Probe structure for glass edge grinding machine

By integrating pressure sensors and infrared detection components into the glass edging machine, the real-time problem of edging wheel deviation detection is solved, achieving efficient edging wheel deviation feedback and improving production efficiency and quality control.

CN224059578UActive Publication Date: 2026-03-31LUOYANG JINGDI MASCH EQUIP CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-01
Publication Date
2026-03-31

AI Technical Summary

Technical Problem

In existing glass edging processes, real-time deviation detection of the edging wheel relies on manual sampling or offline measurement, which cannot achieve continuous monitoring, resulting in low production efficiency and increased quality risks.

Method used

A probe structure for a glass edging machine was designed, which combines a pressure sensor and an infrared detection component to sense the deviation of the edging wheel in real time. The edging condition is collected by both dynamic contact of the pressure sensor and infrared transmitter and receiver, so as to realize real-time deviation feedback.

Benefits of technology

It enables real-time detection of grinding wheel deviation, avoiding production delays and quality risks, improving production efficiency, and reducing raw material loss.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN224059578U_ABST
    Figure CN224059578U_ABST
Patent Text Reader

Abstract

The utility model discloses a probe structure for a glass edge grinding machine, which relates to the technical field of probe structures and comprises a connecting disc and a first detection component. A second detection assembly is mounted on the circumferential surface of the connecting disc, and an attaching assembly is mounted at the left end of the connecting disc; the first detection assembly comprises a fixing barrel, a pressure sensor, a limiting ring, an ejector rod and a first spring, the right end of the circumferential surface of the connecting disc is sleeved with the fixing barrel, the limiting ring is fixed to the right end of the circumferential surface of the connecting disc and located in the fixing barrel, and the ejector rod is fixed to the right end of the connecting disc and located in the fixing barrel; a pressure sensor is installed at the right end of the interior of the fixing barrel and corresponds to the ejector rod, a first spring is fixed to the right end of the connecting disc, the right end of the first spring is fixed into the fixing barrel, an adjusting assembly is installed at the right end of the fixing barrel, and a user can be reminded of the real-time deviation of the edge grinding wheel in time.
Need to check novelty before this filing date? Find Prior Art

Description

TECHNICAL FIELD

[0001] The utility model relates to a probe structure technical field, concretely is a kind of probe structure for glass edging machine. BACKGROUND

[0002] In current glass edging process, the real-time deviation detection of edging wheel mainly relies on artificial sampling inspection or offline measurement tool. The traditional edging machine usually adopts contact type measuring equipment such as calipers, tape measures, or checks the edging quality by visual inspection of operating personnel, which needs to pause production process, extracts part of sample for offline detection, cannot realize continuous monitoring, and manual sampling inspection has significant time delay, when deviation is found, batch of defective products has been caused, which not only reduces production efficiency, but also increases quality risk and raw material loss in glass processing, therefore, we propose a kind of probe structure for glass edging machine. UTILITY MODEL CONTENT

[0003] The technical problem to be solved by the utility model is to overcome the defects of the prior art, provide a probe structure for glass edging machine, which can timely remind the user of the real-time deviation of edging wheel, and effectively solve the problems in the background art.

[0004] To achieve the above object, the utility model provides the following technical scheme: a kind of probe structure for glass edging machine, including connecting disc and first detection component;

[0005] Connecting disc: second detection component is installed on the circumferential surface, the left end of the connecting disc is equipped with the assembly of sticking,

[0006] First detection component: including fixed barrel, pressure sensor, limit ring, top rod and first spring, the right end of the circumferential surface of the connecting disc is sleeved with fixed barrel, the right end of the circumferential surface of the connecting disc is fixed with limit ring, the limit ring is located in the inside of fixed barrel, the right end of the connecting disc is fixed with top rod, the right end in the inside of fixed barrel is equipped with pressure sensor, the pressure sensor and top rod are mutually corresponding, the right end of the connecting disc is fixed with first spring, the right end of the first spring is fixed in the inside of fixed barrel, the right end of fixed barrel is equipped with adjusting assembly, the pressure sensor and the PLC controller of outside are bidirectional electrical connection, by setting first detection component, the edge of glass is detected initially.

