US3542676A - Self-cleaning screen basket - Google Patents

Self-cleaning screen basket Download PDF

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US3542676A
US3542676A US852062A US3542676DA US3542676A US 3542676 A US3542676 A US 3542676A US 852062 A US852062 A US 852062A US 3542676D A US3542676D A US 3542676DA US 3542676 A US3542676 A US 3542676A
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rods
basket
screen
shaped
slots
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US852062A
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Edward N Colburn
Henry E Benson
Rueben E Paulson
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SIGNAL ENVIRONMENTAL SYSTEMS Inc A CORP OF
Universal Oil Products Co
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Universal Oil Products Co
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01DSEPARATION
    • B01D33/00Filters with filtering elements which move during the filtering operation
    • B01D33/06Filters with filtering elements which move during the filtering operation with rotary cylindrical filtering surfaces, e.g. hollow drums
    • B01D33/11Filters with filtering elements which move during the filtering operation with rotary cylindrical filtering surfaces, e.g. hollow drums arranged for outward flow filtration
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01DSEPARATION
    • B01D33/00Filters with filtering elements which move during the filtering operation
    • B01D33/27Filters with filtering elements which move during the filtering operation with rotary filtering surfaces, which are neither cylindrical nor planar, e.g. helical surfaces
    • B01D33/275Filters with filtering elements which move during the filtering operation with rotary filtering surfaces, which are neither cylindrical nor planar, e.g. helical surfaces using contiguous impervious surfaces
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01DSEPARATION
    • B01D2201/00Details relating to filtering apparatus
    • B01D2201/02Filtering elements having a conical form

Definitions

  • FIGURE 5 INVENTOR: EDWARD N. COLBURN HENRY E. BENSON w RUEBEN E. PAULSON A T TORNE Y5 nited States Patent Office 3,542,676 SELF-CLEANING SCREEN BASKET Edward N. Colburn, Minneapolis, Henry E. Benson, Long Lake, and Rueben E. Paulson, Fridley, Minn., assignors to Universal Oil Products Company, Des Plaines, III., a corporation of Delaware Continuation-impart of application Ser. No. 787,486,
  • This invention relates to an improved form of a selfcleaning screen basket used primarily in centrifugal driers.
  • the screen basket has a configuration of a truncated cone.
  • the cone-shaped screen basket is clamped or bolted into a centrifuge.
  • the basket is spun about its axis of rotation, while the material to be dried is fed into the interior of the small end of the basket. Centrifugal force causes water and finer materials to flow radially outwardly passing through the screen, While the remaining sludge is driven longitudinally through the basket because of its expanding diameter.
  • the panel screen basket heretofore used is made of many segments of self-cleaning, continuous slot screens welded together in a conical shape.
  • the straight continuous slots of the screen segments are arranged so that they run primarily in a longitudinal or axial direction. It has been found that greatest screening efliciency can be obtained when the slots run in this direction as opposed to a circumferential direction; i.e., rotation of the screen basket about its axis of rotation will, in effect, decrease the slot width because material flow will have a velocity direction at nearly right angles to the slots.
  • the panel type screen basket does have disadvantages inherent in its configuration. Since it is made of many flat screens reformed into a conical shape, the direction of the slots will necessarily be varied; some will be more axial than others. Hence, the screening efficiency will not be as great as a screen where the slots are running in a true, axial direction.
  • this invention is a comically-shaped, selfcleaning screen basket, comprising a plurality of Iongitudinal closely spaced apart rectangular-shaped rods that are arranged along the periphery of a truncated cone, one base side of each rectangular-shaped rod tangent along its entire length to said truncated cone, said rods forming a plurality of V slots, the cross-sectional area of said V slots increasing in the outward radial direction, said rectangular-shaped rods being tapered along their entire length, said taper being related to the changing diameter of the resulting conical screen so that the slot openings along the inner surface of the basket are of a programmed width throughout their entire length, said rectangular-shaped rods being made rigid by a support Wire means Wound around said longitudinal rectangularshaped rods and fused to said rods at the junctions of said rods and said support Wire.
