Common Separator for Water Purification Filters
Patent Information
- Application Number
- TR202403559
- Authority / Receiving Office
- TR · TR
- Patent Type
- Patents
- Current Assignee / Owner
- Filing Date
- 2022-09-01
- Publication Date
- 2026-09-21
- Estimated Expiration
- 2042-09-01
Smart Images

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Abstract
Description
1 TAR I FNAME Common Separator for Water Purification Filters Technical Area 5 The invention is a device used in water purification systems that provides water purification and protection. By attaching it to the ends of the filter positioned inside the housing, the aforementioned filter's exterior It relates to the separators that ensure their placement inside the shell. Previous Technique Devices that make tap water potable and more usable are called water purifiers. These devices are called water purification devices. Water purification devices perform the purification process using filters inside them. It is made with the help of. The filters consist of a protective housing, filter, separator and cover 15 It includes a protective casing that withstands the pressure required for the purification process in the purification system. It is made of durable material. The filter is where the water is filtered, removing unwanted particles. It is the part where the filter is purified from external substances. The separator is attached to the filter ends and separates the filter from the outside. It is the device that attaches to the body. Current technology utilizes filter housings of varying sizes and shapes. Different For each filter housing used, in different sizes and dimensions, separators of different sizes are also required. They are used. The use of separators in different sizes and types benefits both the manufacturer and the user. This makes the user's job more difficult. However, a different filter or body When it is launched on the market, the shape and dimensions of the separator will also need to change. 25 The aforementioned change creates a new mold cost and challenge for the manufacturer. Furthermore... The large number of different parts available presents a separate challenge for both the consumer and the installer. It brings. The current technology includes water purification filter 30 in the Korean patent document KR100987195B1. The frame assembly equipment and method are discussed. The equipment mentioned... And the method ensures that the water purification device is installed more easily and is leak-proof. 2 The patent document in question describes filters of different types, shapes, and diameters. There is no separator that can adapt to their bodies. In the current technical documentation, the Chinese utility model document with code CN206746066U is included. The text discusses composite structures used as water treatment filter elements. The five useful components in question... The model documentation describes a design that can adapt to filter housings of different types, shapes, and diameters. There is no separator. Purpose of the Invention 10 The aim of the invention is to create a system that can adapt to filter housings of different types, shapes, and diameters. The goal is to obtain a separator. Another purpose of the invention is to produce with fewer molds, resulting in savings in terms of time and money. 15 The goal is to obtain a separator that provides this. The separator developed to achieve the aforementioned purposes; at least one of the filters (30) positioned at the end of the mentioned filter (30) with bodies of different shapes and diameters (10) enabling the mentioned filter (30) to adapt to the body (10) 20 to be placed inside and tightly the mentioned filter (30) inside the housing (10) ensuring its positioning, it moves inwards when subjected to an external force. It is flexible, and when the aforementioned force ends, it returns to its previous shape like a spring. The winner includes at least one flexible ear (20.1). Explanation of the Figures The attached Figure 1 shows the disassembly of the sediment filter used in water treatment systems. It is a top view of the situation. Figure 2 shows the top view of a disassembled block carbon filter used in water purification systems. It is the appearance. 3 Figure 3 shows the alternative application of the invention: sediment used in water treatment systems. This is a top view of the filter in its disassembled state. Figure 4 shows block 5 used in water treatment systems for an alternative application of the invention. This is a top view of the disassembled carbon filter. Figure 5 shows the sediment used in water treatment systems for an alternative application of the invention. This is a top view of the filter in its disassembled state. Figure 6 shows the block used in water treatment systems for an alternative application of the invention. This is a top view of the disassembled carbon filter. Figure 7 shows the sediment used in water treatment systems for an alternative application of the invention. This is a top view of the filter in its disassembled state. 15 Figure 8 shows the block used in water treatment systems for an alternative application of the invention. This is a top view of the disassembled carbon filter. Figure 9 shows sediment used in water treatment systems for an alternative application of the invention. This is a top view of the filter in its disassembled state. Figure 10 shows the block used in water treatment systems for an alternative application of the invention. This is a top view of the disassembled carbon filter. Figure 11 shows the sediment used in water treatment systems for an alternative application of the invention. This is a top view of the filter in its disassembled state. Figure 12 shows the block used in water treatment systems for an alternative application of the invention. This is a top view of the disassembled carbon filter. 30 Figure 13 shows a top view of the separator when it is open. 4 Figure 14 shows a top view of the separator in its closed state. Figure 15 shows the front view of the perforated separator. Figure 16 shows the rear view of the perforated separator. Figure 17 shows a side view of the perforated separator. Figure 18 shows the front view of the large slotted separator. 