Crossing assist guide mechanism for producing glass and method of use

By designing a cross-cutting auxiliary guide mechanism for glass production, the problem of airflow disturbance affecting the robot's breaking operation of the cover glass plate after the annealing furnace was solved, realizing efficient and stable guidance and gripping of the glass plate, and improving production efficiency and success rate.

CN116969667BActive Publication Date: 2025-12-05CAIHONG GRP SHAOYANG SPECIAL GLASS CO LTD
View PDF 3 Cites 0 Cited by

Patent Information

Application Number
CN202310762207.1
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-06-26
Publication Date
2025-12-05
Estimated Expiration
2043-06-26

AI Technical Summary

Technical Problem

The cover glass plate sways due to airflow disturbances after annealing, affecting the efficiency and success rate of the robot arm in breaking the transversely cut product.

Method used

Design a transverse-cutting auxiliary guide mechanism, including an adjustment mechanism, a guide wheel mechanism and a drive mechanism. Through the cooperation of the guide rail and the slider, it can achieve precise guidance and position adjustment of the glass plate, and assist the robot arm to quickly grasp the glass plate.

Benefits of technology

It improves the efficiency and success rate of the robotic arm in breaking glass plates, reduces product losses caused by directional uncertainty during the downward movement of the glass plates, and improves the stability and efficiency of cover glass production.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN116969667B_ABST
    Figure CN116969667B_ABST
Patent Text Reader

Abstract

The application discloses a kind of cross-cut auxiliary guide mechanism for producing glass, belong to cover plate glass manufacturing technical field, including adjusting mechanism, guide wheel mechanism and drive mechanism;The upper portion of the adjusting mechanism is provided with drive mechanism, and the front end of the drive mechanism is provided with guide wheel mechanism;The drive mechanism includes second sliding block mounting plate, third sliding block, fourth sliding block, third guide rail, fourth guide rail, cylinder and cylinder mounting plate;The third guide rail and the fourth guide rail are oppositely arranged on the cylinder mounting plate, and the cylinder is arranged between the third guide rail and the fourth guide rail;The third guide rail is provided with third sliding block, and the bottom of the second sliding block mounting plate is connected above the third sliding block;The fourth guide rail is provided with fourth sliding block, and the bottom of the second sliding block mounting plate is connected above the fourth sliding block.The auxiliary manipulator quickly and accurately grabs glass plate, improves the efficiency and success rate of the manipulator on the glass plate after cross-cutting breakage operation.
Need to check novelty before this filing date? Find Prior Art

Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of cover plate glass manufacturing, in particular to a cross-cut auxiliary guide mechanism for producing glass and a use method thereof. BACKGROUND

[0002] In order to ensure the product quality of cover plate glass and improve the production efficiency, a manipulator has become an important part of a cover plate glass production line. The manipulator is an automatic device with the functions of grabbing and moving workpieces, which is a device developed in the process of mechanization and automation. Since short-distance feeding is required in the processing of cover plate glass, manual feeding is time-consuming, laborious, dangerous and easy to break, so automatic feeding of glass by using the manipulator device can improve the production efficiency and reduce the breakage rate.

[0003] In the process of producing cover plate glass by using the overflow method, the cover plate glass plate is marked by a cutting knife on the cross-cut machine after being taken out of the annealing furnace, and then the breaking action is completed under the action of the manipulator. However, after the cover plate glass plate is taken out of the annealing furnace, the cover plate glass plate moves vertically downward and is obviously disturbed and swung by the airflow, which affects the breaking operation of the manipulator on the cross-cut product. SUMMARY

[0004] In order to solve the problem that the cover plate glass plate is obviously disturbed and swung by the airflow after being taken out of the annealing furnace, which affects the breaking operation of the manipulator on the cross-cut product, the present application provides a cross-cut auxiliary guide mechanism for producing glass, which realizes the guiding of the glass plate, effectively assists the manipulator to quickly grab the glass plate, improves the efficiency and success rate of the breaking operation of the manipulator on the cross-cut glass plate, and enables the cover plate glass production process to be efficient and stable.