[0007] Further, the fitting assembly comprises a connecting strip, an opening, a connecting barrel, a fixing frame, a rotating disc, high-hardness silicone rubber and a second spring, the left end of the connecting disc is fixedly provided with the connecting strip, the connecting strip is slidably connected in the interior of the connecting barrel, the left side of the connecting strip is provided with the opening, the left end of the connecting barrel is fixedly provided with the fixing frame, the interior of the fixing frame is rotatably connected with the rotating disc, the circumferential surface of the rotating disc is fixedly provided with the high-hardness silicone rubber, the surface of the connecting strip is sleeved with the second spring, the left end of the second spring is fixed to the right end of the connecting barrel, and the right end of the second spring is fixed to the left end of the connecting disc, and the fitting assembly is arranged to be fitted with the glass edge.

[0008] Further, the second detection assembly comprises a connecting frame, a support frame, an infrared emitter and an infrared receiver, the circumferential surface of the connecting disc is fixedly provided with the connecting frame, the left side of the connecting frame is fixedly provided with two corresponding support frames, the side surfaces of the two support frames are respectively provided with the infrared emitter and the infrared receiver, the infrared emitter and the infrared receiver are correspondingly arranged at the opening, the input end of the infrared emitter is electrically connected with the output end of the external PLC controller, and the infrared receiver is bidirectionally electrically connected with the external PLC controller, and the second detection assembly is arranged to further detect the edge grinding condition of the glass.

[0009] Further, the adjusting assembly comprises a connecting frame, a mounting frame, a threaded column and a mounting ring, the right end of the fixing barrel is fixedly provided with the connecting frame, the connecting frame is slidably connected in the interior of the mounting frame, the right side of the mounting frame is provided with a threaded hole, the threaded hole is threadedly connected with the threaded column, the left end of the threaded column is rotatably connected to the right side of the connecting frame, and the front and rear sides of the mounting frame are fixedly provided with two corresponding mounting rings, and the adjusting assembly is arranged to adjust the position of the fitting assembly.

[0010] Further, the left side of the mounting frame is provided with a fixing block, the upper side of the fixing block is provided with a pin hole, the interior of the pin hole is slidably connected with a pin shaft, the upper end of the circumferential surface of the connecting barrel is provided with a clamping groove, and the lower end of the pin shaft is clamped in the interior of the clamping groove, and the fixing block and the pin shaft are arranged to fix the connecting barrel.

[0011] Compared with the prior art, the glass edge grinding machine with the probe structure has the following advantages:

[0012] The pressure sensor of the first detection assembly is in dynamic contact with the ejector rod, the protrusion pressure change caused by the edge grinding wheel leakage is sensed in real time, the infrared emitter and the infrared receiver of the second detection assembly are combined to realize optical detection on the edge collapse groove, physical and optical double signal collection are realized, the edge grinding condition of the glass can be detected in real time, and deviation feedback is ensured without delay. BRIEF DESCRIPTION OF DRAWINGS

[0013] Fig. 1 It is the front side structure schematic view of the utility model;

[0014] Fig. 2 It is the first detection assembly structure schematic view of the utility model;

[0015] Fig. 3 It is the second detection assembly structure schematic view of the utility model.

[0016] In the drawing: 1 connecting disc, 2 first detection assembly, 21 fixed barrel, 22 pressure sensor, 23 limit ring, 24 top rod, 25 first spring, 3 bonding assembly, 31 connecting strip, 32 opening, 33 connecting barrel, 34 fixing frame, 35 rotating disc, 36 high hardness silicone rubber, 37 second spring, 4 second detection assembly, 41 connecting frame, 42 support frame, 43 infrared emitter, 44 infrared receiver, 5 adjusting assembly, 51 connecting frame, 52 mounting frame, 53 threaded column, 54 mounting ring, 6 fixed block, 7 pin shaft. DETAILED DESCRIPTION

[0017] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, rather than all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the protection scope of the utility model.

