Aluminum material cutting device
By promoting the design of the discharge mechanism and the downward positioning mechanism, the problem of inconvenience of discharge after cutting of aluminum is solved, a fast and convenient discharge process is achieved, and the discharge rate and convenience are improved.
Patent Information
- Application Number
- CN202422021580.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-20
- Publication Date
- 2025-09-02
- Estimated Expiration
- 2034-08-20
AI Technical Summary
The existing aluminum cutting device is not convenient for rapid discharge when the aluminum is discharged after cutting, and is easy to accumulate and accumulate, affecting the discharge rate and convenience.
The design of the pushing discharge mechanism includes a rolling assembly, a drive assembly and a feeding push assembly. The rotating shaft and the rolling ring are driven to rotate with the friction tumbling push plate through the motor, pushing the aluminum material to roll and discharge in the rolling groove, reducing friction damage, and improving cutting accuracy through the downward positioning mechanism.
It realizes a fast and convenient discharge process after aluminum cutting, reduces friction damage, and improves discharge rate and convenience.
Smart Images

Figure CN223289061U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field of cutting devices, and particularly relates to an aluminum material cutting device. Background Art
[0002] Aluminum is a product made of aluminum and other alloy elements. During processing and production, aluminum needs to be cut to certain specifications. This is usually done by a cutting device. Existing cutting devices are devices that apply pressure during aluminum processing and production. The cutting device is easy to press down and position during cutting, making the cutting more stable and accurate. At the same time, it applies a thrust after cutting to speed up the conveying and discharging of the aluminum, thereby improving the convenience and discharge rate of the cutting device in conveying and discharging the aluminum after cutting.
[0003] After the existing cutting device cuts the aluminum material, it directly pushes the cut aluminum material through the uncut aluminum material to the surface of the discharge support table and unloads the material. Therefore, when unloading the material, the aluminum material directly contacts the surface of the discharge support table and is taken out by the operator. When taking it out, the aluminum material contacts the discharge support table and is easily damaged by friction. It is also inconvenient to discharge the material body quickly during discharge. A large amount of aluminum material is likely to accumulate and pile up over a long period of time, which reduces the discharge rate and affects the cutting device's continued processing and discharge use, affecting the convenience and discharge rate of the cutting device in conveying and discharging the aluminum material after cutting. For this reason, the utility model proposes an aluminum cutting device. Utility Model Content
[0004] The purpose of the present utility model is to provide an aluminum cutting device to solve the problem proposed in the above background technology that after the cutting device cuts the aluminum material, it is not convenient to discharge the material body quickly during discharging, and a large amount of aluminum material is easily accumulated and piled up over a long period of time, which reduces the discharging rate and affects the cutting device's continued processing and discharging use, and affects the convenience and discharging rate of the cutting device in conveying and discharging the aluminum material after cutting.
[0005] To achieve the above-mentioned object, the present invention provides the following technical solutions: an aluminum material cutting device, comprising a cutting device body, the cutting device body comprising a base, a top frame welded to the top of the base, a cutting operation panel provided at the middle position of the upper surface of the base, a feed support platform and a discharge support platform fixedly mounted on both sides of the base, two cylinders fixed to the upper surface of the top frame by bolts, the ends of the two cylinders located on the lower surface of the top frame are fixed with cutting knives by bolts, and the cutting device body is further provided with:
[0006] A discharging mechanism is provided, and the discharging mechanism includes a rolling assembly arranged on the upper surface of the discharging support platform, a driving assembly is provided at the middle position of the upper surface of the discharging support platform, and a discharging pushing assembly is provided on the outer surface of the driving assembly;
[0007] The downward pressing positioning mechanism includes downward pressing positioning components arranged on the sides of both ends of the cutting knife, and limited sliding components are arranged on both sides of the downward pressing positioning component.
[0008] Preferably, the rolling assembly includes rolling grooves equidistantly arranged on the upper surface of the discharge support platform, and rolling bodies roll inside the rolling grooves.
[0009] Preferably, the driving assembly includes a rotating shaft rotatably connected to the middle position of the upper surface of the discharging support platform, and the end of the rotating shaft is located on the side of the discharging support platform and a motor is installed.
[0010] Preferably, the discharging pushing assembly includes two rolling rings fixed to the outer surface of the rotating shaft by screws, and two friction-driven pushing plates are fixed to the outer surface of the rolling ring by screws.
[0011] Preferably, the friction-activated push plate is an arc-shaped structure, and the two friction-activated push plates are symmetrically arranged via a rolling ring.
