A FAN ARRANGEMENT

TR202221373BActive Publication Date: 2026-06-22USTUNEL POMPA & MAKINE SANAYI TICARET ANONIM SIRKETI
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Patent Information

Application Number
TR202221373
Authority / Receiving Office
TR · TR
Patent Type
Patents
Current Assignee / Owner
Filing Date
2022-12-29
Publication Date
2026-06-22
Estimated Expiration
2042-12-29

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Patent Text Reader

Abstract

The invention involves laser welding the tips of the wings (2) to form the wing profiles (11), and then laser welding the wing top sheet (5) with a welding apparatus (10) to prevent the wings (2) from breaking and / or being damaged by liquid pressure coming from different directions, allowing one-way liquid inlet / outlet and having the feature of closing around it;The fan (F) is obtained by laser welding the fan top sheet (5) and the blades (2), then laser welding the fan intermediate sheet (4) which closes the top part of the blades (2) to reduce the direct contact of the blades (2) with the liquid and prevent them from breaking due to the pressure generated during operation, and laser welding the fan top sheet (5) and the blade (2) and laser welding the fan bottom sheet (3) to strengthen the connection between the fan top sheet (5) and the blade (2) and laser welding the fan intermediate sheet (4) to strengthen the connection between the fan top sheet (5) and the blade (2) and laser welding the fan intermediate sheet (4) to strengthen the connection between the fan top sheet (5) and the blade (2).
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Description