  • the screen basket can be assembled by various methods, as for example, one means will consist of clamping the rectangular-shaped rods around a form at predetermined distances apart and winding and fusing a support wire to each junction of rod and wire.
  • the kind of material used in the construction of the basket will depend upon its ultimate use and on the fusing capabilities of the material used.
  • the fusing will normally be done by an electrical resistance means or by an ultra-sonic means. Except for the initial material placement, most of the operation herein described is fully automatic and is therefore quite economical.
  • the V slots formed by the rods have their narrow opening on the inner periphery of the screen basket, thereby establishing self-cleaning slots.
  • the rectangular-shaped rods are tapered, the taper being programed so as to form a uniform slot size when the rods are placed axially tangent to the cone.
  • the screen basket heretofore described is cone shaped and the V slots are of uniform size should not be a limiting factor in respect to this improvement, since a tapered slot is also contemplated within the scope of this improvement. All the slots are axial, thereby satisfying the basic object requirement of high screening efliciency. In addition, no reshaping or rewelding is required to form the resulting screening; therefore, the possibility of a structural breakdown is minimized.
  • the rectangularshaped rods are provided with projections or other similar spacers around their sloping sides. These projections will establish spacing means to provide for initial placement of the rods on the form during assembly.
  • the tapered, rectangular-shaped rods may be formed in various ways. Typically roll-forming or molding is the operation employed. However, in a unique embodiment, the rectangular-shaped rodsl are made in T shape, having a rib section perpendicular to a substantially thin rectangular-shaped base section. This permits the taper shape to be formed by a blanking operation.
  • FIG. 1 is a partial elevational type view of an embodiment of the conically-shaped screen basket with a multiplicity of V slots formed to increase in area radially outwardly, as well as having a constant slot opening.
  • FIG. 2 is a top view of the embodiment of FIG. 1.
  • FIG. 3 is a schematic cross-sectional view of a slot used in a screen not having the proper form of V slot and showing material bridging characteristics of such slots.
  • FIG. 4 is a schematic elevational view of a rectangularshaped rod embodiment having a T for welding purposes and strength.
  • FIG. 5 is a schematic end view of the embodiment of FIG. 4.
  • FIG. 6 is a schematic elevational view of a rectangularshaped rod embodiment having small spaced projection means to provide for spacing between rods.
  • FIGS. 1 and 2 of the accompanying drawing there is shown a screen basket 1 shaped as a truncated cone. While FIGS. 1 and 2 illustrate the preferred shape of the basket as a truncated right circular cone, it is contemplated that other geometric variations may be suitable for a screen basket.
  • the circular areas of the cone may be made elliptical, or instead of a right angled cone, the end areas may be oblique to the axis of rotation. It is also possible to vary the relationship of the end areas to the length of the cone. A more pronounced cone shape may be formed by having substantially different sized end areas, while a shape of a cylinder may be approached by equating their size.
  • the basket 1 is made of a plurality of rectangularshaped rods 4 that are spaced around the surface of a cone in such a manner that they are longitudinally tangent to the cone along their entire length.
  • the rectangularshaped rods 4 are placed to form V slots 5 with the narrow opening 6 of the slots on the inner periphery of the resulting basket 1.
  • V slots serve as self-cleaning slots when material fiow initiates from the interior zone 7. In the event that a particle temporarily catches itself at one point along a slot, other particles will tend to free it, because the slots are continuous along their entire length, and there are no barriers to wedge them in place, as evidenced in perforated type screens.
  • the rectangular-shaped rods 4 are also tapered along their entire length, the tapers being indicated by the change in dimensions 12 and 13.
  • the tapering of the bars is only done in the lateral or tangential direction, leaving the height '14 uniform over the entire length.
  • the uniform height should not be a limiting factor with respect to this invention, since an alternative embodiment with tapered height is contemplated within the scope of this invention, albeit, such a bar would be structurally weaker than the bars in the present embodiment.
  • the tapering of the rods 4 is related to the changing diameter characteristic to the cone.
