CONSUMPTION-FREE HIGH-EFFICIENCY FILTER
20210394093 · 2021-12-23
Inventors
Cpc classification
B01D33/801
PERFORMING OPERATIONS; TRANSPORTING
B01D33/21
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
Provided is a filter, including a filter closure head (1), a tank body (2), two cross support frames (3), a mandrel (6), and filter elements (5). The filter closure head (1) is provided with a liquid inlet and is fixedly mounted with the tank body (2) through flanges. A liquid outlet is formed in the tank body (2). Two groups of support rings (4) are respectively fixedly mounted at the upper end and the lower end in the tank body (2). Grooves used for matching and lapping the two cross support frames (3) are formed in both groups of the support rings (4). Sliding bearings (9) used for rotatably mounting the upper end and the lower end of the mandrel (6) are arranged at the central positions of the two cross support frames (3). Filter element sleeves (501) of the filter elements (5) are fixedly mounted on the mandrel (6).
Claims
1. A consumption-free high-efficiency filter, comprising: a tank body provided with a liquid outlet; a filter closure head, wherein the filter closure head is provided with a liquid inlet and is fixedly mounted with the tank body; a first group of support rings and a second group of support rings that are respectively fixedly mounted at an upper end of the tank body and a lower end of the tank body; an upper cross support frame and a lower cross support frame, wherein the first and second groups of support rings comprise grooves for matching and lapping respective ones of the upper and lower cross support frames; a mandrel comprising an upper end and a lower end; a first sliding bearing and a second sliding bearing used for rotatably mounting the upper end of the mandrel and the lower end of the mandrel, wherein the first sliding bearing and the second sliding bearing are arranged at central positions of the upper and lower cross support frames; and a set of filter elements, each filter element of the set of filter elements comprising: a filter element sleeve fixedly mounted on the mandrel; and a blade and a filter loop, wherein the blade is welded on the filter element sleeve, and wherein a center of the filter loop located below the blade is mounted and fixed to the filter element sleeve.
2. The consumption-free high-efficiency filter according to claim 1, further comprising: a first sliding bearing support ring and a second sliding bearing support ring that are welded at the central positions of respective ones of the upper and lower cross support frames; wherein the first and second sliding bearings are respectively fixedly mounted on the first and second sliding bearing support rings.
3. The consumption-free high-efficiency filter according to claim 1, further comprising: screw threads turned in the upper end of the mandrel; a snap ring groove formed in the shaft diameter at the lower end of the mandrel; a hexagonal plane turned on a surface of the lower end of the mandrel, so as to facilitate mounting; and a snap ring mounted in the snap ring groove; wherein the upper and lower ends of the mandrel are fixedly mounted with shaft head closure heads through screw threads after penetrating through the first and second sliding bearings.
4. The consumption-free high-efficiency filter according to claim 3, wherein: the first and second groups of the support rings are welded on the tank body through four fan-shaped rings; and the consumption-free high-efficiency filter further comprises a hexagonal joint that is welded at an end part of each of the shaft head closure heads.
5. The consumption-free high-efficiency filter according to claim 3, further comprising: a first sealing loop and a second sealing loop that are respectively arranged on the first sliding bearing and the second sliding bearing; and a sealing gasket mounted between each of the shaft head closure heads and the upper cross support frame.
6. The consumption-free high-efficiency filter according to claim 1, wherein: the set of filter elements comprises four filter elements; the filter element sleeves of the four filter elements are fixedly mounted on the mandrel in sequence from top to bottom; and the blades of the four filter elements are respectively helically fixed and welded on the filter element sleeves.
7. The consumption-free high-efficiency filter according to claim 1, wherein: the filter loop comprises concentric annular bodies with different diameters and a peripheral loop; the annular bodies are welded together through an N-shaped support; the peripheral loop is welded on an outermost loop of the annular bodies; and the center of an annular body on an innermost side is matched and fixedly mounted with the filter element sleeve.
8. The consumption-free high-efficiency filter according to claim 7, wherein the blade, the peripheral loop, the N-shaped support, and the annular bodies are all made of an anti-wax anti-scale anti-corrosion alloy material.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0013] To describe the technical solutions in the embodiments of the present disclosure or in the prior art more clearly, the following briefly describes the accompanying drawings required for describing the embodiments. Apparently, the accompanying drawings in the following description are merely some embodiments of the present disclosure, and those of ordinary skill in the art may still derive other drawings from these accompanying drawings without creative efforts.
[0014] The present disclosure is illustrated by way of example, and not by way of limitation, in the figures of the accompanying drawings in which like references indicate similar elements. It should be noted that different references to “an” or “one” embodiment in this disclosure are not necessarily to the same embodiment, and such references mean at least one.
