Laser flattening machine

By introducing vibration isolation components and integrating automatic loading and clamping positioning functions into the laser cutting equipment, the accuracy problem caused by vibration of the laser cutting head is solved, and high-precision and efficient laser cutting effects are achieved.

CN223431100UActive Publication Date: 2025-10-14ZHEJIANG HAERS VACUUM CONTAINERS CO LTD
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Patent Information

Application Number
CN202422905130.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-27
Publication Date
2025-10-14
Estimated Expiration
2034-11-27

AI Technical Summary

Technical Problem

When traditional laser cutting equipment is in operation, mechanical movement or external vibration causes the laser cutting head to produce slight displacement or shaking, affecting the cutting accuracy and quality of the finished product. This unstable factor is particularly critical when processing high-precision and consistent products.

Method used

Vibration isolation components, including dampers and springs, are used to absorb and cushion vibrations, ensuring the stability of the laser cutting head. At the same time, functions such as automatic loading and clamping positioning are integrated to form a complete production line solution.

Benefits of technology

It effectively reduces the impact of vibration on the cutting process, ensures cutting stability and accuracy, improves the quality of finished products, and enhances overall work efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of vacuum cup production, in particular to a laser flattening machine which comprises a bottom frame, a laser device and a laser device. The opening flattening part is arranged on the supporting frame and used for carrying out opening flattening operation on the vacuum cup, and the opening flattening part comprises a positioning rod installed on the bottom frame, and a fixing plate is installed on the positioning rod; the two first lead screws are rotationally arranged on the two sides of the fixing plate; the sliding table is arranged on the positioning rod in a sliding mode, a first sliding block is installed on the sliding table, and the first sliding block is arranged on the first lead screw in a threaded mode; the positioning frame is mounted on the sliding table; the second lead screw is rotationally arranged on the positioning frame, and a second sliding block is arranged on the second lead screw in a threaded mode; the moving plate is arranged on a guide rail on one side of the sliding table in a sliding mode through a guide block, and the moving plate is installed at the top of the second sliding block; the fixed table is mounted at one side end of the movable plate; the laser cutting head is mounted on the fixed table through a vibration isolation assembly; the vibration isolation assembly comprises a bottom plate which is installed on the fixing table.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of vacuum cup production, and particularly relates to a laser mouth flattening machine. BACKGROUND

[0002] With the rapid development of manufacturing industry, the requirements for product quality and machining precision are becoming higher and higher, especially in the production process of daily necessities such as vacuum cups, the appearance smoothness of the product directly affects the user's experience and the market competitiveness of the product. The traditional vacuum cup mouth processing method usually adopts mechanical cutting or manual polishing, and these methods have problems such as low efficiency, insufficient precision, and difficult surface quality control. In order to solve these problems, the laser mouth flattening machine emerges as the times require.

[0003] When the traditional laser cutting equipment is running, due to the influence of mechanical movement or external vibration, the laser cutting head may produce slight displacement or shaking, which not only affects the cutting precision, but also may cause problems such as uneven cutting line and rough edge, thereby reducing the overall quality of the finished product. Especially when processing products that require high precision and consistency, this unstable factor is particularly critical.

[0004] To this end, the present application proposes a laser mouth flattening machine to solve the above problems. SUMMARY

[0005] The purpose of the present application is to at least solve one of the above technical defects.

[0006] To this end, one purpose of the present application is to propose a laser mouth flattening machine to solve the problems mentioned in the background art and overcome the deficiencies in the prior art.

