Fluid handling device and method
09848755 · 2017-12-26
Assignee
Inventors
Cpc classification
B32B2405/00
PERFORMING OPERATIONS; TRANSPORTING
B32B2250/44
PERFORMING OPERATIONS; TRANSPORTING
B32B27/304
PERFORMING OPERATIONS; TRANSPORTING
Y10T428/2457
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
B32B2307/714
PERFORMING OPERATIONS; TRANSPORTING
B32B2307/726
PERFORMING OPERATIONS; TRANSPORTING
B32B2262/04
PERFORMING OPERATIONS; TRANSPORTING
B32B3/26
PERFORMING OPERATIONS; TRANSPORTING
B32B3/08
PERFORMING OPERATIONS; TRANSPORTING
B32B5/18
PERFORMING OPERATIONS; TRANSPORTING
B32B25/04
PERFORMING OPERATIONS; TRANSPORTING
B32B2307/718
PERFORMING OPERATIONS; TRANSPORTING
B32B3/085
PERFORMING OPERATIONS; TRANSPORTING
B32B3/06
PERFORMING OPERATIONS; TRANSPORTING
B32B2307/3065
PERFORMING OPERATIONS; TRANSPORTING
B32B2535/00
PERFORMING OPERATIONS; TRANSPORTING
A61B50/10
HUMAN NECESSITIES
B08B5/04
PERFORMING OPERATIONS; TRANSPORTING
B32B2307/54
PERFORMING OPERATIONS; TRANSPORTING
A47G27/0206
HUMAN NECESSITIES
Y10T428/24479
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
B32B3/30
PERFORMING OPERATIONS; TRANSPORTING
International classification
B32B3/30
PERFORMING OPERATIONS; TRANSPORTING
B08B5/04
PERFORMING OPERATIONS; TRANSPORTING
A61M1/00
HUMAN NECESSITIES
B32B5/02
PERFORMING OPERATIONS; TRANSPORTING
B32B5/18
PERFORMING OPERATIONS; TRANSPORTING
B32B25/04
PERFORMING OPERATIONS; TRANSPORTING
B32B27/30
PERFORMING OPERATIONS; TRANSPORTING
B32B3/06
PERFORMING OPERATIONS; TRANSPORTING
B32B3/08
PERFORMING OPERATIONS; TRANSPORTING
B32B3/26
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A device and method for handling fluids released during a procedure employs a floormat with opposing surfaces. The floormat is formed, at least in part, of compressible and resilient material. An absorbent sheet is attached to one of the opposing surfaces of the floormat. At least part of the absorbent sheet is stacked to extend peripherally beyond the floormat. The floormat and absorbent sheet are placed where a user is expected to stand during the procedure, and are stacked with at least part of the absorbent sheet extending beyond the floormat. A user stands atop the floormat and absorbent sheet during at least part of the procedure. During the procedure, fluids that fall onto the absorbent sheet are absorbed into it. The floormat and absorbent sheet are vacated and discarded before starting another procedure.
Claims
1. A device for handling fluids comprising: a floormat having an opposing pair of surfaces including a plurality of edges, a topside and an underside, and being formed, at least in part, of compressible and resilient material, said topside having a spaced plurality of channels feeding at least one gutter on a side of the gutter that has a height at least as great as the opposite side thereof, said channels being sized to avoid a risk of tripping, said topside having a central region and a border region, said central region occupying most of said topside, said central region between the channels having ridges with peaks with most of their lengths lying within an area that is substantially flat, said at least one gutter having at least one outlet for draining fluid from said gutter, said border region lying along said plurality of edges and encircling said central region, said gutter lying alongside a first one of said plurality of edges, portions of said border region spaced from said first one of said plurality of edges having an outwardly tapered perimeter and having a height no greater than that of the at least one gutter.
