Stainless steel product cutting machine
By designing chip lifting mechanism, electrostatic elimination assembly and scraping swing assembly, the problems of chip accumulation and electrostatic adsorption in rotary disc cutting machines are solved, and the quality and efficiency of stainless steel cutting are improved.
Patent Information
- Application Number
- CN202510820455.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-19
- Publication Date
- 2025-07-18
- Estimated Expiration
- 2045-06-19
AI Technical Summary
The existing rotary disc cutting machines are prone to chip accumulation when cutting stainless steel, resulting in increased tool wear or scratches on the processing surface. The cutting of stainless steel is prone to static electricity, making it difficult to completely scrape the chip adsorption.
A stainless steel product cutting machine is designed, including a chip lifting mechanism, an electrostatic elimination assembly and a scraping swing assembly. By automatically ejecting chips, it eliminates static electricity and scrapes chips to prevent chip accumulation and adsorption.
Effectively prevent chip accumulation, avoid tool wear and scratches on the processing surface, ensure cutting quality, and eliminate static electricity influence to achieve even distribution and efficient collection of chips.
Smart Images

Figure CN120326041A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of stainless steel processing equipment, and specifically relates to a cutting machine for stainless steel products. Background Art
[0002] In the modern industrial manufacturing system, stainless steel products are widely used in many fields such as aerospace, medical devices, food processing, and architectural decoration due to their excellent corrosion resistance, high strength, and good formability. In the whole-process processing and production of stainless steel products, cutting, as a key forming and finishing process, directly determines the final quality of the product and the production efficiency of the enterprise. With the development of the manufacturing industry towards high precision and high efficiency, the requirements for stainless steel cutting technology are becoming increasingly stringent.
[0003] At present, using a rotary disk cutting machine for stainless steel cutting has become one of the more common and important cutting methods in the industry. This type of cutting machine drives the rotary disk cutter to rotate at high speed, and uses the relative movement between the sharp edge of the disk cutter and the stainless steel workpiece to achieve the layer-by-layer removal of materials and shape processing. Compared with traditional fixed-tool cutting equipment, the rotary disk cutting machine can effectively reduce the cutting resistance and reduce the friction between the tool and the workpiece by virtue of the continuous rotational movement of the tool, thereby improving the cutting efficiency and tool life to a certain extent.
[0004] However, the existing rotary disk cutting machine has the following deficiencies when cutting stainless steel:
[0005] (1) When cutting stainless steel, the chips have high toughness and are easy to curl. Especially in the slot milling scenario, the chips are easily accumulated in the cutting slot, which easily leads to increased tool wear (such as chipping) or scratching of the machined surface.
[0006] (2) When cutting stainless steel, static electricity is easily generated, and the chips are adsorbed on the surface of the workpiece, and it is difficult for traditional scrapers to completely scrape them off.
[0007] To solve the above problems, we propose a cutting machine for stainless steel products. Summary of the Invention
[0008] Aiming at the deficiencies of the prior art, the present invention provides a cutting machine for stainless steel products, which solves the problems put forward in the background art.
[0009] To achieve the above objectives, the present invention is realized through the following technical solutions: A cutting machine for stainless steel products, including a bracket, a collection box is arranged above the bracket, a cutting table is fixed inside the collection box, and a chip lifting mechanism is arranged inside the collection box, and the chip lifting mechanism is used to lift the chips in the cutting slot;
[0010] The chip lifting mechanism includes a fixed seat fixed on the bottom wall of the collection box. A chute is provided at the top of the fixed seat. A curved seat is slidably connected inside the chute. An L-shaped rod is fixed to the bottom of the cutting table. A square block is fixed to one end of the L-shaped rod. A vertical rod is slidably connected inside the square block. The top of the vertical rod is fixed with a top plate. The top of the top plate penetrates through the cutting table and extends to the top of the cutting table. The bottom of the vertical rod is fixed with a circular plate. A first spring is sleeved on the outer surface of the vertical rod. The top of the first spring is fixed to the bottom of the square block, and the bottom of the first spring is fixed to the top of the circular plate. A vertical plate is fixed to the bottom of the circular plate. A roller is rotatably connected to one side of the vertical plate. The roller rolls on the top of the curved seat. A driving component for driving the curved seat to move horizontally back and forth is arranged in the collection box.