[0007] In order to achieve the above purpose, the embodiment of one aspect of the present application provides a laser mouth flattening machine, comprising: a chassis, a support frame and a housing are installed on the chassis; a mouth flattening part is arranged on the support frame and is used for flattening the mouth of a vacuum cup, comprising: a positioning rod is installed on the chassis, a fixed plate is installed on the positioning rod; two first lead screws are rotatably arranged on the two sides of the fixed plate; a sliding table is slidably arranged on the positioning rod, a first sliding block is installed on the sliding table, and the first sliding block is threadedly arranged on the first lead screw; a positioning frame is installed on the sliding table; a second lead screw is rotatably arranged on the positioning frame, and a second sliding block is threadedly arranged on the second lead screw; a moving plate is slidably arranged on a guide rail on one side of the sliding table through a guide block, the moving plate is installed on the top of the second sliding block; a fixed table is installed on one side end of the moving plate; a laser cutting head is installed on the fixed table through a vibration isolation assembly; the vibration isolation assembly comprises: a bottom plate is installed on the fixed table; a top plate is installed on the bottom of the laser cutting head; a damper is installed on one end of the bottom plate and on the other end of the top plate; a spring is sleeved on the damper, one end of the spring is installed on the bottom plate, and the other end of the spring is installed on the top plate.

[0008] Preferably, the device further comprises a clamping mechanism for clamping the thermos cup; a feeding mechanism arranged on one side of the base frame for placing the thermos cup to be processed; and two sets of identical carrying mechanisms arranged on the support frame for carrying the thermos cup in the feeding mechanism to the clamping mechanism and taking the thermos cup in the clamping mechanism off, respectively.

[0009] Preferably, the clamping mechanism comprises a placing table, a connecting sleeve rotatably arranged on the placing table, the connecting sleeve being mounted on the base frame, a first motor mounted on the bottom of the base frame through a fixing frame, a first pulley mounted on the output end of the first motor, an extension rod fixedly arranged on the bottom of the placing table, a second pulley mounted on the extension rod, and a first synchronous belt sleeved on the first pulley and the second pulley.

[0010] Preferably, the clamping mechanism further comprises a second motor mounted on the support frame, a first gear and a first rack engaged with the first gear, the first gear being mounted on the output end of the second motor, a sliding frame mounted on one side of the first rack, the sliding frame being slidably arranged on a guide rail on one side of the support frame through a guide block, and a pressing block rotatably arranged on the sliding frame.

[0011] Preferably, the feeding mechanism comprises a side support frame mounted on one side of the base frame, an intermediate plate having a connecting rod mounted on the bottom thereof, the connecting rod being slidably arranged on the side support frame, a feeding table having a support rod mounted on the bottom thereof, the support rod being rotatably arranged on the intermediate plate, clamping jaws mounted on both sides of the feeding table, a connecting frame mounted on the bottom of the intermediate plate, a third motor mounted on the connecting frame, a driving gear and a driven gear engaged with the driving gear, the driving gear being mounted on the output end of the third motor, and the driven gear being mounted on the support rod.

[0012] Preferably, the feeding mechanism further comprises a gear box mounted on the side support frame, a third sliding block mounted on the output shaft end of the gear box, a fourth motor mounted on one side of the gear box, the output end of the fourth motor being connected with a transmission shaft of the gear box, and a third screw rod penetrating through the side support frame and rotatably connected to the intermediate plate, the third screw rod being threadedly arranged with the third sliding block.

[0013] Preferably, the single set of the conveying mechanism comprises: a fifth motor installed on the support frame; a second gear and a second rack engaged with the second gear, the second gear being installed on the output end of the fifth motor; a sliding plate installed on the second rack, the sliding plate being slidably arranged on the guide rail on one side of the support frame; a cross frame installed on the sliding plate; a sixth motor installed on the cross frame; a swing arm member installed on the output end of the sixth motor, one end of the swing arm member being rotatably installed with a clamping member; a third belt pulley installed on the output end of the sixth motor; a fourth belt pulley installed on one end of the clamping member; and a second synchronous belt sleeved on the third belt pulley and the fourth belt pulley.

[0014] Preferably, the flat mouth portion further comprises: a first output motor installed on the fixed plate through a stand, an output end of the first output motor being connected to a first lead screw; two fifth belt pulleys respectively installed on the two first lead screws; a third synchronous belt sleeved on the two fifth belt pulleys; and a second output motor installed on one side of the positioning frame, an output end of the second output motor being connected to a second lead screw.

