounting frame 16 for use.

[0055] The bottom end face of the fixed frame 7 is welded with a guide block 9, the guide block 9 is slidably sleeved in the connecting frame 11, and the guide block 9 is threaded on the lead screw two 17, and the guide block 9 is limited and guided by being slidably sleeved in the connecting frame 11, and at the same time of limiting and guiding, the guide block 9 is threaded on the lead screw two 17, so that the person can open the driving mechanism two 10 to drive the lead screw two 17 to rotate, and according to the rotating direction of the lead screw two 17, the guide block 9 and the fixed frame 7 can be moved left and right.

[0056] The clamping frame 8 limits the machining equipment body 3, and a silica gel pad is attached to the inner wall of the clamping frame 8. The silica gel pad can clamp and limit the machining equipment body 3, and prevent the machining equipment body 3 from being damaged by slipping and direct extrusion.

[0057] Based on example 2: When the personnel stably support the machining equipment body 3 of the precision manufacturing machining center, the personnel can open the driving mechanism three 12 to drive the gear 15 to rotate. When the gear 15 rotates, the rack plate 13 can move forward and backward in the sliding groove plate 14. When the rack plate 13 moves forward and backward, the connecting frame 11 can drive the fixed frame 7 to move forward and backward, so that the clamping frame 8 clamps the machining equipment body 3. At the same time, the guiding block 9 is sleeved in the connecting frame 11 to limit and guide. At the same time of limiting and guiding, the guiding block 9 is screwed on the screw rod two 17. The personnel can open the driving mechanism two 10 to drive the screw rod two 17 to rotate. According to the rotating direction of the screw rod two 17, the guiding block 9 and the fixed frame 7 can move left and right, so as to adjust the position of the fixed frame 7 and the clamping frame 8. When clamping the machining equipment body 3, the actual specification can be adjusted and stably supported and installed.

[0058] It is obvious for those skilled in the art that the present application is not limited to the details of the above exemplary embodiments, and can be implemented in other specific forms without departing from the spirit or essential characteristics of the present application. Therefore, the embodiments should be regarded as exemplary and non-limiting, and the scope of the present application is defined by the appended claims rather than the above description, and all changes falling within the meaning and scope of the equivalent elements of the claims are intended to be included in the present application. Any reference signs in the claims should not be regarded as limiting the claims.

Claims

1. A stable base of a precision manufacturing machining center, comprising a stable base body (2), a fixed frame (7), a clamping frame (8) and a driving mechanism three (12), characterized in that: the bottom end face of the stable base body (2) is welded with a supporting rod (5); the top end face of the stable base body (2) is placed with a machining equipment body (3); the inner wall bottom end face of the stable base body (2) is installed with a sliding groove plate (14), and the sliding groove plate (14) is sleeved with a rack plate (13); the output shaft of the driving mechanism three (12) is provided with a gear (15), and the gear (15) is engaged with the rack plate (13) for transmission; both ends of the rack plate (13) are welded with a connecting frame (11); the side end face of the connecting frame (11) is installed with a driving mechanism two (10), and the output shaft of the driving mechanism two (10) is provided with a screw rod two (17); the top end face of the fixed frame (7) is installed with a driving mechanism one (6), and the output shaft of the driving mechanism one (6) is provided with a screw rod one (18); the clamping frame (8) is welded with a limiting block (19).

2. A stable base for a precision manufacturing machining center according to claim 1, characterized in that: the supporting rod (5) is internally installed with a screw rod (4) through threads, and the bottom end face of the screw rod (4) is welded with a supporting block (1).

3. A stable base for a precision manufacturing machining center according to claim 1 or 2, characterized in that: The supporting rod (5) is provided with four, and the four supporting rods (5) are distributed in a rectangular array relative to the stable base body (2).

4. The stable base for a precision manufacturing machining center of claim 1, wherein: The driving mechanism three (12) is installed with a mounting frame (16), and the bottom end face of the mounting frame (16) is installed in the stable base body (2).

5. The stable base for a precision manufacturing machining center of claim 1, wherein: The bottom end face of the fixed frame (7) is welded with a guide block (9), the guide block (9) is slidably sleeved in the connecting frame (11), and the guide block (9) is installed on the screw rod two (17) through threads.

6. A stable base for a precision manufacturing machining center as defined in claim 1, wherein: The limiting block (19) is slidably sleeved in the fixed frame (7), and the limiting block (19) is installed on the screw rod one (18) through threads.

7. A stable base for a precision manufacturing machining center as defined in claim 1, wherein: The clamping frame (8) limits the machining equipment body (3), and the inner wall of the clamping frame (8) is installed with a silica gel pad.