A SINGLE EDGE CUTTING SYSTEM

TR202503435U4Pending Publication Date: 2026-09-21KARESİ POLYESTER & PETROKİMYA SANAYİ ANONİM ŞİRKETİ
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Patent Information

Application Number
TR202503435U
Authority / Receiving Office
TR · TR
Patent Type
Utility models
Current Assignee / Owner
Filing Date
2025-03-21
Publication Date
2026-09-21
Estimated Expiration
2035-03-21

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Patent Text Reader

Abstract

The invention relates to an edge cutting system (A) which enables cutting to be performed with minimum error rate by instantaneously sensing the movement of the thermoplastic material during cutting.
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Description

1 TARIFF A SINGLE EDGE CUTTING SYSTEM TECHNICAL AREA 5 The invention relates to the cutting of thermoplastic material by a cutting tool during the cutting of thermoplastic material. By instantly detecting the movement of the material, the cutting is performed with a minimum error rate. It relates to an edge cutting system that enables this to be accomplished. PREVIOUS TECHNIQUE 10 for cutting and shaping the edges of thermoplastic materials to a specific size. There are resistance-based edge cutting devices. In the known technique, resistance-based edge cutting... The devices are stationary and any movement that occurs during the cutting of the material can cause damage. The incoming fluctuations cannot accommodate the shifts. Fixed-structure resistive edge. If the cutting equipment is not compatible with the product being cut, it can lead to errors in the cutting process. It opens. 15 Fixed-structure resistance cutting edge trimmers are compatible with thermoplastic materials. In addition to its inability to provide this, it also instantly detects fluctuations and shifts in the material. It is unable to provide this. This situation results in either less or more than required in the cut product. This causes the material to be cut to a certain extent. Instantaneous detection of faulty cuts. Another disadvantage of not being able to do this is that it will take 20 days for the staff to understand the situation. The problem is the continuation of faulty cutting. This situation, in turn, increases the cost due to the increasing number of faulty cuts. It increases proportionally. Fixed-structure resistance cutting edge cutting devices instantly cut the material. Cutting errors resulting from failure to adapt while following instructions incur extra costs. In addition to causing disruptions in the production process, it also leads to a lack of uniform quality in production. This leads to the products being unavailable. In conclusion, all the problems mentioned above necessitate innovation in the relevant field. It has brought it to this state. 2 THE PURPOSE OF THE INVENTION The present invention aims to eliminate the aforementioned problems and provide technical solutions in the relevant field. It is introduced with the aim of creating an innovation. 5 The main purpose of the invention is to prevent damage to thermoplastic material during cutting by the cutting tool. By instantly detecting the movement of thermoplastic material, the cutting error rate is minimized. The aim is to present a structured edge cutting system that enables this to be achieved. Another aim of the invention is to minimize the amount of waste resulting from faulty (irregular) cutting. The aim is to increase production efficiency by reducing costs. 10 Another purpose of the invention is to enable the cutting of thermoplastic material in different sizes. Another aim of the invention is to ensure both quality and homogeneity in production processes. A BRIEF DESCRIPTION OF THE INVENTION All the purposes mentioned above and those that will emerge from the detailed explanation below. The present invention is an edge cutting system. 15 A preferred configuration of the invention is the cutting of the thermoplastic material by the cutting side. by instantly detecting the movement of the thermoplastic material during the cutting process It is an edge cutting system that enables the process to be carried out with a minimum error rate. Thus... the aforementioned edge cutting system is on the machine containing thermoplastic material. The locking arm, which ensures its fixation, allows for the instantaneous movement of the thermoplastic material. 20 the monitoring sensor, the resistance unit to which the aforementioned circuit breaker is connected, the aforementioned The housing in which the sensor and resistance unit are located is made of thermoplastic material. Adjust the amount of product to be cut by moving the resistance unit in the +X and –X directions. The drive shaft with sliding bearings, which enables its movement, is used during the cutting of thermoplastic material. The linear drive shaft that enables the resistance unit to move in the +X and –X directions, 25 The motor drives the linear motion shaft using real-time data received from the aforementioned sensor. It is characterized by its inclusion. The scope of protection for the invention is specified in the claims, and this is absolutely concise and detailed. The explanation cannot be limited to what is given for illustrative purposes. A technically expert person... The person, without deviating from the main theme of the invention, can create similar 30 based on the above-mentioned points. It is clear that these structures can emerge. 3 BRIEF DESCRIPTION OF THE FIGURES Figure 1 shows a perspective view of an edge cutting system. Figure 2 shows a cross-section of the front view of an edge cutting system. 5 Figure 3 shows a cross-section from the rear view of an edge cutting system. Figure 4 shows an edge cutting system. The drawings are not intended to limit the scope of protection defined in the claims. and to interpret the scope defined in those claims, the present invention 10 without referring to the technical explanation in the statement should not be included. The drawings in question clarify and define the invention. It aims to... EXPLANATION OF REFERENCE NUMBERS IN THE FIGURES A. An edge cutting system 10. Fixing arm 15 20. Engine 30. Linear motion shaft 40. Resistance unit 50. Cutter 60. Sensor 20 61. Optical sensor 70. Drive shaft with sliding bearing. G. Body DETAILED DESCRIPTION OF THE INVENTION In this detailed description, the subject of the invention is an edge cutting system (A) only 25 To ensure a good understanding, it is explained with examples that do not create any limiting effects. 