CN221087453U - Feeding mechanism of cold sawing machine - Google Patents

Feeding mechanism of cold sawing machine Download PDF

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Publication number
CN221087453U
CN221087453U CN202322440789.XU CN202322440789U CN221087453U CN 221087453 U CN221087453 U CN 221087453U CN 202322440789 U CN202322440789 U CN 202322440789U CN 221087453 U CN221087453 U CN 221087453U
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China
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fixedly connected
plate
sawing machine
driving
cold sawing
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CN202322440789.XU
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Chinese (zh)
Inventor
耿金飞
刘俊
郭永慧
吴杰
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Yangzhou Meirui Electric Automation Equipment Co ltd
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Yangzhou Meirui Electric Automation Equipment Co ltd
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Abstract

The utility model relates to the technical field of cold sawing machine feeding, in particular to a feeding mechanism of a cold sawing machine, which comprises a plate body, wherein an adjusting mechanism is arranged on one side of the plate body, two swinging mechanisms are arranged above the plate body, a driving mechanism is arranged above the two swinging mechanisms, the swinging mechanisms comprise a frame body, and a plurality of driving rollers are rotatably connected between two opposite inner side walls of the frame body. According to the utility model, the plate is placed between the two toothed belts, each plate is supported by the two connecting plates which are parallel to the two toothed belts, a user can start the two servo motors to drive the adjacent driving rollers to rotate so as to control the two toothed belts to rotate, so that the plate is driven to abut against the driving wheels, then the power motor is started to drive the driving wheels to rotate, the plate is sent into the cold sawing machine, and the two swinging cylinders can be started to drive the two frame bodies to rotate, so that the plate is driven to incline, and the plate is cut by the cold sawing machine in an inclined mode.