1 TARIFF 5 A FAN ARRANGEMENT TECHNICAL FIELD The invention relates to the welding methods and terminology used in obtaining fan assemblies. the subject is new types of fan structures obtained through the use of welding methods It is related. 10 STATE OF THE ART Known and used methods in fan and pump manufacturing applications, and shortcomings in the use of products obtained through the methods mentioned and It appears there are implementation errors. However, obtaining a fan... 15 sourcing methods, gluing methods, joining used in applications methods and other methods used in the transformation of parts into final products The inadequacy and shortcomings of the merging methods are evident. Furthermore... As can be understood from the aforementioned merging methods, it is incorrect, incomplete, or insufficient. from insufficient resource utilization and inadequate joining and / or gluing processes There are a number of negative consequences resulting from this. 20 Especially used in soldering, joining with fasteners, and gluing processes. limited space and frequent breakage or disconnection of connections during use, and Damage to the connections restricts the use of the fans, reducing the areas where they are used. It appears that this has resulted in financial losses. In addition to the aforementioned assembly methods, 25 fan parts are used in obtaining the final product. The preferred welding methods for joining are oxygen welding and plasma arc welding. welding methods include tungsten inert gas welding, resistance welding, or pressure-press welding. applications in terms of both implementation costs and post-implementation maintenance requirements. Considering this, development for assembling the fan parts in question It is required. 30 The disadvantage of previous methods used in assembling fan components is, The low scope of effectiveness of the sourcing methods used. 2 The disadvantage of previous uses is the low quality of the resources used. 5 The disadvantage of previous uses was that it depended on the operator's welding skill. Low source sensitivity. The disadvantage of previous uses is the additional material required in the welding methods employed. the need for its use. The invention aims to eliminate the aforementioned disadvantages and introduce new technologies to the relevant technical field. It was developed to bring advantages. THE PURPOSE OF THE INVENTION The aim of the invention is to produce visible light of the highest optical quality and uninterrupted along the source line. It is the joining of parts with neat, aesthetically pleasing stitches that completely close the gaps. The aim of the invention is to create high-strength, low-tolerance precision weld seams with 15 The aim is to prevent the connection points from breaking over time. The aim of the invention is to increase productivity and save time by achieving high processing speed during welding. The goal is to achieve savings. The aim of the invention is to provide high efficiency. The purpose of the invention is to reduce the need for extra parts, therefore the material is 20. It means there is no consumption. The aim of the invention is to provide high welding quality through TIG thanks to its small particle structure. other welding methods such as spot welding, tungsten inert gas welding, and resistance spot welding better fatigue characteristics according to methods and better at weld end points It provides high separation resistance. 25 The aim of the invention is to produce high-strength, low-tolerance precision weld seams. The aim is to prevent the connection points from breaking over time and to increase their durability. The purpose of the invention is to create additional notches or Z-shaped fins on parts and surfaces to be welded. The surface is not needed. 3 In conclusion, along with the alternative solutions produced for all the problems mentioned above, 5 It has been determined that innovation in the relevant technical field is appropriate. A BRIEF DESCRIPTION OF THE INVENTION The invention is a method for manufacturing a fan. In an alternative application of the invention, different blades are applied to the fan after it is activated. 10 to provide, control the fluid flow hitting the wings and direct the fluid flow of the wings. In order to enable this, the wingtips are welded together using laser welding. Profiles are being created. In a possible application of the invention, the wingtips could be welded together using laser welding. Following the creation of the wing profiles, the wings are joined together using a welding apparatus. 15 fracture and / or damage despite fluid pressure coming from different directions allowing one-way fluid inlet / outlet and enclosing the surrounding area to prevent leakage. The fan top sheet, which has this feature, is welded using laser welding. In a preferred application of the invention, the fan top plate and blades are welded together by laser welding. By connecting them, the direct contact of the wings with the liquid is reduced and 20 to prevent them from breaking due to the pressure generated during operation The fan spacer sheet that closes the upper part of the blades, the fan top sheet, the blade The connections are joined and welded using laser welding. In a configuration where the invention is used, the fan top plate, the fan intermediate plate and the blades Following the connection and boiling, the aforementioned connection 25 to reinforce and provide resistance to the aforementioned connection under the fan laser connection of the sheet metal, the connection of the fan top sheet metal and the blade connection, and the connection of the fan intermediate sheet metal. It is linked to the source. In another configuration using the invention, the fan spacer and the blades are located on the fan. It is connected from the source line section. 30 DESCRIPTION OF THE FIGURES Figure 1A shows how the airfoil profiles were created. 4 Figure 1B shows the connection of the fan's top sheet metal to the blades. 5 In Figure 2A, the fan spacer sheet is placed on the fan top sheet where the blades are connected. The connection has been shown. Figure 2B shows the welding application during the connection of the fan spacer plate. The welding seam line used for its manufacture is shown. Figure 3A shows the welding of the fan top plate and the subsequent creation of the fan structure. It has been shown that it can be done. Figure 3B shows the fan configuration, which is the final product. Figure 4 shows the invention elements used in obtaining the fan configuration. It has been shown. EXPLANATION OF REFERENCES IN THE FIGURES 15 F. Fan 2nd Wing 3. Fan base plate 4. Fan spacer 5. Fan top sheet metal 20 9. Source line 10. Welding apparatus 11. Resource profile DETAILED DESCRIPTION OF THE INVENTION In this detailed explanation, the subject of the invention is only 25 points intended to better understand the subject. This is explained with examples that will not create any limiting effects. The invention described in detail below produces visible light of the highest optical quality and 5 Seamless, smooth aesthetics along the source line, with gaps completely closed. It relates to the new type of fan (F) structure where parts are joined by seams. The invention is realized through the production methods described below.  To control the flow of liquid and to direct the flow of liquid, the tips of the wing (2) Formation of wing profiles (11) by welding with laser welding; 10  After the wing profiles are formed, the wings are welded using the (2) welding apparatus. (10) with the help of the liquid pressure coming from different directions, its breaking and / or allowing one-way fluid inlet / outlet to prevent damage, and The fan top sheet (5) and the blades (2) have the feature of closing around the perimeter and are laser welded. boiling with; 15  After welding the fan top sheet (5) and the blades (2) together, the blades (2) to reduce direct contact with the liquid and to reduce the formation that occurs during its operation In order to prevent the upper part of the wings (2) from breaking due to pressure The fan spacer sheet (4) and the blades (2) which enable the closing are laser welded boiling; 20  After welding the fan top sheet (5) and the fan intermediate sheet (4) to the blades (2) to strengthen the aforementioned connection and the aforementioned connection To provide strength, the fan bottom sheet (3) and the fan intermediate sheet (4) were lasered linking to the source The aforementioned fan intermediate sheet (4) and the blades (2) are welded to the fan (1) 25 It is connected from part (9) of the line. The method is demonstrated by applying the steps in sequence. As can be seen from Figure 1A and Figure 1B, the fan (F) configuration is inside the pump. and / or in non-pump applications, to direct the liquids that come onto it and the liquids To prevent the wings (2) from breaking due to exposure to flow / pressure forces, wing 30 (2) The ends were welded together with laser welding to create weld profiles (11). The mentioned source profiles (11) are designed according to fluid flow forces and are high It has the ability to resist impacts from pressurized liquids. Thus, it is unbreakable. The fan (F) configurations, having gained structure, can be used for a long time. He knows. 35 6 As can be seen from Figure 1A and Figure 1B, the fan (F) configuration is obtained in 5 to ensure the connection between the wings (2) and the fan top sheet (5) Laser welding was used, and the laser welding application was carried out. The welding apparatus (10) is positioned around the blades and the fan top sheet (5) It is located around the wings (2) during boiling. As can be seen from Figure 2A and Figure 2B, the top sheet metal of the fan (5) is connected to the blades (2) and 10 After ensuring the connection / welding, the fan intermediate sheet (4) word The subject will be connected to the connection. The fan spacer sheet (4) is shown in Figure 1A and The use of the fan (F) by welding it onto the connection described in Figure 1B. direct contact with the fluid when it is ready and used by preventing it from interfering with possible high-pressure liquid, it faces a high 15 Its high tensile strength prevents it from breaking. As can be seen from figures 2A and 2B, the fan spacer sheet (4) During the connection, welding was done to both the fan top sheet (5) and the blades (2). The weld seam (9) line is shown to provide support during the operation. As can be seen from Figure 3A and Figure 3B, the fan bottom sheet (3); the fan top sheet (5), the fan spacer 20 After connecting to the sheet metal (4) and wing (2) structures, the aforementioned The process of welding the resulting product to the fan using laser welding is demonstrated. The fan (F) structure is formed by welding the bottom sheet (4) onto the fan intermediate sheet (4). will be obtained. Figure 4 shows the parts used to obtain the fan (F) configuration. 25 The scope of protection of the invention is specified in the attached claims, and these details are strictly adhered to. The explanation cannot be limited to what is given for illustrative purposes only. Because a technically expert person The person, without deviating from the main theme of the invention, can do something similar along with what is described above. It is obvious that these structures can emerge.

