Glass edge protecting strip on-line cutting stacker crane
By combining the guide groove, cylinder drive, and blade heating mechanism of the online cutting and palletizing machine, the problems of precision, efficiency, and blade durability of glass edge strip cutting equipment are solved, realizing an efficient and precise cutting and palletizing process that can meet the needs of various material specifications.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- FOSHAN SHUNDE LONGXIANGJUN PLASTIC MACHINERY CO LTD
- Filing Date
- 2025-05-12
- Publication Date
- 2026-04-21
AI Technical Summary
Existing glass edge strip cutting equipment suffers from problems such as low cutting precision, low efficiency, insufficient blade durability, and limited functionality, making it difficult to meet the needs of large-scale production.
An online cutting and palletizing machine for glass edge protectors was designed. It uses a guide groove and a guide groove pressure plate in combination with a cylinder drive mechanism and a blade heating mechanism to achieve precise cutting and automatic palletizing, improve cutting accuracy and efficiency, and extend blade life.
It improves cutting accuracy and efficiency, reduces manual intervention, optimizes equipment layout, extends blade life, adapts to different material specifications, and enhances production efficiency and product quality.
Smart Images

Figure CN224147942U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to an online cutting and palletizing machine for glass edge protectors. Background Technology
[0002] In the glass processing industry, glass edge protectors are an important product widely used in construction, furniture, automobiles, and other fields. As market demands for glass product quality continue to rise, the cutting and stacking processes of glass edge protectors are facing increasingly higher challenges. Most existing glass edge protector cutting and stacking equipment employs traditional manual or semi-automatic processes, which have many technical defects and problems.
[0003] Firstly, traditional cutting equipment often suffers from low cutting precision during operation. Because glass edge protectors typically possess high hardness and brittleness, insufficient cutting precision can easily lead to uneven cut surfaces or even breakage, affecting product quality. Therefore, improving cutting precision and stability has always been a challenge in technological development.
[0004] Secondly, traditional equipment has low cutting efficiency, often requiring multiple steps and lengthy processing times, with significant manual intervention. Especially in large-scale production, this inefficient operation not only increases production costs but also extends production cycles, impacting overall enterprise productivity. Therefore, improving cutting efficiency and shortening production cycles has become an urgent problem to solve.
[0005] Furthermore, the cutting blades of glass edge protectors are susceptible to high temperatures and friction during long-term use, leading to blade wear or premature failure, which in turn affects the cutting effect. Traditional cutting equipment has certain limitations in blade maintenance and replacement, especially when cutting harder or thicker glass edge protectors, where insufficient blade durability necessitates frequent blade replacements, further increasing production costs.
[0006] Furthermore, existing equipment designs typically only consider a single function, lacking multi-functional integration. Cutting and palletizing glass edge protectors often requires two or more machines, increasing space requirements and operational complexity. Therefore, achieving a high degree of integration between cutting and palletizing functions, optimizing equipment layout, and improving space utilization are urgent areas for technological improvement. Utility Model Content
[0007] To address the shortcomings of existing technologies, the purpose of this utility model is to provide an online cutting and palletizing machine for glass edge protectors that solves the problems of precision, efficiency, durability, and flexibility encountered in the cutting and palletizing process of glass edge protectors, is suitable for large-scale production environments, and improves production efficiency and product quality.
[0008] The technical solution adopted by this utility model to solve its technical problem is:
[0009] A glass edge protector strip online cutting and palletizing machine includes a frame, an electrical box body installed in the frame, a guide groove installed on the frame for palletizing glass edge protectors strips, a guide groove pressure plate disposed above the guide groove, and a cutting mechanism installed on the frame and located at the inlet end of the guide groove. The cutting mechanism includes a cutting guide seat for placing glass edge protectors strips, a guide opening formed on the cutting guide seat, a cutting blade disposed above the cutting guide seat, a cylinder drive mechanism for controlling the lifting and lowering of the cutting blade, and a blade heating mechanism for heating the cutting blade.
[0010] Preferably, the guide groove is connected to the guide groove pressure plate, with the guide groove pressure plate located above the guide groove and working together to press down the glass edge protector strip.
[0011] Preferably, the cylinder drive mechanism is connected to the cutting blade via a connecting assembly to drive the cutting blade to rise and fall.
[0012] Preferably, the cutting guide seat is connected to the cutting blade, and the guide opening on the cutting guide seat is in the same direction as the movement of the cutting blade.
[0013] Preferably, the blade heating mechanism is connected to the cutting blade via a heating component for heating the cutting blade.
[0014] Preferably, the main body of the electrical box is connected to the cylinder drive mechanism and the blade heating mechanism via electrical circuits to achieve control and coordinated operation.
[0015] Preferably, the guide groove and the guide groove pressure plate are connected by an adjustable connecting device, so that the guide groove pressure plate can be adjusted to accommodate glass edge protectors of different specifications.
[0016] Preferably, the cutting mechanism is connected to the frame via a support structure, which includes several connecting bolts and connecting nuts.