[0012] Preferably, the downward positioning assembly includes an extension frame fixed to the sides of both ends of the cutting knife by bolts, a spring is provided at one end inside the extension frame, a downward positioning rod is provided inside the spring, and a groove is welded between the top end of the downward positioning rod and the top end inside the spring.
[0013] Preferably, the limiting sliding assembly includes limiting sliding grooves opened on both sides of the inner portion of the spring, and limiting sliding blocks are welded on both sides of the top end of the downward pressing positioning rod, and the limiting sliding blocks slide with the inner portion of the limiting sliding groove.
[0014] Compared with the prior art, the beneficial effects of the present invention are:
[0015] By designing a push-discharging mechanism, after the cutting device body cuts the aluminum material and the cut aluminum material enters the surface of the discharging support table, the motor drives the rotating shaft to rotate, and when the rotating shaft rotates, it drives the rolling ring and the friction push plate to rotate, so that when the friction push plate rotates, the lower surface contacts the surface of the aluminum material to push the aluminum material forward. When the aluminum material is pushed, the surface of the rolling body contacts the rolling body, driving the rolling body to roll inside the rolling groove, and the discharging is not easy to cause friction damage, so that the aluminum material on the surface of the discharging support table is pushed and transported out, which speeds up the unloading process, is not easy to accumulate, and improves the convenience and discharging rate of the cutting device body in conveying and discharging the aluminum material after cutting. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Figure 1 It is a structural diagram of the utility model;
[0017] Figure 2 It is a side structural diagram of the utility model;
[0018] Figure 3 For this utility model Figure 1 A schematic diagram of the enlarged structure of part A;
[0019] Figure 4 This is a schematic diagram of the structure of the rotating shaft, rolling ring and friction push plate of the utility model;
[0020] Figure 5 For this utility model Figure 1 The enlarged structural diagram of part B in the middle;
[0021] Figure 6 For this utility model Figure 2 The enlarged structural diagram of part C in the middle;
[0022] In the figure: 100, cutting device body; 101, base; 102, top frame; 103, cylinder; 104, cutting operation panel; 105, feed support platform; 106, discharge support platform; 1061, rolling element; 1062, rotating shaft; 1063, motor; 1064, rolling groove; 1065, rolling ring; 1066, friction push plate; 107, cutting knife; 1071, extension frame; 1072, downward positioning rod; 1073, groove; 1074, spring; 1075, limit slide; 1076, limit slider. DETAILED DESCRIPTION
[0023] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.
[0024] See also Figures 1 to 6The utility model provides a technical solution: an aluminum material cutting device, including a cutting device body 100, the cutting device body 100 includes a base 101, a top frame 102 is welded to the top of the base 101, a cutting operation panel 104 is provided at the middle position of the upper surface of the base 101, and a feed support platform 105 and a discharge support platform 106 are fixedly installed on both sides of the base 101. The cutting device body 100 is stably placed in the position of use by contacting the bottom end of the base 101 with the ground. Then, the aluminum material is fed into the surface of the cutting operation plate 104 on the surface of the feeding support table 105. Two cylinders 103 are fixed to the upper surface of the top frame 102 by bolts. The ends of the two cylinders 103 are located on the lower surface of the top frame 102 and are fixed with cutting knives 107 by bolts. The movement of the two cylinders 103 drives the cutting knives 107 to press down on the surface of the aluminum material to perform the cutting operation. After cutting, the cut aluminum material is pushed to the surface of the discharging support table 106 to be discharged to the outside. The cutting device body 100 is also provided with:
[0025] A discharging mechanism is provided, and the discharging mechanism includes a rolling component arranged on the upper surface of the discharging support platform 106, a driving component is provided at the middle position of the upper surface of the discharging support platform 106, and a discharging pushing component is provided on the outer surface of the driving component. When the cutting device body 100 is discharging the aluminum material on the surface of the discharging support platform 106 after cutting the aluminum material, the pushing discharging mechanism applies pressure and thrust to the aluminum material to smoothly roll and discharge the material to the outside, thereby speeding up the unloading process, preventing accumulation, and improving the convenience and discharging rate of the cutting device body 100 in conveying the aluminum material after cutting.
