A glassware quality inspection platform unqualified product conveying line
Patent Information
- Application Number
- CN202521813469.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-08-26
- Publication Date
- 2026-08-21
- Estimated Expiration
- 2035-08-26
AI Technical Summary
[0003]通常玻璃器皿检验操作台处于玻璃器皿出料输送机的输出末端,但目前技术考虑不全面,具有以下弊端:1、质检台布局不合理,废料箱位置与产线作业区距离过远,员工需频繁往返于工作台与废料箱之间,无法及时将挑选出来的残次品快速的转移至废料箱,浪费人力和时间
本实用新型所述的玻璃器皿质检台不合格品输送线,操作员在玻璃器皿检验操作台处通过双眼观察,完成玻璃器皿的缺陷检验,挑拣出存在粘料、缺边、干裂、杂物、气泡缺陷的玻璃器皿,将合格品进行装箱,将具有不同缺陷的玻璃器皿放置在缺陷产品转移带式输送机A或缺陷产品转移带式输送机B上,缺陷产品转移带式输送机A、缺陷产品转移带式输送机B将其上的缺陷产品分别转移至废料箱A、废料箱B中,本申请可以将挑选出来的残次品快速的转移至废料箱,节省人力和时间。
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Figure CN224657450U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to a defective product conveying line for a glassware quality inspection station, belonging to the field of glassware production technology. Background Technology
[0002] Glass food storage containers are a type of glassware. They are everyday items in our lives. The preparation of glass food storage containers involves the following steps: weighing raw materials such as quartz sand and mixing them to obtain a mixed batch; putting the mixed batch into a melting furnace and melting it at a temperature of 900-1480 degrees Celsius to obtain molten glass; placing the molten glass at a temperature of 950-1100 degrees Celsius into a food storage container stamping mold on a rotating worktable driven by a motor, and then stamping it through a telescopic stamping head to form a semi-finished glass food storage container.
[0003] Typically, the glassware inspection workbench is located at the output end of the glassware conveyor. However, current technology is not comprehensive and has the following drawbacks: 1. The layout of the inspection workbench is unreasonable. The waste bin is too far from the production line work area, requiring employees to frequently travel between the workbench and the waste bin. This makes it impossible to quickly transfer the selected defective products to the waste bin, wasting manpower and time. 2. The waste bin has only one discharge port, which easily leads to accumulation in a single area. This problem needs to be addressed, as the single discharge port can easily lead to the formation of a spike, and the space around the spike cannot be effectively utilized, resulting in a reduction in the waste bin's capacity and unnecessary space waste.
[0004] To solve one of the above problems, there is an urgent need for a non-conforming glassware inspection line. Utility Model Content
[0005] Based on the shortcomings of the existing technology, the technical problem to be solved by this utility model is: how to quickly transfer the selected defective products to the waste bin, saving manpower and time. To this end, a defective product conveying line for glassware quality inspection table is provided.
[0006] The defective product conveying line of the glassware quality inspection station of this utility model includes a glassware inspection operating table at the output end of the glassware discharge conveyor. Its features include: a supplementary lighting mounting frame is provided above the glassware inspection operating table; a defective product transfer belt conveyor A and a defective product transfer belt conveyor B are symmetrically installed on the supplementary lighting mounting frame, conveying products to both sides; multiple sets of spaced supplementary lights are installed on the lower surface of the supplementary lighting mounting frame; left and right support legs are respectively installed at both ends of the supplementary lighting mounting frame and supported on the ground; a middle support leg is installed in the middle of the supplementary lighting mounting frame, and the bottom end of the middle support leg supports the tabletop of the glassware inspection operating table; a dropping mechanism A and a dropping mechanism B are respectively installed at the discharge ends of the defective product transfer belt conveyor A and defective product transfer belt conveyor B; and waste bins A and B, respectively, are provided on the left and right sides of the glassware inspection operating table to carry the discharge of the dropping mechanism A and the discharge of the dropping mechanism B.