[0015] Compared with the prior art, the application has the following advantages and beneficial effects:

[0016] 1. By introducing the vibration isolation assembly, the influence of vibration caused by the machine itself or other external factors on the laser cutting process is effectively reduced, so that the laser beam can more stably act on the material surface, thereby ensuring the consistency and accuracy of each cutting and improving the quality of the finished product.

[0017] 2. In addition to the basic flat mouth function, the device also integrates automatic feeding, clamping and positioning functions, forming a complete production line solution, further improving the overall work efficiency.

[0018] Additional aspects and advantages of the application will be in part apparent and in part pointed out hereinafter. BRIEF DESCRIPTION OF DRAWINGS

[0019] The above and / or additional aspects and advantages of the application will become apparent and be readily appreciated from the following description, including the appended drawings, wherein:

[0020] Figure 1 is a first perspective view according to an embodiment of the application;

[0021] Figure 2 is a second perspective view according to an embodiment of the application;

[0022] Figure 3 is a partial view according to an embodiment of the application;

[0023] Figure 4For according to the embodiment of the application flat mouth part schematic diagram;

[0024] Figure 5 For according to the embodiment of the application vibration isolation assembly connection schematic diagram;

[0025] Figure 6 For according to the embodiment of the application second screw connection schematic diagram;

[0026] Figure 7 For according to the embodiment of the application clamping part schematic diagram;

[0027] Figure 8 For according to the embodiment of the application briquetting installation schematic diagram;

[0028] Figure 9 For according to the embodiment of the application carrying mechanism schematic diagram;

[0029] Figure 10 For according to the embodiment of the application material placing mechanism schematic diagram;

[0030] Figure 11 For according to the embodiment of the application driving gear connection schematic diagram.

[0031] In the figure: 1, the base frame, 11, the support frame, 2, the flat mouth part, 21, the positioning rod, 2101, the fixed plate, 22, the first screw, 2201, the first output motor, 23, the sliding table, 2301, the first sliding block, 24, the positioning frame, 25, the second screw, 2501, the second sliding block, 2502, the second output motor, 26, the moving plate, 27, the fixed table, 28, the laser cutting head, 29, the vibration isolation assembly, 2901, the bottom plate, 2902, the top plate, 2903, the damper, 2904, the spring, 3, the clamping mechanism, 31, the placement table, 32, the connecting sleeve, 33, the first motor, 34, the extension rod, 35, the second motor, 36, the first gear, 37, the first rack, 38, the sliding frame, 39, the briquetting, 4, the material placing mechanism, 41, the side support, 42, the intermediate plate, 4201, the connecting rod, 43, the material placing table, 4301, the support rod, 4302, the clamping jaw, 44, the connecting frame, 45, the third motor, 46, the driving gear, 4601, the driven gear, 47, the gear box, 48, the fourth motor, 49, the third screw, 5, the carrying mechanism, 51, the fifth motor, 52, the second gear, 53, the second rack, 54, the sliding plate, 55, the cross frame, 56, the sixth motor, 57, the swing arm piece, 58, the clamping piece. DETAILED DESCRIPTION

[0032] As Figures 1 to 11 shown, a laser flat mouth machine, it includes base frame 1, flat mouth part 2, clamping mechanism 3, material placing mechanism 4 and carrying mechanism 5.

[0033] Furthermore, a support frame 11 and a shell are installed on the base frame 1, and an inspection door is provided on the shell.

[0034] Further, such as Figures 4 to 6 As shown, the flat mouth portion 2 is provided on the support frame 11 and is used to perform flat mouth operation on the thermos cup, including:

[0035] A positioning rod 21 is mounted on the base frame 1, and a fixing plate 2101 is mounted on the positioning rod 21;

[0036] Two first screw rods 22 are rotatably arranged on both sides of the fixed plate 2101;

[0037] The slide 23 is slidably mounted on the positioning rod 21 . A first slider 2301 is mounted on the slide 23 . The first slider 2301 is threadedly mounted on the first screw rod 22 .