[0026] In order to facilitate the transportation of the cut aluminum material on the surface of the discharge support platform 106 through the rolling component without generating friction, and to smoothly promote the unloading process, in this embodiment, preferably, the rolling component includes rolling grooves 1064 equidistantly arranged on the upper surface of the discharge support platform 106, and rolling bodies 1061 roll inside the rolling grooves 1064. The cut aluminum material is placed in the discharge support platform 106 and contacts the surface of the rolling body 1061. When the aluminum material is pushed, the rolling body 1061 is driven to roll inside the rolling grooves 1064 to smoothly discharge the material, thereby reducing the discharge friction.
[0027] In order to facilitate the rotation of the rolling ring 1065 and the friction push plate 1066 through the driving assembly, and to facilitate use during driving and pushing, in this embodiment, preferably, the driving assembly includes a rotating shaft 1062 rotatably connected to the middle position of the upper surface of the discharge support platform 106, and the end of the rotating shaft 1062 is located on the side of the discharge support platform 106 and a motor 1063 is installed, so that the motor 1063 can drive the rotating shaft 1062 to rotate, and the rolling ring 1065 and the friction push plate 1066 are driven to rotate through the rotating shaft 1062.
[0028] In order to facilitate the pressure push on the cut aluminum material to be discharged to the outside through the discharge pushing assembly, in this embodiment, preferably, the discharge pushing assembly includes two rolling rings 1065 fixed to the outer surface of the rotating shaft 1062 by screws, and the outer surface of the rolling ring 1065 has two friction push plates 1066 fixed by screws. When the rolling ring 1065 and the friction push plate 1066 are driven to rotate by the rotating shaft 1062, the friction push plate 1066 rotates to contact the surface of the cut aluminum material and apply pressure push forward to speed up the discharge.
[0029] A downward pressing positioning mechanism is provided, and the downward pressing positioning mechanism includes downward pressing positioning components arranged on the sides of both ends of the cutting knife 107. Limited sliding components are arranged on both sides of the downward pressing positioning component. When the cutting device body 100 cuts the aluminum material, the cutting knife 107 is pressed down and at the same time drives the downward pressing positioning mechanism to position and cut the aluminum material, which makes the cutting more stable and accurate, and improves the positioning accuracy of the cutting device body 100 when cutting the aluminum material.
[0030] In order to facilitate the downward pressing and positioning of the cutting knife 107 to cut the aluminum material while positioning and cutting the aluminum material through the downward pressing and positioning assembly, the cutting is more precise. In this embodiment, preferably, the downward pressing and positioning assembly includes an extension frame 1071 fixed to the sides of the cutting knife 107 at both ends by bolts, so that the downward pressing and positioning rod 1072 can be installed after the extension frame 1071 is installed, which is easy to install and use. A spring 1074 is provided at one end of the extension frame 1071, and a downward pressing and positioning rod 1072 is provided inside the spring 1074. A groove 1073 is welded to the top of the downward pressing and positioning rod 1072 and the top of the inner side of the spring 1074 until the cutting knife 107 is pressed down to cut, driving the extension frame 1071 and the downward pressing and positioning rod 1072 to be pressed down to the surface of the aluminum material for positioning and cutting, which is more precise.
[0031] In order to facilitate the stable elastic pressing and positioning of the downward positioning rod 1072 through the limiting sliding assembly, in this embodiment, preferably, the limiting sliding assembly includes a limiting slide 1075 opened on both sides of the spring 1074, and limiting sliders 1076 are welded on both sides of the top of the downward positioning rod 1072. The limiting slider 1076 slides with the inside of the limiting slide 1075, and when the downward positioning rod 1072 is elastically connected to the inside of the spring 1074, the limiting slider 1076 is driven to slide within the limiting slide 1075, so that the downward positioning rod 1072 is stably positioned and pressed.
[0032] The working principle and use process of the present invention are as follows: When operating the aluminum material cutting device, the cutting device body 100 is stably placed in the use position by making the bottom end of the base 101 contact the ground. After placement, the aluminum material is fed into the surface of the cutting operation plate 104 on the surface of the feeding support table 105, and the two cylinders 103 drive the cutting blade 107 to press down on the surface of the aluminum material to perform the cutting operation. After cutting, the cut aluminum material is pushed to the surface of the discharging support table 106 to be discharged to the outside.
