CN217891467U - Feeding system of brittle plate splitting machine - Google Patents

Feeding system of brittle plate splitting machine Download PDF

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Publication number
CN217891467U
CN217891467U CN202221366586.XU CN202221366586U CN217891467U CN 217891467 U CN217891467 U CN 217891467U CN 202221366586 U CN202221366586 U CN 202221366586U CN 217891467 U CN217891467 U CN 217891467U
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China
Prior art keywords
brittle
sheet material
feeding
feeding arm
plate
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CN202221366586.XU
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Chinese (zh)
Inventor
钟圣平
陈海
张恩召
叶华才
龙飞
王练芳
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Shenzhen Guangdao Laser Technology Co ltd
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Shenzhen Guangdao Laser Technology Co ltd
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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02PCLIMATE CHANGE MITIGATION TECHNOLOGIES IN THE PRODUCTION OR PROCESSING OF GOODS
    • Y02P40/00Technologies relating to the processing of minerals
    • Y02P40/50Glass production, e.g. reusing waste heat during processing or shaping
    • Y02P40/57Improving the yield, e-g- reduction of reject rates

Abstract

The utility model discloses a feeding system of a brittle plate splitting machine, which comprises a sheet material feeding device and a sheet material feeding device; the sheet material feeding device comprises a brittle sheet material bin and a brittle sheet material lifting mechanism, wherein the brittle sheet material bin is used for stacking brittle sheet materials to be cracked, and the brittle sheet material lifting mechanism is used for driving the brittle sheet materials in the brittle sheet material bin to lift; the sheet feeding device comprises a feeding arm rotating mechanism, a feeding arm lifting mechanism, a feeding arm and an adsorption mechanism; the feeding arm lifting mechanism is arranged on the feeding arm rotating mechanism, the feeding arm is arranged on the feeding arm lifting mechanism, the feeding arm rotating mechanism is used for driving the feeding arm to rotate forwards or reversely by a set angle, and the feeding arm lifting mechanism is used for driving the feeding arm to lift; the adsorption mechanism is arranged on the feeding arm. The utility model discloses a sheet feedway can stack the more brittle plate of storage, and sheet material feeding unit is rotatory, go up and down, adsorb process automation degree height, fast, the accuracy is high.

