Grooving machining equipment for non-metal parts
By designing grooving processing equipment with horizontal and vertical cutting knives, the problem that existing equipment cannot efficiently form slots to accommodate light strips is solved, and efficient and low-cost grooving processing of aluminum profile lamp tubes is achieved.
Patent Information
- Application Number
- CN202422862617.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-23
- Publication Date
- 2025-10-17
- Estimated Expiration
- 2034-11-23
AI Technical Summary
Existing aluminum profile grooving equipment cannot efficiently form grooves suitable for accommodating light strips, and manual grooving methods are inefficient and costly.
A grooving processing equipment for non-metallic parts is designed. It adopts transverse and longitudinal cutting knives. The driving module drives the cutting knives to move along the axis of the workpiece, and the rotating driving parts perform transverse and longitudinal cutting to form a slot suitable for accommodating light strips.
The grooving processing efficiency is improved, and the grooving of both corners of the aluminum profile lamp tube can be completed at one time, forming a slot suitable for accommodating the light strip, reducing labor costs.
Smart Images

Figure CN223442360U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to non -metal part processing technical field, specifically is a kind of non -metal part's cutting groove processing equipment. BACKGROUND
[0002] Aluminum alloy is widely used in industry, and the existing lamp tube for installing light strips usually also uses aluminum alloy. The aluminum alloy structure for installing light strips is usually called aluminum profile. The aluminum profile usually needs to be cut and grooved to form a groove for accommodating light strips.
[0003] The existing cutting groove processing method for accommodating light strips usually uses manual cutting groove method, which has low work efficiency and high labor cost. The existing equipment for cutting grooves of aluminum profiles usually forms conventional grooves, which cannot be used to accommodate light strips. For example, a cutting groove device disclosed in publication No. CN220944111U discloses an operation table, which is provided with a control member and an auxiliary structure including clamping components and limiting components corresponding to the clamping components. The control member is provided with a cutting groove structure including a rotating rod, and each group of cutting knives is composed of two symmetrically arranged cutting knives connected by bolts. This cutting groove device uses cutting knives to cut the surface of the workpiece horizontally to form a groove with a relatively narrow width, which is not suitable for accommodating light strips. Therefore, a cutting groove device for accommodating light strips is needed. SUMMARY
[0004] The utility model discloses a kind of cutting groove processing equipment of non-metal part, to solve the technical problem that aluminum profile lamp tube is used to accommodate light strip.
[0005] To solve the above technical problems, the utility model proposes the following optimization technical scheme:
[0006] A kind of cutting groove processing equipment of non-metal part, comprising:
[0007] A rack;
[0008] A pressing mechanism is arranged on the rack to fix the workpiece.
[0009] The cutting mechanism includes a drive module, a first rotary drive, a second rotary drive, a horizontal cutting knife and a vertical cutting knife. The drive module is arranged on the rack. The first rotary drive and the second rotary drive are arranged on the drive module. The horizontal cutting knife and the vertical cutting knife are arranged on the first rotary drive and the second rotary drive respectively. The horizontal cutting knife and the vertical cutting knife cut the workpiece horizontally and vertically respectively.
[0010] Further, the pressing mechanism comprises a lifting driving member and a pressing strip, the lifting driving member is arranged on the rack, and the pressing strip is arranged on the lifting driving member and used for pressing the workpiece on the rack.
[0011] Further, the bottom surface of the pressing strip is provided with a buffer strip.
[0012] Further, the rack is provided with a pressing table, and the workpiece is pressed on the pressing table.
[0013] Further, the driving module comprises an X-axis driving assembly and a Z-axis driving assembly, the X-axis driving assembly is arranged on the rack, the Z-axis driving assembly is arranged on the X-axis driving assembly, and the Z-axis driving assembly is connected with the first rotary driving member and the second rotary driving member.