[0017] The beneficial effects of this utility model are:
[0018] Glass edge protectors require high cutting precision. This solution ensures stability and accuracy during the cutting process by designing a cutting guide seat with a guide port and a cylinder drive mechanism that precisely controls the raising and lowering of the cutting blade. Traditional cutting methods may suffer from slow cutting speed and cumbersome procedures. This solution controls the raising and lowering of the cutting blade through a cylinder drive mechanism and combines it with a blade heating mechanism to ensure a smooth cutting process and improve cutting efficiency.
[0019] Since cutting glass edge protectors requires high durability and sharpness, this solution uses a blade heating mechanism to heat the cutting blade, preventing damage from overheating due to friction and enhancing the cutting effect. The combination of guide grooves and guide groove pressure plates provides an adjustable structure to accommodate glass edge protectors of different specifications, improving the equipment's flexibility and applicability. The centralized design of the guide groove for both the glass edge protector stacking and cutting mechanisms saves space, simplifies the operation process, and improves the overall equipment efficiency. Attached Figure Description
[0020] Figure 1 This is a perspective view of an online cutting and palletizing machine for glass edge protectors according to the present invention;
[0021] Figure 2 This is a structural diagram of the guide groove of an online cutting and palletizing machine for glass edge protectors according to this utility model. Detailed Implementation
[0022] The principles and features of this utility model are described below. The examples given are for illustrative purposes only and are not intended to limit the scope of this utility model. The utility model is described more specifically by way of example in the following paragraphs. The advantages and features of this utility model will become clearer from the following description and claims.
[0023] 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 invention pertains. The terminology used herein is for the purpose of describing particular embodiments only and is not intended to be limiting of the invention. The term "and / or" as used herein includes any and all combinations of one or more of the associated listed items. Example
[0024] See Figure 1-2 As shown, an online cutting and palletizing machine for glass edge protectors includes a frame 1, an electrical box body 2 installed in the frame 1, a guide groove 3 installed on the frame 1 for palletizing glass edge protectors, a guide groove pressure plate 4 disposed above the guide groove 3, and a cutting mechanism 5 installed on the frame 1 and located at the inlet end of the guide groove 3. The cutting mechanism 5 includes a cutting guide seat 51 for placing glass edge protectors, a guide opening 52 formed on the cutting guide seat 51, a cutting blade 53 disposed above the cutting guide seat 51, a cylinder drive mechanism 54 for controlling the lifting and lowering of the cutting blade 53, and a blade heating mechanism 55 for heating the cutting blade 53.
[0025] By setting the cutting guide seat 51 and guide port 52, the glass edge protector strip can be precisely guided into the cutting area, thereby ensuring the accuracy of the cutting process. The cylinder drive mechanism 54 can precisely control the lifting and lowering of the cutting blade 53, avoiding cutting deviations caused by blade instability, significantly improving cutting accuracy and the neatness of the cut surface, and reducing waste and loss.
[0026] This solution combines cutting and palletizing functions, reducing the need for multiple devices and operating steps required in traditional production and optimizing the production process. The design of guide groove 3 and guide groove pressure plate 4 facilitates automatic palletizing, reducing manual intervention, while the heated blade mechanism ensures smoother cutting, further improving overall production efficiency and shortening the production cycle.
[0027] The blade heating mechanism 55 effectively maintains the temperature of the cutting blade 53, reduces heat generated by friction, prevents premature wear or failure of the blade, and extends the blade's service life. At the same time, maintaining blade sharpness ensures stable cutting results, especially when processing harder or thicker glass edge protectors; blade heating effectively prevents blade jamming or uneven cutting.
[0028] The guide groove 3 is connected to the guide groove pressure plate 4. The guide groove pressure plate 4 is located above the guide groove 3 and cooperates with it to press down the glass edge protector strip. The cylinder drive mechanism 54 is connected to the cutting blade 53 through the connecting component and is used to drive the cutting blade 53 to rise and fall.
[0029] The coordinated design of the guide groove 3 and the guide groove pressure plate 4 effectively fixes and presses down the glass edge protector strip, preventing displacement or skewing during the cutting process, thereby improving cutting accuracy and stability. This design ensures that the glass edge protector strip is in a precise position during each cut, reducing errors.
[0030] The cylinder drive mechanism 54 precisely controls the raising and lowering of the cutting blade 53 through the connecting components, enabling rapid response and completion of the cutting action, eliminating the need for manual intervention and increasing cutting speed. This makes the entire system more automated, reduces human error, and improves production efficiency.
[0031] The precise control of the blade's lifting and lowering via the cylinder-driven mechanism 54 avoids excessive pressure or uneven cutting, reducing blade wear and extending its lifespan. Furthermore, precise lifting and lowering control ensures smooth and consistent cutting, thereby improving cutting quality, especially when processing hard glass edge protectors, maintaining consistent cutting results.