[0018] Please refer to Figs. 1-3 The embodiment provides a kind of technical scheme: a kind of probe structure for glass edging machine, including connecting disc 1 and first detection assembly 2;

[0019] The connecting disc 1 is provided with the second detection assembly 4 on the circumference, and the left end of the connecting disc 1 is provided with the fitting assembly 3, which comprises a connecting strip 31, an opening 32, a connecting barrel 33, a fixing frame 34, a rotating disc 35, high-hardness silica rubber 36 and a second spring 37. The connecting strip 31 is fixed to the left end of the connecting disc 1 and is slidably connected to the inside of the connecting barrel 33. The opening 32 is formed in the left side of the connecting strip 31. The fixing frame 34 is fixed to the left end of the connecting barrel 33. The rotating disc 35 is rotatably connected to the inside of the fixing frame 34. The high-hardness silica rubber 36 is fixed to the circumference of the rotating disc 35. The second spring 37 is sleeved on the surface of the connecting strip 31 and is fixed to the right end of the connecting barrel 33 and the left end of the connecting disc 1. The second detection assembly 4 comprises a connecting frame 41, a supporting frame 42, an infrared emitter 43 and an infrared receiver 44. The connecting frame 41 is fixed to the circumference of the connecting disc 1. Two corresponding supporting frames 42 are fixed to the left side of the connecting frame 41. The infrared emitter 43 and the infrared receiver 44 are respectively fixed to the side surfaces of the two supporting frames 42. The infrared emitter 43 and the infrared receiver 44 are correspondingly arranged with the opening 32. The input end of the infrared emitter 43 is electrically connected to the output end of the external PLC controller. The infrared receiver 44 is bidirectionally electrically connected to the external PLC controller. The second detection assembly 4 is arranged to further detect the edge grinding condition of the glass, and the fitting assembly 3 is arranged to fit the edge of the glass.

[0020] The first detection assembly 2 comprises a fixing barrel 21, a pressure sensor 22, a limiting ring 23, a jacking rod 24 and a first spring 25. The fixing barrel 21 is sleeved on the right end of the circumference of the connecting disc 1. The limiting ring 23 is fixed to the right end of the circumference of the connecting disc 1 and is located in the inside of the fixing barrel 21. The jacking rod 24 is fixed to the right end of the connecting disc 1. The pressure sensor 22 is arranged in the right end of the inside of the fixing barrel 21 and corresponds to the jacking rod 24. The first spring 25 is fixed to the right end of the connecting disc 1 and is fixed to the inside of the fixing barrel 21. The fixing barrel 21 is provided with the adjusting assembly 5. The pressure sensor 22 is bidirectionally electrically connected to the external PLC controller. The adjusting assembly 5 comprises a connecting frame 51, a mounting frame 52, a threaded column 53 and a mounting ring 54. The connecting frame 51 is fixed to the right end of the fixing barrel 21 and is slidably connected to the inside of the mounting frame 52. The mounting frame 52 is provided with a threaded hole in the right side. The threaded column 53 is threadedly connected to the inside of the threaded hole and is rotatably connected to the right side of the connecting frame 51. Two corresponding mounting rings 54 are fixed to the front and back sides of the mounting frame 52. The adjusting assembly 5 is arranged to adjust the position of the fitting assembly 3. The first detection assembly 2 is arranged to preliminarily detect the edge grinding condition of the glass.

[0021] The left side of the mounting frame 52 is provided with a fixed block 6, the upper side of the fixed block 6 is provided with a pin hole, the inside of the pin hole is slidably connected with a pin shaft 7, the upper end of the circumferential surface of the connecting barrel 33 is provided with a clamping groove, the lower end of the pin shaft 7 is clamped in the inside of the clamping groove, and the connecting barrel 33 is fixed through the fixed block 6 and the pin shaft 7.

[0022] The working principle of the probe structure of the glass edging machine is as follows: first, the fixed frame 52 is fixed at a position corresponding to the edging wheel of the glass edging machine, then the position of the connecting frame 51 is adjusted by rotating the threaded column 53 so that the high-hardness silicone rubber 36 is attached to the edge of the glass after edging, the pin shaft 7 is removed after attachment, in this case, the high-hardness silicone rubber 35 guides the glass during the process of the edging wheel edging the glass, and if a groove is formed due to edge collapse when the glass is being edged, the connecting barrel 33 will move to the left under the action of the second spring 37 and leak out of the opening 32, at this time, the infrared signal sent by the infrared emitter 43 is received by the infrared receiver 44, and after receiving, the external PLC controller can send this information to the remote console to remind the user of edge collapse, and when the edging wheel is missing, the protrusion of the glass edge will extrude the rubber wheel 36 to the right, driving the top rod 24 to extrude the pressure sensor 22, and after the pressure sensor 22 is extruded, the signal is transmitted to the external PLC controller, in this case, the external PLC controller can send this information to the remote console to remind the user of missing edging.

