MAGNETIC FILTERING SYSTEM

TR202415188A3Pending Publication Date: 2026-06-22VIESSMANN MANISA ISI TEKNOLOJILERI SAN & TIC LTD STI
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Patent Information

Application Number
TR202415188
Authority / Receiving Office
TR · TR
Patent Type
Applications
Current Assignee / Owner
Filing Date
2024-11-05
Publication Date
2026-06-22

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Abstract

The invention relates to a magnetic filtration system that improves gas quality by effectively separating ferromagnetic particles from the gas inside a boiler, optimizing the combustion quality of the gas, and thus enabling more efficient use of energy resources.
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Description

1 TARIFF MAGNETIC FILTERING SYSTEM TECHNICAL AREA 5 The invention effectively separates ferromagnetic particles from the gas inside a combi boiler. improving the quality and optimizing the combustion quality of gas, thus making energy sources more efficient. It is related to the magnetic filtering system that enables its effective use. PREVIOUS TECHNIQUE Combination boilers provide both heating and hot water in a single unit, especially in residential and commercial buildings. It is a heating system that provides heating with a device. Increasing energy efficiency in combi boilers and Long lifespan is important. In the current state of technology, iron pipes are used in gas installations for combi boilers. Rusting over time negatively affects the performance of the boiler in the long run. Particles formed as a result of the rusting of iron pipes over time become gaseous. 15 This obstructs the gas flow, causing malfunctions in the gas valve. This situation affects the operation of the boiler. This reduces its efficiency and increases the need for maintenance. It also reduces the operating efficiency of the boiler. the decline and increased need for maintenance will have negative long-term economic consequences. This leads to... Therefore, it is necessary to control the gas flow and prevent particle accumulation. Prevention is of great importance. 20 In the current state of technology, the filtering process in combi boiler systems is mostly done through radiators. They have been developed for these lines. Magnetic filters used in this context are for liquids. It prevents sediment accumulation by optimizing the flow. By regulating the gas flow, it prevents sediment buildup. It is not a system that prevents accumulation. 25 that will increase energy efficiency in combi boilers and regulate gas flow for a longer lifespan. The need for a structure that will provide usability and minimize maintenance needs. It is quite important 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 efficiently extract ferromagnetic particles from the gas inside the boiler. by separating and improving gas quality, and optimizing the combustion quality of the gas, thereby saving energy. magnetic filtering system structure that enables more efficient use of resources to reveal. Another aim of the invention is to achieve an efficient combustion process and reduced energy consumption. The aim is to help users reduce their energy costs. Another aim of the invention is to optimize combustion quality, thereby reducing failure and downtime. The goal is to reduce it. A BRIEF DESCRIPTION OF THE INVENTION All the objectives mentioned above and those that will emerge from the detailed explanation below are 15. The present invention, which aims to achieve this, is a magnetic filtering system. A preferred configuration of the invention is the ferromagnetic conversion of gas within the combi boiler. by effectively separating particles, improving gas quality and the combustion quality of the gas. magnetic fields that enable more efficient use of energy resources by optimizing them. It is a filtering system. Thus, the ferromagnetic particles in the mentioned gas are magnetically filtered. The magnet that enables separation by creating a field, by the aforementioned magnet The filter where the separated ferromagnetic particles accumulate, the gas entering the aforementioned filter. The gas inlet channel provides magnetic separation of the gas from the ferromagnetic components. The gas outlet duct that directs the gas from the filtering system to the gas installation. The outer structure of the aforementioned magnetic filtration system is formed by removing 25% of the gas. during the separation of ferromagnetic parts, gas flow to the gas outlet channel The outer casing directs the flow of gas through which the aforementioned filter is positioned, and the gas passes between the outer casing and the filter. It is characterized by having an internal body that allows it to move between them. In another preferred configuration of the invention, maintenance of the aforementioned magnet is required. 30 It contains a magnetic closure. 3 In another preferred configuration of the invention, the aforementioned magnet is removed and By holding the magnet during installation, the magnet can be removed with minimum effort. It includes a magnetic holder that allows it to be attached. 5 Another preferred approach in not making the invention is the accumulation of ferromagnetic particles in the aforementioned filter. Cleaning cap that allows particles to be removed from the filter by the user. It includes. 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 10 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. BRIEF DESCRIPTION OF THE FIGURES Figure 1 shows the general view of the boiler. Figure 2 shows the magnetic filtering system connected to the boiler. 15 Figure 3 shows the appearance of the magnetic filtering 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 referring to these in isolation without resorting to the technical explanation in the statement. should not be included. The drawings in question clarify and define the invention. 20 It aims to... EXPLANATION OF REFERENCE NUMBERS IN THE FIGURES A. Magnetic filtration system 10. Combi boiler 20. Outer casing 25 30. Inner body 40. Magnet 41. Magnetic lid 42. Magnetic holder 4 50. Filter 51. Cleaning cover 60. Gas inlet channel 5 61. Gas outlet duct DETAILED DESCRIPTION OF THE INVENTION In this detailed description, the subject of the invention, magnetic filtering system (A), is only the subject of the invention. with examples that will not create any limiting effects so that it can be understood better It is explained. 