[0007] The glassware inspection workbench is located adjacent to the end of the glassware discharge conveyor. The workbench receives the glassware discharged from the conveyor. Each workbench is staffed with 2 or 4 operators. Operators are positioned on the side of the workbench furthest from the conveyor. The operator picks up the glassware to be inspected from the conveyor. The supplementary lighting provides effective illumination. The operator visually inspects the glassware at the workbench, identifying and removing glassware with defects such as sticky material, chipped edges, cracks, foreign matter, and bubbles. Qualified glassware is then boxed. Glassware with different defects is placed on defective product transfer conveyor A or B. Defective product transfer conveyors A and B transfer the defective products to waste bins A and B, respectively. This application allows for the rapid transfer of selected defective products to waste bins, saving manpower and time.
[0008] In any of the above embodiments, it is preferred that the glassware inspection workbench is supported on the ground by table legs, and that the glassware inspection workbench is equipped with a stainless steel tabletop. The stainless steel tabletop features seamless splicing, wear resistance, easy cleaning, mildew resistance, no radiation, and a long service life.
[0009] In any of the above embodiments, it is preferred that the supplementary lighting mounting frame is a rectangular frame structure, and the supplementary lighting mounting frame is fixedly connected to the defective product transfer conveyor A via connecting columns A arranged on both sides, and the supplementary lighting mounting frame is fixedly connected to the defective product transfer conveyor B via connecting columns B arranged on both sides. The supplementary lighting mounting frame provides effective support for the defective product transfer conveyor A and the defective product transfer conveyor B.
[0010] In any of the above solutions, it is preferred that the supplementary light is an LED supplementary light. This offers advantages such as low power consumption, high stability, low heat generation, and good heat dissipation.
[0011] In any of the above embodiments, it is preferred that the waste bin A has a rectangular box structure, and the top cover of the waste bin A has a discharge port A and a discharge port B.
[0012] In any of the above embodiments, preferably, the material feeding mechanism A includes a slide, one end of which is an inlet for the defective product transfer conveyor A, and the other end of which is a discharge port B. The slide includes a base plate, the two sides of which are bent upward to form a left side guard and a right side guard, respectively. A vertical support column is connected to the upper end of the base plate, and the vertical support column is fixed to a fixed crossbeam. The fixed crossbeam is fixed to the left support leg, and an inclined support rod is provided between the fixed crossbeam and the left support leg. The discharge port A is opened in the middle of the base plate, and a blocking gate plate for blocking the discharge port A is hinged to the base plate. A servo electric cylinder for driving the opening and closing of the blocking gate plate is installed at the end of the fixed crossbeam. The cylinder body of the servo electric cylinder is hinged to the fixed crossbeam, and the telescopic end of the servo electric cylinder is hinged to the blocking gate plate. The discharge port A and the discharge port correspond to the discharge outlet A and the discharge outlet B, respectively.
[0013] The discharge port A and discharge outlet B correspond to the drop outlet A and drop outlet B, respectively. When the blocking gate is closed, the defective products transferred from the defective product transfer belt conveyor A fall into the waste bin A via the slide, discharge port A, blocking gate, and drop outlet A. When the blocking gate is closed, the defective products transferred from the defective product transfer belt conveyor A fall into the waste bin A via the slide, discharge port B, and drop outlet B. The opening and closing of discharge port A is controlled by a servo electric cylinder to control the entry of defective products into waste bin A from different drop outlets, avoiding accumulation in a single area. This solves the problem of a single drop outlet easily accumulating to form a tower, where the space around the tower cannot be effectively utilized, leading to a reduction in the capacity of waste bins A and B and causing unnecessary space waste.
[0014] In any of the above embodiments, it is preferred that the waste bin B has a rectangular box structure, and the top cover of the waste bin B has a discharge port C and a discharge port D.
[0015] In any of the above solutions, it is preferred that the material feeding mechanism B has the same structure as the material feeding mechanism A.
[0016] Preferably, in any of the above embodiments, a first counting sensor is installed above the conveying path of the defective product transfer conveyor A, and the first counting sensor is mounted on the frame of the defective product transfer conveyor A via a sensor mounting bracket A; a second counting sensor is installed above the conveying path of the defective product transfer conveyor A, and the second counting sensor is mounted on the frame of the defective product transfer conveyor B via a sensor mounting bracket B. This allows for the counting of defective products.
[0017] In any of the above schemes, it is preferred that the first counting sensor and the second counting sensor are photoelectric sensors or proximity switch sensors.