[0005] In order to achieve the above-mentioned purpose, the present application provides the following technical solutions:

[0006] A cross-cut auxiliary guide mechanism for producing glass, comprising an adjusting mechanism, a guide wheel mechanism and a driving mechanism;

[0007] The driving mechanism is arranged above the adjusting mechanism, and the front end of the driving mechanism is provided with the guide wheel mechanism;

[0008] The driving mechanism comprises a second sliding block mounting plate, a third sliding block, a fourth sliding block, a third guide rail, a fourth guide rail, a gas cylinder and a gas cylinder mounting plate;

[0009] The third guide rail and the fourth guide rail are oppositely arranged on the gas cylinder mounting plate, and the gas cylinder is arranged between the third guide rail and the fourth guide rail;

[0010] The third guide rail is provided with a third sliding block, and the top of the third sliding block is connected to the bottom rear end area of the second sliding block mounting plate;

[0011] The fourth guide rail is provided with a fourth sliding block, and the top of the fourth sliding block is connected to the bottom rear end area of the second sliding block mounting plate;

[0012] The bottom of the cylinder mounting plate is connected to an adjusting mechanism.

[0013] The front end of the second sliding block mounting plate is connected to a guide wheel mechanism.

[0014] Optionally, a third guide rail gasket is arranged between the third guide rail and the cylinder mounting plate.

[0015] A fourth guide rail gasket is arranged between the fourth guide rail and the cylinder mounting plate.

[0016] Optionally, an adjusting screw is arranged in the cylinder, and a part of the adjusting screw is arranged inside the cylinder, and another part of the adjusting screw is arranged outside the cylinder.

[0017] The part of the adjusting screw arranged outside the cylinder passes through an adjusting screw fixing seat and a limiting seat in sequence.

[0018] The limiting seat is fixed at the end of the cylinder mounting plate.

[0019] The adjusting screw fixing seat is located between the limiting seat and the cylinder, and the top of the adjusting screw fixing seat is connected to the bottom of the second sliding block mounting plate.

[0020] Optionally, the adjusting mechanism comprises a guide rail mounting bottom plate, a guide rail, a sliding block, a first sliding block mounting plate and a guide rail clamp.

[0021] The guide rail mounting bottom plate is provided with a guide rail, and the guide rail is provided with a sliding block and a guide rail clamp, the top of the sliding block is connected to the front end area of the bottom of the first sliding block mounting plate, and the top of the guide rail clamp is connected to the rear end area of the bottom of the first sliding block mounting plate.

[0022] Optionally, the guide rail comprises a first guide rail and a second guide rail.

[0023] The sliding block comprises a first sliding block and a second sliding block.

[0024] The first guide rail and the second guide rail are arranged on the guide rail mounting bottom plate in opposition.

[0025] The first guide rail is provided with a first sliding block, and the top of the first sliding block is connected to the front end area of the bottom of the first sliding block mounting plate.

[0026] The second guide rail is provided with a second sliding block, and the top of the second sliding block is connected to the front end area of the bottom of the first sliding block mounting plate.

[0027] Optionally, the guide rail clamping device comprises a first guide rail clamping device and a second guide rail clamping device.

[0028] The first guide rail clamping device is arranged on the first guide rail, and the top of the first guide rail clamping device is connected to the rear end area of the bottom of the first sliding block mounting plate.

[0029] The second guide rail clamping device is arranged on the second guide rail, and the top of the second guide rail clamping device is connected to the rear end area of the bottom of the first sliding block mounting plate.

[0030] Optionally, the guide wheel mechanism comprises a wheel seat, a guide wheel and a connecting plate.

[0031] The connecting plate is fixedly connected to the second sliding block mounting plate through the support plate.

[0032] The connecting plate is provided with a slot hole.

[0033] One end of the wheel seat is arranged in the slot hole, and the other end of the wheel seat is connected to the guide wheel.

[0034] The wheel seat comprises a first wheel seat and a second wheel seat.

[0035] The guide wheel comprises a first guide wheel and a second guide wheel.

[0036] One end of the first wheel seat is arranged in the slot hole in the upper area of the connecting plate, and the other end of the first wheel seat is connected to the first guide wheel.