10 Figure 19 shows the rear view of the large slotted separator. Figure 20 is a side view of the large slotted separator. Figure 21 shows the front view of the small slotted separator. Figure 22 shows the rear view of the small slotted separator. Figure 23 shows a side view of the small slotted separator. 20 The main parts shown in the figures are listed below by number and name. (10) Body 25 (20) Separator (20.1) Flexible ear (20.2) Projection (20.3) Space (21) Small slot separator 30 (21.1) Nest (22) Perforated separator (22.1) Entrance hole (22.2) Exit hole (23) Large slot separator (23.1) Nest (30) Filter 5 (31) Sediment filter (32) Block carbon filter (40) Cover (50) Old type separator (60) Pipe 10 (70) Gasket (80) Stopper k: socket diameter l: socket diameter 15 m: hole diameter n: hole diameter x: Maximum distance between the two flexible earcups. y: Minimum distance between two flexible earcups. Detailed Description of the Invention The invention relates to a device used in water purification systems that provides water purification and protection. By attaching to the ends of the filter (30) positioned inside the body (10) the aforementioned This relates to the separators that ensure the filter is placed inside the outer casing. Different filters (30) such as sediment filter (31) and block carbon (32) in water treatment systems The filters used (30) are placed inside a housing (10). 30 The hull (10) is resistant to high levels of water pressure. The mentioned hull (10), It protects the filter (30) from external influences while also ensuring the direction of water flow. 6 The filter (30) is placed inside the housing (10), which serves as a protective casing. The filter (30), properly placed in the body (10) with separators (20) is provided. In the current technology, dozens of filter types and sizes (30) are available. Different old type separators (50) are used. 5 The subject of the invention, the separator (20), is used at both ends of the filter (30). The separator mentioned (20) consists of a flexible ear (20.1), a protrusion (20.2) and a gap (20.3) It includes. Flexible ear (20.1), the same separator in bodies of different sizes (10) (20) enables its use. For example, a body with an inner diameter of 56 mm (10) and 51 10 The same separator (20) can be used in a different housing (10) with an inner diameter of mm. Thus, there is no need to use different separators (20) for different body (10) sizes. It does not remain. The flexible ear (20.1) located on the separator (20) is subjected to an external force 15 It can stretch inwards when the force is removed. However, when the aforementioned force is removed... It returns to its original state like a spring. The separator (20), thanks to its elasticity The filter (30) on which it is used should fit best inside the housing (10) and Ensure that the filter (30) is positioned tightly inside the housing (10). It is doing. 20 The subject of the invention is a separator (20) containing two or more flexible ears (20.1). The flexible ears (20.1) mentioned in the applications are equal to the separator (20) around the circumference. distributed at intervals and each flexible ear (20.1) is equidistant from the other It is located. 25 In the preferred application of the invention, three flexible ears (20.1) are placed on the separator (20). It is located. Flexible ears (20.1) divide the separator (20) into three equal parts. When there is no force on the flexible ears (20.1), i.e. when they are open, between the two flexible ears (20.1) The maximum distance is “x”. 30 when force is applied to the flexible ears (20.1). That is, when closed, the minimum distance between the two flexible ears (20.1) is “y”. The invention In the preferred application, "x" is 56 millimeters. The mentioned "x" measurement is 54-60. 7 It can vary between millimeters. "y" is 52 millimeters. The "y" measurement is between 48 and 54. The dimensions can vary within the millimeter range. In alternative applications of the invention, the dimensions are... It can change. Thanks to the flexible ears (20.1), the same separator (20) can change by up to 10%. It can be used in large or small diameter bodies (10). Water is purified in two different ways in the filters (30). Firstly; the water is purified outside the filter (30). In the first stage, the water is purified by passing from the surface into the cavity in the middle. In the second stage, the water... The purification process is carried out by passing out through the gap in the middle of the filter (30). In both types of purification, the filter (30) is connected to the shell (10) with the help of a separator (20). It is fixed. Separators (20) are located at both ends of the filter (30). 10 In alternative applications of the invention, the separator (20) is located at only one end of the filter (30). It can be found. The subject of the invention, the separator (20), differs depending on the type or location of the filter (30) in which it is used. They can be in the following forms. For example, for smaller filters (30) small 15 When using a slotted separator (21), for larger size filters, a large slotted separator is used. Separators (23) are used. Or perforated in tubular (60), filter (30) systems. Separators (22) can be used. Small slot separator (21) or large slot separator. The diameters (k, l) of the slots (21.1, 23.1) in the separators (23) are different filters (30) It can vary depending on the dimensions. The inlet hole (22.1) in the perforated separator (22) is 20 and outlet hole (22.2) diameters (m, n), filter (30) and pipe (60) used according to the diameter. It may vary. In water treatment systems where water passes from the outer surface of the filter (30) into the gap in the middle small slotted separator (21) or large slotted separator (23) at one end of the filter (30) 25 It is used. A small slotted separator is placed in the water inlet part of the filter (30). (21) or large slot separator (23), water enters the middle of the filter (30) block By blocking the flow, it allows water to filter and be purified from the outside inwards. In the aforementioned purification systems, at the other end of the filter (30), i.e., at the water outlet, The purified water is taken to the outside environment through the gap in the middle of the mentioned filter (30). There is a perforated separator (22) that provides 8 In alternative applications of the invention, the water inlet and / or the purification direction of the filter (30) depending on perforated separator (22), small slot separator (21) or large slot separator (23) can be used. In different alternative applications of the invention, the old type together with the new separator (20) with the flexible ear (20.1) and the separators (50). It is available. 