[0018] Compared with the prior art, the present invention has the following beneficial effects: The glassware quality inspection table and defective product conveyor line described in this utility model allows operators to visually inspect glassware at the inspection table, picking out glassware with defects such as sticky material, chipped edges, dry cracks, foreign matter, and bubbles. Qualified products are then boxed, and glassware with different defects are placed on defective product transfer conveyor A or defective product transfer conveyor B. Defective product transfer conveyor A and defective product transfer conveyor B transfer the defective products to waste bins A and B respectively. This application allows for the rapid transfer of selected defective products to waste bins, saving manpower and time.
[0019] The defective product conveying line of the glassware quality inspection station described in this utility model has a rectangular frame structure for the supplementary lighting mounting bracket. The supplementary lighting mounting bracket is fixedly connected to the defective product transfer belt conveyor A through connecting columns A arranged on both sides, and the supplementary lighting mounting bracket is fixedly connected to the defective product transfer belt conveyor B through connecting columns B arranged on both sides. The supplementary lighting mounting bracket provides effective support for the defective product transfer belt conveyor A and the defective product transfer belt conveyor B.
[0020] The defective product conveying line of the glassware quality inspection station described in this utility model has defective product transfer belt conveyor A and defective product transfer belt conveyor B symmetrically installed on the supplementary lighting mounting frame. Each glassware inspection operation station is equipped with 2 or 4 operators and two sets of waste bins. The structure is compact and the space layout is more reasonable.
[0021] The defective product conveying line of the glassware quality inspection station described in this utility model controls the opening and closing of the feeding port A through a servo electric cylinder, so as to control the defective products to enter the waste bin A from different feeding ports, avoiding accumulation in a single area. This solves the problem that a single feeding port can easily accumulate to a tower, and the space around the tower cannot be effectively utilized, resulting in a reduction in the capacity of waste bin A and waste bin B, causing unnecessary space waste. Attached Figure Description
[0022] To more clearly illustrate the specific embodiments of the present invention or the technical solutions in the prior art, the accompanying drawings used in the description of the specific embodiments or the prior art will be briefly introduced below. In all the drawings, similar elements or parts are generally identified by similar reference numerals. In the drawings, the elements or parts are not necessarily drawn to scale.
[0023] Figure 1 This is a schematic diagram of the structure of this utility model; Figure 2 This is a schematic diagram of the material feeding mechanism A of this utility model. Figure 1 (Feed port A is opened); Figure 3 This is a schematic diagram of the material feeding mechanism A of this utility model. Figure 2 (Feed port A is closed); Figure 4 This is a diagram showing the installation location of the first counting sensor.
[0024] In the diagram: 1. Glassware Inspection Workbench 1.1. Table Legs 2. Supplementary Light Mounting Bracket 2.1. Connecting Column A 2.2. Connecting Column B 3. Supplementary Light 4. Left Support Leg 5. Middle Support Leg 6. Right Support Leg 7. Defective Product Transfer Belt Conveyor A 8. Defective Product Transfer Belt Conveyor B 9. Scrap Bin A 10. Scrap Bin B 10.1. Discharge Port C 10.2. Discharge Port D 11. Discharge Mechanism A 11.1. Slide Rail 11.2. Sealing Door Panel 11.3. Servo Electric Cylinder 11.4. Fixed Crossbeam 11.5. Vertical Support Column 11.6. Diagonal Support Rod 11.7. Discharge Port A 12. Discharge Mechanism B 13. First Counting Sensor 14. Sensor Mounting Bracket A 15. Second Counting Sensor 16. Sensor Mounting Bracket B. Detailed Implementation
[0025] The present invention will be further described below with reference to the accompanying drawings: The present invention will be further described below through specific embodiments, but it is not intended to limit the present invention. Any modifications, equivalent substitutions, improvements, etc. made within the spirit and principles of the present invention should be included within the protection scope of the present invention.