[0037] One end of the second wheel seat is arranged in the slot hole in the lower area of the connecting plate, and the other end of the second wheel seat is connected to the second guide wheel.

[0038] Optionally, the connecting plate is connected to the air cylinder through the air cylinder joint.

[0039] Optionally, a plurality of connecting holes are arranged in the edge area of the connecting plate.

[0040] A method for using a cross-cut auxiliary guide mechanism for producing glass comprises the following steps.

[0041] The adjusting mechanism drives the air cylinder mounting plate in the driving mechanism to move forward and backward, the third sliding block in the third guide rail and the fourth sliding block in the fourth guide rail on the air cylinder mounting plate jointly drive the second sliding block mounting plate to move forward and backward, and the second sliding block mounting plate and the air cylinder on the air cylinder mounting plate jointly drive the guide wheel mechanism to move forward and backward.

[0042] Compared with the prior art, the present application has the following beneficial effects:

[0043] The application is a kind of cross-cut auxiliary guide mechanism for producing glass, which is installed on the frame of glass cross-cut equipment and can reciprocate forward and backward according to the movement position of glass, so as to realize the quick grabbing of glass plate by auxiliary manipulator, improve the production efficiency, reduce the product loss caused by the direction uncertainty during the downward process of glass plate, and improve the stability of cover plate glass production. The bottom adjusting mechanism is used to adjust the forward and backward position of the guide wheel mechanism, the guide rail and the sliding block are matched with each other, the adjustment is convenient and fast, and the target position can be quickly adjusted; when the production is abnormal, the whole mechanism can be quickly retreated to the safe position through the adjusting mechanism; the distance between the guide wheel mechanism and the glass plate can be finely adjusted according to the actual production situation, so as to meet the production, so that the production process of cover plate glass can be efficient and stable. The application has the advantages of stable and reliable operation, simple adjustment, etc., which can make the manipulator quickly and accurately grab the glass plate, improve the efficiency and success rate of the breaking operation of the manipulator on the cross-cut glass plate.

[0044] Further, the guide wheel mechanism can expand the connecting plate according to the width change of the glass plate, increase or decrease the number of guide wheels, and adjust the position of the guide wheels to meet the production needs.

[0045] Further, the adjusting mechanism is provided with a guide rail clamp, which can quickly retreat the whole mechanism to a safe position when the glass plate production is abnormal, so as to avoid being hit by broken glass plate and prolong the service life. BRIEF DESCRIPTION OF DRAWINGS

[0046] The drawings described herein are only for explanatory purposes, and are not intended to limit the scope of the present application in any way. In addition, the shape and scale of each component in the drawings are only illustrative, which helps to understand the application, and is not a specific limitation on the shape and scale of each component. In the drawings:

[0047] Figure 1 It is a whole schematic diagram of the cross-cut auxiliary guide mechanism for producing glass;

[0048] Figure 2 It is a schematic diagram of A face of the cross-cut auxiliary guide mechanism for producing glass;

[0049] Figure 3 It is a schematic diagram of B face of the cross-cut auxiliary guide mechanism for producing glass;

[0050] Figure 4 It is a schematic diagram of C face of the cross-cut auxiliary guide mechanism for producing glass;

[0051] Figure 5 It is a schematic diagram of D face of the cross-cut auxiliary guide mechanism for producing glass;

[0052] Figure 6 Figure 1 is a top view of a cross-cut auxiliary guide mechanism for producing glass according to the present application.