[0011] Preferably, the driving component includes a vertical plate fixed on the bottom wall of the collection box. A cross bar is rotatably connected to one side of the vertical plate. A square frame is fixed on the bottom wall of the collection box. One end of the cross bar extends into the square frame. A rotating roller is fixed to one end of the cross bar. A wave groove is provided on the surface of the rotating roller. A U-shaped frame is slidably connected inside the square frame.
[0012] Preferably, connecting columns are fixed to the opposite sides of the U-shaped frame. One end of each of the two connecting columns extends into the wave groove. The outer surfaces of the two connecting columns are slidably connected to the inner surface of the wave groove. A connecting rod is fixed to one side of the U-shaped frame. One end of the connecting rod is fixed to one side of the curved seat. A driving rod is rotatably connected to one side of the vertical plate. A first motor is fixed to the other side of the vertical plate. The first motor drives the driving rod to rotate. Pulley wheels are fixed to the outer surfaces of the driving rod and the cross bar. The two pulley wheels are connected by a belt in transmission.
[0013] Preferably, an electrostatic elimination component for eliminating static electricity on the surface of the stainless steel workpiece is arranged on one side of the vertical plate. The electrostatic elimination component includes a first missing gear fixed to one end of the driving rod. A rotating rod is rotatably connected to one side of the vertical plate. A second missing gear is fixed to the rotating rod. The first missing gear meshes with the second missing gear. A convex column is fixed to one side of the first missing gear. A blocking rod is fixed to one side of the second missing gear. The outer surface of the convex column is in contact and extrusion with one side of the blocking rod.
[0014] Preferably, a disc is fixed to one end of the rotating rod. An installation column is fixed to one side of the disc. A vertical pipe is fixed to the bottom of the installation column. A moving rod is slidably connected to the bottom end of the vertical pipe. A supporting block is fixed to the bottom end of the moving rod. A second spring is sleeved on the outer surface of the moving rod. The top of the second spring is fixed to the bottom end of the vertical pipe, and the bottom of the second spring is fixed to the top of the supporting block. A conductive disc is rotatably connected to one side of the supporting block.
[0015] Preferably, a chip scraping and swinging assembly is provided on the curved surface seat. The chip scraping and swinging assembly is used to scrape the chips lifted by the top plate. The chip scraping and swinging assembly includes a folding rod fixed on one side of the curved surface seat. A top seat is fixed on the folding rod. A rotating column is rotatably connected to the bottom of the top seat. A scraping plate is fixed on the rotating column. Two connecting ears are fixed on one side of the rotating column. A swing rod is rotatably connected between the two connecting ears through a pin shaft. A rotating block is rotatably connected to the bottom of the top seat. One end of the swing rod penetrates through the rotating block and extends to the outside of the rotating block.
[0016] Preferably, the outer surface of the swing rod is slidably connected to the inner surface of the rotating block. A round block is fixed on the outer surface of the swing rod. A third spring is sleeved on the outer surface of the swing rod. One end of the third spring is fixed to one side of the round block. One end of the third spring is fixed to one side of the rotating block. Two limiting columns are fixed to the bottom of the top seat. Two L-shaped plates are fixed to one side of the cutting table. Columns are fixed to the tops of the two L-shaped plates. The outer surfaces of the two columns are in contact with and press against one side of the scraping plate.
[0017] Preferably, blowers are installed on both sides of the cutting table. Four support columns are fixed to the top of the cutting table. A vertical frame is fixed to one side of the bracket. A cylinder is fixed to one side of the vertical frame. A moving frame is fixed to the output end of the cylinder. A disc cutting machine body is installed on the moving frame.
[0018] Preferably, a horizontal translation assembly for driving the collection box to perform horizontal displacement is provided on the top of the bracket. The horizontal translation assembly includes two mounting plates fixed on the top of the bracket. A lead screw is rotatably connected between the opposite sides of the two mounting plates. A fixed rod is fixed between the opposite sides of the two mounting plates. A moving seat is threadedly connected to the outer surface of the lead screw. The moving seat slides on the fixed rod. A second motor is fixed to one side of the mounting plate. The second motor drives the lead screw to rotate. The top of the moving seat is fixed to the bottom of the collection box.