2. A device according to claim 1 wherein said at least one gutter is formed in said border region.
3. A device according to claim 1 wherein each of the channels have in the central region a sloping floor.
4. A device according to claim 1 wherein said border region on one or more sides of the floormat has an outwardly tapered perimeter, and is at least as wide as, said one or more gutters.
5. A device according to claim 4 wherein said at least one outlet comprises a spaced pair of outlets, drainage off said floormat being provided through one of said pair of outlets, the other one of said outlets being restricted from conducting fluid drainage.
6. A device according to claim 4 wherein said channels have a width of at most 0.5 inch.
7. A device according to claim 4 wherein said channels have a depth of at most 0.25 inch.
8. A device according to claim 1 wherein a predetermined portion of said border region lying along said first one of said plurality of edges is narrower than remaining portions of said border region that are spaced from said predetermined portion.
9. A device according to claim 1 adapted to cooperate with a source of suction, said floormat comprising: a fitting mounted at said at least one outlet and adapted to attach to said source of suction.
10. A device according to claim 9 comprising: porous material mounted at said fitting.
11. A device according to claim 10 wherein said porous material is a substance adapted to filter debris and reduce noise.
12. A device according to claim 11 wherein a predetermined portion of said border region lying along said first one of said plurality of edges is narrower than remaining portions of said border region that are spaced from said predetermined portion.
13. A device according to claim 12 wherein said border region on one or more sides of the floormat has an outwardly tapered perimeter, and is at least as wide as, said one or more gutters.
14. A device according to claim 1 wherein the at least one gutter over most of its length being free from obstruction that would prevent fluid from fully filling said gutter and forming a single stream that is exposed on top.
15. A device according to claim 1 comprising: an absorbent sheet attached to a given one of the opposing surfaces of said floormat, at least part of the absorbent sheet being stacked to extend peripherally beyond the floormat.
16. A device according to claim 15 wherein the absorbent sheet is stacked to extend peripherally beyond the floormat on three sides of the floormat.
17. A device according to claim 15 wherein the absorbent sheet is stacked to extend peripherally beyond the floormat on three sides of the floormat, the floormat and absorbent sheet being coterminous on a fourth side of the floormat.
18. A device according to claim 15 wherein the absorbent sheet has a fluid impermeable face and a fluid absorbing face.
19. A device according to claim 18 wherein the fluid impermeable face of the absorbent sheet is slip resistant, the fluid absorbing face being attached to the given one of the opposing surfaces of the floormat.
20. A device according to claim 19 wherein the absorbent sheet is stacked to extend peripherally beyond the floormat on three sides of the floormat.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) The above brief description as well as other objects, features and advantages of the present invention will be more fully appreciated by reference to the following detailed description of presently preferred but nonetheless illustrative embodiments in accordance with the present invention when taken in conjunction with the accompanying drawings, wherein:
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DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
(23) Referring to
(24) TABLE-US-00001 TABLE 1 GAUGE: 650 mils Tolerance (⅝ inch) +/−12 mils (+/−0.012 inch) WEIGHT/AREA: 128 oz/yd2 Tolerance (+/−5 oz./yd2 minimum) DENSITY: 17 lb/ft3 Tolerance ± 1 lb/ft3 HARDNESS: 40-50 Durometer Hardness ASTM D-2240-86 TENSILE 125 lb/in2 Tensile Strength., Die ‘C’ STRENGTH: minimum ASTM D-638-90 ELONGATION 130% Elongation @ 100%: ASTM D-638-90 TEAR STRENGTH: 30 lb/in2 Tear Strength minimum ASTM D-1004-90 FLAME Pass Federal Motor Vehicle Safety RESISTANCE: Standard 302 Flame Resistance FLAME Pass Methenamide Pill Test RESISTANCE: DOC FF 1-70 LIMITED OXYGEN >24% ASTM D-2863-77 INDEX: OPERATING 30° F.-110° F. Manufactured by an ISO TEMPERATURE 9001:2000 certified RANGE: company
(25) It is highly desirable to provide a mat 10 that is disposable and intended for a single use. Accordingly, the mat material need not be highly durable and wear-resistant. For such disposable models, wear resistant coatings are not contemplated. To keep mat 10 sanitary, it can be cleaned, disinfected or sterilized, as appropriate. Thereafter mat 10 can be rolled up or packaged flat in a plastic material before shipment.