[0053] In the figure, 1 is a guide rail mounting base plate, 21 is a first guide rail, 22 is a second guide rail, 31 is a first guide rail clamp, 32 is a second guide rail clamp, 41 is a first sliding block, 42 is a second sliding block, 51 is a first sliding block mounting plate, 6 is a cylinder joint, 71 is a first wheel seat, 72 is a second wheel seat, 81 is a first guide wheel, 82 is a second guide wheel, 9 is a connecting plate, 102 is a second sliding block mounting plate, 113 is a third sliding block, 114 is a fourth sliding block, 123 is a third guide rail, 124 is a fourth guide rail, 13 is an adjusting screw, 14 is a limiting seat, 151 is a first guide rail pad strip, 152 is a second guide rail pad strip, 16 is an adjusting screw fixing seat, 17 is a cylinder, 18 is a cylinder mounting plate, 201 is a first support plate, 202 is a second support plate. DETAILED DESCRIPTION

[0054] In order to make the person skilled in the art better understand the technical solutions in the present application, the technical solutions in the embodiments of the present application will be described clearly and completely below in combination with the drawings in the embodiments of the present application. Obviously, the described embodiments are only some of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by the person skilled in the art without creative labor should belong to the protection scope of the present application.

[0055] It should be noted that when an element is referred to as being "disposed on" another element, it can be directly on the other element or there can be intervening elements. When an element is referred to as being "connected" to another element, it can be directly connected to the other element or intervening elements can be present. The terms "vertical", "horizontal", "left", "right", and similar terms as used herein are for purposes of description and are not meant to be limiting.

[0056] Unless otherwise defined, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this application belongs. The terminology used in the description of the application herein is for the purpose of describing particular embodiments only and is not intended to be limiting of the application. As used herein, the term "and / or" includes any and all combinations of one or more of the associated listed items.

[0057] Reference Figure 1 The cross-cut auxiliary guide mechanism for producing glass according to the present application comprises an adjusting mechanism, a guide wheel mechanism and a driving mechanism.

[0058] The upper part of the adjusting mechanism is connected with a driving mechanism, and the front end of the driving mechanism is provided with a guide wheel mechanism.

[0059] The adjusting mechanism comprises a guide rail mounting base plate 1, guide rails, sliding blocks, a first sliding block mounting plate 51 and guide rail clamps.

[0060] The guide rail mounting base plate 1 is fixed on the cross-cutting equipment frame by screws.

[0061] The guide rail mounting base plate 1 is provided with a first guide rail 21 and a second guide rail 22.

[0062] The first guide rail 21 and the second guide rail 22 are oppositely arranged on the guide rail mounting base plate 1. The first guide rail 21 and the second guide rail 22 are parallel to each other.

[0063] Referring to Figure 2 , the first guide rail 21 is provided with a first guide rail clamp 31 and a first sliding block 41. The first sliding block 41 is located in front of the first guide rail clamp 31, and a certain distance is maintained between the first guide rail clamp 31 and the first sliding block 41.

[0064] Referring to Figure 3 , the second guide rail 22 is provided with a second guide rail clamp 32 and a second sliding block 42. The second sliding block 42 is located in the front end area of the second guide rail clamp 32, and a certain distance is maintained between the second guide rail clamp 32 and the second sliding block 42.

[0065] The top area of the first guide rail clamp 31, the second guide rail clamp 32, the first sliding block 41 and the second sliding block 42 is fixedly connected with the bottom of the first sliding block mounting plate 51.

[0066] Referring to Figure 2 , the top area of the first sliding block 41 is fixedly connected with the bottom front end area of the first sliding block mounting plate 51, and the top area of the second sliding block 42 is fixedly connected with the bottom front end area of the first sliding block mounting plate 51. The first sliding block 41 and the second sliding block 42 are oppositely arranged at the fixed position of the bottom of the first sliding block mounting plate 51.

[0067] Referring to Figure 3 , the top area of the first guide rail clamp 31 is fixedly connected with the bottom rear end area of the first sliding block mounting plate 51, and the top area of the second guide rail clamp 32 is fixedly connected with the bottom rear end area of the first sliding block mounting plate 51. The first guide rail clamp 31 and the second guide rail clamp 32 are oppositely arranged at the fixed position of the bottom of the first sliding block mounting plate 51.

[0068] The first guide rail clamp 31 and the second guide rail clamp 32 are used for fixing the first sliding block mounting plate 51, positioning the cross-cutting auxiliary guide mechanism and preventing vibration. In case of emergency, the cross-cutting auxiliary guide mechanism can be quickly withdrawn to a safe position at the tail of the guide rail mounting base plate 1.

