Movable double-station drilling and milling all-in-one machine

By utilizing the platform movement components and CNC control system of the mobile dual-station drilling and milling machine, the simultaneous feeding and processing in small-batch, multi-variety processing is achieved, solving the problem of equipment stagnation, improving production efficiency, and reducing workload.

CN224088408UActive Publication Date: 2026-04-07WUJIANG GAORUI GARDEN METALWORK CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-07
Publication Date
2026-04-07

AI Technical Summary

Technical Problem

In existing technologies, frequent changes of parts and raw materials during small-batch, multi-variety processing cause equipment downtime and severely reduce production efficiency.

Method used

Design a mobile dual-station drilling and milling machine that uses a platform moving component to push a multi-hole platform plate component to achieve simultaneous feeding and processing, and integrates a CNC control system for intelligent control.

Benefits of technology

It improved production efficiency, reduced the workload of staff, and achieved a simultaneous improvement in processing accuracy and efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a movable double-station drilling and milling all-in-one machine. The machining device comprises a machining frame, a machining part arranged on the machining frame, a porous platform plate assembly arranged on the machining frame, a machining moving assembly for driving the machining part to move on the machining frame and a platform plate moving assembly matched with the porous platform plate assembly. The porous platform plate assembly is pushed through the platform moving assembly, feeding and machining are conducted synchronously, and the purposes of improving the production efficiency and reducing the working intensity of workers are achieved.
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Description

Technical Field

[0001] This utility model relates to the production and application of drilling and milling integrated machines, specifically to a mobile dual-station drilling and milling integrated machine designed for the needs of small-batch, multi-variety production in factories. Background Technology

[0002] In existing technologies, the processing of small batches and multiple varieties requires frequent replacement of parts and raw materials. During the replacement process, the processing equipment is in a standstill, which seriously reduces production efficiency.

[0003] Improving production efficiency is a pressing technical challenge that needs to be addressed at present.

[0004] The information disclosed in this background section is intended only to enhance the understanding of the overall background technology of this utility model, and should not be construed as an admission or in any way implying that the information constitutes prior art known to those skilled in the art. Summary of the Invention

[0005] To address the aforementioned technical problems, this utility model proposes a mobile dual-station drilling and milling integrated machine to improve production efficiency and reduce the workload of workers.

[0006] To achieve the above objectives, the technical solution of this utility model is as follows:

[0007] A mobile dual-station drilling and milling machine includes a processing frame, a workpiece disposed on the processing frame, a multi-hole platform plate assembly disposed on the processing frame, a processing moving assembly for driving the workpiece to move on the processing frame, and a platform plate moving assembly that cooperates with the multi-hole platform plate assembly.

[0008] The processing rack is a rectangular frame structure with a hollow interior.

[0009] The porous platform plate assembly includes a pair of long rods and two porous platform plates disposed on the long rods;

[0010] The processing moving assembly includes a processing crossbeam mounted on the processing frame, an inverted L-shaped mounting column on the processing crossbeam, a transmission rod on the mounting column, a mounting sleeve on the transmission rod, a guide rod on the mounting column, a height adjusting motor mounted on the mounting column, and a forward and backward moving unit that drives the processing crossbeam to move along a horizontal line perpendicular to the processing crossbeam. The height adjusting motor is connected to the top of the transmission rod via a transmission chain, and the height adjusting motor drives the transmission rod to rotate via the transmission chain. The mounting sleeve engages with a threaded groove on the transmission rod, and the outer wall of the mounting sleeve has a protrusion that engages with a guide groove on the guide rod. The mounting sleeve moves up and down under the cooperation of the height adjusting motor, the transmission rod, and the guide rod. The workpiece is mounted on the outer wall of the mounting sleeve. The straight line of the movement direction of the processing crossbeam under the action of the forward and backward moving unit is parallel to the straight line of the movement direction of the entire multi-hole platform plate unit below.