[0038] A positioning frame 24 is mounted on the slide 23;

[0039] A second screw rod 25 is rotatably mounted on the positioning frame 24 , and a second slider 2501 is threadedly mounted on the second screw rod 25 ;

[0040] The movable plate 26 is slidably arranged on the guide rail on one side of the slide 23 through the guide block, and the movable plate 26 is installed on the top of the second slider 2501;

[0041] The fixed platform 27 is mounted on one side end of the movable plate 26;

[0042] The laser cutting head 28 is mounted on the fixed platform 27 via a vibration isolation assembly 29;

[0043] The vibration isolation assembly 29 includes:

[0044] Base plate 2901, mounted on fixed platform 27;

[0045] Top plate 2902, mounted on the bottom of the laser cutting head 28;

[0046] Damper 2903, one end of which is mounted on the bottom plate 2901 and the other end of which is mounted on the top plate 2902;

[0047] A spring 2904 is sleeved on the damper 2903 , with one end of the spring 2904 mounted on the bottom plate 2901 and the other end mounted on the top plate 2902 ;

[0048] Also includes:

[0049] A first output motor 2201 is mounted on the fixed plate 2101 via a stand, and an output end of the first output motor 2201 is connected to the first screw rod 22;

[0050] Two fifth pulleys are respectively installed on the two first lead screws 22;

[0051] A third synchronous belt is sleeved on the two fifth pulleys;

[0052] A second output motor 2502 is installed on one side of the positioning frame 24, and an output end of the second output motor 2502 is connected to the second lead screw 25.

[0053] Specifically, the first output motor 2201 drives the first lead screw 22 to rotate, drives the first sliding plate 54 to move, and then drives the laser cutting head 28 to adjust the up-down position;

[0054] The second output motor 2502 drives the second lead screw 25 to rotate, drives the second sliding block 2501 to move, and then drives the laser cutting head 28 to adjust the front-back position (the distance between the workpiece);

[0055] The vibration absorbing assembly 29 absorbs and buffers the vibration generated by the device during work, so that the laser cutting head 28 can work stably.

[0056] Further, as shown in the figure, the clamping mechanism 3 is used for clamping and fixing the thermal cup, which comprises: Figures 7 to 8

[0057] A placing table 31 is provided with a connecting sleeve 32 rotatably arranged thereon, and the connecting sleeve 32 is installed on the bottom frame 1;

[0058] A first motor 33 is installed on the bottom of the bottom frame 1 through a fixing frame, and a first pulley is installed on an output end of the first motor 33;

[0059] An extension rod 34 is fixedly arranged at the bottom of the placing table 31, and a second pulley is installed on the extension rod 34;

[0060] A first synchronous belt is sleeved on the first pulley and the second pulley;

[0061] Further comprising:

[0062] A second motor 35 is installed on the support frame 11;

[0063] A first gear 36 and a first rack 37 engaged with the first gear 36 are installed on an output end of the second motor 35;

[0064] A sliding frame 38 is installed on one side of the first rack 37, and the sliding frame 38 is slidably arranged on a guide rail on one side of the support frame 11 through a guide block;

[0065] A pressing block 39 is rotatably arranged on the sliding frame 38.

[0066] ​After the thermos cup is placed on the placing table 31, the first gear 36 is driven to rotate by the second motor 35, the first rack 37 is driven to move, and then the pressing block 39 is driven to move, so as to press the thermos cup tightly;

[0067] The first pulley is driven by the first motor 33, the second pulley is driven by the first synchronous belt, and then the placing table 31 is driven to rotate, so as to drive the thermos cup to rotate.