[0069] The driving mechanism comprises the second slider mounting plate 102, the third slider 113, the fourth slider 114, the third guide rail 123, the fourth guide rail 124, the cylinder 17 and the cylinder mounting plate 18.

[0070] Referring to Figure 4 The bottom region of the cylinder mounting plate 18 is connected with the upper surface of the first slider mounting plate 51. The front end of the cylinder mounting plate 18 is consistent with the front end of the first slider mounting plate 51.

[0071] The cylinder mounting plate 18 is connected with the first slider mounting plate 51 through the screw holes arranged on both sides. The distance between the guide wheel and the glass plate can be adjusted to meet the production requirements.

[0072] Referring to Figure 5 The upper surface of the cylinder mounting plate 18 is provided with the third guide rail 123 and the fourth guide rail 124. The third guide rail 123 and the fourth guide rail 124 are oppositely arranged on the cylinder mounting plate 18. The third guide rail 123 and the fourth guide rail 124 are parallel to each other.

[0073] The third guide rail 123 is provided with the third guide rail gasket 153 between the third guide rail 123 and the cylinder mounting plate 102.

[0074] The fourth guide rail 124 is provided with the fourth guide rail gasket 154 between the fourth guide rail 124 and the cylinder mounting plate 102.

[0075] The directions of the first guide rail 21, the second guide rail 22, the third guide rail 123 and the fourth guide rail 124 are consistent.

[0076] The cylinder 17 is mounted on the cylinder mounting plate 18 between the third guide rail 123 and the fourth guide rail 124. The front end direction of the cylinder 17 is consistent with the front end direction of the cylinder mounting plate 18.

[0077] The cylinder 17 is provided with the cylinder joint 6 and the adjusting screw 13.

[0078] The cylinder joint 6 is arranged at the front end of the cylinder 17.

[0079] The adjusting screw 13 enters the cylinder body of the cylinder 17 from the rear end of the cylinder 17. The rear end of the adjusting screw 13 is located outside the cylinder 17. The rear end of the adjusting screw 13 sequentially passes through the adjusting screw fixing seat 16 and the limiting seat 14. The bottom of the limiting seat 14 is fixed at the end of the cylinder mounting plate 18. The adjusting screw fixing seat 16 is arranged between the cylinder 7 and the limiting seat 14. The top of the adjusting screw fixing seat 16 is fixed at the bottom end of the second slider mounting plate 102.

[0080] Referring to Figure 2The third guide rail 123 is provided with a third sliding block 113, and the top of the third sliding block 113 is fixed to the bottom of the second sliding block mounting plate 102.

[0081] Referring to Figure 3 The fourth guide rail 124 is provided with a fourth sliding block 114, and the top of the fourth sliding block 114 is fixed to the bottom of the second sliding block mounting plate 102.

[0082] The third sliding block 113 and the fourth sliding block 114 are fixed to the bottom of the second sliding block mounting plate 102.

[0083] The driving mechanism is provided with a cylinder 17, a third guide rail 123 and a fourth guide rail 124. The cylinder 17 mainly drives the forward and backward movement of the guide wheel mechanism. The third guide rail 123 and the fourth guide rail 124 play a guiding and supporting role, reduce the radial load of the cylinder 17, and improve the stability and reliability of the cross-cut auxiliary guide mechanism.

[0084] The guide wheel mechanism guides the movement direction of the glass plate by contacting the surface of the glass plate.

[0085] The guide wheel mechanism includes a wheel seat, a guide wheel and a connecting plate 9.

[0086] The connecting plate 9 and the second sliding block mounting plate 102 are fixed by a support plate.

[0087] The lower area of the connecting plate 9 is connected perpendicularly to the front end of the second sliding block mounting plate 103.

[0088] The side of the connecting plate 9 connected to the second sliding block mounting plate 102 is provided with a first support plate 201, and the side of the connecting plate 9 connected to the second sliding block mounting plate 102 is provided with a second support plate 202.

[0089] Referring to Figure 3 The upper area of the connecting plate 9 is provided with a slot hole opposite to the lower area, one end of the wheel seat is arranged in the slot hole, and the other end of the wheel seat is connected to the guide wheel.