[0026] Example 1, such as Figure 1-2As shown, the glassware quality inspection station's defective product conveyor line includes a glassware inspection workbench 1 located at the output end of the glassware discharge conveyor. A supplementary lighting mounting frame 2 is installed above the glassware inspection workbench 1. A defective product transfer belt conveyor A7 and a defective product transfer belt conveyor B8, which transport products to both sides, are symmetrically installed on the supplementary lighting mounting frame 2. Multiple sets of spaced supplementary lighting lamps 3 are installed on the lower surface of the supplementary lighting mounting frame 2. Supports for grounding are installed at both ends of the supplementary lighting mounting frame 2. The left support leg 4 and right support leg 6 are mounted on the upper part of the supplementary light mounting bracket 2. A middle support leg 5 is installed in the middle of the bracket. The bottom end of the middle support leg 5 is supported on the table of the glassware inspection operating table 1. The discharge ends of the defective product transfer belt conveyor A7 and defective product transfer belt conveyor B8 are respectively equipped with a material dropping mechanism A11 and a material dropping mechanism B12. The left and right sides of the glassware inspection operating table 1 are respectively equipped with a waste bin A9 for carrying the discharge of the material dropping mechanism A11 and a waste bin B10 for carrying the discharge of the material dropping mechanism B12.
[0027] The glassware inspection workbench 1 is located adjacent to the end of the glassware discharge conveyor. The glassware inspection workbench 1 receives the glassware discharged from the glassware discharge conveyor. Each set of glassware inspection workbench 1 is configured with 2 or 4 operators. The operators are positioned on the side of the glassware inspection workbench 1 furthest from the glassware discharge conveyor. The operators pick up the glassware to be inspected from the glassware discharge conveyor. The supplementary lighting 3 provides effective illumination. The operators visually inspect the glassware at the glassware inspection workbench, picking out glassware with defects such as sticky material, missing edges, cracks, debris, and bubbles. Qualified products are boxed. Glassware with different defects are placed on the defective product transfer belt conveyor A7 or defective product transfer belt conveyor B8. The defective products on the defective product transfer belt conveyor A7 and defective product transfer belt conveyor B8 are transferred to waste bins A9 and B10 respectively. This application can quickly transfer the selected defective products to the waste bins, saving manpower and time.
[0028] Example 2, as Figure 1-2As shown, the glassware quality inspection station's defective product conveyor line includes a glassware inspection workbench 1 located at the output end of the glassware discharge conveyor. A supplementary lighting mounting frame 2 is installed above the glassware inspection workbench 1. A defective product transfer belt conveyor A7 and a defective product transfer belt conveyor B8, which transport products to both sides, are symmetrically installed on the supplementary lighting mounting frame 2. Multiple sets of spaced supplementary lighting lamps 3 are installed on the lower surface of the supplementary lighting mounting frame 2. Supports for grounding are installed at both ends of the supplementary lighting mounting frame 2. The left support leg 4 and right support leg 6 are mounted on the upper part of the supplementary light mounting bracket 2. A middle support leg 5 is installed in the middle of the bracket. The bottom end of the middle support leg 5 is supported on the table of the glassware inspection operating table 1. The discharge ends of the defective product transfer belt conveyor A7 and defective product transfer belt conveyor B8 are respectively equipped with a material dropping mechanism A11 and a material dropping mechanism B12. The left and right sides of the glassware inspection operating table 1 are respectively equipped with a waste bin A9 for carrying the discharge of the material dropping mechanism A11 and a waste bin B10 for carrying the discharge of the material dropping mechanism B12.
[0029] Furthermore, the glassware inspection workbench 1 is supported on the ground by table legs 1.1, and the glassware inspection workbench 1 is equipped with a stainless steel tabletop. The stainless steel tabletop has the characteristics of seamless splicing, wear resistance, easy cleaning, mildew resistance, no radiation, and long service life.
[0030] Furthermore, the supplementary lighting mounting frame 2 is a rectangular frame structure. It is fixedly connected to the defective product transfer conveyor A7 via connecting columns A2.1 arranged on both sides, and fixedly connected to the defective product transfer conveyor B8 via connecting columns B2.2 arranged on both sides. The supplementary lighting mounting frame 2 provides effective support for both the defective product transfer conveyor A7 and the defective product transfer conveyor B8.
[0031] Furthermore, the supplementary light 3 is an LED supplementary light. It has low power consumption, high stability, low heat generation, and good heat dissipation.
[0032] Furthermore, the waste bin A9 has a rectangular box structure, and the top cover of the waste bin A9 has a discharge port A9.1 and a discharge port B9.2.