5 There is a gap (20.3) between the flexible ears (20.1) and the separator (20) body. Water passes through the gap (20.3). The water to be treated passes through the filter (30) passing from the outside to the inside and / or the purified water inside the filter (30) to the outside of the filter (30). The acquisition is done via the gap (20.3). 10 The same separator (20) can be used in protective housings (10) with a narrow inner diameter. When the same separator (20) is to be used in bodies with a narrower inner diameter (10) The gaps (20.3) must not be closed. The aforementioned gaps must not be closed. The protrusion (20.2) is located on the inside of the flexible ears (20.1). The protrusion (20.2) and 15 This prevents the gaps (20.3) from closing. The gap (hole) in the middle of the filter (30) is where the water needs to be purified from the outside to the inside. In such cases, it is closed with the slot (21.1, 23.1) located on the separator (20). Slot (21.1, 23.1), allowing water to enter and / or pass through the gap in the middle of the filter (30) 20 It prevents it from coming out. When the water to be treated is taken into the filter (30) by means of a pipe (60) In filters (30), perforated separator (22) is used. The mentioned pipe (60) is perforated It is placed in the inlet hole (22.1) in the middle of the separator (22). 25 (22.1) The incoming water comes out through the outlet hole (22.2) and goes to the middle of the filter (30) to be purified. It is placed inside the gap. At the other end of the filter (30) there is no perforated A separator (20) can be used. In this way, the water exits through the filter (30) to the outside. It is being purified. The subject of the invention is the separator (20) in filter (30) housings (10) with different inner diameters. It can be used. The separator (20) is made possible by the flexible ears (20.1) around it. 9 It can adapt itself to bodies of different diameters (10). In this way, it can adapt to different diameters The same separator (20) can be used in bodies (10) that have the same separator. After the filter (30) is placed inside the housing (10), both sides of the aforementioned housing (10) It is closed with a lid (40) at the end. With the lid (40) there is water at high pressures 5 Water leakage is prevented except for the water inlet and outlet of the body (10). The invention is a device used in water purification systems that provides water purification and protection. By attaching it to the ends of the filter positioned inside the housing, the aforementioned filter's exterior It is related to the separators which ensure that the filter (30) is placed inside the housing; positioned at one end of the mentioned filter (30) in different shapes and diameters The mentioned filter (30) is best adapted to the bodies (10). (10) to be placed inside and tightly the mentioned filter (30) body (10) ensuring its positioning inside, it collapses when subjected to an external force. It can stretch properly, and when the mentioned force ends, it acts like a spring, returning to its previous state. characterized by containing at least one flexible ear (20.1) that regains its shape. is being done.
Claims
SYSTEMS 1. The invention relates to a device used in water purification systems that provides water purification and protection. By attaching it to the ends of the filter positioned inside the housing, the outer 5 of the aforementioned filter It relates to separators that ensure placement inside the shell, and its characteristic is; positioned at at least one end of the filter (30), different shape of the mentioned filter (30). and the mentioned filter (30) which enables it to adapt to bodies of various diameters (10). ensure that it fits well inside the housing (10) and that the aforementioned filter is tightly fitted. (30) ensuring its positioning inside the body (10) and an external force 10 It can stretch inwards when exposed to it, but when the aforementioned force ends, it almost collapses. at least one flexible ear that regains its previous shape like a spring (20.1) It includes.
2. The separator mentioned in Claim 1 is (20) and its characteristic is that it has two or more 15 In applications involving flexible ears (20.1), the flexible ears (20.1) mentioned are The separator (20) is distributed at equal intervals around the ear and each flexible ear (20.1) is positioning them at an equal distance from each other.
3. The separator mentioned in Claim 1 is (20) and its feature is that when the flexible ears (20.1) are compressed, 20 It contains a protrusion (20.2) which prevents the closure of the gaps (20.3).
4. The separator mentioned in Claim 1 is (20) and its feature is that the water to be treated passes through the filter (30) It contains a socket (21.1, 23.1) that prevents it from entering the hole in the middle.
5. The separator mentioned in Claim 1 is (20) and its feature is that the water to be treated passes through the filter (30) enabling the purified water to be directed to the outer surface of the filter (30) It contains a gap (20.3) that allows it to be taken from inside to outside.
6. The separator mentioned in Claim 1 is (20) and its feature is that the maximum distance between two flexible ears is 30 the distance (x) should be between 54 and 60 millimeters. 11 7. The separator mentioned in Claim 1 (20) has the feature of having a minimum distance between two flexible ears. the distance (y) should be between 48 and 54 millimeters.