[0014] Further, the cutting mechanism further comprises a first lifting assembly, the first lifting assembly comprises a first support, a first lead screw, a first lead screw seat and a first hand wheel, the first support is arranged on the driving module, the first lead screw is arranged on the first support, the first lead screw seat is fitted on the first lead screw, the first hand wheel is connected to the end of the first lead screw, and the first rotary driving member is arranged on the first lead screw seat.
[0015] Further, the cutting mechanism further comprises a first translation assembly, the first translation assembly comprises a second support, a second lead screw, a second lead screw seat and a second hand wheel, the second support is arranged on the rack, the second lead screw is arranged on the second support, the second lead screw seat is fitted on the second lead screw, the second hand wheel is connected to the end of the second lead screw, and the second rotary driving member is arranged on the second lead screw seat.
[0016] Further, the cutting mechanism further comprises a second lifting assembly, the second lifting assembly comprises a third support, a third lead screw, a third lead screw seat and a third hand wheel, the third support is arranged on the driving module, the third lead screw is arranged on the third support, the third lead screw seat is fitted on the third lead screw, the third hand wheel is connected to the end of the third lead screw, and the second rotary driving member is arranged on the third lead screw seat.
[0017] Further, the cutting mechanism further comprises a second translation assembly, the second translation assembly comprises a fourth support, a fourth lead screw, a fourth lead screw seat and a fourth hand wheel, the fourth support is arranged on the rack, the fourth lead screw is arranged on the fourth support, the fourth lead screw seat is fitted on the fourth lead screw, the fourth hand wheel is connected to the end of the fourth lead screw, and the second rotary driving member is arranged on the fourth lead screw seat.
[0018] Further, the utility model still includes dustproof mechanism, the dustproof mechanism includes two two organ cases, two organ case sets up on the both sides of X axle drive assembly respectively.
[0019] The utility model has the following beneficial effects relative to the prior art:
[0020] The utility model provides a cut groove processing equipment sets up horizontal cutting knife and longitudinal cutting knife, drive module drives horizontal cutting knife and longitudinal cutting knife and moves along the axis direction of work piece, first rotary drive part and second rotary drive part drive horizontal cutting knife and longitudinal cutting knife respectively and carry out horizontal and longitudinal cutting to work piece, form the cut groove to the corner of work piece, work efficiency is high, and the cut groove shape that forms is more convenient for accommodating the lamp area. BRIEF DESCRIPTION OF DRAWINGS
[0021] Figure 1 It is the structure schematic diagram of the utility model.
[0022] Figure 2 It is the structure schematic diagram of the pressing mechanism of the utility model.
[0023] Figure 3 It is the structure schematic of cutting mechanism of the utility model Figure 1 .
[0024] Figure 4 It is the structure schematic of cutting mechanism of the utility model Figure 2 .
[0025] In the drawing: 100, rack;110, pressing table;200, pressing mechanism;210, lifting drive part;220, pressing strip;230, buffer strip;300, cutting mechanism;310, drive module;311, X axle drive assembly;312, Z axle drive assembly;320, first rotary drive part;330, second rotary drive part;340, horizontal cutting knife;350, longitudinal cutting knife;360, first lifting assembly;361, first support;362, first hand wheel;370, first translation assembly;371, second support;372, second hand wheel;380, second lifting assembly;381, third support;382, third hand wheel;390, second translation assembly;391, fourth support;392, fourth hand wheel;400, dustproof mechanism;410, organ case;500, work piece. DETAILED DESCRIPTION
[0026] In order to make the purposes, technical solutions and advantages of the embodiments of the present application clearer, the technical solutions in the embodiments of the present application will be described clearly and completely below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only some of the embodiments of the present application, rather than all the embodiments of the present application. Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art without creative effort belong to the scope of protection of the present application.
[0027] The cutting groove processing equipment provided by the present application is used for cutting groove processing of non-metal parts, and in the embodiments, aluminum profile lamp tubes are taken as examples for illustration.