Description

Feeding system of brittle plate splitting machine
Technical Field
The utility model relates to a lobe of a leaf equipment technical field, in particular to brittle plate material lobe of a leaf machine's feeding system.
Background
At present, ceramic gaskets applied to electrical systems and precision brittle materials such as sapphire substrates applied to the field of chips are generally manufactured by precisely cutting with a laser cutting machine, and the laser cutting process comprises the following steps: firstly, a sheet of brittle sheet material to be cut is fixed on a product positioning seat of a laser cutting machine in an adsorption or clamping mode, then the program and the parameters of the laser cutting machine are set, a high-power-density laser beam is used for irradiating the cut brittle sheet material, a cutting seam is continuously formed on the brittle sheet material along with the movement of the brittle sheet material by the light beam, a small sheet of product is cut, and the cutting of the brittle sheet material is completed.
The laser cutting process has the following technical problems: firstly, the cutting speed is slow, the laser beam can cut a product which is small in piece and small in piece only by completely cutting off the brittle plate, and a large amount of time is consumed, so that the cutting speed is slow; secondly, because the cutting time is long and the depth of the cutting seam is deep, the formed cutting seam is wide, and the precision and the quality of the product are influenced; thirdly, after the brittle plate is cut off by the laser beam, the laser beam is easy to irradiate the product positioning seat on the laser cutting machine, so that the positioning precision of the product positioning seat is reduced, and even the product positioning seat is damaged; fourthly, after a whole block of brittle plate is cut into a small piece of product, the quantity of the product and the water gap material is large, and the product and the water gap material are troublesome to move out from a product positioning seat of the laser cutting machine.
Chinese patent document CN201410003845.6 discloses a lobe device, which comprises a device body, a feeding device and a flexible belt conveying device which are sequentially arranged on the device body, a lifting device arranged on the device body on one side of the flexible belt conveying device, a flexible belt coating device arranged on the lifting device and positioned at the upper end of the flexible belt conveying device, and a roller rolling device arranged on the lifting device and positioned at the upper end of the flexible belt coating device; the roller rolling device is also provided with a pressing device for driving the roller rolling device to press down the flexible belt coating device, and a linear moving device for driving the roller rolling device to move along the conveying direction of the flexible belt conveying device. This patent CN201410003845.6 adopts two-layer flexible belt to wrap the battery piece to roll extrusion is carried out through gyro wheel rolling press device, realize the battery piece lobe of a leaf. However, the patent CN201410003845.6 has the following technical problems: the feeding suction plate of the feeding device can not stack and store more battery pieces, the battery pieces need to be frequently added, and the feeding automation degree is low and the speed is low.
SUMMERY OF THE UTILITY MODEL
The technical problem to be solved by the present invention is to provide a feeding system of a brittle sheet material cracking machine according to the deficiencies of the prior art, wherein a brittle sheet material lifting mechanism of the feeding system can drive a brittle sheet material in a brittle sheet material bin to lift, more brittle sheet materials can be stacked and stored in the brittle sheet material bin, and the brittle sheet materials can be lifted and lowered, so that the material taking of a sheet material feeding device is not affected, and the brittle sheet materials do not need to be frequently added into the brittle sheet material bin; the sheet feeding device of the feeding system comprises a feeding arm rotating mechanism, a feeding arm lifting mechanism, a feeding arm and an adsorption mechanism; the feeding arm rotating mechanism can drive the feeding arm to rotate forwards or reversely by a set angle, the feeding arm lifting mechanism can drive the feeding arm to lift, the adsorption mechanism can suck the brittle plates in the brittle plate material bin, the brittle plates in the brittle plate material bin are sent to a set area one by one under the matching of the feeding arm rotating mechanism and the feeding arm lifting mechanism, and the rotation, lifting and adsorption processes of the feeding arm rotating mechanism are high in automation degree, high in speed and high in accuracy.