[0011] This invention uses a platform moving component to push a multi-hole platform plate component, enabling simultaneous feeding and processing, thereby improving production efficiency and reducing the workload of workers.

[0012] The platform plate moving assembly includes a horizontal bar disposed at the vertical center of the processing frame and a push cylinder disposed on the horizontal bar; the multi-hole platform plates are all mounted on the horizontal bar, and the multi-hole platform plates move back and forth under the action of the push cylinder.

[0013] It is also worth noting that the processing moving assembly further includes a first slide rail disposed on the mounting column to drive the back of the processing crossbeam, a slider disposed on the mounting column, a first slide rail disposed on the slider to cooperate with the first slide rail, and a left and right moving motor disposed on the mounting column to drive the slider to move. The left and right moving motor drives the slider to move along the first slide rail, and the movement of the slider causes the mounting column to move together.

[0014] It is further worth noting that the forward and backward moving unit includes an inverted L-shaped mounting rod disposed at the end of the mounting beam, a forward and backward moving motor disposed on the vertical part of the mounting rod, a second slide rail disposed at the bottom of the horizontal part of the mounting rod, a second slide rail disposed on the processing frame, and a rack disposed on the inner side of the mounting groove; the second slide rail cooperates with the protrusion on the second slide rail; the rack is disposed opposite to the vertical part of the mounting rod, and the serrations of the rack are disposed downward, and the forward and backward moving motor meshes with the rack.

[0015] It is further worth noting that the platform plate moving assembly also includes a third slide rail disposed on the processing frame, a third slide rail disposed below the long rod, and a stabilizing connecting rod disposed at the end of the long rod; the third slide rail cooperates with the slide groove on the third slide rail; and the head end of the pushing cylinder is connected to the stabilizing connecting rod.

[0016] 1. This utility model uses a platform moving component to push a multi-hole platform plate component, thereby achieving simultaneous feeding and processing, which improves production efficiency and reduces the workload of workers. Attached Figure Description

[0017] To more clearly illustrate the technical solutions in the embodiments of this utility model or the prior art, the accompanying drawings used in the description of the embodiments or the prior art will be briefly introduced below.

[0018] Figure 1 This is a front view schematic diagram of a mobile dual-station drilling and milling integrated machine disclosed in an embodiment of the present utility model;

[0019] Figure 2 This is a side view schematic diagram of a mobile dual-station drilling and milling machine disclosed in an embodiment of the present utility model;

[0020] Figure 3 This is a top view schematic diagram of a mobile dual-station drilling and milling integrated machine disclosed in an embodiment of the present utility model;

[0021] The numbers and letters in the diagram represent the names of the corresponding components:

[0022] 1. Machining frame 2. Machining parts 3. 1. Long rod 3. 2. Perforated platform plate 4. 1. Machining beam 4. 2. Mounting column

[0023] 43. Transmission rod 44. Mounting bushing 45. Guide rod 46. Height adjustment motor 47. Mounting rod

[0024] 472. Forward and backward moving motor; 473. Second slide rail; 474. Second slide path; 475. Rack and pinion; 48. First slide path.

[0025] 49. Slider 410. First slide rail 411. Left / right moving motor 412. Transmission chain 51. Horizontal bar

[0026] 52. Push cylinder 53. Third slide rail 54. Third slide rail 55. Stabilizer linkage Detailed Implementation

[0027] The technical solutions of the present invention will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present invention.

[0028] This utility model provides a mobile dual-station drilling and milling integrated machine. Its working principle is to use the platform moving component to push the multi-hole platform plate component to realize the synchronous feeding and processing, thereby improving production efficiency and reducing the workload of workers.

[0029] The present invention will be further described in detail below with reference to embodiments and specific implementation methods.

[0030] like Figures 1-3 As shown, a mobile dual-station drilling and milling machine includes a processing frame 1, a workpiece 2 disposed on the processing frame, a multi-hole platform plate assembly disposed on the processing frame, a processing moving assembly for driving the workpiece to move on the processing frame, and a platform plate moving assembly that cooperates with the multi-hole platform plate assembly.