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[0022]
[0023] In the drawings: 1—filter closure head; 2—tank body; 3—cross support frame; 4—support ring; 5—filter element; 6—mandrel; 7—shaft head closure head; 8—sliding bearing support ring; 9—sliding bearing; 10—snap ring; 11—sealing loop; 501—filter element sleeve; 502—blade; 503—peripheral loop; 504—N-shaped support; 505—annular body.
DETAILED DESCRIPTION
[0024] The technical solutions in the embodiments of the present disclosure will be clearly and completely described herein below with reference to the accompanying drawings in the embodiments of the present disclosure. Apparently, the described embodiments are merely part rather than all of the embodiments of the present disclosure. On the basis of the embodiments of the present disclosure, all other embodiments obtained by those of ordinary skill in the art without creative work fall within the protection scope of the present disclosure.
[0025] One objective of the present disclosure is to provide a consumption-free high-efficiency filter, which designs a low-consumption, environmentally friendly, and high-efficiency liquid delivery filtration treatment device with respect to solving problems, such as scaling, wax precipitation, and corrosion, in relevant industries.
[0026] To achieve the above objective, the present disclosure provides a consumption-free high-efficiency filter, including a filter closure head, a tank body, two cross support frames, a mandrel, and filter elements. The filter closure head is provided with a liquid inlet and is fixedly mounted with the tank body through flanges. A liquid outlet is formed in the tank body. Two groups of support rings are respectively fixedly mounted at the upper end and the lower end in the tank body. Grooves used for matching and lapping the two cross support frames are formed in both groups of the support rings. Sliding bearings used for rotatably mounting the upper end and the lower end of the mandrel are arranged at the central positions of the two cross support frames. Filter element sleeves of the filter elements are fixedly mounted on the mandrel. The filter element includes blades and a filter loop. The blades are welded on the filter element sleeves. The centers of the filter loops located below the blades are mounted and fixed to the filter element sleeves.
[0027] The consumption-free high-efficiency filter can achieve a number of technical effects. For example, in the consumption-free high-efficiency filter provided by the present disclosure, filter element blades can be designed by using a design concept of a propeller blade, so that the filter element blades may be rotated passively under the impact of a high-speed fluid and be in full contact with an ionization material, thereby preventing scaling. Filter element parts of the consumption-free high-efficiency filter can be made of the anti-wax anti-scale anti-corrosion alloy material, so that a high-efficiency anti-scaling effect may be achieved.
[0028] In order to make the above objective, features, and advantages of the present disclosure become more apparent and more comprehensible, the present disclosure is further described in detail below with reference to the accompanying drawings and specific implementation manners.
[0029] Referring to
[0030] As shown in
[0031] To achieve a high-efficiency consumption-free water treatment effect, the blades including blade 502, the peripheral rings including peripheral ring 503, the N-shaped supports including N-shaped support 504, and the annular bodies including annular body 505 can all be made of an anti-wax anti-scale anti-corrosion alloy material.
[0032] To improve the filter efficiency, filter element blades including blade 502 and structures are designed according to propeller blade hydrodynamics, so that the filter element may be rotated passively under the impact of a high-speed fluid and be in full contact with an ionization material, thereby preventing scaling.
[0033] To meet a mounting requirement, both groups of the support rings 4 are welded on the tank body 2 through four fan-shaped rings. A hexagonal joint is welded at an end part of each shaft head closure head, including shaft head closure head 7.
[0034] To ensure the service life, three sealing loops including sealing loop 11 are respectively mounted on the upper side and the lower side of the lower sliding bearing 9 and the lower side of the upper sliding bearing 9, and a sealing gasket is mounted between each shaft head closure head 7 and the upper cross support frame 3.
[0035] The overall appearance shape of the consumption-free high-efficiency filter is a straight through type filter, where, the structures, such as the internal filter elements including filter element 5, the cross support frames 3U and 3L, and the shaft head closure heads including the shaft head closure head 7, are placed in the tank body 2 for calibrating and mounting after being mounted preliminarily. When the structures, such as the internal filter elements including filter element 5, the cross support frames 3U and 3L, and the shaft head closure heads including the shaft head closure head 7, are placed in the tank body 2, they cannot be directly placed in the tank body 2 due to the limitation of the lengths of the cross support frames 3U and 3L and the inside diameter of a support rings including support ring 4, so the support rings including support ring 4 is designed into four split structures, and thus the cross support frames 3U and 3L and the support rings including support ring 4 may be placed in the tank body 2 in a staggered manner. Then, the cross support frames 3U and 3L are made directly face the grooves in the support rings including support ring 4 (as shown in
[0036] Several examples are used for illustration of the principles and implementation manners of the specification. The description of the above embodiments is merely used to help understand the method and its core principles of the present disclosure. In addition, those skilled in the art may make various modifications in terms of specific implementation manners and scope of application in accordance with the teachings of the present disclosure. In conclusion, the content of the present description shall not be construed as a limitation to the present disclosure.