RESOURCE SYSTEM

TR202418796U4Pending Publication Date: 2026-06-22SUTAS SUT URUNLERI ANONIM SIRKETI
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Patent Information

Application Number
TR202418796U
Authority / Receiving Office
TR · TR
Patent Type
Utility models
Current Assignee / Owner
Filing Date
2024-12-13
Publication Date
2026-06-22
Estimated Expiration
2034-12-13

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Abstract

The invention relates to a welding system (A) developed for welding pipes (B) used in the food industry and through which food products pass.
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Description

1 TARIFF RESOURCE SYSTEM TECHNICAL FIELD The invention relates to tubes used in the food industry through which food products pass. It relates to the welding system developed for the welding process to be applied. 5 PREVIOUS TECHNIQUE Welding of pipes used in the food industry through which food products pass. Gas usage in these processes constitutes a significant cost factor. Traditional In these methods, argon gas is used to reduce the oxygen level inside the pipe and to improve the welding process. It is used to ensure that the product is manufactured to the desired quality. However, 10 argon gases Its high cost represents a significant economic burden in the widespread use of this method. It constitutes. Current technology involves controlling oxygen levels and ensuring safety during the welding process. Manual methods are generally used to ensure this, which affects the operator. It creates a process prone to errors depending on intervention. 15 inside the pipes Manually measuring the oxygen level and controlling the necessary gas flow, welding. This reduces the time and cost effectiveness of the processes. Furthermore, the oxygen inside the pipe... Slag formation in the source area when the level cannot be reduced to an appropriate value. Undesirable consequences such as these occur. Integrated 20 that reliably measures oxygen levels and optimizes gas usage. The lack of systems necessitates the optimization of resource processes in terms of cost and quality. This has made it more difficult. Furthermore, when a suitable environment for the welding process is provided, it automatically assists the operator. In situations where information-providing systems are not available, production processes become unnecessary. This leads to a waste of time and effort. Considering the problems mentioned above, 25 in the food industry for welding process to be applied to pipes used and through which food items pass A developed resource system is needed. 2 In conclusion, all the problems mentioned above necessitate innovation in the relevant field. It has brought it to this state. 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 invention aims to eliminate the need for argon gas used in welding processes. The aim is to eliminate these costs and thereby gain a cost advantage. The purpose of the invention is to reduce the oxygen level inside the pipe to a specified level, thereby preventing welding. The aim is to prevent slag formation during the process and to improve welding quality. The aim of the invention is to determine the oxygen level inside the pipe by minimizing gas usage, with a defined 10. The goal is to reduce it to a level (that will prevent slag formation). The purpose of the invention is to provide an audible or visual warning when the pipe is ready for welding. The aim is to ensure the operator is informed by providing the information. The purpose of the invention is to prepare pipes for welding even when the operator is not present at the welding site. The operator is informed via SMS or email that this has happened, and the workflow is updated on page 15. The goal is to accelerate its progress. A BRIEF DESCRIPTION OF THE INVENTION All the purposes mentioned above and those that will emerge from the detailed explanation below. The existing invention is a resource system for realizing this. The invention consists of a tank containing nitrogen and the transfer of the nitrogen from the said tank to a pipe. The connecting line that provides this allows the measurement of the oxygen level inside the aforementioned pipe. measuring device with measuring probe, the aforementioned measuring probe and the pipe of the connecting line the outside of the aforementioned pipe, which has holes that allow it to be inserted Two plugs that cut off contact (gas exchange) with the environment are detected by the measuring device. When the oxygen measurement is below the determined value (ready for welding process 25 (when arrived) connected to the connecting line to prevent nitrogen from passing from the tank to the pipe The valve activates when the oxygen level inside the tube falls below a specified value. the measuring device and valve to automatically cut off the nitrogen flow. The control unit that enables the connection ensures that the oxygen level inside the pipe is at the specified value. 3 When the voltage drops below this level (when it's ready for welding), the operator will give an audible and visual signal. food is characterized by containing a screen that enables it to be warned. welding to be done on pipes used in industry and through which food products pass It relates to the resource system that enables the process to be implemented with minimum cost. A preferred configuration of the invention is that when the oxygen level inside the tube drops below 0.7%, 5 It includes a control unit that enables the nitrogen flow to be interrupted. A preferred configuration of the invention is wired or connected to the aforementioned measuring device and valve. It includes a control unit that connects and communicates wirelessly. A preferred configuration of the invention is one where the operator is outside the source area. In these cases, the operator is aware that the pipe is ready for welding. 10 to ensure that operators are informed via SMS or email. It includes a screen. BRIEF DESCRIPTION OF THE FIGURES Figure 1 shows a schematic representation of the welding system. Figure 2 shows a top view of the plug. 15 EXPLANATION OF REFERENCE NUMBERS IN THE FIGURES A. Resource system 1. Tank 2. Connection line 3. Measuring device 20 31st measuring probe 4. Plug Hole 41 5. Valve 6. Control unit 25 Screen 61 4 B. Pipe DETAILED DESCRIPTION OF THE INVENTION In this detailed explanation, the subject of the invention, the resource system (A), is only to better explain the subject. To ensure comprehension, it is explained with examples that do not create any limiting effects. The invention relates to (B) 5 pipes used in the food industry through which food products pass. The invention relates to the welding system (A) developed for the welding process to be applied. Thanks to its innovative structure, nitrogen gas is used instead of argon gas in the current technology. It refers to providing a cost advantage by enabling its use. Furthermore, it also has Thanks to the structure it has, when pipe (B) is ready for welding, the operator It means that he / she should be informed. 10 The invention includes a tank (1) containing nitrogen, as shown in Figure 1. The connecting line (2) that enables the transfer of nitrogen from the mentioned tank (1) to the pipe (B) This eliminates the need for argon use, thus saving costs. Savings are achieved. At the same time, both the oxygen inside the pipe (B) to reduce the rate and to prevent fires during the welding process 15 is provided. The invention relates to the oxygen level inside the aforementioned tube (B), as shown in Figure 1. It includes a measuring device (3) with a measuring probe (31) that enables measurement. Figure 1 and As seen in 2, the mentioned measuring probe (31) and the pipe (B) of the connecting line (3) The aforementioned pipe has holes (41) that allow it to enter, 20 (B) contains two plugs (4) that cut off its contact (gas exchange) with the outside environment. In this way, the oxygen level inside pipe (B) is reduced so that the welding to be applied inside pipe (B) Measurements are taken to prevent slag formation. Measurements are taken to prevent gas leaks. sealing element connected between the probe (31) and the connection line (2) and the holes (41) It includes. 25 As shown in Figure 1, the oxygen level is below the value determined by the measuring device (3). When the measurement is taken (when the welding process is ready), nitrogen is transferred from the tank (1) to the pipe (B). It includes a valve (5) connected to the connecting line (2) to prevent its passage. In this way Nitrogen is sent when the oxygen level in pipe (B) falls below the specified level. By cutting off the gas supply, unnecessary gas usage is prevented. Thus, a minimum amount of gas is used. 30 the use of slag and the ability to perform welding without slag formation is provided. As shown in Figure 1, the oxygen level inside pipe (B) is below the determined value. to ensure that the mentioned valve (5) automatically cuts off the nitrogen flow when it falls Control unit (6) which enables the connection of the measuring device (3) and the valve (5) 5 It contains. When the oxygen level in pipe (B) falls below the specified value (when ready for the welding process) the operator is alerted audibly and visually. It includes the display (61) which provides the control unit (6), measuring device (3) and valve. (5) will be able to connect and communicate with each other, either wired or wirelessly. is being configured. The mentioned screen (61) preferably sends SMS or e-mail to operators 10 It is configured to provide information in this way. This allows the operator to... When the pipe (B) is outside the welding area, it is ready for welding. This ensures that he / she is aware of his / her arrival. The aforementioned control unit (6) activates when the oxygen level inside pipe (B) drops below 0.7%. It is configured to interrupt the nitrogen transition. The mentioned 0.7% 15 oxygen level, welding process using minimum nitrogen without slag formation It enables this to be done. First, plugs (4) are placed on the pipe (B) to be welded. Then the measurement probe (31) and connection line (2), together with the sealing element, into the holes (41) It is connected. As seen in Figure 1, nitrogen is supplied from one side of the pipe (B) 20 On the other hand, the oxygen level inside the tube (B) is measured with the measuring probe (31). The measured value is transmitted to the measuring device (3). The oxygen level in the measuring device (3) is 0.7%. When this happens, the control unit (6) activates the valve (5) and supplies nitrogen from the connection line (2). It interrupts the passage. At the same time, the operator is ready for the pipe (B) welding process. Preferably, alerts are given via audio, visual, SMS, or email. This ensures a minimum of 25... Gas usage and welding process completed in minimum time with minimum cost. is provided. 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, can create similar 30 based on the above-mentioned points. It is clear that these structures can emerge.