[0033] Then, when the cutting device body 100 is cutting the aluminum material, when the cutting knife 107 is pressed down for cutting, the extension frame 1071 and the pressing positioning rod 1072 are driven to move downward until the surface of the pressing positioning rod 1072 is positioned and pressed against the surface of the aluminum material, and when the pressing cutting is performed, the groove 1073 is deformed to cause the top end of the pressing positioning rod 1072 to slide elastically inside the spring 1074, and drive the limiting slider 1076 to slide within the limiting slide groove 1075 until the pressing positioning rod 1072 is elastically pressed to press and position the aluminum material, thereby facilitating the positioning and cutting of the aluminum material when cutting, and not susceptible to deviation and rotation during cutting, thereby improving the positioning accuracy of the cutting device body 100 when cutting the aluminum material;
[0034] Finally, after the cutting device main body 100 cuts the aluminum material, when the cut aluminum material enters the surface of the discharging support platform 106, the lower surface of the aluminum material contacts the surface of the rolling body 1061, and a suitable friction push plate 1066 is selected to be fixed on the surface of the rolling ring 1065, and the motor 1063 is driven to rotate the rotating shaft 1062. When the rotating shaft 1062 rotates, it drives the rolling ring 1065 and the friction push plate 1066 to rotate, so that when the friction push plate 1066 rotates, the lower surface contacts the surface of the aluminum material to push the aluminum material forward. When the aluminum material is pushed, the surface of the rolling body 1061 is contacted, driving the rolling body 1061 to roll inside the rolling groove 1064, and the discharging is not easy to be damaged by friction, so that the aluminum material on the surface of the discharging support platform 106 is pushed to be transported out, which speeds up the unloading process, is not easy to accumulate, and improves the convenience and discharging rate of the cutting device main body 100 for conveying and discharging the aluminum material after cutting.
[0035] Although embodiments of the present invention have been shown and described (see the detailed description above for details), it will be understood by those skilled in the art that various changes, modifications, substitutions and variations may be made to these embodiments without departing from the principles and spirit of the present invention, and the scope of the present invention is defined by the appended claims and their equivalents.
Claims
1. An aluminum material cutting device, comprising a cutting device body (100), the cutting device body (100) comprising a base (101), a top frame (102) welded to the top of the base (101), a cutting operation panel (104) provided at the middle position of the upper surface of the base (101), a feed support platform (105) and a discharge support platform (106) fixedly mounted on both sides of the base (101), two cylinders (103) fixed to the upper surface of the top frame (102) by bolts, the ends of the two cylinders (103) being located on the lower surface of the top frame (102) and being fixed with cutting knives (107) by bolts, characterized in that: The cutting device body (100) is further provided with: A discharging mechanism is provided, and the discharging mechanism comprises a rolling assembly arranged on the upper surface of a discharging support platform (106), a driving assembly is arranged at a middle position of the upper surface of the discharging support platform (106), and a discharging pushing assembly is arranged on the outer surface of the driving assembly; A downward pressing positioning mechanism comprises downward pressing positioning components arranged on the sides of both ends of the cutting knife (107), and limited sliding components are arranged on both sides of the interior of the downward pressing positioning component.
2. The aluminum material cutting device according to claim 1, characterized in that: The rolling assembly comprises rolling grooves (1064) equidistantly arranged on the upper surface of the discharge support platform (106), and a rolling body (1061) rolls inside the rolling grooves (1064).
3. The aluminum material cutting device according to claim 1, characterized in that: The driving assembly comprises a rotating shaft (1062) rotatably connected to the middle position of the upper surface of the discharge support platform (106), and a motor (1063) is installed at the end of the rotating shaft (1062) located on the side of the discharge support platform (106).
4. The aluminum material cutting device according to claim 3, characterized in that: The discharging pushing assembly comprises two rolling rings (1065) fixed to the outer surface of the rotating shaft (1062) by screws, and two friction-driven pushing plates (1066) are fixed to the outer surface of the rolling ring (1065) by screws.
5. The aluminum material cutting device according to claim 4, characterized in that: The friction-activated push plate (1066) is an arc-shaped structure, and the two friction-activated push plates (1066) are symmetrically arranged via a rolling ring (1065).
6. The aluminum material cutting device according to claim 1, characterized in that: The downward positioning assembly comprises an extension frame (1071) fixed to the sides of both ends of the cutting knife (107) by bolts, a spring (1074) is provided at one end of the interior of the extension frame (1071), a downward positioning rod (1072) is provided inside the spring (1074), and a groove (1073) is welded between the top end of the downward positioning rod (1072) and the top end of the interior of the spring (1074).
7. The aluminum material cutting device according to claim 6, characterized in that: The limiting sliding assembly includes limiting grooves (1075) opened on both sides of the interior of the spring (1074), and limiting sliders (1076) are welded on both sides of the top of the downward pressing positioning rod (1072), and the limiting sliders (1076) slide with the interior of the limiting grooves (1075).