[0019] The present invention provides a cutting machine for stainless steel products. Compared with the prior art, the following beneficial effects are achieved:
[0020] (1) Through the setting of the chip lifting mechanism, the automatic and rapid lifting of the chips in the cutting groove is realized, preventing the chips from accumulating in the cutting groove, thereby avoiding the aggravation of tool wear or the scratching of the processed surface, and greatly improving the cutting quality of stainless steel products.
[0021] (2) Through the setting of the static electricity elimination assembly, when the driving assembly drives the top plate to lift the chips, it can synchronously drive the conductive disc to intermittently contact the top of the stainless steel workpiece, thereby leading away and eliminating the static electricity generated during stainless steel cutting, effectively avoiding the adsorption of chips on the surface of the stainless steel workpiece, and facilitating further scraping by the scraping plate.
[0022] (3) With the setting of the chip scraping swing assembly, when the chip lifting mechanism works, by means of the horizontal reciprocating movement of the curved surface seat, the scraper is synchronously driven to perform horizontal reciprocating scraping, scraping the lifted chips to both sides of the top of the workpiece. After eliminating static electricity, the blower is started to blow the chips away along the inclined direction of the scraper. When the scraper moves, it can perform cyclic swinging to change the angle. By changing the inclined angle, the chips can be evenly blown into the collection box. The even distribution of the chips can avoid premature filling of the collection box caused by local rapid accumulation. Description of the Drawings
[0023] Figure 1 is the three-dimensional external structure of the present invention Figure 1 ;
[0024] Figure 2 is the three-dimensional external structure of the present invention Figure 2 ;
[0025] Figure 3 is the three-dimensional local structure diagram of the present invention;
[0026] Figure 4 is the present invention Figure 3 is the enlarged local view of part A in the present invention;
[0027] Figure 5 is the three-dimensional drive assembly diagram of the present invention;
[0028] Figure 6 is the three-dimensional electrostatic elimination assembly diagram of the present invention;
[0029] Figure 7 is the three-dimensional chip scraping swing assembly diagram of the present invention;
[0030] Figure 8 is the present invention Figure 7 is the enlarged local view of part B in the present invention;
[0031] Figure 9 is the three-dimensional cross-moving assembly diagram of the present invention.
[0032] In the figure: 1, support; 2, collection box; 3, cutting table; 4, chip lifting mechanism; 5, drive assembly; 6, static elimination assembly; 7, chip scraping swing assembly; 8, fan; 9, support column; 10, transverse movement assembly; 11, vertical frame; 12, cylinder; 13, moving frame; 14, disc cutting machine body; 41, fixed seat; 42, chute; 43, curved surface seat; 44, L-shaped rod; 45, square block; 46, vertical rod; 47, top plate; 48, circular plate; 49, first spring; 410, vertical plate; 411, roller; 51, vertical plate; 52, cross bar; 53, square frame; 54, rotating roller; 55, wave groove; 56, U-shaped frame; 57, connecting column; 58, connecting rod; 59, drive rod; 510, first motor; 511, pulley; 512, belt; 61, first missing gear; 62, rotating rod; 63, second missing gear; 64, convex column; 65, blocking rod; 66, disc; 67, mounting column; 68, vertical pipe; 69, moving rod; 610, supporting block; 611, second spring; 612, conductive disc; 71, folding rod; 72, top seat; 73, rotating column; 74, scraping plate; 75, connecting ear; 76, swing rod; 77, rotating block; 78, circular block; 79, third spring; 710, limiting column; 711, L-shaped plate; 712, vertical column; 101, mounting plate; 102, lead screw; 103, fixed rod; 104, moving seat; 105, second motor. Specific embodiments
[0033] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative work shall fall within the protection scope of the present invention.