Description

Feeding mechanism of cold sawing machine
Technical Field
The utility model relates to the technical field of cold sawing machine feeding, in particular to a feeding mechanism of a cold sawing machine.
Background
When cutting some plates, the cold sawing machine is usually used for cutting the plates into workpieces with different lengths, so that the workpieces are used for production, but most of cutting mechanisms of common full-automatic cold sawing machines are fixed, when cutting, saw blades can only move along the vertical direction of the plates at the side parts of the plates, and the plates are cut, so that when cutting the plates, the plates can only be cut into rectangular shapes along with feeding of the plates, and the plates cannot be beveled, so that the cut workpieces are changed into other shapes such as triangular shapes, and the like, so that the plate cutting machine is inconvenient.
And the feeding mechanism of the full-automatic cold sawing machine is generally connected with the full-automatic cold sawing machine, is not suitable for the manual cold sawing machine, and is inconvenient because manual discharging is needed when a user uses the manual cold sawing machine to cut the plate.
Disclosure of utility model
In order to overcome the technical problems, the utility model aims to provide a feeding mechanism of a cold sawing machine, wherein a plate is placed between two toothed belts, each plate is supported by two connecting plates parallel to the two toothed belts, a user can start two servo motors to drive adjacent driving rollers to rotate so as to drive the plate to abut against driving wheels, then a power motor is started to drive the driving wheels to rotate, the plate is fed into the cold sawing machine, and two swinging cylinders can be started to drive two frames to rotate so as to drive the plate to incline, so that the plate is obliquely cut by the cold sawing machine.
The aim of the utility model can be achieved by the following technical scheme:
The feeding mechanism of the cold sawing machine comprises a plate body, wherein an adjusting mechanism is arranged on one side of the plate body, two swinging mechanisms are arranged above the plate body, and a driving mechanism is arranged above the two swinging mechanisms;
The swing mechanism comprises a frame body, a plurality of driving rollers are rotatably connected between two opposite inner side walls of the frame body, toothed belts are rotatably sleeved between the driving rollers located at the uppermost position and the outer side walls of the driving rollers located at the lowermost position, the driving rollers are located inside the toothed belts, one side of the frame body is fixedly connected with a servo motor, a motor shaft of the servo motor penetrates through one side of the frame body and is fixedly connected with one end of the driving roller at the lowermost position, a plurality of connecting plates are fixedly connected with the outer side walls of the toothed belts, an L-shaped frame is arranged on one side of the frame body, the bottom end of the L-shaped frame is slidably clamped inside the adjusting mechanism, one end of a short arm of the L-shaped frame is fixedly connected with a swing cylinder, and the output end of the swing cylinder is fixedly connected with one end of the top surface of the frame body.
The method is further characterized in that: the adjusting mechanism comprises a sliding rail, one side of the sliding rail is fixedly connected with one side of the plate body, the bottom ends of the L-shaped frames on the swinging mechanism are fixedly connected with the inside of the sliding rail in a sliding clamping mode, the lower portions of the frame bodies on the swinging mechanism are provided with sliding blocks, the sliding blocks are fixedly connected with the inside of the sliding rail in a sliding clamping mode, and the top ends of the sliding blocks are rotatably connected with one ends of the bottom surfaces of the adjacent frame bodies.
The method is further characterized in that: the screw rod is rotationally connected between the two ends inside the sliding rail, one end of the sliding rail is fixedly connected with a driving motor, a motor shaft of the driving motor penetrates through one end of the sliding rail and is fixedly connected with one end of the screw rod, two screwing holes are formed in one side of the sliding block and the bottom end of one side of the two L-shaped frames, and the inner side walls of the four screwing holes are connected with the outer side wall of the screw rod in a screwing mode.
The method is further characterized in that: the driving mechanism comprises a U-shaped frame, one ends of two arms of the U-shaped frame are fixedly connected with the top surface of the plate body, a stepping motor is fixedly connected to the center of the top surface of the U-shaped frame, a motor shaft of the stepping motor penetrates through the top surface of the U-shaped frame and is fixedly connected with a U-shaped plate, a driving wheel is rotatably connected between one ends of the two arms of the U-shaped plate, one side of the U-shaped plate is fixedly connected with a power motor, and a motor shaft of the power motor penetrates through one arm of the U-shaped plate and is fixedly connected with the center of one side of the driving wheel.
The method is further characterized in that: the outer side wall of the driving wheel is fixedly sleeved with a rubber sleeve.
The method is further characterized in that: one side of each of the plurality of connecting plates positioned on the same toothed belt is fixedly connected with a sliding pad.
The method is further characterized in that: the other ends of the two bottom surfaces of the frame bodies are both rotationally connected with universal wheels.
The utility model has the beneficial effects that:
The two driving rollers are driven by the two servo motors to rotate so as to control the two toothed belts to rotate, the driving rollers are driven by the driving motors to abut against the driving wheels, the driving wheels are driven by the driving motors to rotate, the plates are driven to move, the plates are fed into the cold sawing machine to be cut, the two swinging cylinders can be started by the user to drive the two frames to rotate, the plates are driven to incline, the plates are cut by the cold sawing machine in an inclined mode, automatic feeding can be achieved, the angle of the raw plates can be adjusted according to the requirement, inclined cutting is facilitated by the cold sawing machine, and the cold sawing machine is separated from the full-automatic cold sawing machine and can be suitable for the full-automatic cold sawing machine and a manual cold sawing machine.
Drawings
The utility model is further described below with reference to the accompanying drawings.
FIG. 1 is a schematic view of the overall structure of the present utility model;
FIG. 2 is a schematic view of the structure of the adjusting mechanism and the swinging mechanism in the utility model;
FIG. 3 is an exploded view of the swing mechanism of the present utility model;
FIG. 4 is a schematic view of the drive roller and toothed belt configuration of the present utility model;
Fig. 5 is a schematic diagram of the driving mechanism in the present utility model.
In the figure: 100. a plate body; 200. an adjusting mechanism; 201. screwing the hole; 210. a slide rail; 220. a screw; 230. a driving motor; 240. a slide block; 300. a swinging mechanism; 310. a frame; 320. a driving roller; 330. a toothed belt; 331. a connecting plate; 332. a slide pad; 340. a servo motor; 350. an L-shaped frame; 351. a swing cylinder; 360. a universal wheel; 400. a driving mechanism; 410. a U-shaped frame; 420. a stepping motor; 430. a U-shaped plate; 440. a driving wheel; 441. a rubber sleeve; 450. a power motor.
Detailed Description
The technical solutions of the embodiments of the present utility model will be clearly and completely described below in conjunction with the embodiments of the present utility model, and it is apparent that the described embodiments are only some embodiments of the present utility model, not all embodiments. All other embodiments, which can be made by those skilled in the art based on the embodiments of the utility model without making any inventive effort, are intended to be within the scope of the utility model.
The utility model discloses a feeding mechanism of a cold sawing machine, which is shown in figures 1-5, and comprises a plate body 100, wherein one side of the plate body 100 is provided with an adjusting mechanism 200, two swinging mechanisms 300 are arranged above the plate body 100, and a driving mechanism 400 is arranged above the two swinging mechanisms 300;
The swing mechanism 300 comprises a frame 310, a plurality of driving rollers 320 are rotatably connected between two opposite inner side walls of the frame 310, a toothed belt 330 is rotatably sleeved between the uppermost driving roller 320 and the outer side wall of the lowermost driving roller 320, the plurality of driving rollers 320 are both positioned in the toothed belt 330, one side of the frame 310 is fixedly connected with a servo motor 340, a motor shaft of the servo motor 340 penetrates through one side of the frame 310 and is fixedly connected with one end of the lowermost driving roller 320, the outer side wall of the toothed belt 330 is fixedly connected with a plurality of connecting plates 331, one side of the frame 310 is provided with an L-shaped frame 350, the bottom end of the L-shaped frame 350 is slidably clamped in the regulating mechanism 200, one end of a short arm of the L-shaped frame 350 is fixedly connected with a swing cylinder 351, the output end of the swing cylinder 351 is fixedly connected with one end of the top surface of the frame 310, when the swing mechanism is used, a plurality of plates with the same shape and size are placed between the two toothed belts 330 on the two swing mechanisms 300, and each plate is supported by the connecting plates 331 on the two toothed belts 330, so that a plurality of plates are supported and stacked by the connecting plates 331 on the two toothed belts 330, then when a user feeds the plates, the two servo motors 340 can be started to drive the adjacent driving rollers 320 to rotate, racks are arranged on the outer side walls of the driving rollers 320, the racks on the driving rollers 320 are meshed with gear teeth on the inner side walls of the toothed belts 330, the user can drive the two toothed belts 330 to rotate by starting the two servo motors 340 through the rotation of the adjacent driving rollers 320, after the uppermost plate is sent out by the driving mechanism 400, the user can upwards move the plate stacked below through the rotation of the two toothed belts 330 and then send the plate into the cold sawing machine by the driving mechanism 400, thereby being convenient for the user to use, and when the user sends the plate into the cold sawing machine, the two swinging cylinders 351 are started to drive the adjacent frame 310 to rotate, thereby drive all panel and move a position slope to can control the panel to put to one side according to needs, cut panel once more, the user of being convenient for uses, two framework 310 bottom surface other ends all rotate and are connected with universal wheel 360, utilize universal wheel 360 to support framework 310, the framework 310 of being convenient for rotates, a plurality of connecting plates 331 one side that are located on same tooth area 330 are all fixedly connected with slipmat 332, slipmat 332 surface is comparatively smooth, be convenient for the panel to remove on slipmat 332 through slipmat 332, and because plate 100 only need place full-automatic cold sawing machine or manual cold sawing machine one side when using, separate with full-automatic cold sawing machine or manual cold sawing machine, can be applicable to full-automatic cold sawing machine and manual cold sawing machine.