[0028] Referring to Figures 1-4 The cutting groove processing equipment of the non-metal part comprises a rack 100, a pressing mechanism 200 and a cutting mechanism 300. The pressing mechanism 200 is arranged on the rack 100 and is used for fixing a workpiece 500. The cutting mechanism 300 comprises a driving module 310, a first rotary driving member 320, a second rotary driving member 330, a transverse cutting knife 340 and a longitudinal cutting knife 350. The driving module 310 is arranged on the rack 100. The first rotary driving member 320 and the second rotary driving member 330 are both arranged on the driving module 310. The transverse cutting knife 340 and the longitudinal cutting knife 350 are arranged on the first rotary driving member 320 and the second rotary driving member 330 respectively. The transverse cutting knife 340 and the longitudinal cutting knife 350 are used for transversely cutting and longitudinally cutting the workpiece 500 respectively.
[0029] The working principle of the above technical solution is as follows. First, the aluminum profile lamp tube is fixed on the pressing mechanism 200. The driving module 310 drives the transverse cutting knife 340 and the longitudinal cutting knife 350 to move close to the pressing mechanism 200 and to one end of the aluminum profile lamp tube. The first rotary driving member 320 and the second rotary driving member 330 drive the transverse cutting knife 340 and the longitudinal cutting knife 350 to rotate respectively. Then, the driving module 310 drives the transverse cutting knife 340 and the longitudinal cutting knife 350 to move along the axis direction of the aluminum profile lamp tube, so that the transverse cutting knife 340 and the longitudinal cutting knife 350 cut grooves along the axis direction of the aluminum profile lamp tube. Specifically, the edges and corners of the aluminum profile lamp tube are formed into transversely and longitudinally communicating grooves, which are more suitable for accommodating the lamp strip.
[0030] In the embodiment, the transverse cutting knife 340 and the longitudinal cutting knife 350 are both provided as two, and the number of the second rotary driving member 330 is two, two respectively drive two longitudinal cutting knives 350 to rotate, and specifically one transverse cutting knife 340 is matched with one longitudinal cutting knife 350 to cut a groove in one corner of the aluminum profile lamp tube, and the other transverse cutting knife 340 is matched with the other longitudinal cutting knife 350 to cut a groove in the other corner of the aluminum profile lamp tube, that is, when the driving module 310 drives the transverse cutting knife 340 and the longitudinal cutting knife 350 to move, the two corners of the aluminum profile lamp tube can be simultaneously cut, so that the cutting of the two corners of the aluminum profile lamp tube is completed at one time, which meets the demand of the existing aluminum profile lamp tube for accommodating lamp strips on two corners, and the working effect is high.
[0031] In the embodiment, the pressing mechanism 200 includes a lifting driving member 210 and a pressing strip 220, the lifting driving member 210 is arranged on the rack 100, and the pressing strip 220 is arranged on the lifting driving member 210, and the pressing strip 220 is used for pressing the workpiece 500 on the rack 100. Specifically, the aluminum profile lamp tube is placed on the rack 100, the lifting driving member 210 drives the pressing strip 220 to descend, and the pressing strip 220 presses the aluminum profile lamp tube on the rack 100, thereby fixing the aluminum profile lamp tube.
[0032] It is additionally explained that the lifting driving member 210 is a pneumatic cylinder.
[0033] In the embodiment, the bottom surface of the pressing strip 220 is provided with a buffer strip 230. When the pressing strip 220 presses the aluminum profile lamp tube, the buffer strip 230 is in contact with the aluminum profile lamp tube, thereby playing a buffering role, avoiding the pressing strip 220 scratching the aluminum profile lamp tube, and making the pressing more tight.
[0034] In the embodiment, the rack 100 is provided with a pressing table 110, and the pressing table 110 is used for pressing the workpiece 500 thereon. Specifically, the pressing strip 220 presses the aluminum profile lamp tube on the pressing table 110.