[0034] The embodiments of the present invention provide three technical solutions, which specifically include the following embodiments:
[0035] Embodiment 1: Please refer to Figures 1 - 4 , a stainless steel product cutting machine, including a support 1, a collection box 2 is arranged above the support 1, the collection box 2 is used to collect the chips after cutting, a cutting table 3 is fixed inside the collection box 2, and a chip lifting mechanism 4 is arranged in the collection box 2. The chip lifting mechanism 4 is used to lift the chips in the cutting groove, specifically to lift the chips to be flush with the top of the stainless steel workpiece. The stainless steel workpiece is specifically a stainless steel plate;
[0036] The chip lifting mechanism 4 includes a fixed seat 41 fixed on the bottom wall of the collection box 2, a slide groove 42 is provided on the top of the fixed seat 41, a curved seat 43 is slidably connected inside the slide groove 42, the curved seat 43 is adapted to the size of the slide groove 42, and the curved seat 43 is set to be a curved surface with a high middle and low sides. An L-shaped rod 44 is fixed to the bottom of the cutting table 3, a block 45 is fixed to one end of the L-shaped rod 44, a vertical rod 46 is slidably connected inside the block 45, and a top plate 47 is fixed to the top of the vertical rod 46. After the top plate 47 is lifted up, the chips in the cutting groove can be pushed out to prevent the chips from wearing the tool. The top of the top plate 47 passes through the cutting table 3 and extends to the cutting table 3, a circular plate 48 is fixed to the bottom end of the vertical rod 46, a spring 49 is sleeved on the outer surface of the vertical rod 46, and the setting of the spring 49 is used to reset the top plate 47, the top end of the spring 49 is fixed to the bottom of the block 45, and the bottom end of the spring 49 is fixed to the top of the circular plate 48, and a vertical plate 410 is fixed to the bottom of the circular plate 48, and a roller 411 is rotatably connected to one side of the vertical plate 410, and the roller 411 rolls on the top of the curved seat 43. When the roller 411 rolls to the middle protrusion, it can drive the top plate 47 to lift up and stay for a period of time. A driving component 5 is provided in the collection box 2 to drive the curved seat 43 to move horizontally back and forth.
[0037] The driving assembly 5 includes a vertical plate 51 fixed on the bottom wall of the collecting box 2, one side of the vertical plate 51 is rotatably connected to a cross bar 52, a square frame 53 is fixed on the bottom wall of the collecting box 2, one end of the cross bar 52 extends to the inside of the square frame 53, one end of the cross bar 52 is fixed to a roller 54, the surface of the roller 54 is provided with a wave groove 55, and the inside of the square frame 53 is slidably connected to a U-shaped frame 56.
[0038] Connecting columns 57 are fixed on opposite sides of the U-shaped frame 56, one end of the two connecting columns 57 extends to the inside of the wave groove 55, and the outer surfaces of the two connecting columns 57 are slidably connected to the inner surface of the wave groove 55. When the roller 54 rotates, the wave groove 55 rotates synchronously, thereby driving the two connecting columns 57 to slide in the wave groove 55, thereby driving the U-shaped frame 56 to reciprocate in the horizontal direction. A connecting rod 58 is fixed on one side of the U-shaped frame 56, one end of the connecting rod 58 is fixed to one side of the curved seat 43, one side of the vertical plate 51 is rotatably connected to a driving rod 59, and the other side of the vertical plate 51 is fixed with a motor 510, the motor 510 is controlled by an external switch and is electrically connected to an external power supply, the motor 510 drives the driving rod 59 to rotate, and the outer surfaces of the driving rod 59 and the cross bar 52 are fixed with pulleys 511, and the two pulleys 511 are connected by a belt 512 for transmission. The arrangement of the pulleys 511 and the belt 512 can make the driving component 5 and the static elimination component 6 work synchronously.
[0039] Through the setting of the chip jacking mechanism 4, the automatic and rapid jacking of the chips in the cutting groove is realized, preventing the chips from accumulating in the cutting groove, thus avoiding the aggravation of tool wear or the scratching of the machined surface, and greatly improving the cutting quality of stainless steel products.