(26) Mat 10 as shown is 36 inches long (0.9 m) and 17 inches (0.4 m) wide, although other overall dimensions are contemplated for other embodiments. Mat 10 has a central section 12 encircled by an annular, tapered apron 14. Apron 14 is about 3.5 inches (8.9 cm) and has a slope that ranges between about 4 degrees to 30 degrees.
(27) Central section 12 is crowned, that is, it slopes downwardly in every direction away from its apex 20, which is located at the center of the mat 10. In one embodiment the radius of curvature along the longitudinal centerline of the central section 12 is about 260 inches (6.6 m). In that embodiment the radius of curvature along a transverse centerline is about 58 inches (1.5 m). The advantages of crowning as described hereinafter will occur when the radius of curvature in central region 12 is less than a maximum of 500 inches (1.3 m). In one embodiment central section 12 has a thickness or height of 0.75 inch (1.9 cm) at its apex 20. It is desirable to have the height or thickness at apex 20 in the range of 0.5 to 1.5 inches (1.3 to 3.8 cm). With a thickness at apex 20 of about 0.75 inch (1.9 cm), the height or thickness of the central section 12 at its perimeter may be about 0.35 inch (9 mm), but for various other embodiments it will be desirable to keep the thickness at the perimeter in a range of 0.2 to 0.6 inch (5 to 15 mm).
(28) The margin between central section 12 and apron 14 is marked by an optional, annular groove 16. The groove 16 runs parallel to the short sides and about 4 degrees to the long sides of mat 10 except at its rounded corners. Projecting outwardly and transversely from groove 16 across apron 14 are a number of channels 18. The width and depth of channels 18 are similar to that of groove 16, although they can be sized differently in other embodiments. In one embodiment channels 18 were 0.25 inch (6 mm) wide and 0.06 inch (1.5 mm) deep, although this dimension can vary in alternative embodiments. It is advantageous to have these channels 18 in a range of ⅛ through ½ inch (3 through 13 mm) wide and 0.03 to 0.25 inch (0.7 to 6 mm) deep. In most embodiments, central section 12 and apron 14 will be integral components that are molded at the same time to form a common core. A series of gutters 34, 36, 38, and 40, in apron 14 around central section 12 communicate with the distal end of channels 18 and may be fitted with an optional drain assembly, having a structure that will be described presently. Outlet gutter 42 communicates with the junction of gutters 40 and 36 and allows drainage off floormat 24. In some embodiments the outlet gutter can be positioned differently and more than one outlet gutter may be employed.
(29) A number of integral, molded suction cups 22 project from the underside of mat 10. In this embodiment suction cups 22 are molded simultaneously with the main body of the mat, that is, with central section 12 and apron 14. Suction cups 22 may be 0.5 to 1.5 inches (1.3 to 3.8 cm) in diameter, although other sizes are possible. In this embodiment three equidistant suction cups 22 are placed along the centerline on the underside of central section 12. On either side of this centerline two sets of four equidistant suction cups 22 are placed in lines parallel to the centerline to form a staggered, diamond pattern of suction cups. In other embodiments a different number of suction cups may be laid in a different pattern.
(30) In some embodiments, suction cups will not be employed but the underside of the mat will have a nonslip surface. As shown in phantom in
(31) Various embellishments and decorations are contemplated for mat 10. In keeping with customary colors for operating rooms, mat 10 can be colored blue either by incorporating a die or by applying a colored coating to the mat. In some embodiments, central section 12 and apron 14 may be colored differently. Also, advertising logos may be placed at various positions on mat 10. For example, a drug brand may be advertised in large letters on the central section 12.