[0031] The processing rack is a rectangular frame structure with a hollow interior.

[0032] The porous platform plate assembly includes a pair of long rods 31 and two porous platform plates 32 disposed on the long rods;

[0033] The processing moving assembly includes a processing crossbeam 41 mounted on the processing frame, an inverted L-shaped mounting column 42 mounted on the processing crossbeam, a transmission rod 43 mounted on the mounting column, a mounting bushing 44 mounted on the transmission rod, a guide rod 45 mounted on the mounting column, a height adjusting motor 46 mounted on the mounting column, a forward and backward moving unit that drives the processing crossbeam to move along a horizontal vertical line perpendicular to the processing crossbeam, a first slide rail 48 mounted on the mounting column that drives the back of the processing crossbeam, a slider 49 mounted on the mounting column, a first slide rail 410 mounted on the slider that cooperates with the first slide rail, and a left and right moving motor 411 mounted on the mounting column that drives the slider to move. The height-adjusting motor is connected to the top of the transmission rod via a transmission chain 412. The height-adjusting motor drives the transmission rod to rotate via the transmission chain. The mounting bushing engages with the threaded groove on the transmission rod, and the outer wall of the mounting bushing has a protrusion that engages with the guide groove on the guide rod. The mounting bushing moves up and down with the cooperation of the height-adjusting motor, the transmission rod, and the guide rod. The workpiece is mounted on the outer wall of the mounting bushing. The direction of movement of the processing beam under the action of the front-to-back moving unit is parallel to the direction of movement of the entire perforated platform plate unit below. The left-to-right moving motor drives the slider to move along the first slide rail, and the movement of the slider moves the mounting column along with it.

[0034] The forward and backward moving unit includes an inverted L-shaped mounting rod 471 disposed at the end of the mounting beam, a forward and backward moving motor 472 disposed on the vertical part of the mounting rod, a second slide rail 473 disposed at the bottom of the horizontal part of the mounting rod, a second slide rail 474 disposed on the processing frame, and a rack 475 disposed on the inner side of the mounting groove; the second slide rail engages with the protrusion on the second slide rail; the rack is disposed opposite to the vertical part of the mounting rod, and the serrations of the rack are disposed downward, and the forward and backward moving motor meshes with the rack.

[0035] The platform plate moving assembly includes a horizontal rod 51 vertically positioned at the center of the processing frame, a push cylinder 52 mounted on the horizontal rod, a third slide rail 53 mounted on the processing frame, a third slide rail 54 positioned below the long rod, and a stabilizing connecting rod 55 positioned at the end of the long rod. The perforated platform plates are all mounted on the horizontal rod, and the perforated platform plates move back and forth under the action of the push cylinder. The third slide rail engages with a groove on the third slide rail; the head end of the push cylinder is connected to the stabilizing connecting rod.

[0036] The specific steps for using this utility model are as follows: For example Figure 1 and Figure 2 As shown, in actual use, the long rod 31 moves back and forth under the action of the pushing cylinder 52, the third slide rail 53, the third slide rail 54 and the stabilizing connecting rod, thereby realizing the movement of the two multi-hole platform plates 32, so that one of them is always out of the processing frame for processing.

[0037] Meanwhile, the presence of mounting column 42, transmission rod 43, mounting bushing 44, guide rod 45, height adjustment motor 46, and transmission chain 412 enables the vertical adjustment of the workpiece; the workpiece moves left and right under the action of the first slide rail 48, slider 49, first slide rail 410, and left and right movement motor 411; and the workpiece moves forward and backward under the left and right movement of the forward and backward movement motor 472, second slide rail 473, second slide rail 474, and rack 475, thus ensuring that workpieces at any position on the multi-hole platform plate can be processed, and also reducing the placement requirements of the workpiece.