[0040] Blowers 8 are installed on both sides of the cutting table 3. The blowers 8 are controlled by an external switch and are electrically connected to an external power supply. After the blowers 8 are started, in cooperation with the inclination of the scraper 74, the chips on the surface of the workpiece can be blown away. Four support columns 9 are fixed on the top of the cutting table 3, and the support columns 9 are used to support the workpiece being cut. A vertical frame 11 is fixed on one side of the bracket 1, and a cylinder 12 is fixed on one side of the vertical frame 11. The cylinder 12 is controlled by an external switch and is electrically connected to an external power supply. A moving frame 13 is fixed to the output end of the cylinder 12, and a disc cutting machine body 14 is installed on the moving frame 13. After the cylinder 12 is started, it can drive the disc cutting machine body 14 to move back and forth to change the cutting position. The disc cutting machine body 14 is a prior art. After starting, the rotating disc cutter cuts the stainless steel workpiece. The disc cutting machine body 14 is controlled by an external switch and is electrically connected to an external power supply.
[0041] Embodiment 2: On the basis of Embodiment 1, as shown in Figure 3 , Figure 5 , Figure 6 An electrostatic elimination component 6 for eliminating static electricity on the surface of the stainless steel workpiece is arranged on one side of the vertical plate 51. The electrostatic elimination component 6 includes a missing gear one 61 fixed to one end of the driving rod 59. A rotating rod 62 is rotatably connected to one side of the vertical plate 51, and a missing gear two 63 is fixed to the rotating rod 62. The missing gear one 61 meshes with the missing gear two 63. When the missing gear one 61 rotates, it can drive the missing gear two 63 to rotate intermittently. A convex column 64 is fixed to one side of the missing gear one 61, and a blocking rod 65 is fixed to one side of the missing gear two 63. The outer surface of the convex column 64 contacts and presses against one side of the blocking rod 65. When the missing gear one 61 drives the convex column 64 to contact the blocking rod 65, the missing gear two 63 can be driven to rotate. When the convex column 64 does not contact the blocking rod 65, the missing gear two 6 stops rotating.
[0042] One end of the rotating rod 62 is fixed with a disc 66. One side of the disc 66 is fixed with a mounting post 67. The bottom of the mounting post 67 is fixed with a vertical pipe 68. The bottom end of the vertical pipe 68 is slidably connected with a moving rod 69. The top end of the moving rod 69 extends into the interior of the vertical pipe 68. The bottom end of the moving rod 69 is fixed with a supporting block 610. A second spring 611 is sleeved on the outer surface of the moving rod 69. The arrangement of the second spring 611 can drive the conductive disc 612 to reset. When the conductive disc 612 contacts the workpiece, the second spring 611 is compressed by extrusion, and the moving rod 69 moves into the vertical pipe 68. The top end of the second spring 611 is fixed to the bottom end of the vertical pipe 68, and the bottom end of the second spring 611 is fixed to the top of the supporting block 610. One side of the supporting block 610 is rotatably connected with a conductive disc 612. The conductive disc 612, the supporting block 610, the moving rod 69, the vertical pipe 68, the mounting post 67, the disc 66, the rotating rod 62, and the vertical plate 51 are all made of conductive metal materials. The vertical plate 51 is grounded through a wire. After the conductive disc 612 contacts the stainless-steel workpiece, the static electricity can be conducted away and eliminated.
[0043] Through the arrangement of the static electricity eliminating assembly 6, when the driving assembly 5 drives the top plate 47 to lift the chips, the conductive disc 612 can be synchronously driven to intermittently contact the top of the stainless-steel workpiece, thereby conducting away and eliminating the static electricity generated during the stainless-steel cutting, effectively avoiding the chips from adhering to the surface of the stainless-steel workpiece and facilitating the further scraping by the scraping plate 74.