10 The invention concerns the efficient removal of ferromagnetic particles from the gas inside the combi boiler (10). by separating and improving gas quality, and optimizing the combustion quality of the gas, thereby saving energy. magnetic filtering system (A) which enables more efficient use of resources It is related. The invention is presented as having the following elements: 15  Ferromagnetic particles from the aforementioned gas create a magnetic field. magnet that enables separation (40),  Ferromagnetic separated by the mentioned magnet (40) filter where particles accumulate (50),  The gas inlet channel (60) that provides gas to the mentioned filter (50), 20  Magnetic filtration of gas separated from ferromagnetic components gas that exits from system (A) and is directed to the gas installation outlet channel (61),  Forming the outer structure (A) of the aforementioned magnetic filtering system, During the separation of ferromagnetic parts from gas, the gas flow is 25 Outer casing (20) which directs to the outlet channel (61),  The mentioned filter (50) is positioned and the gas passes between the outer casing (20) and the filter (30) which enables movement between (50), The elements constituting the invention and their functions within the invention are given above. The relationship and working principles of the aforementioned elements are described below. It has been given. Figures 1, 2 and 3 show the elements that make up the combi (10) and the magnetic filtering system (A). Their appearances are given. Combi boilers (10) use natural gas and electricity to provide both heating. It is also a compact heating device that provides hot water. The aforementioned magnetic filtration is 5. system (A) effectively separates ferromagnetic particles from the gas inside the combi boiler improving gas quality and optimizing the combustion quality of gas, thereby improving energy resources. It is a system that enables more effective use. Magnetic filtering system (A) outer casing (20), inner body (30), magnet (40), magnet cover (41), magnet holder (42), filter (50), It consists of a cleaning cover (51), gas inlet channel (60) and gas outlet channel (61). 10 The magnet (40) magnetically affects the ferromagnetic particles in the gas inside the combi (10). It enables the separation of ferromagnetic particles from the gas by creating a field. The quality of the gas improves thanks to its separation. With the improvement in the quality of the aforementioned gas... By optimizing combustion quality, energy resources are used more efficiently. It also minimizes environmental impact by reducing emissions. 15 Ferromagnetic particles separated from the gas by the aforementioned magnet (40) filter (50) It accumulates on the mentioned filter (50). Cleaning cover (51) to enable cleaning by the user It is located. Access to the filter (50) is possible thanks to the aforementioned cleaning cover (51). By cleaning the ferromagnetic particles accumulated in the filter (50) by the user, 20 Filter maintenance is performed by removing it. User access to the magnet (40) to perform maintenance operations on the magnet (40). This is provided by the magnetic cover (41). From the aforementioned magnetic cover (41) The magnet (40) is removed from its place by reaching the magnet. The removed magnet (40) After the maintenance procedures are carried out, it is similarly possible to use the magnetic cover (41) 25 The magnet (40) is attached / mounted in the area where it is located. The aforementioned magnet (40) by holding the magnet (40) securely during removal and installation, the magnet (40) It can be easily removed and attached with minimum effort by the magnetic holder (42). It is provided. Thanks to the magnetic holder (42), the magnet (40) can be easily removed and The cleaning process is carried out. 30 The outer casing (20) constitutes the outer structure of the magnetic filtering system (A). The aforementioned outer casing (20) is also used for separating ferromagnetic parts from gas. During this process, it directs the gas flow to the gas outlet channel (61). The inner shell (30) where the filter (50) is positioned and the gas moves between the outer shell (20) and the filter (50). It provides. The gas enters the mentioned filter (50) through the gas inlet channel (60) 35 6 Magnetic filtration of the gas separated from ferromagnetic parts is provided. Gas outlet channel from system (A) to the gas installation of the combi (10) (61) is provided by. 5 The invention is based on a gas pipe (not shown in the figures) positioned on the combi boiler (10). It is related to the magnetic filtration system (A). Gas from the gas pipe is magnetic filtration. The filter (50) located in (A) of the system is supplied from the gas inlet channel (60). The filter (50) The magnet (40) located inside detects the iron particles in the gas flow. It creates a magnetic field to attract the gas. When the gas passes through this filter (50) 10 Due to the magnetic effect of the magnet (40), ferromagnetic particles are collected on the filter (50). This allows the gas to become purer, while also improving the overall condition of the system. It also improves its performance. The magnetic force (40) improves the efficiency of the filtering process. It enhances and also ensures the quality of gas flow. From ferromagnetic parts The separated gas is directed to the gas outlet channel (61) thanks to the outer casing (20). Outer 15 Gas directed by the shell (20) to the gas outlet channel (61), gas outlet channel By means of (61) directing the combi boiler (10) to the gas installation. Thanks to the magnetic filtering system (A), the combi boiler (10) has both reliability in gas installations. and ensures efficiency. Separation of ferromagnetic parts from gas. It contributes to improving quality and extending the lifespan of the system. This 20 These features both reduce maintenance costs and improve the overall performance of the system. It increases. 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... 25 similar ideas in light of what has been described above, without deviating from the main theme of the invention. It is clear that these structures can emerge.