[0033] Furthermore, referring to Figure 2 and Figure 3The material feeding mechanism A11 includes a slide rail 11.1. One end of the slide rail 11.1 is the feed inlet for the defective product transfer conveyor A7, and the other end is the discharge port B. The slide rail 11.1 includes a base plate, with its two sides bent upwards to form a left side guard and a right side guard, respectively. A vertical support column 11.5 is connected to the upper end of the base plate. The vertical support column 11.5 is fixed to a fixed crossbeam 11.4, which is fixed to the left support leg 4. The fixed crossbeam 11.4 is connected to the left support leg 4. A diagonal support rod 11.6 is provided between the legs 4. A discharge port A11.7 is opened in the middle of the base plate. A blocking door plate 11.2 for blocking the discharge port A11.7 is hinged to the base plate. A servo electric cylinder 11.3 for driving the opening and closing of the blocking door plate 11.2 is installed at the end of the fixed crossbeam 11.4. The cylinder body of the servo electric cylinder 11.3 is hinged to the fixed crossbeam 11.4. The telescopic end of the servo electric cylinder 11.3 is hinged to the blocking door plate 11.2. The discharge port A11.7 and the discharge outlet correspond to the drop outlet A9.1 and the drop outlet B9.2, respectively.
[0034] The discharge port A11.7 and discharge outlet correspond to the drop outlets A9.1 and B9.2, respectively. When the blocking gate 11.2 is closed, defective products transferred from the defective product transfer belt conveyor A7 fall into the waste bin A9 via the slide 11.1, discharge port A11.7, blocking gate 11.2, and drop outlet A9.1. When the blocking gate 11.2 is closed, defective products transferred from the defective product transfer belt conveyor A7 fall into the waste bin A9 via the slide 11.1, discharge port B, and drop outlet B9.2. The opening and closing of discharge port A11.7 is controlled by the servo cylinder 11.3 to control the entry of defective products into the waste bin A9 from different drop outlets, avoiding accumulation in a single area and solving the problem that a single drop outlet easily leads to the formation of a tower, where the space around the tower cannot be effectively utilized, resulting in a reduction in the capacity of waste bins A9 and B10 and causing unnecessary space waste.
[0035] Furthermore, the waste bin B10 has a rectangular box structure, and the top cover of the waste bin B10 has a discharge port C10.1 and a discharge port D10.2.
[0036] Furthermore, the blanking mechanism B12 has the same structure as the blanking mechanism A11.
[0037] Furthermore, referring to Figure 4A first counting sensor 13 is installed above the conveying path of the defective product transfer conveyor A7, and the first counting sensor 13 is mounted on the frame of the defective product transfer conveyor A7 via a sensor mounting bracket A14. A second counting sensor 15 is installed above the conveying path of the defective product transfer conveyor A7, and the second counting sensor 15 is mounted on the frame of the defective product transfer conveyor B8 via a sensor mounting bracket B16. This allows for the counting of defective products.
[0038] Furthermore, the first counting sensor 13 and the second counting sensor 15 are photoelectric sensors or proximity switch sensors.
[0039] The glassware quality inspection table and defective product conveyor line described in this utility model allows operators to visually inspect glassware at the inspection table, picking out glassware with defects such as sticky material, chipped edges, dry cracks, foreign matter, and bubbles. Qualified products are then boxed, and glassware with different defects are placed on defective product transfer conveyor A or defective product transfer conveyor B. Defective product transfer conveyor A and defective product transfer conveyor B transfer the defective products to waste bins A and B respectively. This application allows for the rapid transfer of selected defective products to waste bins, saving manpower and time.
[0040] The defective product conveyor line for glassware quality inspection described in this utility model includes a supplementary lighting mounting frame with a rectangular frame structure. The supplementary lighting mounting frame is fixedly connected to the defective product transfer conveyor A via connecting columns A arranged on both sides, and to the defective product transfer conveyor B via connecting columns B arranged on both sides. The supplementary lighting mounting frame provides effective support for both the defective product transfer conveyor A and the defective product transfer conveyor B.
[0041] The defective product conveying line of the glassware quality inspection station described in this utility model controls the opening and closing of the feeding port A through a servo electric cylinder, so as to control the defective products to enter the waste bin A from different feeding ports, avoiding accumulation in a single area. This solves the problem that a single feeding port can easily accumulate to a tower, and the space around the tower cannot be effectively utilized, resulting in a reduction in the capacity of waste bin A and waste bin B, causing unnecessary space waste.