  • the relationship is such that the decreasing size of the bars coupled with the decreasing diameter of the screen will establish a slot opening 6 of constant size along the entire length of the screen. Since in the preferred embodiment the heights of the rods 4 are uniform, the volume or cross-sectional area of the slots 5 will also be uniform along the entire length of screen. This relationship establishes parameters around which a durable screen, with constant slot size, can be manufactured. On the other hand, it is quite evident that if design considerations call for varying slot openings in a screen basket, a taper can be programmed to establish that particular slot opening.
  • the rectangular-shaped rods 4 are maintained in a rigid manner by a support wire 15.
  • the Wire 15 has been wound helically around the rods 4 and attached to the rods at each junction through a fusing means.
  • the method of fusing or Welding will necessarily depend upon the type of material used in forming the screen, i.e., a metallic screen will be susceptible to electrical resistance welding while a plastic screen will be susceptible to ultra-sonic fusing.
  • the rods 4 be made rigid by a series of wires wound in a circular, as opposed to a helical manner.
  • the method by which the screen can be assembled is generally known and was explained in some detail in the earlier filed co-pending application.
  • the method includes, placing of the rods 4 around a comically-shaped mandrel or form, clamping the rods 4 in position, rotating the mandrel about its axis of rotation, and winding and fusing the support wire 15 around the rods 4.
  • the tapered rods used to form the screen basket can be formed in various ways. If the basket is to be made of a plastic, injection molding is best suitable for forming a tapered rod. A steel wire may be roll-formed into the taper shape. It is also possible to form a T rectangularshaped rod as shown in FIGS. 4 and 5. The T shape of rod 26 gives the rod the needed radial strength and in addition allows the taper to be formed by relatively simple blanking techniques.
  • the rectangular-shaped rods will be maintained at a predetermined distance apart from each other during the assembly operation by providing a slotted mandrel and clamp means, in which the rods are placed.
  • a novel rod design will eliminate the need for providing for a slotted mandrel or clamp means.
  • the embodiment of this rod is illustrated in FIG. 6.
  • suitable projections 22 are located at predetermined distances along the length of the rectangular-shaped rods 28. These projections are located on one side of each rod and at the same point; however, alternatively, projections may be located on both sides.
  • the support wire need not be a continuous helical winding, since it might well be broken into a series of discontinuous strips or sections.
  • a conically-shaped self-cleaning screen basket comprising a plurality of longitudinal closely spaced apart rectangular-shaped rods arranged along the periphery of a truncated cone, the base side of each rectangularshaped rod being tangent along its entire length to said truncated cone, said rods forming a plurality of V slots, the cross-sectional area of said V slots increasing in the outward radial direction, said rectangular-shaped rods related to the changing diameter of the resulting conical being tapered along their entire length, said taper being screen so that the slot openings along the inner surface of the basket are of a programmed Width throughout their entire length, said rectangular-shaped rods being made rigid by a support wire means Wound around said longitudinal rectangular-shaped rods and fused to said rods at the junctions of said rods and said support wire.
  • the comically-shaped screen basket of claim 1 further characterized in that the slot openings along the inner periphery of the basket are of a constant width throughout their entire length.
  • the comically-shaped screen basket of claim -1 further characterized in that the support wire means is wound helically around said longitudinal rectangularshaped rods in a continuous manner and is fused to said rods at each junction of said rods and said support wire.
  • the conically-shaped screen basket of claim 1 further characterized in that the rectangular-shaped rods have a cross-sectional shape comprising a substantially flat rectangular-shaped base section and a thin rib section perpendicular to said base section.
  • the comically-shaped screen basket of claim 1 further characterized in that the rectangular-shaped rods have spacing means located at predetermined distances along their length, whereby the said rods can be spaced apart at a predetermined distance during assembly operations.