[0068] Further, as shown in the drawings, the feeding mechanism 4 is arranged on one side of the chassis 1, and is used for placing the processed thermos cup, and comprises: Figures 10 to 11

[0069] The side support 41 is installed on one side of the chassis 1;

[0070] The intermediate plate 42 is installed at the bottom of the side support 41, and the connecting rod 4201 is installed at the bottom of the intermediate plate 42;

[0071] The feeding table 43 is installed at the bottom of the intermediate plate 42, and the supporting rod 4301 is installed at the bottom of the feeding table 43, and the clamping jaw 4302 is installed on both sides of the feeding table 43;

[0072] The connecting frame 44 is installed at the bottom of the intermediate plate 42;

[0073] The third motor 45 is installed on the connecting frame 44;

[0074] The driving gear 46 and the driven gear 4601 are installed on the output end of the third motor 45, and the driven gear 4601 is installed on the supporting rod 4301;

[0075] Further comprising:

[0076] The gear box 47 is installed on the side support 41, and the third sliding block is installed on the output shaft end of the gear box 47;

[0077] The fourth motor 48 is installed on one side of the gear box 47, and the output end of the fourth motor 48 is connected with the transmission shaft of the gear box 47;

[0078] The third lead screw 49 penetrates through the side support 41 and is rotatably connected to the intermediate plate 42, and the third lead screw 49 is threadedly arranged with the third sliding block.

[0079] Further, as shown in the drawings, the feeding mechanism 4 is arranged on one side of the chassis 1, and is used for placing the processed thermos cup, and comprises: Figure 9

[0080] The fifth motor 51 is installed on the support frame 11;

[0081] ​​A second gear 52 is installed on the output end of the fifth motor 51, and a second rack 53 is engaged with the second gear 52;

[0082] A slide plate 54 is installed on the second rack 53, and the slide plate 54 is slidably arranged on a guide rail on one side of the support frame 11;

[0083] A horizontal frame 55 is installed on the slide plate 54;

[0084] A sixth motor 56 is installed on the horizontal frame 55;

[0085] An oscillating arm 57 is installed on the output end of the sixth motor 56, and one end of the oscillating arm 57 is rotatably installed with a clamping member 58;

[0086] A third pulley is installed on the output end of the sixth motor 56;

[0087] A fourth pulley is installed on one end of the clamping member 58;

[0088] A second synchronous belt is sleeved on the third pulley and the fourth pulley.

[0089] Specifically, the heat preservation cup is placed on the material placing table 43 and clamped by the clamping jaw 4302;

[0090] During the feeding, the fifth motor 51 and the sixth motor 56 are used in cooperation to adjust the position of the clamping member 58, so that the clamping member 58 is adjusted to a position at which the heat preservation cup on the material placing table 43 can be clamped, and then the clamping member 58 is started to clamp the heat preservation cup;

[0091] Subsequently, the gear box 47 is driven by the fourth motor 48 to drive the third lead screw 49 to rotate, at this time the third slide block is fixed, so the third lead screw 49 also simultaneously moves upward or downward in the rotation direction, thereby driving the material placing table 43 to move downward, and this process is to avoid the carrying of the heat preservation cup;

[0092] Then, the heat preservation cup is transported to the placing table 31 by the cooperation of the fifth motor 51 and the sixth motor 56, and during the unloading, the other group of carrying mechanisms 5 moves in the same way.

Claims

1. A laser flat edge machine, characterized by: include: a chassis on which the support frame and the housing are mounted; The flat mouth part is arranged on the support frame and is used to perform flat mouth operation on the thermos cup, including: A positioning rod is mounted on the base frame, and a fixing plate is mounted on the positioning rod; Two first screw rods are rotatably arranged on both sides of the fixed plate; A slide is slidably arranged on the positioning rod, a first slider is installed on the slide, and the first slider is threadedly arranged on the first screw rod; A positioning frame, mounted on the slide; A second screw rod is rotatably mounted on the positioning frame, and a second slider is threadedly mounted on the second screw rod; A movable plate is slidably arranged on a guide rail on one side of the slide table through a guide block, and the movable plate is mounted on the top of the second slider; A fixed platform, mounted on one side end of the movable plate; The laser cutting head is mounted on a fixed table through a vibration isolation assembly; The vibration isolation assembly comprises: Base plate, mounted on a fixed platform; Top plate, mounted on the bottom of the laser cutting head; A damper, one end of which is mounted on the bottom plate and the other end is mounted on the top plate; The spring is sleeved on the damper, one end of the spring is installed on the bottom plate, and the other end is installed on the top plate.