(32) Referring to
(33) Referring to
(34) Outer border regions 26B, 26C and 26D are located to the outside of the gutters 134, 136, 138, and 140, which gutters are arranged similarly to the gutters of
(35) The floors of each of the channels 28 have a central peak 30 equidistant from the channel ends for dividing any fluids that enter the channels. The channels 28 are illustrated with a rectangular cross-section, although in other embodiments the cross-section may be semicircular, oval, polygonal, etc. Additionally, the width of the channels may vary along their lengths, in some embodiments.
(36) The peaks of border regions 26B, 26C and 26D are all at substantially the same elevation as central region 26A. These outer regions 26B, 26C and 26D are beveled, sloping outwardly from their peaks to form the outer edge of the mat 24. Outer region 26B is approximately 2 inches (51 mm) wide, while outer region 26D is around ½ inch (13 mm) wide. Outer regions 26C are each 1½ inches (38 mm) wide. All these dimensions may vary in other embodiments.
(37) Channels 28 have a depth that increases for directions away from central peaks 30. Moreover, the elevation of the floors of channels 28 decline for directions away from central peaks 30. Accordingly, fluid entering channels 28 flows away from the central peak 30 to the channel ends and into the into the gutters 134 and 136, and, if present, the drainage pipes shown in
(38) In one embodiment floormat 24 has an overall length of 35 inches (0.9 m) and an overall width of 22 inches (0.56 m). In this embodiment the overall thickness of floormat 24 (measured at ridges 26A of topside 26) was ⅝ inch (16 mm). The channels 28 are 0.2 inch (5.1 mm) wide and are distributed with a channel to channel spacing (measured from the center of one channel to the center of another) of 0.7 inch (18 mm). The depth of the channels 28 varied linearly from a minimum of ⅛ inch (3.2 mm) at central peaks 30 to a maximum of ⅜ inch (9.5 mm) at the outlet ends. It will be appreciated that these dimensions and proportions can be varied for other embodiments.
(39) The foregoing mat 24 may be made with nonslip surfaces in the manner described above for the other embodiments. Preferably, the underside 32 of the mat 24 will employ the double sided adhesive tape as shown in phantom in
(40) Gutters 134, 136, 140, 142 and 143 are each ½ inch in width to allow room to house the optional drainage assembly illustrated in
(41) Referring to
(42) Plug 59 is 0.47 inch in length (1.2 cm) and will be inserted in the distal end of pipe 50. The other end of pipe 58 will be fitted with one branch of T fitting 56, whose two other aligned branches lie in gutters 140 and 142. The branch of fitting 56 lying in gutter 142 (gutter 142 also referred to as an outlet) is shown as a conduit terminating in a conically flared head 56A designed to lock into tubing 60. When shipped, head 56A is sealed with removable plug 57, shown removed to accommodate tubing 60.
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(44) Plug 51 will be inserted in one end of pipe 50. The other end of pipe 50 will be fitted with one branch of T fitting 56′, which is identical to fitting 56 on pipe 58. The two other aligned branches of fitting 56′ lie in gutters 140 and 143. The branch of fitting 56 lying in gutter 143 (gutter 143 also referred to as an outlet) is shown as a conduit terminating in a conically flared head 56A′ designed to lock into tubing, but in this case sealed with plug 57. Thus, a user can conveniently choose to connect tubing 60 to either head 56A or 56A′.