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Description

v 1970 U E. N. COLBURN E G 3,542,676
SELF-CLEANING SCREEN BASKET Filed Aug. 21, 1969 $14 6 v i FIGURE 2 FIGURE I FIGURE 3 l5 sh H3 FIGURE 4 26 FIGURE 6 FIGURE 5 INVENTOR: EDWARD N. COLBURN HENRY E. BENSON w RUEBEN E. PAULSON A T TORNE Y5 nited States Patent Office 3,542,676 SELF-CLEANING SCREEN BASKET Edward N. Colburn, Minneapolis, Henry E. Benson, Long Lake, and Rueben E. Paulson, Fridley, Minn., assignors to Universal Oil Products Company, Des Plaines, III., a corporation of Delaware Continuation-impart of application Ser. No. 787,486,
Dec. 27, 1968. This application Aug. 21, 1969, Ser.
No. 852,062 The portion of the term of the patent subsequent to Jan. 27, 1987, has been disclaimed Int. Cl. B01d 35/22 U.S. Cl. 210-380 5 Claims ABSTRACT OF THE DISCLOSURE A self-cleaning conical shaped screen basket adaptable for centrifuge operations which embodies a slotted construction to provide a self-cleaning V slot that enlarges in the outward radial direction. The slot forming, rectangular-shaped rods are tapered so that the resulting slot opening on the inner periphery of the screen is uniform in width throughout. In the preferred embodiment, a support wire is Wound continuously around the rods and fused to them so as to hold them in a rigid manner.
This application is a continuation-in-part of our present co-pending application Ser. No. 787,486, filed Dec. 27, 1968, now U.S. Patent No. 3,491,888. r
This invention relates to an improved form of a selfcleaning screen basket used primarily in centrifugal driers.
In its preferred form, the screen basket has a configuration of a truncated cone. In a typical application, such as coal dewatering, the cone-shaped screen basket is clamped or bolted into a centrifuge. During the operation of the centrifuge, the basket is spun about its axis of rotation, while the material to be dried is fed into the interior of the small end of the basket. Centrifugal force causes water and finer materials to flow radially outwardly passing through the screen, While the remaining sludge is driven longitudinally through the basket because of its expanding diameter.
Heretofore, there have been basically three types of conical screen baskets available for centrifuge applications: the Woven cloth basket, the perforated metal basket, and the rigid panel screen basket, which is made of segments of screen similar ,to the type described in Johnson Patent 2,046,458. The latter has been the preferred type of basket because of its high screening efficiency and long life characteristics.
Briefly, the panel screen basket heretofore used is made of many segments of self-cleaning, continuous slot screens welded together in a conical shape. The straight continuous slots of the screen segments are arranged so that they run primarily in a longitudinal or axial direction. It has been found that greatest screening efliciency can be obtained when the slots run in this direction as opposed to a circumferential direction; i.e., rotation of the screen basket about its axis of rotation will, in effect, decrease the slot width because material flow will have a velocity direction at nearly right angles to the slots.
On the other hand, the panel type screen basket does have disadvantages inherent in its configuration. Since it is made of many flat screens reformed into a conical shape, the direction of the slots will necessarily be varied; some will be more axial than others. Hence, the screening efficiency will not be as great as a screen where the slots are running in a true, axial direction.
In addition, manufacturing panel screen baskets re- 3,542,676 Patented Nov. 24, 1970 quires a cutting, a reshaping and a welding operation, all operations to take place after the original screen segments have been assembled and welded. These operations are time consuming and also introduce possible points of weakness into the structure of the basket.
It is thus a principal object of this invention to provide for a rigid Wire screen basket of the self-cleaning type, having high screening efliciency and long life characteristics and, in addition, being adaptable to economical manufacturing steps.
More specifically, it is an object of this invention to provide for a sonically-shaped screen basket suitable for centrifuge applications, having self-cleaning slots adaptable for in-to-out flow, the self-cleaning slots all running in a true axial direction.
It is a further object of this invention to provide for a screen basket that can be made by relatively simple operations using conventional manufacturing methods.