Claims

7 REQUESTS 1. The invention effectively removes ferromagnetic particles from the gas inside the combi boiler (10). by separating and improving gas quality, and optimizing the combustion quality of the gas, thus saving energy. Magnetic filtering system (A) that enables more efficient use of resources Its characteristic is;  Ferromagnetic particles from the aforementioned gas create a magnetic field. magnet that enables separation (40),  Ferromagnetic 10 separated by the mentioned magnet (40) filter where particles accumulate (50),  Gas inlet channel (60) that provides gas to the mentioned filter (50),  Magnetic filtration of gas separated from ferromagnetic components gas that exits from system (A) and is directed to the gas installation output channel (61), 15  Forming the outer structure (A) of the aforementioned magnetic filtering system, gas flow during the separation of ferromagnetic parts from gas Outer casing (20) which directs to the outlet channel (61),  The mentioned filter (50) is positioned and the gas passes between the outer casing (20) and the filter (50) inner body (30) which enables it to move between 20 It is characterized by its inclusion.

2. Magnetic filtering system (A) conforming to Claim 1, and its characteristic is; mentioned To ensure that the magnet (40) is maintained, the user of the magnet (40) It contains a magnetic cover (41) which allows it to be removed and put on.

3. Magnetic filtering system (A) conforming to Claim 1, and its characteristic is; mentioned holding the magnet (40) while removing and attaching the magnet (40) Magnet that allows the magnet (40) to be removed and attached with minimum effort It includes the handle (42).

4. Magnetic filtering system (A) conforming to Claim 1, its characteristic being; in the said filter (50) accumulated ferromagnetic particles filtered by the user (50) It contains a cleaning cap (51) which allows its removal.