(45) In some cases, fitting 56′ (or fitting 56) may be replaced with elbow 52, shown in
(46) Referring to
(47) Tubing 58A has a series of longitudinally aligned apertures 58C positioned to coincide with the outer end of channels 28, that is, one aperture for each of the channels 28. The diameter of apertures 58C may vary, though the preferred diameter is 1/16 inch (1.59 mm). In other embodiments these apertures may be replaced with the longitudinal slit 58D shown in
(48) Referring to
(49) Referring to
(50) Referring again to
(51) Pipes 50 and 58 may also be glued in place but only with a narrow bead of glue so that the sleeves (e.g., sleeve 58B) remain permeable and the apertures (e.g. apertures 58C) remain open. In this embodiment apertures 58C (or 58D) will point at a depressed angle of elevation of about 45° below horizontal (between a 4 and 5 o'clock position). It will be appreciated that pipe 50 will be made and installed in a similar manner.
(52) It will be further appreciated that although an outlet is shown in one corner of the mat as gutter 142, the outlet can be placed anywhere along the gutters of the mat. Further, multiple outlets may be created to allow the flexibility of alternate outlets or to permit connection of additional suction tubes 60. Some embodiments may have multiple outlets that have removable plugs or dams so the user can choose where to connect one or more suction tubes 60. On the other hand, some embodiments will have only one outlet gutter.
(53) The foregoing drainage pipes may be fitted in the gutters of the embodiment of
(54) To facilitate an understanding of the principles associated with the foregoing apparatus, the operation of the embodiment of
(55) Mat 10 is made of resilient material that will increase comfort, reduce fatigue and, in general, ease the burden of standing during a long procedure. Also, channels 28 are relatively small and do not substantially degrade the cushioning, anti-fatigue effect. Also, these channels 28 are sufficiently small to avoid any risk of tripping.
(56) During the procedure fluids may fall onto mat 24. Fluids tend to fall into channels 28 and flow away from peak 30 (
(57) The suction applied by hose 60 through head 56A will create a vacuum in pipes 50, 54 and 58. Accordingly, fluid flowing to the ends of channels 28 will be sucked into the apertures 58C of pipes 50 and 58. Debris or other particles in the fluid will be filtered by sleeve 58B (embodiment of
(58) Fluid in pipe 50 will flow through fitting 56′, pipe 54 and fitting 56, before being evacuated through hose 60. Fluid in pipe 58 will flow through fitting 56 and be evacuated through hose 60, as well. Hose 60 may be connected to a suction system such as may be found in a hospital operating room.
(59) Consequently, the user will have a dry place to stand with less chance of contaminated, corrosive or infected fluids seeping through any foot covering worn by the user. Also, a dry surface will reduce the chance of slipping and falling
(60) If the user is expected to work in several locations, multiple mats can be placed at those sites. Of course, mats can be provided for other assistants in the vicinity.
(61) If pipes are not used in the drainage system, the fluids will be naturally drain through gutters 134, 136, 140 before exiting through outlet gutters 142 in 143 (unless one of the outlet gutters is blocked by a dam or other means)
(62) The operations of the floormat 10 of
(63) Mat 10 is made of resilient, material that will increase comfort, reduce fatigue and, in general, ease the burden of standing during a long procedure. In addition, while the apron 14 is thinner, it is still sufficiently thick to provide a comforting, anti-fatigue effect. Also, channels 18 (as well as groove 16) are relatively small and do not substantially degrade the cushioning, anti-fatigue effect on apron 14. Also, these channels 16 and 18 are sufficiently small to avoid any risk of tripping.
(64) During the procedure fluids may fall onto mat 10. Fluids falling on central section 12 will tend to shed from the surface and drain through channels 16 and 18. Fluids eventually flow into gutters 36, 38, and 40 before exiting through outlet gutter 42. Fluids falling on apron 14 will shed fluids directly or through channels 18.