Broadly, this invention is a comically-shaped, selfcleaning screen basket, comprising a plurality of Iongitudinal closely spaced apart rectangular-shaped rods that are arranged along the periphery of a truncated cone, one base side of each rectangular-shaped rod tangent along its entire length to said truncated cone, said rods forming a plurality of V slots, the cross-sectional area of said V slots increasing in the outward radial direction, said rectangular-shaped rods being tapered along their entire length, said taper being related to the changing diameter of the resulting conical screen so that the slot openings along the inner surface of the basket are of a programmed width throughout their entire length, said rectangular-shaped rods being made rigid by a support Wire means Wound around said longitudinal rectangularshaped rods and fused to said rods at the junctions of said rods and said support Wire. By referring to the rods as rectangular-shaped, it is not intended to limit the proportions of the dimensions of their cross-sections to any one proportion, and rectangular also is meant to encompass the term square.
The screen basket can be assembled by various methods, as for example, one means will consist of clamping the rectangular-shaped rods around a form at predetermined distances apart and winding and fusing a support wire to each junction of rod and wire. The kind of material used in the construction of the basket will depend upon its ultimate use and on the fusing capabilities of the material used. The fusing will normally be done by an electrical resistance means or by an ultra-sonic means. Except for the initial material placement, most of the operation herein described is fully automatic and is therefore quite economical.
The V slots formed by the rods have their narrow opening on the inner periphery of the screen basket, thereby establishing self-cleaning slots. In addition, in its preferred form, the rectangular-shaped rods are tapered, the taper being programed so as to form a uniform slot size when the rods are placed axially tangent to the cone. However, the fact that the screen basket heretofore described is cone shaped and the V slots are of uniform size should not be a limiting factor in respect to this improvement, since a tapered slot is also contemplated within the scope of this improvement. All the slots are axial, thereby satisfying the basic object requirement of high screening efliciency. In addition, no reshaping or rewelding is required to form the resulting screening; therefore, the possibility of a structural breakdown is minimized.
In another embodiment of the basket the rectangularshaped rods are provided with projections or other similar spacers around their sloping sides. These projections will establish spacing means to provide for initial placement of the rods on the form during assembly.
The tapered, rectangular-shaped rods may be formed in various ways. Typically roll-forming or molding is the operation employed. However, in a unique embodiment, the rectangular-shaped rodsl are made in T shape, having a rib section perpendicular to a substantially thin rectangular-shaped base section. This permits the taper shape to be formed by a blanking operation.
Reference to the accompanying drawing and to the following description will serve to more fully illustrate the design and construction of the various embodiments of the present invention, as well as to assist in pointing out advantageous features in connection therewith.
DESCRIPTION OF THE DRAWING FIG. 1 is a partial elevational type view of an embodiment of the conically-shaped screen basket with a multiplicity of V slots formed to increase in area radially outwardly, as well as having a constant slot opening.
FIG. 2 is a top view of the embodiment of FIG. 1.
FIG. 3 is a schematic cross-sectional view of a slot used in a screen not having the proper form of V slot and showing material bridging characteristics of such slots.
FIG. 4 is a schematic elevational view of a rectangularshaped rod embodiment having a T for welding purposes and strength.
FIG. 5 is a schematic end view of the embodiment of FIG. 4.
FIG. 6 is a schematic elevational view of a rectangularshaped rod embodiment having small spaced projection means to provide for spacing between rods.
Referring now particularly to FIGS. 1 and 2 of the accompanying drawing, there is shown a screen basket 1 shaped as a truncated cone. While FIGS. 1 and 2 illustrate the preferred shape of the basket as a truncated right circular cone, it is contemplated that other geometric variations may be suitable for a screen basket. As examples, the circular areas of the cone may be made elliptical, or instead of a right angled cone, the end areas may be oblique to the axis of rotation. It is also possible to vary the relationship of the end areas to the length of the cone. A more pronounced cone shape may be formed by having substantially different sized end areas, while a shape of a cylinder may be approached by equating their size.
