Machining center for carbon fiber square tube
By combining a base assembly with a specific structure, a transfer platform, a loading plate, and processing components, the structure of the carbon fiber square tube processing center is simplified, costs are reduced, and processing efficiency is improved.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-18
- Publication Date
- 2026-03-24
AI Technical Summary
Existing machining centers are complex, costly, and inefficient when processing carbon fiber square tubes, making them unsuitable for efficient adaptation and operation.
The base assembly, transfer platform, loading plate, side support assembly, and processing assembly with a specific structure are used to install multiple carbon fiber square tubes for processing through mounting slots, which simplifies the structure and improves efficiency.
This reduced the cost of the machining center and improved the processing efficiency of multiple carbon fiber square tubes.
Smart Images

Figure CN224027788U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to the field of machining equipment, and relates to a machining center, in particular to a machining center for carbon fiber square tubes. BACKGROUND
[0002] A machining center is a highly automated multi-functional numerical control machine tool developed from a numerical control milling machine, and is suitable for machining complex parts. The machining center integrates multiple machining functions, such as milling, drilling, boring, tapping, etc., can accurately control the relative movement between the tool and the workpiece, and realize the automation of multiple machining processes. The types of machining centers are various, from common vertical and horizontal equipment, to advanced turning and milling combined equipment, to high-speed and gantry equipment suitable for specific materials and processes, aiming to meet various complex and different machining requirements. The spindle of the vertical machining center is perpendicular to the workbench, the structure is compact, the installation occupies small area, and it is mainly suitable for machining plate, disc, mold and small shell complex parts.
[0003] The Chinese utility model patent with the application number 202410903185.0 discloses a numerical control machining center, adopts a double-gantry structure layout, the cradle rotary table can be moved to the front and rear tool machining stations and laser machining stations along the X-axis, and the milling and laser machining can be completed at one time, thereby reducing the clamping error caused by disassembling the workpiece, and simultaneously having the advantages of high cutting efficiency and high machining precision, mainly used for machining and laser machining of various materials, realizing cutting, drilling, engraving and milling of three-dimensional complex surfaces and various machining processes. The machining center with such structure is complex in structure and high in cost, and when used for machining of carbon fiber square tubes, cannot be adapted and work efficiently. UTILITY MODEL CONTENT
[0004] The utility model aims at overcoming the defects of the prior art and provides a machining center for carbon fiber square tubes.
[0005] To achieve the above-mentioned purpose, the utility model adopts the technical scheme of a machining center for carbon fiber square tubes, which comprises:
[0006] a base assembly;
[0007] a material moving platform, which is slidably installed on the base assembly through a first moving assembly;
[0008] a material loading plate, which is slidably installed on the material moving platform through a second moving assembly, and has a plurality of parallel and spaced installation grooves on its upper surface; the sliding direction of the material loading plate is perpendicular to the sliding direction of the material moving platform;
[0009] a side support assembly, which is installed on the base assembly and located at one side of the material moving platform;
[0010] A machining action assembly is mounted on the side support assembly in a lifting manner and corresponds to the carrier plate, and is used for machining the plurality of carbon fiber square tubes carried on the carrier plate.
[0011] Optimally, the base assembly comprises a base body, a plurality of side mounting seats formed on the side of the base body, and a plurality of supporting blocks mounted on each of the side mounting seats.
[0012] Further, the first moving assembly comprises two slide rail bases mounted on the base body and arranged at intervals, a first slide rail mounted on each of the slide rail bases, a first sliding block slidably mounted on the first slide rail, a limiting stopper mounted on the outer end of each of the slide rail bases, a first screw rod mounting seat mounted on the base body and located between the two slide rail bases, a first adapter plate mounted on the first sliding block and connected with the material moving platform, a first screw rod mounted on the first screw rod mounting seat and matched with the first adapter plate or the material moving platform, and a first motor mounted on the end of the first screw rod for driving the rotation thereof.
[0013] Further, the side support assembly comprises a side bottom plate mounted on the base body and located at one side of the material moving platform, a side support column mounted on the side bottom plate, and a plurality of second slide rails mounted on the side of the side support column and arranged vertically, and the machining action assembly is slidably mounted on the plurality of second slide rails.
[0014] Further, the side support assembly further comprises a second sliding block slidably mounted on each of the second slide rails, a second screw rod mounting seat mounted on the side of the side support column and located between the second slide rails, a second screw rod mounted on the second screw rod mounting seat and matched with the machining action assembly, and a second motor mounted on the end of the second screw rod.
[0015] Further, the machining action assembly comprises an action mounting head mounted on the second sliding block, a tool seat mounted on the action mounting head, a tool bit detachably mounted on the tool seat, a pressure boosting cylinder mounting rack mounted on the action mounting head, and a tool hitting cylinder mounted on the pressure boosting cylinder mounting rack and matched with the tool bit.