Claims

6 REQUESTS 1. The invention relates to tubes (B) used in the food industry through which foodstuffs pass. The welding system developed for the welding process to be applied is (A), and its feature is;  A tank containing nitrogen (1),  Connection 5 that enables the transfer of nitrogen from the mentioned tank (1) to the pipe (B) line (2),  Measurement that enables the measurement of the oxygen level inside the mentioned pipe (B) measuring device (3) with probe (31),  The mentioned measuring probe (31) and the connecting line (3) are placed inside pipe (B) The aforementioned 10 has holes (41) that allow it to enter. Two plugs (4) that cut off the pipe (B) from contact with the outside environment (gas exchange),  Oxygen measurement below the value determined by the measuring device (3). when (when ready for welding) from tank (1) to pipe (B) Valve (5) connected to the connection line (2) to prevent nitrogen passage,  When the oxygen level inside pipe (B) falls below the specified value 15 to ensure that the mentioned valve (5) automatically cuts off the nitrogen passage control unit which enables the connection of the measuring device (3) with the valve (5) (6),  When the oxygen level inside pipe (B) falls below the specified value (when ready for the welding process) the operator's audible and / or visual 20 screen which enables it to be warned (61), It is characterized by its inclusion.

2. The source system (A) conforming to Claim 1 is characterized by the oxygen level inside pipe (B). Control unit (6) that enables the nitrogen transfer to stop when it falls below 0.7% It includes. 25 3. The source system (A) is compliant with claim 1, and its feature is the aforementioned measuring device (3) and Control that is connected and communicates with the valve (5) either wired or wirelessly. It contains unit (6).

4. The source system (A) conforming to Claim 1 is characterized by; the operator's welding area In cases where it is outside, the operator prepares the pipe (B) for welding. 7 to inform operators of its arrival via SMS or email It includes a screen (61) that provides information.

5. The source system (A) conforming to Claim 1 is characterized by its ability to prevent gas leakage. 5 connected between the holes (41) with the measuring probe (31) and the connecting line (2). It contains a sealing element.