[0042] The foregoing has shown and described the basic principles, main features, and advantages of this utility model. Those skilled in the art should understand that this utility model is not limited to the above embodiments. The embodiments and descriptions in the specification are merely illustrative of the principles of the invention. Various changes and modifications can be made to this utility model without departing from its spirit and scope, and all such changes and modifications fall within the scope of the claims. The scope of protection of this utility model is defined by the appended claims and their equivalents.
[0043] Any aspects of this invention not described in detail are well-known to those skilled in the art.
Claims
1. A glassware quality inspection table and defective product conveyor line, comprising a glassware inspection operating table located at the output end of a glassware discharge conveyor, characterized in that: A supplementary lighting mounting bracket is installed above the glassware inspection workbench. A defective product transfer belt conveyor A and a defective product transfer belt conveyor B, which transport products to both sides, are symmetrically mounted on the bracket. Multiple sets of spaced supplementary lights are installed on the lower surface of the bracket. Left and right support legs, respectively, are mounted at both ends of the bracket and are placed on the ground. A central support leg is mounted in the middle of the bracket, with its bottom end resting on the tabletop of the glassware inspection workbench. A discharge mechanism A and a discharge mechanism B are respectively installed at the discharge ends of the defective product transfer belt conveyor A and B. Waste bins A and B, respectively, are located on the left and right sides of the glassware inspection workbench to receive the discharge from discharge mechanism A and discharge mechanism B, respectively.
2. The glassware quality inspection table non-conforming product conveying line according to claim 1, characterized in that, The glassware inspection workbench is supported on the ground by table legs and has a stainless steel tabletop.
3. The glassware quality inspection table non-conforming product conveyor line according to claim 1 or 2, characterized in that, The supplementary lighting mounting frame is a rectangular frame structure. The supplementary lighting mounting frame is fixedly connected to the defective product transfer belt conveyor A through connecting columns A arranged on both sides. The supplementary lighting mounting frame is fixedly connected to the defective product transfer belt conveyor B through connecting columns B arranged on both sides. The supplementary lighting mounting frame provides effective support for the defective product transfer belt conveyor A and the defective product transfer belt conveyor B.
4. The glassware quality inspection table non-conforming product conveyor line according to claim 3, characterized in that, The fill light is an LED fill light.
5. The glassware quality inspection table non-conforming product conveyor line according to claim 4, characterized in that, The waste bin A has a rectangular box structure, and the top cover of the waste bin A has a discharge port A and a discharge port B.
6. The glassware quality inspection table non-conforming product conveyor line according to claim 5, characterized in that, The material feeding mechanism A includes a slide, one end of which is the feed inlet of the defective product transfer conveyor A, and the other end of which is the discharge port B. The slide includes a base plate, the two sides of which are bent upward to form a left side guard and a right side guard, respectively. A vertical support column is connected to the upper end of the base plate, and the vertical support column is fixed to a fixed crossbeam. The fixed crossbeam is fixed to the left support leg, and an inclined support rod is provided between the fixed crossbeam and the left support leg. The discharge port A is opened in the middle of the base plate, and a blocking gate plate for blocking the discharge port A is hinged to the base plate. A servo electric cylinder for driving the opening and closing of the blocking gate plate is installed at the end of the fixed crossbeam. The cylinder body of the servo electric cylinder is hinged to the fixed crossbeam, and the extension end of the servo electric cylinder is hinged to the blocking gate plate. The discharge port A and the discharge port B correspond to the discharge outlet A and the discharge outlet B, respectively.
7. The glassware quality inspection table non-conforming product conveyor line according to claim 6, characterized in that, The waste bin B has a rectangular box structure, and the top cover of the waste bin B has a discharge port C and a discharge port D.
8. The glassware quality inspection table non-conforming product conveyor line according to claim 7, characterized in that, The material feeding mechanism B has the same structure as the material feeding mechanism A.
9. The glassware quality inspection table and non-conforming product conveying line according to claim 8, characterized in that, A first counting sensor is installed above the conveying path of the defective product transfer belt conveyor A, and the first counting sensor is mounted on the frame of the defective product transfer belt conveyor A via a sensor mounting bracket A; a second counting sensor is installed above the conveying path of the defective product transfer belt conveyor A, and the second counting sensor is mounted on the frame of the defective product transfer belt conveyor B via a sensor mounting bracket B.
10. The glassware quality inspection table and non-conforming product conveying line according to claim 9, characterized in that, The first and second counting sensors are photoelectric sensors or proximity switch sensors.