[0035] In the embodiment, the driving module 310 includes an X-axis driving assembly 311 and a Z-axis driving assembly 312, the X-axis driving assembly 311 is arranged on the rack 100, the Z-axis driving assembly 312 is arranged on the X-axis driving assembly 311, and the Z-axis driving assembly 312 is connected with the first rotary driving member 320 and the second rotary driving member 330. The X-axis direction is the axis direction of the aluminum profile lamp tube, and the Z-axis direction is perpendicular to the X-axis direction. The X-axis driving assembly 311 is used for driving the transverse cutting knife 340 and the longitudinal cutting knife 350 to move in the X-axis direction, and the Z-axis driving assembly 312 is used for driving the transverse cutting knife 340 and the longitudinal cutting knife 350 to move in the Z-axis direction.
[0036] Supplementarily, the X-axis driving assembly 311 and the Z-axis driving assembly 312 are both conventional motor and screw rod structures.
[0037] In the embodiment, the cutting mechanism 300 further comprises a first lifting assembly 360, which comprises a first support 361, a first screw rod, a first screw rod seat and a first hand wheel 362. The first support 361 is arranged on the driving module 310. The first screw rod is arranged on the first support 361. The first screw rod seat is fittedly arranged on the first screw rod. The first hand wheel 362 is connected to the end of the first screw rod. The first rotary driving member 320 is arranged on the first screw rod seat. The first hand wheel 362 is rotated to make the first rotary driving member 320 ascend and descend, so as to adjust the height of the transverse cutting knife 340 to match the height of the aluminum profile lamp tube.
[0038] In the embodiment, the cutting mechanism 300 further comprises a first lifting assembly 360, which comprises a first support 361, a first screw rod, a first screw rod seat and a first hand wheel 362. The first support 361 is arranged on the driving module 310. The first screw rod is arranged on the first support 361. The first screw rod seat is fittedly arranged on the first screw rod. The first hand wheel 362 is connected to the end of the first screw rod. The first rotary driving member 320 is arranged on the first screw rod seat. The first hand wheel 362 is rotated to make the first rotary driving member 320 ascend and descend, so as to adjust the height of the transverse cutting knife 340 to match the height of the aluminum profile lamp tube.
[0039] In the embodiment, the cutting mechanism 300 further comprises a first lifting assembly 360, which comprises a first support 361, a first screw rod, a first screw rod seat and a first hand wheel 362. The first support 361 is arranged on the driving module 310. The first screw rod is arranged on the first support 361. The first screw rod seat is fittedly arranged on the first screw rod. The first hand wheel 362 is connected to the end of the first screw rod. The first rotary driving member 320 is arranged on the first screw rod seat. The first hand wheel 362 is rotated to make the first rotary driving member 320 ascend and descend, so as to adjust the height of the transverse cutting knife 340 to match the height of the aluminum profile lamp tube.
[0040] In the embodiment, the cutting mechanism 300 further comprises a second translation assembly 390, the second translation assembly 390 comprising a fourth support 391, a fourth screw rod, a fourth screw rod seat and a fourth hand wheel 392, the fourth support 391 being arranged on the rack 100, the fourth screw rod being arranged on the fourth support 391, the fourth screw rod seat being fitted on the fourth screw rod, the fourth hand wheel 392 being connected to the end of the fourth screw rod, and the second rotary driving member 330 being arranged on the fourth screw rod seat. The fourth hand wheel 392 is rotated to make the second rotary driving member 330 close to or away from the fixed aluminum profile lamp tube, so as to finely adjust the distance between the longitudinal cutting knife 350 and the aluminum profile lamp tube. Specifically, the second translation assembly 390 is arranged on the second lifting assembly 380.
[0041] In the embodiment, the utility model further comprises a dustproof mechanism 400, the dustproof mechanism 400 comprising two piano cases 410, and the two piano cases 410 are arranged on the two sides of the X-axis driving assembly 311 respectively. The two piano cases 410 specifically cover the track of the X-axis driving assembly 311, and play a dustproof role.