Claims

7 REQUIREMENTS 5 1. The invention is a fan (1) production method, the feature of which is; a. After the fan (F) is started, different pressures are applied to the blades (2). The wings (2) become resistant during the intervention of liquids. to ensure that it comes, control the flow of liquid hitting the wings (2) and To enable the wings (2) to direct the fluid flow, wing (2) 10 wing profiles (11) by welding the tips with laser welding creation; b. Wing profiles (11) are formed by welding the wing (2) tips with laser welding. After its creation, the wings (2) with the help of welding apparatus (10) fracture and / or damage despite fluid pressure coming from different directions 15 allowing one-way fluid inlet / outlet to prevent it from seeing and the fan top sheet (5) which has the feature of closing its surroundings, with laser welding. boiling; c. Connecting the fan top sheet (5) to the blades (2) by laser welding. subsequently, to reduce the direct contact of the wings (2) with the liquid and 20 to prevent fractures due to the pressure generated during operation The fan gap that allows the upper part of the wings (2) to be closed to pass through. Connecting the sheet metal (4), fan top sheet metal (5) and blade (2) by laser welding boiling; d. Connection of the fan top sheet (5), fan intermediate sheet (4) and blade (2) 25 to strengthen the aforementioned connection after boiling and to provide resistance to the aforementioned connection, under the fan The connection of the sheet metal (3), the fan top sheet metal (5) and the blade (2) is made by the fan intermediate sheet metal (4) connection with laser source connection It is characterized by including methodological steps. 30 2. The fan (1) production method is in accordance with claim 1, and its feature is; fan intermediate in process step d. from the part of the welding line (9) located in the fan (1) with the sheet metal (4) and the wings (2) It is about connecting them.