In order to solve the technical problem, the technical scheme of the utility model is that: a feeding system of a brittle plate splitting machine comprises a sheet material feeding device and a sheet material feeding device; the sheet material feeding device comprises a brittle sheet material bin and a brittle sheet material lifting mechanism, wherein the brittle sheet material bin is used for stacking brittle sheets to be cracked, the upper end of the brittle sheet material bin is hollow, and the brittle sheet material lifting mechanism is used for driving the brittle sheets in the brittle sheet material bin to lift; the sheet feeding device comprises a feeding arm rotating mechanism, a feeding arm lifting mechanism, a feeding arm and an adsorption mechanism; the feeding arm lifting mechanism is arranged on the feeding arm rotating mechanism, the feeding arm is arranged on the feeding arm lifting mechanism, the feeding arm rotating mechanism is used for driving the feeding arm to rotate forwards or reversely by a set angle, and the feeding arm lifting mechanism is used for driving the feeding arm to lift; the adsorption mechanism is arranged on the feeding arm and used for sucking up the brittle plates in the brittle plate bin and transferring the brittle plates in the brittle plate bin to a set area one by one under the cooperation of the feeding arm rotating mechanism and the feeding arm lifting mechanism.
Preferably, the brittle sheet material bin comprises a bin bottom frame, a bin bottom plate is installed on the bin bottom frame, a material pushing hole is formed in the bin bottom plate, a plurality of limiting enclosing plates are installed on the bin bottom plate, and a space for stacking brittle sheet materials is formed by the plurality of limiting enclosing plates and the bin bottom plate.
Preferably, the brittle plate lifting mechanism comprises a sliding chute, a motor, a screw rod nut, a sliding block and a lifting push plate; the chute is vertically arranged at the side part of the stock bin underframe, the motor is arranged at the lower end of the chute, the power output end of the motor extends upwards and is connected with a screw rod, the screw rod is vertically arranged in the chute, and the screw rod movably penetrates through a screw rod nut and is in threaded fit with the screw rod nut; the slider is installed in screw-nut's one side, slider and spout sliding connection, the one end of lift push pedal is connected with the slider, and the other end of lift push pedal stretches to in the brittle sheet material feed bin, and the lift push pedal can up or down pass the stoking hole of feed bin bottom plate, and the lift push pedal is arranged in under the drive of motor, promotes the brittle sheet material lift in the feed bin bottom plate.
Preferably, an inductor vertical frame is arranged on one end of the bottom plate of the storage bin, and a first inductor for inducing the thickness of the brittle sheet is arranged on the inductor vertical frame; and a blowing mechanism vertical frame is arranged on the other end of the bin bottom plate, a blowing mechanism is arranged on the blowing mechanism vertical frame, and the blowing mechanism is used for blowing air to the brittle plate outlet position of the brittle plate bin.
Preferably, the feeding arm rotating mechanism comprises a positioning seat and a rotating cylinder, and the rotating cylinder is installed on the positioning seat.
Preferably, the lifting mechanism comprises a positioning flat plate, four guide rods, four guide sleeves, a lifting cylinder and a cylinder fixing frame; the positioning flat plate is arranged on the power output end of the first rotary cylinder, the lower ends of the four guide rods are respectively fixed with the four corners of the positioning flat plate, the four guide sleeves are respectively arranged on the four guide rods in a sliding manner, and one end of the feeding arm is arranged on the four guide sleeves; the lower end of the cylinder fixing frame is fixed with one side of the positioning flat plate, the upper end of the cylinder fixing frame is fixed with the lifting cylinder, and a cylinder rod of the lifting cylinder is connected with one end of the feeding arm.