[0044] Embodiment 3: On the basis of Embodiment 2, refer to Figure 3 、 Figure 7 、 Figure 8 、 Figure 9 As shown, a chip scraping swinging assembly 7 is arranged on the curved surface seat 43. The chip scraping swinging assembly 7 is used for scraping the chips lifted by the top plate 47. The chip scraping swinging assembly 7 includes a folding rod 71 fixed on one side of the curved surface seat 43. A top seat 72 is fixed on the folding rod 71. The bottom of the top seat 72 is rotatably connected with a rotating column 73. A scraping plate 74 is fixed on the rotating column 73. The scraping plate 74 is arranged for scraping the chips on the surface of the workpiece. Two connecting ears 75 are fixed on one side of the rotating column 73. A swing rod 76 is rotatably connected between the two connecting ears 75 through a pin shaft. The bottom of the top seat 72 is rotatably connected with a rotating block 77. One end of the swing rod 76 penetrates through the rotating block 77 and extends to the outside of the rotating block 77.
[0045] The outer surface of the swing rod 76 is slidably connected to the inner surface of the rotating block 77. A round block 78 is fixed on the outer surface of the swing rod 76. A third spring 79 is sleeved on the outer surface of the swing rod 76. One end of the third spring 79 is fixed to one side of the round block 78, and one end of the third spring 79 is fixed to one side of the rotating block 77. Two limiting columns 710 are fixed to the bottom of the top seat 72. Two L-shaped plates 711 are fixed to one side of the cutting table 3. Columns 712 are fixed to the tops of the two L-shaped plates 711. The outer surfaces of the two columns 712 are in contact with and extrude one side of the scraping plate 74. The columns 712 are provided to change the inclination angle of the scraping plate 74. The scraping plate 74 rotates 90 degrees each time it contacts the column 712.
[0046] Through the setting of the chip scraping and swinging assembly 7, when the chip jacking mechanism 4 works, by using the horizontal reciprocating movement of the curved surface seat 43, the scraping plate 74 is synchronously driven to perform horizontal reciprocating scraping, and the jacked-up chips are scraped to both sides of the top of the workpiece. After eliminating static electricity, the blower 8 is started, and the chips are blown away along the inclined direction of the scraping plate 74. When the scraping plate 74 moves, it can perform cyclic swinging to change the angle. By using the change of the inclination angle, the chips can be evenly blown into the collection box 2. The even distribution of the chips can prevent the collection box 2 from being filled prematurely due to local rapid accumulation.
[0047] A transverse movement assembly 10 for driving the collection box 2 to perform horizontal displacement is provided at the top of the bracket 1. The transverse movement assembly 10 includes two mounting plates 101 fixed to the top of the bracket 1. A lead screw 102 is rotatably connected between the opposite sides of the two mounting plates 101. A fixed rod 103 is fixed between the opposite sides of the two mounting plates 101. A moving seat 104 is threadedly connected to the outer surface of the lead screw 102. The moving seat 104 slides on the fixed rod 103. A second motor 105 is fixed to one side of the mounting plate 101. The second motor 105 is a three-phase asynchronous motor, which can rotate forward and backward, is controlled by an external switch, and is electrically connected to an external power supply. The second motor 105 drives the lead screw 102 to rotate. The top of the moving seat 104 is fixed to the bottom of the collection box 2. The setting of the transverse movement assembly 10 can drive the entire collection box 2 to move horizontally, thereby driving the workpiece to move and changing the cutting position.
[0048] Meanwhile, the content not described in detail in this specification belongs to the prior art well-known to those skilled in the art.