[0016] Due to the application of the above technical solution, this utility model has the following advantages compared with the prior art: The carbon fiber square tube machining center of this utility model, by adopting a base assembly with a specific structure, a material transfer platform, a material carrier plate, a side support assembly, and a processing action assembly, can install multiple carbon fiber square tubes on the material carrier plate through the mounting groove for corresponding processing. This not only greatly simplifies the structure of the machining center and reduces costs, but also enables the processing of multiple carbon fiber square tubes with high processing efficiency. Attached Figure Description
[0017] Figure 1 This is a schematic diagram of the structure of the machining center for carbon fiber square tubes according to this utility model. Detailed Implementation
[0018] The present invention will be further described below with reference to the embodiments shown in the accompanying drawings.
[0019] like Figure 1 The carbon fiber square tube machining center 5 shown mainly includes a base assembly 51, a first moving assembly 52, a material transfer platform 53, a material carrier plate 54, a second moving assembly 55, a side support assembly 56, and a machining action assembly 57.
[0020] The base assembly 51 includes a base 511, a plurality of side mounting seats 512 formed on the side of the base 511 (the forming method is usually conventional fixing, such as welding or integral molding), and a plurality of support blocks 513 installed on each side mounting seat 512. At this time, the number of support blocks 513 is the same as the number of side mounting seats 512, so that the support blocks 513 correspond one-to-one with the side mounting seats 512, thereby using the multiple support blocks 513 to support the base 511 on the ground. The base 511 can adopt existing conventional structures, but the following structure is preferred: The base 511 includes a hollow support frame (the support frame is composed of four support side plates assembled end to end, usually by welding or integral molding; each support side plate has multiple weight-reducing holes), a base support plate fixed to the upper end of the support frame (the fixing method is usually welding, the same below), a hollow plate fixed to the lower end of the support frame, and multiple vertical support plates fixed between the base support plate and the hollow plate and arranged vertically. The base 511 with this structure can greatly reduce weight and cost while ensuring service life, and make it easy for users to move it flexibly according to site needs.
[0021] The material moving platform 53 is slidably mounted on the base assembly 51 by the first moving assembly 52, and the sliding direction is the length direction of the base 511. In the embodiment, the first moving assembly 52 can adopt the conventional structure, but more preferably the following structure: the first moving assembly 52 comprises two slide rail bases 521 mounted on the base 511 and spaced apart (i.e. the extension direction of the slide rail base 521 is parallel to the length direction of the base 511), a first slide rail 522 mounted on each slide rail base 521, a first sliding block 524 slidably mounted on the first slide rail 522 (i.e. the first sliding block 524 is two groups, so that one group of first sliding blocks 524 is mounted on one first slide rail 522; one group has one or more first sliding blocks 524, and the specific number is selected according to actual needs), a limiting stopper 523 mounted on the outer end of each slide rail base 521 (the limiting stopper 523 also blocks the outer end of the first slide rail 522 to avoid the first sliding block 524 from falling off), a first screw rod mounting seat 526 mounted on the base 511 and located between the two slide rail bases 521 (the first screw rod mounting seat 526 is usually two and becomes a pair, spaced apart and opposite), a first adapter plate 525 mounted on the first sliding block 524 and connected with the material moving platform 53 (the first adapter plate 525 is usually two, which are mounted on the bottom of the first adapter plate 525 and connected with the plurality of first sliding blocks 524), a first screw rod 527 mounted on the first screw rod mounting seat 526 and matched with the first adapter plate 525 or the material moving platform 53 (the first screw rod 527 penetrates the first adapter plate 525 or the material moving platform 53 and is connected therewith by threads, so that when the first screw rod 527 rotates, the first adapter plate 525 or the material moving platform 53 can slide on the first slide rail 522 through the first sliding block 524), and a first motor mounted on the end of the first screw rod 527 for driving the rotation thereof.
[0022] The carrier plate 54 is slidably mounted on the material moving table 53 by a second moving assembly 55. The upper surface of the carrier plate 54 is provided with a plurality of parallel and spaced mounting grooves 541. A plurality of carbon fiber square tubes can be mounted on the carrier plate 54 by using conventional mounting aids (the extending direction of the carbon fiber square tubes is perpendicular to the extending direction of the mounting grooves 541). The sliding direction of the carrier plate 54 is perpendicular to the sliding direction of the material moving table 53. The second moving assembly 55 includes two third sliding rails 551 (perpendicular to the first sliding rails 522) mounted on the material moving table 53 and spaced apart, a plurality of third sliding blocks 552 slidably mounted on each third sliding rail 551, a third screw mounting seat 553 mounted on the material moving table 53 and located between the two third sliding rails 551 (the third screw mounting seat 553 is also a pair of screws spaced apart and opposite), a third screw 554 mounted on the third screw mounting seat 553 and matched with the carrier plate 54 (for example, the bottom surface of the carrier plate 54 is provided with a protrusion, and the third screw 554 penetrates the protrusion and is screwed with it), and a third motor 555 connected to the end of the third screw 554 for driving the rotation of the third screw 554.