Preferably, the cylinder fixing frame comprises a cylinder fixing vertical plate and a cylinder fixing transverse plate, the lower end of the cylinder fixing vertical plate is fixed to one side of the positioning flat plate, the upper end of the cylinder fixing vertical plate is fixed to one end of the cylinder fixing transverse plate, and the lifting cylinder is installed on the lower side of the other end of the cylinder fixing transverse plate.
Preferably, the adsorption mechanism comprises a sucker pipe fixing frame and a plurality of sucker pipes, the sucker pipes are respectively arranged on the sucker pipe fixing frame, suckers are respectively arranged at the lower ends of the sucker pipes, and the height of each sucker is parallel to each other; and the middle part of the sucker pipe fixing frame is also provided with a second inductor for inducing whether the brittle plate falls or not.
Preferably, the feeding system of the brittle sheet material splitting machine further comprises an inductor support, one end of the inductor support is installed on the positioning flat plate, a third inductor is installed at the other end of the inductor support, and the third inductor is located on the side of the adsorption mechanism and used for inducing the thickness of the brittle sheet material adsorbed by the suction disc.
The utility model has the advantages that: the brittle plate lifting mechanism can drive brittle plates in the brittle plate storage bin to lift, more brittle plates can be stacked and stored in the brittle plate storage bin, the brittle plates can be lifted, the material taking of the sheet material feeding device is not influenced, and the brittle plates do not need to be frequently added into the brittle plate storage bin; secondly, the sheet feeding device of the utility model comprises a feeding arm rotating mechanism, a feeding arm lifting mechanism, a feeding arm and an adsorption mechanism; the feeding arm rotating mechanism can drive the feeding arm to rotate forwards or reversely by a set angle, the feeding arm lifting mechanism can drive the feeding arm to lift, the adsorption mechanism can suck the brittle plates in the brittle plate material bin, the brittle plates in the brittle plate material bin are sent to a set area one by one under the matching of the feeding arm rotating mechanism and the feeding arm lifting mechanism, and the rotation, lifting and adsorption processes of the feeding arm rotating mechanism are high in automation degree, high in speed and high in accuracy.
Drawings
Fig. 1 is one of the overall structural schematic diagrams of the installation of the brittle plate splitting machine of the present invention.
Fig. 2 is a second schematic diagram of the overall structure for installing the brittle sheet material cracking machine of the present invention.
Fig. 3 is a schematic structural diagram of the feeding system of the present invention.
Fig. 4 is a schematic structural diagram of the sheet feeding device of the feeding system of the present invention.
Fig. 5 is a schematic view of a dispersed structure of the sheet feeding device of the feeding system of the present invention.
FIG. 6 is a front view of a ceramic shim after laser gapping.
FIG. 7 is a side view of a ceramic shim after laser slitting.
Detailed Description
The structure and operation of the present invention will be described in detail with reference to the accompanying drawings.
As shown in fig. 6 and 7, a structure diagram of a ceramic gasket 100 after laser slit opening is shown, a laser cutting process is adopted to cut transverse and longitudinal slits 101 on the ceramic gasket 100, and the ceramic gasket after slit opening is rolled by a roller rolling system of a brittle sheet material splitting machine, so as to achieve splitting of a brittle sheet material.
As shown in fig. 1 and fig. 2, the brittle sheet material breaking machine of the present invention comprises a machine table 1, and a feeding system 3, a belt conveying system 4, a roller rolling system 5 and a discharging device 6 are installed on the machine table 1; the feeding system 3 is used for transferring the brittle sheet 100 onto the belt conveying device 4, the belt conveying device 4 is used for conveying the brittle sheet, the roller rolling system 5 is used for rolling the brittle sheet on the belt conveying device 4, and the discharging device 6 is mounted at the rear end of the belt conveying device 4 and used for discharging.