[0090] The wheel seat can be adjusted in position through the slot hole of the connecting plate 9 according to actual production needs. The guide wheel 8 is installed on the wheel seat through a shaft and a bearing to realize circumferential movement for glass guiding.

[0091] The slot hole in the upper area of the connecting plate 9 connects one end of the first wheel seat 71, and the other end of the first wheel seat 71 is connected to the first guide wheel 81.

[0092] The slot hole in the lower area of the connecting plate 9 connects one end of the second wheel seat 72, and the other end of the second wheel seat 72 is connected to the second guide wheel 82.

[0093] The lower area of the connecting plate 9 is fixedly connected to the cylinder joint 6.

[0094] The cylinder 17 is driven to move forward and backward by the cylinder joint 6 to drive the guide wheel mechanism to move, so as to accurately guide the glass plate, and the limit seat 14 is designed to adjust the forward stroke of the cylinder 17 by adjusting the screw rod 13.

[0095] The connecting plate 9 is provided with a plurality of connecting holes. According to the operation requirement, the connecting plate 9 can be extended and the guide wheel can be increased.

[0096] With reference to Figure 6 The cylinder mounting plate 18 is connected with the first sliding block mounting plate 51 through the screw on both sides of the slot hole, and the position of the guide wheel mechanism can be finely adjusted in the horizontal direction through the slot hole.

[0097] The whole cross-cutting auxiliary guide mechanism is connected with the cross-cutting equipment frame through the guide rail mounting bottom plate 1 in the adjusting mechanism. The adjusting mechanism controls the position of the cross-cutting auxiliary guide mechanism forward and backward, and quickly adjusts the distance between the cross-cutting auxiliary guide mechanism and the glass plate.

[0098] The cross-cutting auxiliary guide mechanism for producing glass aims to guide the hot glass flowing out of the annealing furnace when the glass is produced by the overflow method. Since the glass plate moves vertically downward through the annealing furnace, it will be obviously disturbed and swung by the air flow, which affects the mechanical hand to break the product after cross-cutting. The cross-cutting auxiliary guide mechanism guides the glass plate during the working process of the cross-cutting equipment, assists the mechanical hand to quickly grab the glass plate, and improves the breaking rate of the glass plate. The cross-cutting auxiliary guide mechanism can effectively assist the mechanical hand to quickly grab the glass plate, so that the glass production process is efficient and stable, and the production capacity of the cover plate glass is improved.

[0099] With reference to Figure 6 The first guide rail 21 and the second guide rail 22 are used to adjust the cross-cutting auxiliary guide mechanism in the forward and backward directions. When the production is abnormal, the cross-cutting auxiliary guide mechanism can be quickly moved to the tail safety position to avoid damage to the guide wheel caused by the broken glass.

[0100] The specific working process of the device is as follows: first, the guide rail mounting bottom plate 1 is fixed on the glass cross-cutting equipment frame, then the first sliding block mounting plate 51 is driven to move forward and backward through the first sliding block 41 on the first guide rail 21 and the second sliding block 42 on the second guide rail 22, and the device is positioned when it moves to the appropriate position through the first guide rail clamp 31 on the first guide rail and the second guide rail clamp 32 on the second guide rail 22. The first sliding block mounting plate 51 and the cylinder mounting plate 18 are connected through the two side slot holes to finely adjust the position of the guide wheel in the horizontal direction, the third sliding block 113 in the third guide rail 123 on the cylinder mounting plate 18 and the fourth sliding block 114 in the fourth guide rail 124 drive the second sliding block mounting plate 102 to move forward and backward, the front end of the second sliding block mounting plate 102 is connected with the guide wheel mechanism, and the cylinder 17 on the cylinder mounting plate 18 drives the guide wheel mechanism to move forward and backward.