The adjusting mechanism 200 comprises a sliding rail 210, one side of the sliding rail 210 is fixedly connected with one side of the plate body 100, the bottom ends of L-shaped frames 350 on two swinging mechanisms 300 are all in sliding clamping connection with the inside of the sliding rail 210, sliding blocks 240 are all arranged below frame bodies 310 on two swinging mechanisms 300, the two sliding blocks 240 are all in sliding clamping connection with the inside of the sliding rail 210, the top ends of the two sliding blocks 240 are all in rotating connection with one end of the bottom surface of the adjacent frame body 310, when a user uses the adjusting mechanism, the distance between the two sliding blocks 240 can be adjusted, the distance between the two toothed belts 330 is controlled, so that when the plate is placed on a connecting plate 331 on the two toothed belts 330, the plate can be supported by the two connecting plates 331, a screw 220 is connected between two ends inside the sliding rail 210 in a rotating way, one end of the sliding rail 210 is fixedly connected with a driving motor 230, a motor shaft of the driving motor 230 penetrates through one end of the sliding rail 210 and is fixedly connected with one end of the screw 220, the inner side of the two sliding blocks 240 and the bottom ends of one side of the two L-shaped frames 350 are all provided with rotating holes 201, and the inner side walls of the four rotating holes 201 are all in rotating connection with the outer side walls of the screw 220, when the user can drive the two sliding blocks 220 to rotate by the driving motor 230, and the two screw 220 can rotate opposite screw shafts or the two opposite screw shafts 240 to move opposite screw shafts to the two opposite screw shafts to each other, so that the two screw 220 can rotate opposite screw shafts to move opposite screw 220 or the two screws to each other to rotate opposite screw 220.
The driving mechanism 400 comprises a U-shaped frame 410, one end of each arm of the U-shaped frame 410 is fixedly connected with the top surface of the plate body 100, the center of the top surface of the U-shaped frame 410 is fixedly connected with a stepping motor 420, a motor shaft of the stepping motor 420 penetrates through the top surface of the U-shaped frame 410 and is fixedly connected with a U-shaped plate 430, a driving wheel 440 is rotatably connected between one ends of the two arms of the U-shaped plate 430, one arm of the U-shaped plate 430 is fixedly connected with a power motor 450, a motor shaft of the power motor 450 penetrates through one arm of the U-shaped plate 430 and is fixedly connected with the center of one side of the driving wheel 440, after the uppermost plate is driven by two toothed belts 330 to move upwards to be in contact with the driving wheel 440, a user can start the power motor 450 to drive the driving wheel 440 to rotate so as to transversely move the plate into the cold sawing machine for cutting, and after the plate is driven by two frames 310 to incline, the user can start the stepping motor 420 to drive the U-shaped plate 430 to synchronously rotate so that the driving wheel 440 is parallel to the plate, the driving wheel 440 is convenient to drive the plate to move, the outer side wall of the driving wheel 440 is fixedly sleeved with a rubber sleeve 441, and the driving force between the driving wheel 440.
Working principle: when the full-automatic cold sawing machine is used, a plurality of plates with the same shape and size are placed between two toothed belts 330 on two swinging mechanisms 300, two connecting plates 331 parallel to the two toothed belts 330 are utilized to hold each plate, the plates are stacked in sequence, gaps are formed between the plates, a controller for one dragging two is utilized to synchronously control the opening and closing of two servo motors 340, then a user synchronously starts the two servo motors 340, the adjacent driving rollers 320 can be driven to synchronously rotate, so that the two toothed belts 330 are driven to synchronously move upwards by driving the two toothed belts 330 until the uppermost plates are in conflict with rubber sleeves 441 on driving wheels 440, and then the driving wheels 450 are driven to transversely move to cut the plates by driving the driving wheels 440;
When a user needs to cut the end part of the plate obliquely, the user can start the two swinging cylinders 351 to drive the adjacent frames 310 to rotate so as to drive all the plates to tilt, so that the plate can be controlled to tilt according to the needs, the stepping motor 420 is started to drive the U-shaped plates 430 to synchronously rotate so that the driving wheels 440 are parallel to the plate, then the cold sawing machine is utilized to cut the plate obliquely again, and the plate is provided with the connecting plates 331 to support and press the driving wheels 440, so that the plates are not easy to tilt during cutting;
When a user places a plate, the user can drive the screw 220 to rotate by starting the driving motor 230, so as to drive the two sliding blocks 240 to move in opposite directions or move in opposite directions, and the distance between the two toothed belts 330 is adjusted according to the size of the plate.
In the description of the present specification, the descriptions of the terms "one embodiment," "example," "specific example," and the like, mean that a particular feature, structure, material, or characteristic described in connection with the embodiment or example is included in at least one embodiment or example of the present utility model. In this specification, schematic representations of the above terms do not necessarily refer to the same embodiments or examples. Furthermore, the particular features, structures, materials, or characteristics described may be combined in any suitable manner in any one or more embodiments or examples.
The foregoing is merely illustrative and explanatory of the utility model, as various modifications and additions may be made to the particular embodiments described, or in a similar manner, by those skilled in the art, without departing from the scope of the utility model or exceeding the scope of the utility model as defined in the claims.