As shown in fig. 1 to 5, the feeding system 3 includes a sheet feeding device 31 and a sheet feeding device 32; the sheet material feeding device 31 comprises a brittle plate material bin 311 and a brittle plate material lifting mechanism 312, the brittle plate material bin 311 is used for stacking brittle plates to be cracked, the upper end of the brittle plate material bin 311 is hollow, and the brittle plate material lifting mechanism 312 is used for driving the brittle plates in the brittle plate material bin 311 to lift; the sheet feeding device 32 comprises a feeding arm rotating mechanism 321, a feeding arm lifting mechanism 322, a feeding arm 323 and an adsorption mechanism 324; the feeding arm lifting mechanism 322 is mounted on the feeding arm rotating mechanism 321, the feeding arm 323 is arranged on the feeding arm lifting mechanism 322, the feeding arm rotating mechanism 321 is used for driving the feeding arm 323 to rotate forwards or reversely by a set angle, and the feeding arm lifting mechanism 322 is used for driving the feeding arm 323 to lift; the suction mechanism 324 is mounted on the feeding arm 323 and is used for sucking up the brittle sheets in the brittle sheet storage bin 311 and transferring the brittle sheets in the brittle sheet storage bin 311 onto the belt conveying device 4 one by one under the cooperation of the feeding arm rotating mechanism 322 and the feeding arm lifting mechanism 323.
The brittle plate lifting mechanism 312 of the utility model can drive the brittle plates in the brittle plate storage bin 311 to lift, more brittle plates can be stacked and stored in the brittle plate storage bin 311, and the brittle plates can be lifted and lowered, so that the material taking of the sheet material feeding device 32 is not influenced, and the brittle plates do not need to be frequently added into the brittle plate storage bin 311; the sheet feeding device 32 of the present invention includes a feeding arm rotating mechanism 321, a feeding arm lifting mechanism 322, a feeding arm 323, and an adsorption mechanism 324; the feeding arm rotating mechanism 321 can drive the feeding arm 323 to rotate forwards or reversely by a set angle, the feeding arm lifting mechanism 322 can drive the feeding arm 323 to lift, the adsorption mechanism 324 can suck up the brittle plates in the brittle plate bin 311, and the brittle plates in the brittle plate bin 311 are sent to a set area one by one under the matching of the feeding arm rotating mechanism 321 and the feeding arm lifting mechanism 322, so that the automation degree of the rotating, lifting and adsorption processes is high, the speed is high, and the accuracy is high.
As shown in fig. 1-5, the brittle sheet storage bin 311 includes a storage bin underframe 3111, a storage bin bottom plate 3112 is installed on the storage bin underframe 3111, a material pushing hole 3113 is opened on the storage bin bottom plate 3112, a plurality of limiting coamings 3114 are installed on the storage bin bottom plate 3112, and the plurality of limiting coamings 3114 and the storage bin bottom plate 3112 together form a space for stacking brittle sheets. The brittle sheet lifting mechanism 312 comprises a sliding chute 3121, a motor 3122, a screw 3123, a screw nut (not shown in the figure), a sliding block 3124 and a lifting push plate 3125; the sliding groove 3121 is vertically installed at the side part of the stock bin underframe 3111, the motor 3122 is installed at the lower end of the sliding groove 3121, the power output end of the motor 3122 extends upwards and is connected with the screw rod 3123, the screw rod 3123 is vertically installed in the sliding groove 3121, the screw rod 3123 movably penetrates through the screw nut and is in threaded fit with the screw nut; the slider 3124 is installed in one side of screw nut, slider 3124 and spout 3121 sliding connection, the one end of lift push pedal 3125 is connected with slider 3124, and the other end of lift push pedal 3125 stretches into in the brittle sheet material feed bin 311, and lift push pedal 3125 can upwards or down pass the material pushing hole 3113 of feed bin bottom plate 3112, lift push pedal 3125 is arranged in under the drive of motor 3122, promotes the brittle sheet material in feed bin bottom plate 3112 and goes up and down.