[0042] The above merely is the specific implementation of the utility model, and enables the person skilled in the art to understand or realize the utility model. Various modifications to these embodiments will be apparent to those skilled in the art, and the general principles defined herein can be implemented in other embodiments without departing from the spirit or scope of the utility model. Therefore, the utility model will not be limited to these embodiments shown herein, but will accord with the widest scope consistent with the principles and novel features disclosed herein.
Claims
1. A grooving processing equipment for non-metallic parts, characterized in that: include: frame; A pressing mechanism, provided on the frame, for fixing the workpiece; The cutting mechanism includes a driving module, a first rotating driving member, a second rotating driving member, a transverse cutting knife and a longitudinal cutting knife. The driving module is arranged on the frame. The first rotating driving member and the second rotating driving member are both arranged on the driving module. The transverse cutting knife and the longitudinal cutting knife are respectively arranged on the first rotating driving member and the second rotating driving member. The transverse cutting knife and the longitudinal cutting knife respectively perform transverse cutting and longitudinal cutting on the workpiece.
2. The grooving processing equipment for non-metal parts according to claim 1, characterized in that: The pressing mechanism includes a lifting drive member and a pressing bar. The lifting drive member is arranged on the frame. The pressing bar is arranged on the lifting drive member. The pressing bar is used to press the workpiece on the frame.
3. The grooving processing equipment for non-metal parts according to claim 2, characterized in that: A buffer strip is provided on the bottom surface of the pressing strip.
4. The grooving processing equipment for non-metal parts according to claim 1, characterized in that: The frame is provided with a pressing platform, and the pressing platform is used for pressing the workpiece thereon.
5. The grooving processing equipment for non-metal parts according to claim 1, characterized in that: The driving module includes an X-axis driving component and a Z-axis driving component. The X-axis driving component is arranged on a frame, and the Z-axis driving component is arranged on the X-axis driving component. The Z-axis driving component is connected to the first rotating driving component and the second rotating driving component.
6. The grooving processing equipment for non-metal parts according to claim 1, characterized in that: The cutting mechanism also includes a first lifting assembly, which includes a first bracket, a first screw rod, a first screw rod seat and a first hand wheel. The first bracket is arranged on the driving module, the first screw rod is arranged on the first bracket, the first screw rod seat is cooperated and installed on the first screw rod, the first hand wheel is connected to the end of the first screw rod, and the first rotating drive member is arranged on the first screw rod seat.
7. A grooving processing equipment for non-metallic parts according to claim 1 or 6, characterized in that: The cutting mechanism also includes a first translation assembly, which includes a second bracket, a second screw rod, a second screw rod seat and a second hand wheel. The second bracket is arranged on the frame, the second screw rod is arranged on the second bracket, the second screw rod seat is cooperated and installed on the second screw rod, the second hand wheel is connected to the end of the second screw rod, and the second rotary drive member is arranged on the second screw rod seat.
8. The grooving processing equipment for non-metal parts according to claim 1, characterized in that: The cutting mechanism also includes a second lifting assembly, which includes a third bracket, a third screw rod, a third screw rod seat and a third hand wheel. The third bracket is arranged on the driving module, the third screw rod is arranged on the third bracket, the third screw rod seat is cooperated and installed on the third screw rod, the third hand wheel is connected to the end of the third screw rod, and the second rotating drive member is arranged on the third screw rod seat.
9. A grooving processing equipment for non-metallic parts according to claim 1 or 8, characterized in that: The cutting mechanism also includes a second translation assembly, which includes a fourth bracket, a fourth screw rod, a fourth screw rod seat and a fourth hand wheel. The fourth bracket is arranged on the frame, the fourth screw rod is arranged on the fourth bracket, the fourth screw rod seat is mounted on the fourth screw rod, the fourth hand wheel is connected to the end of the fourth screw rod, and the second rotary drive member is arranged on the fourth screw rod seat.
10. The grooving processing equipment for non-metal parts according to claim 5, characterized in that: It also includes a dustproof mechanism, which includes two accordion covers, and the two accordion covers are respectively arranged on both sides of the X-axis drive assembly.
Citation Information
Patent Citations
A grooving device
CN220944111U