[0049] During operation, place the stainless steel workpiece on the support column 9 of the cutting table 3, start the disk cutting machine body 14, and use the disk cutter to cut the workpiece. After the cutting groove is formed on the workpiece, start the first motor 510. The first motor 510 drives the roller 54 to rotate, thereby causing the two connecting columns 57 to slide in the wave groove 55, and further causing the U-shaped frame 56 to perform a reciprocating movement in the horizontal direction. Then, the U-shaped frame 56 drives the curved surface seat 43 to perform a horizontal reciprocating movement, causing the roller 411 to roll up and down on the curved surface of the curved surface seat 43, and further causing the top plate 47 to perform a reciprocating movement up and down. When the top plate 47 moves upward, it pushes up the chips in the cutting groove, making the top of the top plate 47 flush with the top of the workpiece. At this time, during the horizontal movement of the curved surface seat 43, it drives the scraper 74 to move synchronously. The scraper 74 scrapes off the chips on the surface of the workpiece. When the first motor 510 starts, it synchronously drives the first missing gear 61 to rotate. When the first missing gear 61 rotates, the convex column 64 intermittently contacts the stop lever 65, thereby driving the second missing gear 63 to rotate intermittently. Then, the second missing gear 63 drives the disk 66 to rotate intermittently. Then, the disk 66 drives the conductive disk 612 to intermittently contact and press against the top of the stainless steel workpiece. After the conductive disk 612 contacts the workpiece, it can conduct away the static electricity on the workpiece, effectively avoiding the phenomenon that the workpiece adsorbs chips due to the static electricity effect. After eliminating the static electricity, the scraper 74 can better scrape off the chips. When the scraper 74 contacts and presses against the column 712, the scraper 74 swings 90 degrees to change the chip scraping angle. After the scraper 74 changes the angle, start the blower 8, and use the blower 8 to blow the chips into the collection box 2. The inclined setting of the scraper 74 can cause the chips to be blown away well along the inclined direction of the scraper 74.
[0050] The embodiments of the invention have been described in detail above, but the above content is only the preferred embodiment of the present invention and cannot be considered as limiting the scope of implementation of the present invention. All equivalent changes and improvements made according to the scope of the application of the present invention should still fall within the scope covered by the patent of the present invention.
Claims
1. A stainless steel product cutting machine, comprising a bracket (1), characterized in that: Above the bracket (1), there is a collection box (2). Inside the collection box (2), there is a cutting table (3) fixed. Inside the collection box (2), there is a chip lifting mechanism (4), and the chip lifting mechanism (4) is used to lift the chips in the cutting groove. The chip lifting mechanism (4) includes a fixed seat (41) fixed on the bottom wall of the collection box (2). On the top of the fixed seat (41), there is a chute (42). Inside the chute (42), there is a curved surface seat (43) slidably connected. At the bottom of the cutting table (3), there is an L-shaped rod (44) fixed. At one end of the L-shaped rod (44), there is a square block (45) fixed. Inside the square block (45), there is a vertical rod (46) slidably connected. At the top of the vertical rod (46), there is a top plate (47) fixed. The top of the top plate (47) penetrates through the cutting table (3) and extends to the top of the cutting table (3). At the bottom of the vertical rod (46), there is a round plate (48) fixed. On the outer surface of the vertical rod (46), there is a first spring (49) sleeved. At the bottom of the round plate (48), there is a vertical plate (410) fixed. On one side of the vertical plate (410), there is a roller (411) rotatably connected. The roller (411) rolls on the top of the curved surface seat (43). Inside the collection box (2), there is a driving component (5) for driving the curved surface seat (43) to move horizontally back and forth.
2. The cutting machine for stainless steel products according to claim 1, characterized in that: The driving component (5) includes a vertical plate (51) fixed on the bottom wall of the collection box (2). On one side of the vertical plate (51), there is a cross bar (52) rotatably connected. On the bottom wall of the collection box (2), there is a square frame (53) fixed. One end of the cross bar (52) extends into the inside of the square frame (53). At one end of the cross bar (52), there is a rotating roller (54) fixed. On the surface of the rotating roller (54), there is a wavy groove (55). Inside the square frame (53), there is a U-shaped frame (56) slidably connected.
3. A stainless steel product cutting machine according to claim 2, characterized in that: On the opposite sides of the U-shaped frame (56), there are connecting columns (57) fixed. One end of each of the two connecting columns (57) extends into the inside of the wavy groove (55). The outer surfaces of the two connecting columns (57) are slidably connected with the inner surface of the wavy groove (55). On one side of the U-shaped frame (56), there is a connecting rod (58) fixed. One end of the connecting rod (58) is fixed to one side of the curved surface seat (43). On one side of the vertical plate (51), there is a driving rod (59) rotatably connected. On the other side of the vertical plate (51), there is a first motor (510) fixed. The first motor (510) drives the driving rod (59) to rotate. On the outer surfaces of the driving rod (59) and the cross bar (52), there are belt pulleys (511) fixed. Between the two belt pulleys (511), there is a belt (512) for transmission connection.