4 During the cutting of the thermoplastic material, which is the subject of the invention, by the cutting tool (50) By instantly detecting the movement of thermoplastic material, the cutting error rate is minimized. It relates to an edge cutting system (A) that enables this to be done. 5 As shown in Figures 1, 2, 3 and 4, the edge cutting system (A) fixing arm (10), motor (20), linear motion shaft (30), resistance unit (40), cutter (50), two optical sensors (61) consists of a sensor (60), a sliding bearing drive shaft (70) and a housing (G). For illustrative purposes, the movement of the horizontal axis in the + and - directions along the X-axis is shown. It is used to define the movement along the vertical axis in the + and - directions of the Y-axis. 10 As shown in Figures 2 and 3, the sensor (60) and the resistance unit (40) are mounted on the housing (G). It is located. The circuit breaker (50) connected to the mentioned resistance unit (40) It is located. The mentioned cutting tool (50) enables the cutting of thermoplastic material. It is an element that requires cutting the thermoplastic product to the desired dimensions from its edge. To provide this, the resistance unit (40) is moved in the +X and –X directions. 15 The movement of the mentioned resistance unit (40) in the +X and –X directions is via a sliding bearing. It is provided by the shaft (70). The resistance unit (40) is based on the quantity of product to be cut. Depending on the sensor (60), the distance between it and the thermoplastic is adjusted. For example, thermoplastic Considering that the material will be cut 3 cm from the edge, the sensor of the resistance unit (40) (60) The distance between the resistance unit and the resistance unit will be 3 cm, 20 Movement is provided in the +X and –X directions. The movement of the resistance unit (40) is done manually. This is achieved by rotating the sliding bearing shaft (70). Both the resistance unit (40) Thermoplastics of different sizes can be made thanks to their movement in both the +X and -X directions. The material is cut. The resistance unit (40) is 25 with the sensor (60) according to the amount of material to be cut. After adjusting the distance, the cutting process is started. Thermoplastic product Sensor (60) that monitors thermoplastic material in real time during cutting It is located. The mentioned sensor (60) instantly detects the thermoplastic material to be cut. Thanks to its monitoring, any slippage is prevented during the cutting of thermoplastic material. This ensures that the same size cut is made without. Two 30mm diameters belonging to the mentioned sensor (60) There are optical sensors (61). Two of the mentioned optical sensors (61) If it sees thermoplastic material during cutting, the thermoplastic material The sensor was found to be shifting in the +X direction and cutting off outside the desired measurement value. A signal is transmitted to the motor (20) momentarily by (60). The motor (20) receives the signal from the sensor (60). Linear motion 35 to enable the resistance unit to move in the +X direction with real-time information. It drives the shaft (30). The linear motion shaft (30) driven by the motor (20) rotates. It enables the resistance unit (40) to move in the +X direction. The mentioned optical sensors (61) If it does not see the thermoplastic material, the thermoplastic material –X 5 It was understood that the sensor (60) shifted in the direction and cuts were made outside the desired measurement value. A signal is transmitted to the motor (20) instantaneously. Similarly, the motor (20) receives a signal from the sensor (60) With the instantaneous information it receives, the resistance unit is directed linearly in the -X direction. Drives the linear shaft (30). The linear shaft (30) is driven by the motor (20). It rotates and enables the resistance unit (40) to move in the -X direction. In this way, thermoplastic 10 The material is cut to the desired dimensions evenly without any slippage. The fixing lever (10) is an element of the edge cutting system (A) and is used for thermoplastic material. Edge cutting system (A) which will allow cutting by cutter (50) It ensures the positioning of the mentioned fixing lever (10), the cutter (50) 15 It ensures its positioning. The scope of protection of the invention is specified in the claims attached hereto, and these details are strictly adhered to. The explanation cannot be limited to those given for illustrative purposes. Because a technically skilled person... the person, without deviating from the main theme of the invention, in light of what has been described above, similar It is clear that these structures can emerge. 20

Claims

6 REQUESTS 1. The invention relates to the cutting of thermoplastic material by a cutting tool (50) during the cutting process. By instantly detecting the movement of the thermoplastic material, the cut is completed in a minimum of 5 seconds. It is an edge cutting system (A) that enables it to be performed with a low error rate, feature;  The mentioned edge cutting system (A) of thermoplastic material fixing lever (10) which enables it to be fixed to the machine in which it is located,  Sensor (60) that monitors the instantaneous movement of the thermoplastic material, 10  The resistance unit (40) to which the aforementioned circuit breaker (50) is connected,  The sensor (60) and the resistance unit (40) mentioned are located body (G),  To adjust the quantity of product to be cut from thermoplastic material. Slide 15 that enables the resistance unit (40) to move in the +X and –X directions. bearing drive shaft (70),  During the cutting of thermoplastic material, the resistance unit (40) +X linear motion shaft (30) which enables movement in the –X direction,  With the instantaneous data it receives from the mentioned sensor (60), the linear motion shaft (30) driving motor (20), 20 It is characterized by its inclusion.

2. An edge cutting system (A) conforming to claim 1, whose characteristic is; thermoplastic. at least two optical sensors (61) that monitor the instantaneous movement of the material It contains a sensor (60).