SINGLE-AXIS AUTOMATIC PRECISION MEASUREMENT SYSTEM

TR202216782YActive Publication Date: 2026-06-22DENER MAKİNA SANAYİ & TİCARET ANONİM ŞİRKETİ
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Patent Information

Application Number
TR202216782U
Authority / Receiving Office
TR · TR
Patent Type
Utility models
Current Assignee / Owner
Filing Date
2022-11-07
Publication Date
2026-06-22
Estimated Expiration
2032-11-07

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Abstract

The measuring probe (30) is used to determine the dimensions of the workpiece (50) at the end of machining on the lathe. Its features include: a digital comparator clock (33) that allows measurement on the workpiece (50) and reading of the value; a communication card (4) that allows the data read by the measuring probe (30) to be transferred to the lathe controller; and a communication cable (32) that enables data transfer between the digital comparator clock (33) and the communication card (34).
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Description

1 TARIFF SINGLE-AXIS AUTOMATIC PRECISION MEASUREMENT SYSTEM Technical Area The invention involves the creation of a symmetrical piece by cutting a workpiece using various tools. rotating or turning a workpiece around a specific axis of rotation to create a component Determining the dimensional information of the workpiece at the end of machining on a CNC lathe. It is related to the measuring probe that provides the signal. State of the Art Nowadays, during the manufacturing process, the cutting tool on lathes is necessary due to the nature of the work. due to wear and tear, whether the machined workpiece is within the desired tolerances To ensure accuracy, operators stop the machine and check the caliper before performing the finishing operation. 15 The device performs measurements using measuring instruments such as micrometers, and the difference is monitored by a controller. The tool offset is entered manually in this section. This manual behavior gives rise to two factors. The first is the operator's measurement. Due to insufficient information, absentmindedness, or miscalculation, the workpiece 20 It may be processed incorrectly, resulting in the failure to obtain the desired measurement values. Secondly, this... The machine needs to stop and be idle during the process because the measurement needs to be taken. The duration is increasing and there are time losses. Figure 1 shows the measurement taken manually. Machining on a stopped machine 25 The sample is evaluated by measuring it with a micrometer, and the result is as mentioned above. Access to the controller is manual. Technical investigations revealed that the application with registration number US5334918A is a business a 30 for controlling a coordinate positioning machine to scan the part. It is related to the method. As can be seen, the method in question has the disadvantages mentioned above. It does not mention a structure that could provide a solution. In conclusion, due to the negative aspects described above and the current solutions, the subject matter... Due to its inadequacy, it has become necessary to make improvements in the relevant technical field. 35 2 The purpose of the invention The invention represents a new breakthrough in this field, unlike the structures used in existing technology. It aims to create a structure with different technical specifications that bring about different results. 5 The primary purpose of the invention is to produce a symmetrical workpiece by cutting it using various tools. rotating a workpiece around a specific axis of rotation to create a part or component or determining the dimensional information of the workpiece at the end of machining on a lathe. The goal is to develop a measuring probe that enables this. 10 One aim of the invention is to obtain information at very low levels by making measurements without any human intervention. Sensitivities are automatically entered by sending RF signals directly to the controller. to provide. To fulfill the purposes described above, the invention involves machining the workpiece on a lathe. It is a measuring probe that enables the determination of the dimension information at the end, and its feature is;  Digital system that enables measurement and reading of the value on the workpiece. comparator clock,  Enables the transfer of data read by the measuring probe to the lathe controller. communication card,  The digital comparator enables data transfer between the clock and the communication card. communication cable It includes. The structural and characteristic features and all the advantages of the invention are given in the figures below. Thanks to the detailed explanation written with references to the figures, it becomes clearer. This will be understood, and therefore the evaluation should also take these figures and detailed explanations into account. It must be done by taking it. Ways to Help Understand the Discovery Figure 1 is a representative illustration of the measurement taken with a micrometer in the current technique. Figure 2 is a perspective view of the probe that is the subject of the invention. Figure 3 shows the use of the probe, which is the subject of the invention, on a workbench. 35 3 The drawings do not necessarily need to be scaled and are necessary for understanding the invention. Details that are not present may have been omitted. Furthermore, at least to a large extent, they are identical. Elements that have, or at least substantially identical, functions are numbered the same. It is shown. Explanation of Part References 10th Turret 20. Tool holder 30. Measuring probe 10 31. Front guard 32. Communication cable 33. Comparator clock 34. Communication card 35. Rear housing 15 40. Lathe chuck 50. Workpiece Detailed Description of Find In this detailed explanation, the preferred configurations of the invention are not merely for better understanding the subject. It is explained in a way that facilitates understanding and does not create any limiting effects. The invention involves the creation of a symmetrical piece by cutting a workpiece using various tools. 25 that rotate or turn the workpiece around a specific axis of rotation to create a component Determining the dimensional information of the workpiece at the end of machining on a CNC lathe. It is related to the measuring probe (30) that provides. The use of the measuring probe (30) which is the subject of the invention on the workbench is shown in Figure 3. Here, the measuring probe (30), which is attached to the turret (10) with the help of the tool holder (20), lathe 30 It provides the measurement of the workpiece (50) attached to its mirror (40). In the invention, the 2D workpiece (50) was first rendered using machine coordinates. The geometry is extracted. Then, the measuring probe (30) is placed on the workpiece (50) at the desired point. Taking measurements and entering these values ​​into the lathe controller as tool offset. 35 4 By providing this, the machine's Z coordinate will also be corrected, ensuring the final and precise result. It ensures that the finishing process is done correctly. The front housing (31) located on the front of the measuring probe (30) is used for water during cutting. This prevents water penetration. The rear 5 located at the back The housing (35) provides the connection with the tool holder (20). The communication cable (32) located in the measuring probe (30) is connected to the digital comparator clock (33). It enables data transfer between communication cards (34). Digital comparator clock (33), making the measurement on the workpiece (50) and reading the value. It provides this. Its sensitivity affects the system's sensitivity. The communication card (4) transmits the data read by the measuring probe (30) to the lathe controller. It provides. 15

Claims

REQUESTS 1. Determining the dimensions of the workpiece (50) at the end of machining on the lathe. The measuring probe (30) provides the following feature:  Digital 5 that enables measurement on the workpiece (50) and reading of the value. Comparator clock (33),  Enables the transfer of the data read by the measuring probe (30) to the lathe controller. communication card (4),  Data transfer between the digital comparator clock (33) and the communication card (34) communication cable (32) 10 It includes.

2. The measuring probe (30) conforming to Claim 1 is characterized by being located at the front and at the moment of cutting. It contains a front casing (31) which prevents the water used from passing through.

3. The measuring probe (30) conforming to Claim 1 is characterized by having a tool holder at the rear. (20) includes the rear housing (35) which provides the connection with (20).