[0032] The cutting guide seat 51 is connected to the cutting blade 53, and the guide port 52 on the cutting guide seat 51 is in the same direction as the movement of the cutting blade 53; the blade heating mechanism 55 is connected to the cutting blade 53 through a heating component and is used to heat the cutting blade 53.
[0033] The connection between the cutting guide seat 51 and the cutting blade 53 ensures that the blade's movement direction is consistent with the guide opening 52, thereby guaranteeing that the blade always cuts along the correct path during the cutting process and avoiding cutting errors caused by blade deviation or instability. This design greatly improves the accuracy and stability of cutting, especially for cutting small or complex shapes.
[0034] The blade heating mechanism 55 is connected to the cutting blade 53 via a heating element, ensuring that the blade maintains an appropriate temperature during cutting, reducing excessive heat generated by friction, and preventing excessive wear of the blade. Heating helps maintain the sharpness of the blade, reduces jamming or uneven cutting, and extends the blade's lifespan.
[0035] Heating the blade not only improves the performance of the cutting blade 53, but also reduces resistance when cutting harder or higher-density materials, ensuring a smoother and faster cutting process and improving production efficiency. Blade heating effectively avoids cutting instability caused by undercooling or uneven heating, thus maintaining consistent cutting quality and ensuring that every cut achieves the expected results.
[0036] The main body 2 of the electrical box is connected to the cylinder drive mechanism 54 and the blade heating mechanism 55 through electrical circuits to achieve control and coordinated operation; the guide groove 3 and the guide groove pressure plate 4 are connected by an adjustable connection device, so that the guide groove pressure plate 4 can be adjusted to adapt to different specifications of glass edge strips; the cutting mechanism 5 is connected to the frame 1 through a support structure, which includes several connecting bolts and connecting nuts.
[0037] The main body of the electrical box 2 is connected to the cylinder drive mechanism 54 and the blade heating mechanism 55 via electrical wiring, enabling precise control and coordinated operation. This allows all parts of the system to operate synchronously, ensuring that operations such as cylinder driving and blade heating follow the set program, improving the automation level and operational accuracy of the entire device, and reducing manual intervention and operational errors.
[0038] The guide groove 3 and the guide groove pressure plate 4 are connected by an adjustable connecting device, allowing for adjustment according to different specifications of glass edge strips. This design makes the equipment more flexible, capable of handling materials of different sizes without the need to replace or adjust other components, improving the equipment's versatility and adaptability, and making it suitable for various production needs.
[0039] The cutting mechanism 5 is connected to the frame 1 via a support structure and secured with connecting bolts and nuts. This provides additional support, enhancing the stability and durability of the equipment. This support structure effectively disperses vibration and pressure during the cutting process, maintaining the long-term reliability of the equipment, reducing accuracy issues caused by vibration, and extending the equipment's service life.
[0040] The above embodiments of this utility model are not intended to limit the scope of protection of this utility model. The implementation of this utility model is not limited thereto. All other modifications, substitutions or alterations made to the above structure of this utility model based on the above content of this utility model and in accordance with the common technical knowledge and conventional means in the field, without departing from the basic technical idea of this utility model, shall fall within the scope of protection of this utility model.
Claims
1. An on-line glass trim strip cutting palletizer, characterized by: The device includes a frame, an electrical box body installed within the frame, a guide groove installed on the frame for stacking glass edge protectors, a guide groove pressure plate disposed above the guide groove, and a cutting mechanism installed on the frame and located at the inlet end of the guide groove. The cutting mechanism includes a cutting guide seat for placing the glass edge protectors, a guide opening formed on the cutting guide seat, a cutting blade disposed above the cutting guide seat, a cylinder drive mechanism for controlling the lifting and lowering of the cutting blade, and a blade heating mechanism for heating the cutting blade.
2. The online cutting and palletizing machine for glass edge protectors according to claim 1, characterized in that, The guide groove is connected to the guide groove pressure plate, which is located above the guide groove and works with it to press down the glass edge protector strip.
3. The glass edging strip on-line cutting palletizer of claim 1, wherein, The cylinder drive mechanism is connected to the cutting blade via a connecting component and is used to drive the cutting blade to rise and fall.
4. The glass strip online cutting palletizer of claim 1, wherein, The cutting guide seat is connected to the cutting blade, and the guide opening on the cutting guide seat is in the same direction as the movement of the cutting blade.
5. The glass strip online cutting palletizer of claim 1, wherein, The blade heating mechanism is connected to the cutting blade via a heating component and is used to heat the cutting blade.
6. The glass strip online cutting palletizer of claim 1, wherein, The main body of the electrical box is connected to the cylinder drive mechanism and the blade heating mechanism via electrical circuits to achieve control and coordinated operation.
7. The glass strip online cutting palletizer of claim 1, wherein, The guide groove and the guide groove pressure plate are connected by an adjustable connecting device, so that the guide groove pressure plate can be adjusted to adapt to glass edge protectors of different specifications.
8. The glass strip online cutting palletizer of claim 1, wherein, The cutting mechanism is connected to the frame via a support structure, which includes several connecting bolts and connecting nuts.