(65) Referring to
(66) Floormat 24 has a pair of opposing surfaces, the top one formed with a spaced plurality of channels 28 feeding intermediate gutters 134, 136, 138 and 140, which in turn feed discrete outlet gutters 142 and 143. As before, intermediate gutters 134, 136, 138 and 140 may be outfitted with pipes 50, 54 and 58, and the associated fittings shown in
(67) Floormat 24 is shown stacked on rectangular absorbent sheet 62. In this embodiment floormat 24 is 21.5 inches (0.55 m) wide and 35 inches (0.89 m) long, although the size of floormat 24 can be tailored to accommodate the relevant work area; that is, the region where a user is expected to stand. In the illustrated embodiment, absorbent sheet 62 is 36 inches (0.9 m) wide and 56 inches (1.4 m) long, although different sizes may be used in other situations depending upon the size of the relevant work area; specifically, the region where fluids may be expected to fall. In one embodiment absorbent sheet 62 is a medical mat from ESP Evolution Sorbent Products LLC of Chicago, Ill.; item no. 225SCB-PLY-FlagShip.
(68) Absorbent sheet 62 is shown extending peripherally from three sides of floormat 24, specifically, from the right and left sides along border regions 26C, and from the posterior side along border region 26B. In this embodiment the anterior side of floormat 24 along border region 26D is coterminous with an edge of absorbent sheet 62. This coterminous feature allows floormat 24 to lie close to the work area without absorbent sheet 62 bunching up on obstructions, such as the legs of an operating table, the wheel of an automobile, etc. In cases without nearby obstructions, absorbent sheet 62 may extend peripherally beyond the anterior side along border region 26D. In some cases the size of absorbent sheet 62 can be custom trimmed with a scissor or by using optional perforations in the sheet.
(69) Sheet 62 is shown having two layers, one with a fluid absorbent face 62A and the other with a fluid impermeable face 62B. Surface 62A is adhesively attached to the underside of floormat 24 at nine circular spots 64. The underside of floormat 24 is referred to herein as a given one of the opposing surfaces. In one embodiment the adhesive spots 64 employ a medium viscosity cyanoacrylate adhesive, e.g., Apollo 2077 type adhesive from Cyberbond LLC of Batavia, Ill. It will be appreciated that in other embodiments different types of adhesives may be used and the adhesive may be laid in a different pattern or in a continuous layer essentially matching the entire underside of floormat 24. Some embodiments may use mechanical fasteners, such as staples, rivets, etc. In still other embodiments, absorbent sheet 62 will not be attached to floormat 24, which will allow freedom to adjust their relative positions.
(70) Layer 62A may be a meltblown polypropylene material having an absorbency of 0.156 ml/cm2 (0.03 fluid ounces per square inch), although in other embodiments the absorbency can be in the range of 0.05 to 0.5 ml/cm2. The actual absorbency will be chosen depending upon the environment and the expected amount of fluid to be absorbed. In other embodiments layer 62A may be made of other fibrous material such as spunbond plastics, felt, etc., or may be made of other woven or knitted fabrics using natural or synthetic fibers.
(71) Layer 62B faces down and may be a flexible sheet made of polyethylene or other materials. In most embodiments layer 62B will be selected to provide fluid impermeability. Layer 62B may be bonded to layer 62A and in most embodiments will have a slip resistant surface.
(72) The foregoing device 24/62 may be used in an operating room where a surgeon must often deal with fluids spilling in the vicinity where the surgeon is standing. Many surgical procedures involve the discharge of bodily fluids or the washing or irrigation of various sites, all tending to result in spills, either intended or unintended. Keeping the surgeon's feet dry will reduce the danger of slipping and falling. Also spills occurring in an operating room may represent a biohazard and care must be taken to avoid seepage through footwear making contact with the skin. While handling fluid in the vicinity is an important consideration, preventing user fatigue is also important. The resilient surface presented by the foregoing floormat 24 will reduce user fatigue, while it and absorbent sheet 62 will also deal with spilled fluids.
(73) Various other environments exist where a person may be standing during a procedure and where fluid may be spilled in the vicinity of where the person stands. For example, boaters may stand on a deck that is periodically sprayed or splashed by seawater. In some cases the boater may need to operate, repair or clean equipment and seawater may drain from the equipment during the procedure.
