Tubular mesh filter
10350517 ยท 2019-07-16
Assignee
Inventors
Cpc classification
B01D35/005
PERFORMING OPERATIONS; TRANSPORTING
B01D39/16
PERFORMING OPERATIONS; TRANSPORTING
B29C45/14
PERFORMING OPERATIONS; TRANSPORTING
B29C45/261
PERFORMING OPERATIONS; TRANSPORTING
B29C45/0046
PERFORMING OPERATIONS; TRANSPORTING
B01D39/1692
PERFORMING OPERATIONS; TRANSPORTING
B29C45/2628
PERFORMING OPERATIONS; TRANSPORTING
B01D29/33
PERFORMING OPERATIONS; TRANSPORTING
B01D29/112
PERFORMING OPERATIONS; TRANSPORTING
B29C2045/0027
PERFORMING OPERATIONS; TRANSPORTING
International classification
B01D29/11
PERFORMING OPERATIONS; TRANSPORTING
B01D39/16
PERFORMING OPERATIONS; TRANSPORTING
B29C45/14
PERFORMING OPERATIONS; TRANSPORTING
B01D35/00
PERFORMING OPERATIONS; TRANSPORTING
B01D29/33
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A tubular mesh filter has a first ring-shaped portion formed in one end side of a tubular filter portion that filters out a foreign object from a fluid and a second ring-shaped portion formed in the other end side of the filter portion. The first and second ring-shaped portions are thicker than the filter portion. The first and second ring-shaped portions and the filter portion are injection-molded in an integral manner by initially injecting molten resin into a first cavity portion used to shape the first ring-shaped portion, flowing the molten resin filled in the first cavity portion evenly to a second cavity portion used to shape the filter portion, and supplying the molten resin filled in the second cavity portion to a third cavity portion used to shape the second ring-shaped portion.
Claims
1. A tubular mesh filter comprising: a tubular filter portion configured to filter out a foreign object from a fluid; a first ring-shaped portion formed along a circumferential direction of the filter portion at a first end of a center axis of the filter portion; and a second ring-shaped portion formed along the circumferential direction of the filter portion at a second end of the center axis of the filter portion, wherein at least one of the first and second ring-shaped portions is thicker than the filter portion, wherein the filter portion has an inner circumferential portion and an outer circumferential portion, wherein the inner circumferential portion of the filter portion includes a plurality of vertical crosspieces that extend along the center axis and are arranged at equal intervals around the center axis with an identical shape, wherein the outer circumferential portion of the filter portion includes a plurality of horizontal crosspieces that extend along an outer circumference of the inner circumferential portion and are arranged at equal intervals in the center axis direction with an identical shape, and intersections between the horizontal crosspieces and the vertical crosspieces are integral with the vertical crosspieces, wherein openings that allow passing of the fluid are in a part of the filter portion other than the intersections between the horizontal crosspieces and the vertical crosspieces, and wherein the first ring-shaped portion, the second ring-shaped portion, and the filter portion are all integrated together of a resin material to have a one-piece monolithic construction.
2. The tubular mesh filter according to claim 1, wherein the first ring-shaped portion has a gate separation trace therein.
Description
BRIEF DESCRIPTION OF DRAWINGS
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DETAILED DESCRIPTION OF EMBODIMENTS
(15) Embodiments of the present invention will now be described with reference to the accompanying drawings.
(16)
(17) As illustrated in
(18) The first and second ring-shaped portions 4 and 5 are annular members formed along an opening edge of the filter portion 2. The first and second ring-shaped portions 4 and 5 protrude radially outward of the filter portion 2 like a flange and are thicker than the filter portion 2.
(19) The filter portion 2 has an inner circumferential portion 6 located radially inward and an outer circumferential portion 7 formed integrally in an outer circumferential side of the inner circumferential portion 6. The inner circumferential portion 6 of the filter portion 2 includes a plurality of vertical crosspieces 8 extending along the center axis 3 and arranged at equal intervals around the center axis 3 with an identical shape, so that the first and second ring-shaped portions 4 and 5 are connected along the center axis 3. The outer circumferential portion 7 of the filter portion 2 includes a plurality of horizontal crosspieces 10 that extend along the outer circumference of the inner circumferential portion 6 and are arranged at the equal interval in the center axis 3 direction with an identical shape. Intersections between the horizontal and vertical crosspieces 10 and 8 are formed integrally with the vertical crosspieces 8. In addition, remaining parts of the filter portion 2 other than the intersections between the vertical crosspiece 8 and the horizontal crosspiece 10 serve as openings 11 that allow passing of a fluid. Note that, according to this embodiment, the vertical crosspiece 8 and the horizontal crosspiece 10 have a width w of 0.15 mm and a height h of 0.15 mm. In addition, the openings 11 have a rectangular shape having a side length L of 0.1 mm.