[0023] The side support assembly 56 is mounted on the base assembly 51 and located at one side of the material moving table 53. The side support assembly 56 includes a side bottom plate 561 mounted on the base 511 and located at one side of the material moving table 53, a side support column 562 mounted on the side bottom plate 561, and a plurality of second sliding rails 563 vertically arranged on the side of the side support column 562. The machining action assembly 57 is slidably mounted on the plurality of second sliding rails 563. Here, the side support column 562 is not directly connected with the base 511 by additionally providing the side bottom plate 561, so that the wear is mainly concentrated on the side bottom plate 561, and the side bottom plate 561 can be replaced during subsequent maintenance, which is very convenient. In the embodiment, the side support assembly 56 further includes a second sliding block 564 slidably mounted on each second sliding rail 563, a second screw mounting seat 565 mounted on the side of the side support column 562 and located between the second sliding rails 563, a second screw 566 mounted on the second screw mounting seat 565 and matched with the machining action assembly 57 (the second screw 566 is screwed with the machining action assembly 57), and a second motor 567 mounted on the end of the second screw 566.
[0024] The machining action assembly 57 is slidably mounted on the side support assembly 56 and corresponds to the carrier plate 54, and is used for machining the plurality of carbon fiber square tubes carried on the carrier plate 54. The machining action assembly 57 includes an action mounting head 571 mounted on the second sliding block 564, a tool holder 572 mounted on the action mounting head 571, a tool bit detachably mounted on the tool holder 572, a booster cylinder mounting bracket 573 mounted on the action mounting head 571, and a tool hitting cylinder 574 mounted on the booster cylinder mounting bracket 573 and matched with the tool bit.
[0025] By adopting the base assembly 51, the material moving platform 53, the material loading plate 54, the side support assembly 56 and the machining action assembly 57 and the like with specific structures, a plurality of carbon fiber square tubes can be installed on the material loading plate through the installation slots for corresponding machining, which not only greatly simplifies the structure of the machining center and reduces the cost, but also can process a plurality of carbon fiber square tubes with high machining efficiency.
[0026] The above examples are only for illustrating the technical concept and characteristics of the present application, and the purpose is to enable those skilled in the art to understand the content of the present application and to implement it, and it cannot limit the protection scope of the present application. Any equivalent changes or modifications made in accordance with the spirit and essence of the present application shall be covered within the protection scope of the present application.
Claims
1. A machining center for carbon fiber square tubes, characterized by, It includes: a base assembly (51); a material moving platform (53) slidably mounted on the base assembly (51) through a first moving assembly (52); a material carrying plate (54) slidably mounted on the material moving platform (53) through a second moving assembly (55), the upper surface of which is provided with a plurality of parallel and spaced installation grooves (541); the sliding direction of the material carrying plate (54) is perpendicular to the sliding direction of the material moving platform (53); a side support assembly (56) mounted on the base assembly (51) and located on one side of the material moving platform (53); a processing action assembly (57) mounted on the side support assembly (56) and corresponding to the material carrying plate (54) for processing a plurality of carbon fiber square tubes carried on the material carrying plate (54).
2. The machining center for carbon fiber square tubes according to claim 1, characterized in that: The base assembly (51) includes a base seat (511), a plurality of side mounting seats (512) formed on the side of the base seat (511), and a plurality of support blocks (513) mounted on each side mounting seat (512).
3. The machining center for carbon fiber square tubes according to claim 2, characterized in that: The first moving assembly (52) includes two slide rail bases (521) mounted on the base seat (511) and spaced apart, a first slide rail (522) mounted on each slide rail base (521), a first sliding block (524) slidably mounted on the first slide rail (522), a limiting stop block (523) mounted on the outer end of each slide rail base (521), a first screw rod mounting seat (526) mounted on the base seat (511) and located between the two slide rail bases (521), a first adapter plate (525) mounted on the first sliding block (524) and connected with the material moving platform (53), a first screw rod (527) mounted on the first screw rod mounting seat (526) and cooperating with the first adapter plate (525) or the material moving platform (53), and a first motor mounted on the end of the first screw rod (527) for driving the rotation thereof.
4. The machining center for carbon fiber square tubes according to claim 2, characterized in that: The side support assembly (56) includes a side bottom plate (561) mounted on the base seat (511) and located on one side of the material moving platform (53), a side support column (562) mounted on the side bottom plate (561), and a plurality of second slide rails (563) vertically arranged on the side of the side support column (562), and the processing action assembly (57) is slidably mounted on the plurality of second slide rails (563).
5. The machining center for square carbon fiber tubes according to claim 4, characterized in that: The side support assembly (56) further comprises a second sliding block (564) slidably mounted on each of the second sliding rails (563), a second screw mounting base (565) mounted on the side of the side support column (562) and between the second sliding rails (563), a second screw (566) mounted on the second screw mounting base (565) and matched with the machining action assembly (57), and a second motor (567) mounted on the end of the second screw (566).
6. The machining center for carbon fiber square tubes according to claim 5, characterized in that: The machining action assembly (57) comprises an action mounting head (571) mounted on the second sliding block (564), a tool seat (572) mounted on the action mounting head (571), a tool bit detachably mounted on the tool seat (572), a supercharged cylinder mounting bracket (573) mounted on the action mounting head (571), and a tool bit cylinder (574) mounted on the supercharged cylinder mounting bracket (573) and matched with the tool bit.
Citation Information
Patent Citations
A CNC machining center
CN118438032B