(74) Also fishermen and hunters may need to clean, dress and prepare their catch or kill. In such cases fluids may run onto the ground due to the release of body fluids or water used to clean the work site. Butchers will experience a similar situation when cutting and dressing meat at a butcher shop.
(75) In addition, many technicians and hobbyists in the automotive field, gun repair/maintenance field, or other mechanical repair fields may spill fluids used to clean parts or may spill fluids used by the machinery (hydraulic fluid, coolant, brake fluid, transmission fluid, refrigerant, etc.).
(76) Ordinary consumers may also deal with spills in the vicinity of where the person stands. Fluids are often encountered when preparing foods or using the sink in a kitchen. In addition, various cleaning or repair tasks conducted throughout the house or the yard may involve fluid spills as well.
(77) In all these instances one wishes to avoid standing in spilled fluids. In some cases avoiding the discomfort of wet feet is an important consideration, but in other instances the fluids involved can be hazardous or deleterious. For example, some fluids can be slippery and increase the danger of falling. Other fluids may be corrosive and can damage either footwear or the foot itself.
(78) In operation, the device 24/62 of
(79) As noted, the workstation may be adjacent an automobile, a surgical table, or other work area. The device 24/62 is oriented so the anterior border region 26D is closest to the work area that the user is facing, as indicated by feet F. Thus, absorbent sheet 62 does not extend into the work area and impinge on obstructions such as the legs of a surgical table, an automobile wheel, or the like.
(80) Floormat 24 may be optionally fitted with pipes as shown in
(81) In addition, fluid may fall directly on absorbent sheet 62 as indicated by fluid drop D in
(82) Once the procedure is completed, floormat 24 and absorbent sheet 62 can be folded or rolled in order to trap captured fluids within the device. Personnel can remove the mat 24 and sheet 62, place it into a leakproof disposal bag and discard them. Often, the device 24/62 will require special handling since it may contain material considered corrosive or biological waste representing a danger of infection or contamination.
(83) Referring to
(84) Floormat 124 and absorbent sheet 162 are stacked and attached together adhesively along five longitudinal lanes 164, using an adhesive of the types described previously in connection with
(85) In this embodiment, absorbent sheet 162 has a somewhat different configuration, with posterior portion 162A deeper and side portions 162B narrower than that previously shown in
(86) In this embodiment the absorbent layer of sheet 162 faces up and its fluid impermeable layer faces down. In some cases the device of
(87) The device of
(88) In either case, this device will be deployed, used, and discarded in a manner similar to that previously described.
(89) It is appreciated that various modifications may be implemented with respect to the above described embodiments. In some embodiments the floormat and absorbent sheet may have other than a rectangular outline; for example, an outline that is semicircular, hexagonal, other polygons, oval, curved, etc. In some cases the floormat may be perforated to allow direct drainage to an underlying absorbent sheet. In some embodiments the absorbent sheet will have an impermeable layer that is unbonded and free to move relative to the absorbent layer. In other embodiments, the absorbent sheet will have a pocket for holding the resilient format. In some instances, the floormat will be made of separate segments that are attached to a common absorbent sheet. While the illustrated grooves and channels are shown having a rectangular cross-section, in some embodiments their cross-section may be rounded, triangular, polygonal, oval, or shaped otherwise. Also in some embodiments the channels may be so close together that a cross-section through the mat reveals a sinuous or sawtooth pattern. Moreover, in some embodiments the path of the channels may be curved. In some cases, the paths of the channels may be in the form of nested arches or may be arranged in a herringbone pattern. In addition, the mats in some embodiments may have perforations that allow the fluids to pass directly through the mat. Furthermore, in embodiments like that of
(90) Obviously, many modifications and variations of the present invention are possible in light of the above teachings. It is therefore to be understood that within the scope of the appended claims, the invention may be practiced otherwise than as specifically described.