Claims (7)

1. The feeding mechanism of the cold sawing machine comprises a plate body (100), and is characterized in that an adjusting mechanism (200) is arranged on one side of the plate body (100), two swinging mechanisms (300) are arranged above the plate body (100), and a driving mechanism (400) is arranged above the two swinging mechanisms (300);
The swing mechanism (300) comprises a frame body (310), a plurality of driving rollers (320) are rotatably connected between two opposite inner side walls of the frame body (310), toothed belts (330) are rotatably sleeved between the driving rollers (320) at the uppermost side and the driving rollers (320) at the lowermost side, the driving rollers (320) are all positioned inside the toothed belts (330), a servo motor (340) is fixedly connected to one side of the frame body (310), a motor shaft of the servo motor (340) penetrates through one side of the frame body (310) and is fixedly connected with one end of the driving rollers (320) at the lowermost side, a plurality of connecting plates (331) are fixedly connected to the outer side wall of the toothed belts (330), an L-shaped frame (350) is arranged on one side of the frame body (310), the bottom end of the L-shaped frame (350) is slidably clamped inside the adjusting mechanism (200), one end of a short arm of the L-shaped frame (350) is fixedly connected with a swing cylinder (351), and the output end of the swing cylinder (351) is fixedly connected with one end of the top surface of the frame body (310).
2. The feeding mechanism of a cold sawing machine according to claim 1, wherein the adjusting mechanism (200) comprises a sliding rail (210), one side of the sliding rail (210) is fixedly connected with one side of the plate body (100), bottom ends of the L-shaped frames (350) on the two swinging mechanisms (300) are slidably clamped inside the sliding rail (210), sliding blocks (240) are arranged below the frame bodies (310) on the two swinging mechanisms (300), the two sliding blocks (240) are slidably clamped inside the sliding rail (210), and top ends of the two sliding blocks (240) are rotatably connected with one end of the bottom surface of the adjacent frame body (310).
3. The feeding mechanism of a cold sawing machine according to claim 2, wherein a screw rod (220) is rotatably connected between two ends inside the sliding rail (210), one end of the sliding rail (210) is fixedly connected with a driving motor (230), a motor shaft of the driving motor (230) penetrates through one end of the sliding rail (210) and is fixedly connected with one end of the screw rod (220), two sliding blocks (240) are provided with screwing holes (201) on one side and two L-shaped frames (350) on one side bottom, and inner side walls of the four screwing holes (201) are connected with the outer side wall of the screw rod (220) in a screwing mode.
4. The feeding mechanism of a cold sawing machine according to claim 1, wherein the driving mechanism (400) comprises a U-shaped frame (410), one end of each of two arms of the U-shaped frame (410) is fixedly connected with the top surface of the plate body (100), a stepping motor (420) is fixedly connected to the center of the top surface of the U-shaped frame (410), a motor shaft of the stepping motor (420) penetrates through the top surface of the U-shaped frame (410) and is fixedly connected with a U-shaped plate (430), a driving wheel (440) is rotatably connected between one end of each of the two arms of the U-shaped plate (430), a power motor (450) is fixedly connected to one side of each of one arm of the U-shaped plate (430), and a motor shaft of the power motor (450) penetrates through one arm of the U-shaped plate (430) and is fixedly connected with the center of one side of the driving wheel (440).
5. The feeding mechanism of a cold sawing machine according to claim 4 wherein the outer side wall of the driving wheel (440) is fixedly sleeved with a rubber sleeve (441).
6. Feeding mechanism of a cold sawing machine according to claim 1, characterized in that sliding pads (332) are fixedly connected to one side of a plurality of connecting plates (331) located on the same toothed belt (330).
7. Feeding mechanism of a cold sawing machine according to claim 1, characterized in that the other ends of the bottom surfaces of both frames (310) are rotatably connected with universal wheels (360).
CN202322440789.XU 2023-09-08 2023-09-08 Feeding mechanism of cold sawing machine Active CN221087453U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202322440789.XU CN221087453U (en) 2023-09-08 2023-09-08 Feeding mechanism of cold sawing machine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202322440789.XU CN221087453U (en) 2023-09-08 2023-09-08 Feeding mechanism of cold sawing machine

Publications (1)

Publication Number Publication Date
CN221087453U true CN221087453U (en) 2024-06-07

Family

ID=91306930

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202322440789.XU Active CN221087453U (en) 2023-09-08 2023-09-08 Feeding mechanism of cold sawing machine

Country Status (1)

Country Link
CN (1) CN221087453U (en)

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