[0101] A method for producing a cross-cutting auxiliary guide mechanism for glass, comprising the following steps:

[0102] First, the adjusting mechanism drives the cylinder mounting plate 18 in the driving mechanism to move forward and backward, the third sliding block 113 in the third guide rail 123 on the cylinder mounting plate 18 and the fourth sliding block 114 in the fourth guide rail 124 drive the second sliding block mounting plate 102 to move forward and backward, the front end of the second sliding block mounting plate 102 is connected with the guide wheel mechanism, and the cylinder 17 on the cylinder mounting plate 18 drives the guide wheel mechanism to move forward and backward.

[0103] The cross-cutting auxiliary guide mechanism is installed on the glass cross-cutting equipment frame and reciprocates forward and backward according to the movement position of the glass plate. The cross-cutting auxiliary guide mechanism adjusts the position of the guide wheel mechanism forward and backward through the bottom adjusting mechanism, adopts a guide rail sliding block structure, is convenient and fast to adjust, can quickly adjust the guide wheel mechanism to the target position, locks the guide rail through the guide rail clamp, can quickly retreat the entire mechanism to a safe position when the production is abnormal, and can finely adjust the distance between the guide wheel and the glass plate according to the actual production situation to meet the production demand. The guide wheel mechanism can expand the connecting plate 9 according to the width change of the glass plate, increase the number of guide wheels, and adjust the position of the guide wheels to meet the production needs. The auxiliary mechanical hand grabs the glass plate and performs the glass plate breaking operation.

[0104] Meanwhile, the cross-cutting auxiliary guide mechanism has the advantages of stable and reliable operation, simple adjustment, stable and reliable overall structure, and simple operation. The cross-cutting auxiliary guide mechanism can effectively improve the efficiency and success rate of the mechanical hand breaking plate, the device can quickly complete the grabbing of the glass plate by the auxiliary mechanical hand, improve the efficiency, reduce the product loss caused by the uncertainty of the direction and the interference of the equipment in the glass plate downward process, and improve the production stability.

[0105] Many embodiments and many applications other than those described herein will be apparent to those skilled in the art from consideration of the specification and practice of the teachings herein. Therefore, the scope of the present teachings should be determined by the appended claims and equivalents thereof, rather than by the description alone. All articles and references, including patent applications and publications, are incorporated herein by reference for all that they contain. Any aspect of the subject matter disclosed herein that is not recited in the claims is hereby abandoned. Nothing herein is to be construed as an admission that the subject matter disclosed herein is not entitled to antedate any prior art disclaimer.

[0106] The above description is further detailed of the present application, and cannot be considered as limiting the specific embodiments of the present application, and for those skilled in the art, without departing from the concept of the present application, a number of simple deductions or substitutions can be made, which should be considered as belonging to the present application, which is determined by the claims submitted.

Claims

1. A cross-cut assist guide for use in the production of glass, characterized by, The adjusting mechanism, the guide wheel mechanism and the driving mechanism are included. The driving mechanism is arranged above the adjusting mechanism, and the front end of the driving mechanism is provided with the guide wheel mechanism. The driving mechanism includes a second sliding block mounting plate (102), a third sliding block (113), a fourth sliding block (114), a third guide rail (123), a fourth guide rail (124), a cylinder (17) and a cylinder mounting plate (18). The third guide rail (123) and the fourth guide rail (124) are oppositely arranged on the cylinder mounting plate (18), and the cylinder (17) is arranged between the third guide rail (123) and the fourth guide rail (124). The third sliding block (113) is arranged on the third guide rail (123), and the bottom rear end region of the second sliding block mounting plate (102) is connected above the third sliding block (113). The fourth sliding block (114) is arranged on the fourth guide rail (124), and the bottom rear end region of the second sliding block mounting plate (102) is connected above the fourth sliding block (114). The bottom of the cylinder mounting plate (18) is connected with the adjusting mechanism. The front end of the second sliding block mounting plate (102) is connected with the guide wheel mechanism. The adjusting screw (13) is arranged in the cylinder (17), and a part of the adjusting screw (13) is arranged inside the cylinder (17), and another part of the adjusting screw (13) is arranged outside the cylinder (17). The part of the adjusting screw (13) arranged outside the cylinder (17) passes through the adjusting screw fixing seat (16) and the limiting seat (14) in sequence. The limiting seat (14) is fixed at the end of the cylinder mounting plate (18). The adjusting screw fixing seat (16) is located between the limiting seat (14) and the cylinder (17), and the top of the adjusting screw fixing seat (16) is connected with the bottom of the second sliding block mounting plate (102). The adjusting mechanism includes a guide rail mounting bottom plate (1), a guide rail, a sliding block, a first sliding block mounting plate (51) and a guide rail clamp. The guide rail is arranged on the guide rail mounting bottom plate (1), and the sliding block and the guide rail clamp are arranged on the guide rail, the top of the sliding block is connected with the front end region of the bottom of the first sliding block mounting plate (51), and the top of the guide rail clamp is connected with the rear end region of the bottom of the first sliding block mounting plate (51).

