Suction head for connection to a fuel hose
10233880 ยท 2019-03-19
Assignee
Inventors
Cpc classification
F02B2075/027
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02M37/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B01D35/005
PERFORMING OPERATIONS; TRANSPORTING
B01D29/11
PERFORMING OPERATIONS; TRANSPORTING
F02M37/34
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B01D39/08
PERFORMING OPERATIONS; TRANSPORTING
B01D29/86
PERFORMING OPERATIONS; TRANSPORTING
F02M37/50
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B01D29/00
PERFORMING OPERATIONS; TRANSPORTING
F02M37/007
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B01D29/58
PERFORMING OPERATIONS; TRANSPORTING
International classification
F02M37/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02M37/22
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02B75/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B01D29/86
PERFORMING OPERATIONS; TRANSPORTING
B01D29/00
PERFORMING OPERATIONS; TRANSPORTING
B01D35/00
PERFORMING OPERATIONS; TRANSPORTING
B01D39/08
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A suction head for connection to a fuel hose in a fuel tank has a base member made of an injection molding material. The base member has a peripheral wall surface provided with cutouts and also has an end face opening. A cap closes off the end face opening. A connecting socket for the fuel hose is provided on the suction head. A first filter element is received inside the base member. A second filter element covering the cutouts is provided and is made of a filter fabric, wherein the filter fabric is a twill weave fabric or a satin weave fabric. The filter fabric has a mesh size that is greater than 10 m and smaller than 25 m. A power tool with a four-stroke engine is provided with such a suction head in the fuel tank.
Claims
1. A suction head for connection to a fuel hose in a fuel tank, the suction head comprising: a base member comprised of an injection molding material, the base member comprising a peripheral wall surface provided with cutouts and further comprising an end face opening; a cap closing off the end face opening: a connecting socket for the fuel hose; a first filter element received inside the base member; a second filter element covering the cutouts and comprised of a filter fabric, wherein the filter fabric is a twill weave fabric or a satin weave fabric; the filter fabric having a mesh size that is greater than 10 m and smaller than 25 m.
2. The suction head according to claim 1, wherein the mesh size is in a range of 12 m to 20 m.
3. The suction head according to claim 2, wherein the mesh size is 15 m.
4. The suction head according to claim 1, wherein the mesh size of the filter fabric is smaller than a pore size of the first filter element.
5. The suction head according to claim 1, wherein the peripheral wall surface of the base member comprises stays and the stays separate the cutouts from each other, wherein the filter fabric is secured on the stays.
6. The suction head according to claim 5, wherein in the region of the stays the injection molding material of the base member engages with form fit a fabric structure of the filter fabric.
7. The suction head according to claim 1, wherein the filter fabric is a filter hose comprising a first open end and a second open end opposite the first open end, wherein the first open end of the filter hose is embedded seal-tightly in the injection molding material of the base member.
8. The suction head according to claim 7, wherein the filter fabric at the first open end of the filter hose is penetrated with form fit by the injection molding material of the base member.
9. The suction head according to claim 1, wherein the first filter element has a pore size in a range of 30 m to 70 m.
10. The suction head according to claim 1, wherein the injection molding material is a plastic material.
11. The suction head according to claim 1, wherein the filter fabric is a screen fabric comprised of monofil threads.
12. The suction head according to claim 11, wherein a thread size of the monofil threads is greater than the mesh size of the filter fabric.
13. A power tool comprising: a four-stroke engine comprising a valve train for an inlet valve and/or an outlet valve arranged in the combustion chamber of the four-stroke engine, wherein the valve train is lubricated by a fuel/oil mixture processed with combustion air; a fuel tank and a fuel line connected to the fuel tank, wherein the fuel/oil mixture is supplied by the fuel line from the fuel tank to a mixture forming device of the four-stroke engine; wherein the fuel line comprises a flexible fuel hose that projects into the fuel tank and has a projecting free end; a suction head comprising: a base member comprised of an injection molding material, the base member comprising a peripheral wall surface provided with cutouts and further comprising an end face opening; a cap closing off the end face opening: a connecting socket for the fuel hose; a first filter element received inside the base member; a second filter element covering the cutouts and comprised of a filter fabric, wherein the filter fabric is a twill weave fabric or a satin weave fabric; the filter fabric having a mesh size that is greater than 10 m and smaller than 25 m; wherein the projecting free end is connected to the connecting socket of the suction head.
Description
BRIEF DESCRIPTION OF THE DRAWING
(1)
(2)
(3)
(4)
(5)
(6)
(7)
DESCRIPTION OF THE PREFERRED EMBODIMENTS
(8)
(9) As a drive motor of the power tool 1 according to an embodiment, an internal combustion engine, in particular a four-stroke engine 2 is provided. The blower device which is illustrated as an example is comprised substantially of a preferably L-shaped carrier 3 on which the blower is secured in a vibration-damping manner. The blower wheel which is arranged in the blower housing 4 is driven by the four-stroke engine 2; alternatively, the drive motor can be embodied also as a two-stroke engine or a similar drive motor.
(10) The blower housing 4 comprises a blower outlet 17 which is provided with a connecting socket 18 for a blower tube.