[0038] To further improve processing accuracy, it can be integrated with a CNC control system for intelligent control, making product placement and fixing convenient and quick. The computer-programmed files can be opened directly for operation, eliminating the hassle of manually drilling holes and finding tooling. Then, by using the reciprocating movement of the cylinders underneath, the machine can work on one side while the manual placement is done on the other, achieving both speed and accuracy.

[0039] Through the above methods, the mobile dual-station drilling and milling integrated machine provided by this utility model can realize the simultaneous feeding and processing by pushing the multi-hole platform plate assembly through the platform moving component, thereby improving production efficiency and reducing the workload of workers.

[0040] The above description is only a preferred embodiment of a mobile dual-station drilling and milling machine disclosed in this utility model. It should be noted that for those skilled in the art, several modifications and improvements can be made without departing from the inventive concept of this utility model, and these all fall within the protection scope of this utility model.

Claims

1. A mobile dual-station drilling and milling integrated machine, characterized in that, It includes a processing frame, a workpiece disposed on the processing frame, a perforated platform plate assembly disposed on the processing frame, a processing moving assembly for driving the workpiece to move on the processing frame, and a platform plate moving assembly that cooperates with the perforated platform plate assembly; The processing rack is a rectangular frame structure with a hollow interior. The porous platform plate assembly includes a pair of long rods and two porous platform plates disposed on the long rods; The processing moving assembly includes a processing beam mounted on the processing frame, an inverted L-shaped mounting column on the processing beam, a transmission rod on the mounting column, a mounting sleeve on the transmission rod, a guide rod on the mounting column, a height adjusting motor mounted on the mounting column, and a forward and backward moving unit that drives the processing beam to move along a horizontal line perpendicular to the processing beam. The height adjusting motor is connected to the top of the transmission rod via a transmission chain, and the height adjusting motor drives the transmission rod to rotate via the transmission chain. The mounting sleeve engages with a threaded groove on the transmission rod, and the outer wall of the mounting sleeve has a protrusion that engages with a guide groove on the guide rod. The mounting sleeve moves up and down under the cooperation of the height adjusting motor, the transmission rod, and the guide rod. The workpiece is mounted on the outer wall of the mounting sleeve. The straight line of the movement direction of the processing beam under the action of the forward and backward moving unit is parallel to the straight line of the movement direction of the entire multi-hole platform plate unit below. The platform plate moving assembly includes a horizontal bar disposed at the vertical center of the processing frame and a push cylinder disposed on the horizontal bar; the multi-hole platform plates are all mounted on the horizontal bar, and the multi-hole platform plates move back and forth under the action of the push cylinder.

2. The mobile dual-station drilling and milling integrated machine according to claim 1, characterized in that, The processing moving assembly further includes a first slide rail disposed on the mounting column to drive the back of the processing crossbeam, a slider disposed on the mounting column, a first slide rail disposed on the slider to cooperate with the first slide rail, and a left and right moving motor disposed on the mounting column to drive the slider to move. The left and right moving motor drives the slider to move along the first slide rail, and the movement of the slider causes the mounting column to move together.

3. A mobile dual-station drilling and milling integrated machine according to claim 1, characterized in that, The forward and backward moving unit includes an inverted L-shaped mounting rod disposed at the end of the mounting beam, a forward and backward moving motor disposed on the vertical part of the mounting rod, a second slide rail disposed at the bottom of the horizontal part of the mounting rod, a second slide rail disposed on the processing frame, and a rack disposed on the inner side of the mounting groove; the second slide rail cooperates with the protrusion on the second slide rail; the rack is disposed opposite to the vertical part of the mounting rod, and the serrations of the rack are disposed downward, and the forward and backward moving motor meshes with the rack.

4. A mobile dual-station drilling and milling integrated machine according to claim 1, characterized in that, The platform plate moving assembly also includes a third slide rail disposed on the processing frame, a third slide rail disposed below the long rod, and a stabilizing connecting rod disposed at the end of the long rod; the third slide rail cooperates with the slide groove on the third slide rail; the head end of the pushing cylinder is connected to the stabilizing connecting rod.