2. The laser flat edge machine according to claim 1, characterized in that: Also includes: A clamping mechanism, used to clamp and fix the thermos cup; The material discharge mechanism is located on one side of the base frame and is used to place the processed thermos cups; Two sets of identical transport mechanisms are arranged on the support frame, and are respectively used for transporting the thermos cup in the discharge mechanism to the clamping mechanism and removing the thermos cup from the clamping mechanism.

3. The laser flat edge machine according to claim 2, characterized in that: The clamping mechanism comprises: A placement table, on which a connecting sleeve is rotatably provided, and the connecting sleeve is mounted on the base frame; A first motor is mounted on the bottom of the chassis via a fixing bracket, and a first pulley is mounted on the output end of the first motor; An extension rod is fixedly arranged at the bottom of the placement table, and a second pulley is installed on the extension rod; The first synchronous belt is sleeved on the first pulley and the second pulley.

4. The laser flat edge machine according to claim 3, characterized in that: The clamping mechanism further comprises: a second motor mounted on the support frame; a first gear and a first rack meshing therewith, wherein the first gear is mounted on an output end of the second motor; A sliding frame is mounted on one side of the first rack, and the sliding frame is slidably arranged on a guide rail on one side of the support frame through a guide block; The pressing block is rotatably arranged on a sliding frame.

5. The laser flat edge machine according to claim 2, characterized in that: The unloading mechanism comprises: Side bracket, installed on one side of the chassis; The middle plate has a connecting rod installed at the bottom thereof, and the connecting rod is slidably arranged on the side bracket; The unloading platform has a support rod installed at the bottom, the support rod is rotatably arranged on the middle plate, and clamping claws are installed on both sides of the unloading platform; The connection frame is installed at the bottom of the middle plate; a third motor, mounted on the connection frame; A driving gear and a driven gear meshing with the driving gear are installed at the output end of the third motor, and the driven gear is installed on the support rod.

6. The laser flat edge machine according to claim 5, characterized in that: The discharging mechanism further comprises: The gearbox is mounted on the side bracket, and a third slider is mounted on the output shaft end of the gearbox; a fourth motor, mounted on one side of the gearbox, with its output end connected to the transmission shaft of the gearbox; The third screw rod passes through the side bracket and is rotatably connected to the middle plate. The third screw rod and the third slider are threadedly arranged.

7. The laser flat edge machine according to claim 2, characterized in that: A single set of the transport mechanism includes: a fifth motor, mounted on the support frame; a second gear and a second rack meshing therewith, wherein the second gear is mounted on an output end of a fifth motor; A slide plate is mounted on the second rack, and the slide plate is slidably arranged on a guide rail on one side of the support frame through a guide rail; A cross frame, mounted on the skateboard; a sixth motor, mounted on the cross frame; a swing arm member, mounted on the output end of the sixth motor, wherein a clamping member is rotatably mounted on one end of the swing arm member; a third pulley mounted on an output end of the sixth motor; a fourth pulley mounted on one end of the clamping member; The second synchronous belt is sleeved on the third pulley and the fourth pulley.

8. The laser flat edge machine according to claim 1, characterized in that: The flat mouth portion further comprises: A first output motor is mounted on the fixed plate via a stand, and an output end of the first output motor is connected to a first screw rod; Two fifth pulleys are respectively installed on the two first screw rods; The third synchronous belt is mounted on two fifth pulleys; The second output motor is installed on one side of the positioning frame, and the output end of the second output motor is connected to the second screw rod.