(11) The four-stroke engine 2 which is illustrated schematically in the embodiment comprises a valve train 5 which controls an inlet valve 6 and an outlet valve 7. The inlet valve 6 controls the inlet of fresh fuel/oil/air mixture which is supplied via an inlet passage 8. The inlet passage 8 is connected to a mixture forming device 10 which is embodied advantageously as a diaphragm carburetor and provides the fuel/oil/air mixture to be supplied to the combustion chamber 11. By means of an outlet valve 7, exhaust gas is discharged through the outlet passage 12.
(12) The mixture forming device 10 is supplied from a fuel tank 15 with a fuel/oil mixture wherein the fuel/oil mixture is sucked in by a fuel hose 14 and a suction head 20 from the fuel tank 15. Expediently, a fuel pump can be provided for conveying the fuel/oil mixture. Advantageously, the fuel pump is driven by the pressure fluctuations of the crankcase.
(13) The fuel hose 14 comprises at least one flexible hose section 13 whose free end 9 is secured to a connecting socket 21 of the suction head 20. For obtaining a high movability of the suction head 20 in the fuel tank 15, it can be expedient to guide the movable fuel hose 14 in loops 16, in particular flexible loops.
(14) The suction head 20 is comprised substantially of a housing with a base member 22. The base member 22 comprises advantageously a cup-shaped configuration. An end face opening 24 is formed at the open end 23 of the base member 22. Between the bottom 25 of the base member 22 and the open end 23, cutouts 30, 31, 32, and 33 are formed in the peripheral wall surface 26 of the base member 22. The cutouts 30, 31, 32, and 33 form fenestrations surrounded by a closed frame within the peripheral wall surface 26 of the base member 22. The recesses 30, 31, 32, and 33 extend about a circumferential angle 34 of in particular 70. The cutouts 30, 31, 32, 33 in circumferential direction of the cup-shaped base member 22 are separated from each other by stays 40, 41, 42, 43. The stays 40, 41, 42, 43 each extend about a circumferential angle of in particular 20.
(15) As shown in
(16) The open end 23 of the base member 22 is engaged across by a cap 27 which locks in an undercut 28 at the open end 23 of the base member 22. The cap 27 supports preferably centrally the connecting socket 21 for the fuel hose 14. The rim of the open end 23 of the base member 22 is secured advantageously in a receiving groove 87 of the cap 27.
(17) In the interior of the base member 22, a tubular receiving cylinder 29 is formed which is disposed centrally at the bottom 25 of the base member 22. The receiving cylinder 29 ends at a spacing in front of the open end 23 and serves for receiving a weight, in the embodiment advantageously in the form of a weight rod 19. The end of the weight rod 19 which is projecting out of the receiving cylinder 29 is secured in a claw-type receptacle 35 on the inner side of the attached cap 27. The center axis of the cylindrical weight rod 19 is positioned advantageously in alignment with the longitudinal axis 36 of the suction head 20.
(18) In the interior 37 of the suction head 20 a first filter element 50 is arranged which is formed of a tubular sintered body 51. The sintered body 51 (
(19) At its annular end faces 52 and 53, the sintered body 51 is advantageously secured by holding pins 38 of the bottom 25 and holding pins 39 of the cap 27 (
(20) The cutouts 30, 31, 32, 33 are covered on the inner circumference of the stays 40, 41, 42, 43 by a second outer filter element 60. The second filter element 60 is comprised of a filter fabric 61 whose fabric structure is schematically illustrated in
(21) For positional fixation of the sintered body 51 of the first filter element 50, advantageously holding ribs 48 are formed on the inner circumference 46 of the stays 40 to 43, as shown also in
(22) About the circumference of the base member 22, four stays 40, 41, 42, 43, in particular with identical circumferential spacing relative to each other, are provided. Accordingly, about the inner circumference 46 of the stays 40, 41, 42, 43 four holding ribs 48 are formed. The holding ribs 48 are positioned at the same circumferential spacing relative to each other.
(23) The filter fabric 61 of the second outer filter element 60 is preferably configured as a filter hose 62, as shown in
(24) As illustrated in
(25) The second open end 64 of the filter hose 62 is positioned in the open end 23 of the base member 22. The rim of the second open end 23 of the base member 22 is secured in the receiving groove 87 of the cap 27 wherein the second open end 64 of the filter hose 62 is positioned within the receiving groove 87.
(26) For manufacturing a filter hose 62, a fabric layer can be folded and fused so that a seam 66 (
(27) The filter hose 62 is advantageously arranged during manufacture of the base member 22 in such a way that the seam 66 (
(28) The stays 40 and 42 as well as the stays 41 and 43 are positioned, relative to the longitudinal center axis 36 of the suction head 20, diametrically opposed to each other (
(29) The filter fabric 61 of the second filter element 60 is preferably manufactured as a twill weave according to
(30) The mesh size W of the filter fabric 61 is smaller than the pore size P of the first, in particular inner, filter element 50 (
(31) The filter fabric 61 which is advantageously manufactured of monofil threads 70 has in particular a fabric structure of twill weave as shown in
(32) The twill weave illustrated in
(33)
(34) The specification incorporates by reference the entire disclosure of European priority document 16 400 051.5 having a filing date of Nov. 10, 2016.
(35) While specific embodiments of the invention have been shown and described in detail to illustrate the inventive principles, it will be understood that the invention may be embodied otherwise without departing from such principles.