4. A stainless steel product cutting machine according to claim 3, characterized in that: On one side of the vertical plate (51), there is an electrostatic elimination component (6) for eliminating the static electricity on the surface of the stainless-steel workpiece. The electrostatic elimination component (6) includes a sector gear one (61) fixed to one end of a driving rod (59). On one side of the vertical plate (51), a rotating rod (62) is rotatably connected. A sector gear two (63) is fixed to the rotating rod (62). The sector gear one (61) meshes with the sector gear two (63). A convex column (64) is fixed to one side of the sector gear one (61), and a stop rod (65) is fixed to one side of the sector gear two (63). The outer surface of the convex column (64) is in contact with and presses against one side of the stop rod (65).
5. A stainless steel product cutting machine according to claim 4, characterized in that: One end of the rotating rod (62) is fixed with a disc (66). One side of the disc (66) is fixed with a mounting post (67). The bottom of the mounting post (67) is fixed with a vertical pipe (68). The bottom end of the vertical pipe (68) is slidably connected with a moving rod (69). The bottom end of the moving rod (69) is fixed with a support block (610). A second spring (611) is sleeved on the outer surface of the moving rod (69). The top end of the second spring (611) is fixed to the bottom end of the vertical pipe (68), and the bottom end of the second spring (611) is fixed to the top of the support block (610). One side of the support block (610) is rotatably connected with a conductive disc (612).
6. A stainless steel product cutting machine according to claim 1, characterized in that: On the curved surface seat (43), there is a chip scraping and swinging component (7) for scraping the chips lifted by the top plate (47). The chip scraping and swinging component (7) includes a folding rod (71) fixed to one side of the curved surface seat (43). A top seat (72) is fixed to the folding rod (71). A rotating column (73) is rotatably connected to the bottom of the top seat (72). A scraping plate (74) is fixed to the rotating column (73). Two connecting ears (75) are fixed to one side of the rotating column (73). A swing rod (76) is rotatably connected between the two connecting ears (75) through a pin shaft. A rotating block (77) is rotatably connected to the bottom of the top seat (72). One end of the swing rod (76) penetrates through the rotating block (77) and extends to the outside of the rotating block (77).
7. A stainless steel product cutting machine according to claim 6, characterized in that: The outer surface of the swing rod (76) is slidably connected with the inner surface of the rotating block (77). A round block (78) is fixed to the outer surface of the swing rod (76). A third spring (79) is sleeved on the outer surface of the swing rod (76). One end of the third spring (79) is fixed to one side of the round block (78), and one end of the third spring (79) is fixed to one side of the rotating block (77). Two limiting columns (710) are fixed to the bottom of the top seat (72). Two L-shaped plates (711) are fixed to one side of the cutting table (3). Columns (712) are fixed to the tops of the two L-shaped plates (711). The outer surfaces of the two columns (712) are in contact with and press against one side of the scraping plate (74).
8. A stainless steel product cutting machine according to claim 1, characterized in that: Fans (8) are installed on both sides of the cutting table (3). Four support columns (9) are fixed to the top of the cutting table (3). A vertical frame (11) is fixed to one side of the bracket (1). A cylinder (12) is fixed to one side of the vertical frame (11). The output end of the cylinder (12) is fixed with a moving frame (13). A disc cutting machine body (14) is installed on the moving frame (13).
9. A stainless steel product cutting machine according to claim 1, characterized in that: A transverse movement assembly (10) for driving the collection box (2) to perform horizontal displacement is provided at the top of the bracket (1). The transverse movement assembly (10) includes two mounting plates (101) fixed to the top of the bracket (1). A lead screw (102) is rotatably connected between the opposite sides of the two mounting plates (101). A fixing rod (103) is fixed between the opposite sides of the two mounting plates (101). A moving seat (104) is threadedly connected to the outer surface of the lead screw (102). The moving seat (104) slides on the fixing rod (103). A second motor (105) is fixed to one side of the mounting plate (101). The second motor (105) drives the lead screw (102) to rotate. The top of the moving seat (104) is fixed to the bottom of the collection box (2).
Citation Information
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