As shown in fig. 1-5, an inductor stand 3115 is installed on one end of the bin bottom plate 3112, and a first inductor 3116 for inducing the thickness of the brittle sheet is installed on the inductor stand 3115; a blowing mechanism stand 3117 is installed on the other end of the bin bottom plate 3112, a blowing mechanism 3118 is installed on the blowing mechanism stand 3117, and the blowing mechanism 3118 is used for blowing air to the brittle plate outlet position of the brittle plate bin 311. The utility model discloses after the fragile panel in the fragile panel feed bin 311 is inhaled to adsorption apparatus 324, motor 3122 drive lift push pedal 3125 descends, and at this in-process, the mechanism 3118 of blowing blows from the lateral part that lasts toward fragile panel, makes and blows in the air between each layer fragile panel, prevents that the fragile panel adhesion is in the same place. Meanwhile, the first sensor 3116 can sense the thickness of the brittle sheet material, and whether adhesion occurs is determined by sensing the thickness of the brittle sheet material; if the thickness is within the standard value range, no adhesion occurs; if the thickness significantly exceeds the standard value range, there is a problem of blocking the brittle sheet.
As shown in fig. 1 to 5, the feeding arm rotating mechanism 321 includes a positioning seat 3211 and a rotating cylinder 3212, and the rotating cylinder 3212 is installed on the positioning seat 3211. The lifting mechanism 322 comprises a positioning flat plate 3221, four guide rods 3222, four guide sleeves 3223, a lifting cylinder 3224, and a cylinder fixing frame 3225; the positioning flat plate 3221 is mounted on a power output end of the first rotary cylinder 3212, lower ends of the four guide rods 3222 are respectively fixed with four corners of the positioning flat plate 3221, the four guide sleeves 3223 are respectively slidably mounted on the four guide rods 3222, and one end of the feeding arm 323 is mounted on the four guide sleeves 3223; the lower end of the cylinder fixing frame 3225 is fixed to one side of the positioning flat plate 3221, the upper end of the cylinder fixing frame 3225 is fixed to the lifting cylinder 3224, and a cylinder rod of the lifting cylinder 3224 is connected to one end of the feeding arm 323. The cylinder fixing frame 3225 comprises a cylinder fixing vertical plate and a cylinder fixing transverse plate, the lower end of the cylinder fixing vertical plate is fixed to one side of the positioning flat plate, the upper end of the cylinder fixing vertical plate is fixed to one end of the cylinder fixing transverse plate, and the lifting cylinder 3225 is installed on the lower side of the other end of the cylinder fixing transverse plate. It should be noted that the feeding arm rotating mechanism is not limited to adopt a rotating cylinder, and a rotating motor can be used instead of the rotating cylinder; the lifting mechanism is not limited to adopt a lifting cylinder, and can also adopt a lifting motor lead screw transmission mechanism.
As shown in fig. 1-5, the suction mechanism 324 includes a suction tube holder 3241 and a plurality of suction tubes 3242, the suction tubes 3242 are respectively mounted on the suction tube holder 3241, the lower ends of the suction tubes 3242 are respectively mounted with suction cups 3243, and the suction cups 3243 are flush with each other in height; the middle part of the sucker tube fixing frame 3241 is further provided with a second sensor 3244 for sensing whether the brittle sheet falls or not. The brittle sheet splitting machine further comprises an inductor support 325, one end of the inductor support 325 is installed on a positioning flat plate 3221, the other end of the inductor support 325 is provided with a third inductor 326, the third inductor 326 is located on the side of the adsorption mechanism 324 and used for inducing the thickness of the brittle sheet adsorbed by the suction disc 3243, and whether the problem of adhesion occurs or not is judged by inducing the thickness of the brittle sheet; if the thickness is within the standard value range, no adhesion occurs; if the thickness significantly exceeds the standard value range, there is a problem of sticking the brittle plate.
The above, only the utility model discloses preferred embodiment, all be according to the utility model discloses a technical scheme does any slight modification, the equivalent change and the modification to above embodiment, all belong to the utility model discloses technical scheme's within range.