[0023] It is worth noting that the external PLC controller disclosed in the above embodiment is a specific model of Siemens S7-200, and the pressure sensor 22, the infrared emitter 43 and the infrared receiver 44 can be freely configured according to actual application scenarios, and the external PLC controller controls the infrared emitter 43 to work by using the method commonly used in the prior art.

[0024] The above is only an embodiment of the utility model, and does not limit the patent range of the utility model, and any equivalent structure or equivalent process transformation according to the content of the utility model specification and drawings, or direct or indirect application in other related technical fields, is also included in the patent protection range of the utility model.

Claims

1. A probe structure for a glass edger, characterized by: It includes connecting disc (1) and first detection assembly (2); Connecting disc (1): the second detection assembly (4) is installed on the circumference surface, the left end of the connecting disc (1) is provided with the fitting assembly (3); The first detection assembly (2) includes fixed barrel (21), pressure sensor (22), limiting ring (23), top rod (24) and first spring (25), the right end of the circumference surface of the connecting disc (1) is sleeved with the fixed barrel (21), the right end of the circumference surface of the connecting disc (1) is fixed with the limiting ring (23), the limiting ring (23) is located in the inside of the fixed barrel (21), the right end of the connecting disc (1) is fixed with the top rod (24), the right end of the inside of the fixed barrel (21) is provided with the pressure sensor (22), the pressure sensor (22) and the top rod (24) correspond to each other, the right end of the connecting disc (1) is fixed with the first spring (25), the right end of the first spring (25) is fixed in the inside of the fixed barrel (21), the right end of the fixed barrel (21) is provided with the adjusting assembly (5), and the pressure sensor (22) is bidirectionally electrically connected with the external PLC controller.

2. The probe structure for a glass edger as claimed in claim 1, wherein: The fitting assembly (3) includes connecting strip (31), opening (32), connecting barrel (33), fixed frame (34), rotating disc (35), high-hardness silicone rubber (36) and second spring (37), the left end of the connecting disc (1) is fixed with the connecting strip (31), the connecting strip (31) is slidably connected in the inside of the connecting barrel (33), the left side of the connecting strip (31) is provided with the opening (32), the left end of the connecting barrel (33) is fixed with the fixed frame (34), the inside of the fixed frame (34) is rotatably connected with the rotating disc (35), the circumference surface of the rotating disc (35) is fixed with the high-hardness silicone rubber (36), the surface of the connecting strip (31) is sleeved with the second spring (37), the left end of the second spring (37) is fixed at the right end of the connecting barrel (33), and the right end of the second spring (37) is fixed at the left end of the connecting disc (1).

3. The probe structure for a glass edger as claimed in claim 2, wherein: The second detection assembly (4) includes connecting frame (41), support frame (42), infrared emitter (43) and infrared receiver (44), the circumference surface of the connecting disc (1) is fixed with the connecting frame (41), the left side of the connecting frame (41) is fixed with two corresponding support frames (42), the side surfaces of the two support frames (42) are respectively provided with the infrared emitter (43) and the infrared receiver (44), the infrared emitter (43) and the infrared receiver (44) correspond to the opening (32), the input end of the infrared emitter (43) is electrically connected with the output end of the external PLC controller, and the infrared receiver (44) is bidirectionally electrically connected with the external PLC controller.

4. The probe structure for a glass edger as claimed in claim 2, wherein: Said adjusting assembly (5) contains connecting frame (51), installation frame (52), threaded column (53) and installation ring (54), the right end of the fixed barrel (21) is fixed with connecting frame (51), connecting frame (51) is connected in the inside of installation frame (52) slidingly, the right side of installation frame (52) is opened with threaded hole, the inside of threaded hole is connected with threaded column (53) threadedly, the left end of threaded column (53) is rotatably connected in the right side of connecting frame (51), the front and back two sides of installation frame (52) are fixed with two corresponding installation ring (54).

5. The probe structure for a glass edger as claimed in claim 4, wherein: The left side of the installation frame (52) is provided with a fixed block (6), the upper side of the fixed block (6) is provided with a pin hole, the inside of the pin hole is connected with a pin shaft (7) slidingly, the upper end of the circumference surface of the connecting barrel (33) is provided with a clamping groove, and the lower end of the pin shaft (7) is clamped in the inside of the clamping groove.