The basket 1 is made of a plurality of rectangularshaped rods 4 that are spaced around the surface of a cone in such a manner that they are longitudinally tangent to the cone along their entire length. The rectangularshaped rods 4 are placed to form V slots 5 with the narrow opening 6 of the slots on the inner periphery of the resulting basket 1. These V slots serve as self-cleaning slots when material fiow initiates from the interior zone 7. In the event that a particle temporarily catches itself at one point along a slot, other particles will tend to free it, because the slots are continuous along their entire length, and there are no barriers to wedge them in place, as evidenced in perforated type screens. The possibility of a particle catching in the V slot is further reduced, since at any one location along a slot entrance or opening, there are only two lines or points 8 and 9 of contact for the particle to catch and no depressed zone 10 to permit particle bridging buildup 11, such as shown in FIG. 3. Actually, when any particles do pass through the narrow slots, then they will continue outward in the enlarging V opening to preclude any blocking.
In the preferred embodiment, it is to be noted, that the rectangular-shaped rods 4 are also tapered along their entire length, the tapers being indicated by the change in dimensions 12 and 13. The tapering of the bars is only done in the lateral or tangential direction, leaving the height '14 uniform over the entire length. The uniform height should not be a limiting factor with respect to this invention, since an alternative embodiment with tapered height is contemplated within the scope of this invention, albeit, such a bar would be structurally weaker than the bars in the present embodiment.
The tapering of the rods 4 is related to the changing diameter characteristic to the cone. Preferably, the relationship is such that the decreasing size of the bars coupled with the decreasing diameter of the screen will establish a slot opening 6 of constant size along the entire length of the screen. Since in the preferred embodiment the heights of the rods 4 are uniform, the volume or cross-sectional area of the slots 5 will also be uniform along the entire length of screen. This relationship establishes parameters around which a durable screen, with constant slot size, can be manufactured. On the other hand, it is quite evident that if design considerations call for varying slot openings in a screen basket, a taper can be programmed to establish that particular slot opening.
The rectangular-shaped rods 4 are maintained in a rigid manner by a support wire 15. In the embodiment of FIG. 1, the Wire 15 has been wound helically around the rods 4 and attached to the rods at each junction through a fusing means. The method of fusing or Welding will necessarily depend upon the type of material used in forming the screen, i.e., a metallic screen will be susceptible to electrical resistance welding while a plastic screen will be susceptible to ultra-sonic fusing. It is also contemplated that the rods 4 be made rigid by a series of wires wound in a circular, as opposed to a helical manner.
The method by which the screen can be assembled is generally known and was explained in some detail in the earlier filed co-pending application. The method includes, placing of the rods 4 around a comically-shaped mandrel or form, clamping the rods 4 in position, rotating the mandrel about its axis of rotation, and winding and fusing the support wire 15 around the rods 4.
The tapered rods used to form the screen basket can be formed in various ways. If the basket is to be made of a plastic, injection molding is best suitable for forming a tapered rod. A steel wire may be roll-formed into the taper shape. It is also possible to form a T rectangularshaped rod as shown in FIGS. 4 and 5. The T shape of rod 26 gives the rod the needed radial strength and in addition allows the taper to be formed by relatively simple blanking techniques.
Preferably the rectangular-shaped rods will be maintained at a predetermined distance apart from each other during the assembly operation by providing a slotted mandrel and clamp means, in which the rods are placed. A novel rod design will eliminate the need for providing for a slotted mandrel or clamp means. The embodiment of this rod is illustrated in FIG. 6. In this embodiment, suitable projections 22 are located at predetermined distances along the length of the rectangular-shaped rods 28. These projections are located on one side of each rod and at the same point; however, alternatively, projections may be located on both sides. When the rods of this embodiment are placed on the mandrel between the clamp means, the rods will automatically be spaced apart at a predetermined distance.
Although I have described the present invention with a certain degree of particularity, it is understood that various minor modifications may, of course, be made in the details of construction, and the combination and arrangement of parts without departing from the spirit and the scope of the invention for example, the support wire need not be a continuous helical winding, since it might well be broken into a series of discontinuous strips or sections.