Claims (9)

1. The utility model provides a brittle sheet material splitting machine's feeding system which characterized in that: comprises a sheet material feeding device and a sheet material feeding device; the sheet material feeding device comprises a brittle sheet material bin and a brittle sheet material lifting mechanism, wherein the brittle sheet material bin is used for stacking brittle sheets to be cracked, the upper end of the brittle sheet material bin is hollow, and the brittle sheet material lifting mechanism is used for driving the brittle sheets in the brittle sheet material bin to lift; the sheet feeding device comprises a feeding arm rotating mechanism, a feeding arm lifting mechanism, a feeding arm and an adsorption mechanism; the feeding arm lifting mechanism is arranged on the feeding arm rotating mechanism, the feeding arm is arranged on the feeding arm lifting mechanism, the feeding arm rotating mechanism is used for driving the feeding arm to rotate forwards or reversely by a set angle, and the feeding arm lifting mechanism is used for driving the feeding arm to lift; the adsorption mechanism is arranged on the feeding arm and used for sucking up the brittle plates in the brittle plate bin and transferring the brittle plates in the brittle plate bin to a set area one by one under the cooperation of the feeding arm rotating mechanism and the feeding arm lifting mechanism.
2. The feeding system of the brittle sheet material breaking machine according to claim 1, wherein: the brittle sheet material bin comprises a bin bottom frame, a bin bottom plate is installed on the bin bottom frame, a material pushing hole is formed in the bin bottom plate, a plurality of limiting enclosing plates are installed on the bin bottom plate, and the plurality of limiting enclosing plates and the bin bottom plate form a space for stacking brittle sheets together.
3. The feeding system of the brittle sheet material breaking machine according to claim 2, wherein: the brittle plate lifting mechanism comprises a sliding chute, a motor, a screw rod nut, a sliding block and a lifting push plate; the chute is vertically arranged on the side part of the stock bin underframe, the motor is arranged at the lower end of the chute, the power output end of the motor extends upwards and is connected with a screw rod, the screw rod is vertically arranged in the chute, and the screw rod movably penetrates through a screw rod nut and is in threaded fit with the screw rod nut; the slider is installed in screw-nut's one side, slider and spout sliding connection, the one end of lift push pedal is connected with the slider, and the other end of lift push pedal stretches to in the brittle sheet material feed bin, and the lift push pedal can up or down pass the stoking hole of feed bin bottom plate, and the lift push pedal is arranged in under the drive of motor, promotes the brittle sheet material lift in the feed bin bottom plate.
4. The feeding system of the brittle sheet material breaking machine according to claim 2, wherein: an inductor vertical frame is arranged on one end of the bin bottom plate, and a first inductor for inducing the thickness of the brittle sheet is arranged on the inductor vertical frame; and a blowing mechanism vertical frame is arranged on the other end of the bin bottom plate, a blowing mechanism is arranged on the blowing mechanism vertical frame, and the blowing mechanism is used for blowing air to the brittle plate outlet position of the brittle plate bin.
5. The feeding system of the brittle sheet material breaking machine according to claim 1, wherein: the feeding arm rotating mechanism comprises a positioning seat and a rotating cylinder, and the rotating cylinder is installed on the positioning seat.
6. The feeding system of the brittle plate splitting machine as claimed in claim 5, wherein: the lifting mechanism comprises a positioning flat plate, four guide rods, four guide sleeves, a lifting cylinder and a cylinder fixing frame; the positioning flat plate is arranged on the power output end of the first rotary cylinder, the lower ends of the four guide rods are respectively fixed with the four corners of the positioning flat plate, the four guide sleeves are respectively arranged on the four guide rods in a sliding manner, and one end of the feeding arm is arranged on the four guide sleeves; the lower end of the cylinder fixing frame is fixed with one side of the positioning flat plate, the upper end of the cylinder fixing frame is fixed with the lifting cylinder, and a cylinder rod of the lifting cylinder is connected with one end of the feeding arm.
7. The feeding system of the brittle sheet material breaking machine according to claim 6, wherein: the cylinder fixing frame comprises a cylinder fixing vertical plate and a cylinder fixing transverse plate, the lower end of the cylinder fixing vertical plate is fixed to one side of the positioning flat plate, the upper end of the cylinder fixing vertical plate is fixed to one end of the cylinder fixing transverse plate, and the lifting cylinder is installed on the lower side of the other end of the cylinder fixing transverse plate.
8. The feeding system of the brittle plate cracking machine of claim 6, wherein: the adsorption mechanism comprises a sucker pipe fixing frame and a plurality of sucker pipes, the sucker pipes are respectively arranged on the sucker pipe fixing frame, suckers are respectively arranged at the lower ends of the sucker pipes, and the heights of the suckers are parallel and level to each other; and a second inductor used for inducing whether the brittle sheet falls or not is further installed in the middle of the sucker tube fixing frame.
9. The feeding system of the brittle plate cracking machine of claim 8, wherein: still include the inductor support, the one end of inductor support is installed on the location flat board, and the third inductor is installed to the other end of inductor support, and this third inductor is located adsorption apparatus's side is used for responding to the thickness of the absorbent brittle sheet material of sucking disc.
CN202221366586.XU 2022-06-02 2022-06-02 Feeding system of brittle plate splitting machine Active CN217891467U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202221366586.XU CN217891467U (en) 2022-06-02 2022-06-02 Feeding system of brittle plate splitting machine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202221366586.XU CN217891467U (en) 2022-06-02 2022-06-02 Feeding system of brittle plate splitting machine

Publications (1)

Publication Number Publication Date
CN217891467U true CN217891467U (en) 2022-11-25

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Family Applications (1)

Application Number Title Priority Date Filing Date
CN202221366586.XU Active CN217891467U (en) 2022-06-02 2022-06-02 Feeding system of brittle plate splitting machine

Country Status (1)

Country Link
CN (1) CN217891467U (en)

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