2. The cross-cut assist guide for producing glass of claim 1, wherein, The third guide rail (123) and the cylinder mounting plate (18) are provided with a third guide rail gasket (153). The fourth guide rail (124) and the cylinder mounting plate (18) are provided with a fourth guide rail gasket (154).

3. The cross-cut assist guide for producing glass of claim 1, wherein, The guide rail includes a first guide rail (21) and a second guide rail (22). The sliding block includes a first sliding block (41) and a second sliding block (42). The first guide rail (21) and the second guide rail (22) are oppositely arranged on the guide rail mounting bottom plate (1). The first sliding block (41) is arranged on the first guide rail (21), and the top of the first sliding block (41) is connected with the front end region of the bottom of the first sliding block mounting plate (51). The second sliding block (42) is arranged on the second guide rail (22), and the top of the second sliding block (42) is connected with the front end region of the bottom of the first sliding block mounting plate (51).

4. The cross-cut assist guide for producing glass of claim 3, wherein, The guide rail clamping device comprises a first guide rail clamping device (31) and a second guide rail clamping device (32); The first guide rail clamping device (31) is arranged on the first guide rail (21), and the top of the first guide rail clamping device (31) is connected to the rear end area of the bottom of the first sliding block mounting plate (51); The second guide rail clamping device (32) is arranged on the second guide rail (22), and the top of the second guide rail clamping device (32) is connected to the rear end area of the bottom of the first sliding block mounting plate (51).

5. The cross-cut assist guide for producing glass of claim 1, wherein, The guide wheel mechanism comprises a wheel seat, a guide wheel and a connecting plate (9); The connecting plate (9) is fixed with the second sliding block mounting plate (102) through a support plate; A slot hole is arranged in the connecting plate (9); One end of the wheel seat is arranged in the slot hole, and the other end of the wheel seat is connected with the guide wheel; The wheel seat comprises a first wheel seat (71) and a second wheel seat (72); The guide wheel comprises a first guide wheel (81) and a second guide wheel (82); One end of the first wheel seat (71) is arranged in the slot hole in the upper area of the connecting plate (9), and the other end of the first wheel seat (71) is connected with the first guide wheel (81); One end of the second wheel seat (72) is arranged in the slot hole in the lower area of the connecting plate (9), and the other end of the second wheel seat (72) is connected with the second guide wheel (82).

6. The cross-cut assist guide for producing glass of claim 5, wherein, The connecting plate (9) is connected with the air cylinder (17) through the air cylinder joint (6).

7. The cross-cut assist guide for producing glass of claim 6, wherein, A plurality of connecting holes are arranged in the edge area of the connecting plate (9).

8. The method of using a cross-cut assist guide for producing glass according to any one of claims 1-7, wherein, The adjusting mechanism drives the air cylinder mounting plate (18) in the driving mechanism to move forward and backward, the third sliding block (113) in the third guide rail (123) on the air cylinder mounting plate (18) and the fourth sliding block (114) in the fourth guide rail (124) jointly drive the second sliding block mounting plate (102) to move forward and backward, and the second sliding block mounting plate (102) and the air cylinder (17) on the air cylinder mounting plate (18) jointly drive the guide wheel mechanism to move forward and backward. ​

Citation Information

Patent Citations

  • Substrate glass clamping device

    CN112278865A

  • Glass substrate cutting device's positioning system

    CN208791489U

  • Transverse cutting machine

    CN212451181U