(20)
(21) As illustrated in
(22) The first mold 17 has a gate 23 opened to the first cavity portion 20. In addition, the second mold 18 has a separable slidable template 25 provided with a cavity hole 24 for forming a profile of the outer circumference of the cavity 13 on the joint surface 18a with the first mold 17. In this separable slidable template 25, a center pin 15 is inserted into the center of the cavity hole 24 to form the cavity 13 between the outer circumferential surface 16 of the center pin 15 and the inner surface of the cavity hole 24. In addition, this separable slidable template 25 includes a first slidable template 26 and a second slidable template 27 formed to bisect the cavity hole 24, so that the first and second slidable templates 26 and 27 can be separated from each other and slide oppositely (+X and X directions in
(23) As illustrated in
(24) In the mold 12 configured as described above, if the molten resin is injected from the gate 23 to the first cavity portion 20 of the cavity 13 while the first and second slidable templates 26 and 27 confront each other, and the first and second molds 17 and 18 are combined with each other (mold clamping) as illustrated in
(25) In the mold 12 illustrated in
(26) As described above, in the tubular mesh filter 1 according to this embodiment, the filling finish portion of the injection molding corresponds to the second ring-shaped portion 5, and the filter portion 2 does not serve as the filling finish portion, in the process of injection molding. Therefore, it is not necessary to provide a degassing resin reservoir at least in the filter portion 2. Accordingly, it is possible to increase the number of openings 11 in the filter portion 2 and increase the open area ratio of the filter portion 2, compared to the tubular mesh filter provided with the degassing resin reservoir in the filter portion 2. In addition, the tubular mesh filter 1 according to this embodiment is not provided with the degassing resin reservoir 126 and a plurality of ribs 113, compared to the tubular mesh filter 110 of the second background art. Accordingly, it is possible to increase the number of openings 11 in the filter portion 2 and increase the open area ratio of the filter portion.
(27) Note that the first and second ring-shaped portions 4 and 5 of the tubular mesh filter 1 according to this embodiment have the identical shape. Therefore, the gate 23 may also be opened in the cavity portion used to shape the second ring-shaped portion 5.
(28) Although the first and second ring-shaped portions 4 and 5 of the tubular mesh filter 1 according to this embodiment are thicker than the filter portion 2, the present invention is not limited thereto. Instead, at least one of the first and second ring-shaped portions 4 and 5 may be thicker than the filter portion 2. In addition, the gate 23 may be opened to the cavity portion used to shape the one of the first and second ring-shaped portions 4 and 5 thicker than the filter portion 2.
(29) Although the width w and the height h of the vertical and horizontal crosspieces 8 and 10 and the dimension of the opening 11 of the tubular mesh filter 1 according to this embodiment have been described by way of example, the present invention is not limited thereto. They may be set depending on required filter performance.
(30) Although both ends in an axial direction of the tubular mesh filter 1 according to this embodiment are opened, the present invention is not limited thereto. Alternatively, a lid may be formed in one end side of the axial direction, and a new filter portion may also be formed in one end side of the axial direction.
(31) Although the vertical and horizontal crosspieces 8 and 10 of the tubular mesh filter 1 according to this embodiment have a square cross-sectional shape by way of example, the present invention is not limited thereto. The vertical and horizontal crosspieces 8 and 10 may have a rectangular shape having different width w and height h.
(32) Although the opening 11 of the tubular mesh filter 1 according to this embodiment has a square shape by way of example, the present invention is not limited thereto. The opening 11 may have a rectangular shape.
(33) Although only a single pin-point gate 23 for opening the first cavity portion 20 is provided in the mold 12 for injection molding of the tubular mesh filter 1 according to this embodiment, the present invention is not limited thereto. Two or more pin-point gates 23 may also be provided. In addition, without limiting to the pin-point gate 23, any type of gates such as a ring gate or a side gate may also be employed.
REFERENCE SIGNS AND NUMERALS
(34) 1 tubular mesh filter, 2 filter portion, 3 center axis, 4 first ring-shaped portion, 5 second ring-shaped portion, 6 inner circumferential portion, 7 outer circumferential portion, 8 vertical crosspiece, 10 horizontal crosspiece, 11 opening, 12 mold, 20 first cavity portion, 21 second cavity portion, 22 third cavity portion