We claim as our invention:
1. A conically-shaped self-cleaning screen basket comprising a plurality of longitudinal closely spaced apart rectangular-shaped rods arranged along the periphery of a truncated cone, the base side of each rectangularshaped rod being tangent along its entire length to said truncated cone, said rods forming a plurality of V slots, the cross-sectional area of said V slots increasing in the outward radial direction, said rectangular-shaped rods related to the changing diameter of the resulting conical being tapered along their entire length, said taper being screen so that the slot openings along the inner surface of the basket are of a programmed Width throughout their entire length, said rectangular-shaped rods being made rigid by a support wire means Wound around said longitudinal rectangular-shaped rods and fused to said rods at the junctions of said rods and said support wire.
2. The comically-shaped screen basket of claim 1 further characterized in that the slot openings along the inner periphery of the basket are of a constant width throughout their entire length.
3. The comically-shaped screen basket of claim -1 further characterized in that the support wire means is wound helically around said longitudinal rectangularshaped rods in a continuous manner and is fused to said rods at each junction of said rods and said support wire.
4. The conically-shaped screen basket of claim 1 further characterized in that the rectangular-shaped rods have a cross-sectional shape comprising a substantially flat rectangular-shaped base section and a thin rib section perpendicular to said base section.
5. The comically-shaped screen basket of claim 1 further characterized in that the rectangular-shaped rods have spacing means located at predetermined distances along their length, whereby the said rods can be spaced apart at a predetermined distance during assembly operations.
References Cited UNITED STATES PATENTS 2,907,465 10/1959 Heckmann et a1. 210380 OTHER REFERENCES German printed application 1,094,191, Dec. 1, 1960.
JAMES L. DECESAR'E, Primary Examiner US. Cl. X.R. 210-497 UNITED STATES PATENT OFFICE CERTIFICATE OF CORRECTION Patent No. 5f542fi675L Dated November 24 1970 Inventor(s) Edward N. Colburn et a1 It is certified that error appears in the above-identified patent and that said Letters Patent are hereby corrected as shown below:
Column 3, line 6, "rodsl" should read rods Column lines. 4 and 5, "related to the changing diameter of the resulting conical being tapered along their entire length, said taper being" should read being tapered along their entire length, said taper being related to the changing diameter of the resulting conical Signed and sealed this 13th day of April 1971.
(SEAL) Attest:
EDWARD M FLETCHER ,JR WILLIAM E SCHUYLER JR Attesting Officer Commissioner of Patents
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Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3684099A (en) * 1970-07-21 1972-08-15 Carl T Kiebach Assembly element for press
WO1991005502A1 (en) * 1989-10-19 1991-05-02 Jeffrey Fiala Rendered fat separator
US6461506B1 (en) * 1999-03-31 2002-10-08 Delphi Technologies, Inc. Filter
KR20170092559A (en) * 2014-12-03 2017-08-11 하이댁 프로세스 테크놀로지 게엠바하 Filter device, hydraulic system and backwashing method

Citations (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2907465A (en) * 1956-09-18 1959-10-06 Kloeckner Humboldt Deutz Ag Screening basket for oscillating centrifuge

Patent Citations (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2907465A (en) * 1956-09-18 1959-10-06 Kloeckner Humboldt Deutz Ag Screening basket for oscillating centrifuge

Cited By (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3684099A (en) * 1970-07-21 1972-08-15 Carl T Kiebach Assembly element for press
WO1991005502A1 (en) * 1989-10-19 1991-05-02 Jeffrey Fiala Rendered fat separator
US6461506B1 (en) * 1999-03-31 2002-10-08 Delphi Technologies, Inc. Filter
KR20170092559A (en) * 2014-12-03 2017-08-11 하이댁 프로세스 테크놀로지 게엠바하 Filter device, hydraulic system and backwashing method
US20170333816A1 (en) * 2014-12-03 2017-11-23 Hydac Process Technology Gmbh Filter device, hydraulic system and backwashing method
US10905980B2 (en) * 2014-12-03 2021-02-02 Hydac Process Technology Gmbh Filter device, hydraulic system and backwashing method

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