Venting apparatus for a heating device operating with liquid fuel in a single-line mode
10514168 ยท 2019-12-24
Assignee
Inventors
Cpc classification
F23K5/18
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F23K5/142
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16K11/0716
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F23K5/20
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F23K5/147
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F23K2300/204
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02M31/125
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02D41/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F23K5/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F23K5/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F23K5/18
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F23K5/14
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F23K5/20
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F02M31/125
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A heating device operating with liquid fuel in the single-line mode includes a fuel pump which draws fuel from a supply tank and delivers it into a pressure line region communicating with an atomiser nozzle opening into a combustion chamber, wherein excess fuel is returned from the pressure region to the suction side of the fuel pump by way of a pressure regulator, a return line and a bypass line. Arranged between the return line and the bypass line is a venting apparatus including an actuating element which is reciprocable between an operating position and a venting position and which in the operating position connects the return line to the bypass line to reliably seal the medium in the lines towards the exterior and in the venting position connects the return line to the exterior of the heating device and in that case closes the bypass line.
Claims
1. A venting apparatus (18) for a heating device having an exterior and operating with liquid fuel in a single-line mode and including a fuel pump (1) which is driven by a motor (3) which pump draws fuel from a supply tank (6) and delivers it into a pressure line region which is in communication with an atomiser nozzle (10) opening into a combustion chamber, wherein excess fuel is returned from the pressure line region by way of a pressure regulator (14), a return line (16) and a bypass line (19) to a suction side of the fuel pump (1), wherein the venting apparatus (18) comprises a through passage (42) which is in flow communication with said return line (16) and can be connected to or separated from said bypass line (19) by moving back or forth an actuating element which is arranged inside said through passage (42) and is reciprocable in axial direction between an operating position and a venting position, wherein a venting line (20) is provided which connects the through passage (42) of said connecting body (17) to said exterior of the heating device, and wherein the actuating element is adapted: to connect the return line (16) to the bypass line (19) in its operating position and, in that case, to ensure reliable sealing of a medium disposed in that lines towards said exterior, to connect the return line (16) to the venting line (20) in its venting position and, in that case, to close the bypass line (19), and in its movement from its operating position into its venting position, firstly to close the bypass line (19) and only then to connect the return line (16) to said exterior.
2. The venting apparatus (18) according to claim 1, further comprising a line connecting body (17) in which the through passage (42) is provided.
3. The venting apparatus (18) according to claim 2, wherein the actuating element has two longitudinal bores (25, 37) which starting from its two ends (27, 38) extend in an axial direction towards each other without being in direct communication with each other and each of which at its inwardly disposed axial end is in communication with at least one transverse bore (35, 39) which extends radially through the actuating element and opens at a peripheral surface of the actuating element, wherein, in the venting position, a longitudinal bore (25) is connected to the outwardly leading venting line (20) while when the actuating element is in the operating position the other longitudinal bore (37) is in flow communication with the return line (16).
4. The venting apparatus (18) according to claim 2, wherein the actuating element is a venting screw (22) which is screwed into an internal female thread in the through passage (42) and is displaceable by rotation about is longitudinal axis in the axial direction between the operating position and the venting position.
5. A heating device operating with liquid fuel in the single-line mode and including a venting apparatus (18) according to claim 1.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) The invention is described hereinafter by means of embodiments by way of example with reference to the drawing in which:
(2)
(3)
(4)
(5)
(6)
(7)
(8)
(9)
DETAILED DESCRIPTION OF THE INVENTION
(10) In the Figures the same parts and components are denoted by the same references. If positional indicators like up, back, left, right and so forth are used in describing the Figures this only relates to the position of the components in question in the Figures and is in no way to be interpreted as limiting or characterising the actual position of installation on or in a venting apparatus according to the invention or a heating device equipped with such a venting apparatus.
(11) Both of
(12) The fuel pump 1 draws fuel by way of a suction or feed line 4 from a fuel tank 6, as indicated by the arrow S.
(13) On the pressure side of the displacer 2 of the fuel pump 1 firstly a line 7 goes to a shut-off valve 8 which is adjoined by a further line 9 which feeds the fuel to an atomiser nozzle 10 through which it is injected into a combustion chamber (not shown) in order there to be burnt in a flame 11.
(14) The shut-off valve 8 is actuable by a solenoid 12 and, when no heating mode is running, is closed in order to prevent fuel from issuing into the combustion chamber.
(15) The pressure which obtains in the lines 7 and 9 and which in the applicant's pumps can typically be in a range of 9 to 10 bars is defined by an adjustable pressure limiter 14 which, as indicated by the arrow R, feeds the fuel delivered in excess by the fuel pump 1 by way of a return line 16 to the intake connection of a line connecting body 17 having two outlet connections of which one is connected to a bypass line 19 and the other to a venting line 20.
(16) The line connecting body 17 includes a venting apparatus 18 which in
(17) In normal operation as shown in
(18)
(19) In
(20) That arrangement however is not necessarily the case; thus individual ones, all or any combinations of the units or components 8, 12, 14, 17, 19, 20 can be positioned separately from the pump body. According to the invention it is also possible to provide any other variations and combinations of the possible arrangements just referred to.
(21)
(22) The venting screw 22 includes a cylindrical main portion 24 provided with a male thread 23 (not shown in
(23) At its left-hand side in
(24) A preferably transparent fuel hose (not shown separately) can be fitted on to the hose nozzle 27 at least during the venting operation; the hose then forms the venting line 20 (see
(25) Adjoining the main portion 24 which is provided with the male thread 23, towards the right in the axial direction, are four further cylindrical portions 30, 31, 32 and 33 which are in one piece with the main portion 24 and of which the first three are of a smaller outside diameter than the respective cylindrical portion to the left thereof. The cylindrical portion 33 forming the right-hand end of the venting screw 22 is of the same outside diameter as the second cylindrical portion 31 and is separated from the third cylindrical portion 32 by a groove 34 extending over the entire peripheral of the venting screw 22. The third cylindrical portion 32 and the groove 34 can be of the same diameter.
(26) The internal longitudinal bore 25 only extends through the hose nozzle 27, the hexagon 26 and the cylindrical main portion 24 into the first cylindrical portion 30 which is of a reduced diameter in relation to the main portion 24, wherein at the axial end of the cylindrical portion 30 that is remote from the hose nozzle 27 the longitudinal bore opens into a transverse bore 35 which extends radially at one side and which extends outwardly as far as the cylindrical outside surface of the cylindrical portion 30 and through same. That transverse bore 35, starting from the internal longitudinal bore 25, can extend radially outwardly towards both sides. In that case it passes completely through the first cylindrical portion 30 and opens outwardly on diametrally opposite sides of its cylindrical outside surface. As an alternative thereto it is also possible to provide a plurality of radially extending transverse bores which extend outwardly at least at one side and are in communication with the internal longitudinal bore 25.
(27) The two cylindrical portions 31, 32 of the venting screw 22, which adjoin the cylindrical portion 30 towards the right in
(28) The cylindrical portion 33 forming the end region of the venting screw 22, that is at the right in
(29)
(30) The return line 16 which is not shown here opens from the right into the through passage 42. On the opposite side the through passage 42 is of a diameter which is so large that the venting screw 22 can be screwed into a female thread 46 provided there, with the male thread 23 provided on its cylindrical main portion 24, from the left at a maximum to such an extent that the cylindrical portion 30 which adjoins the main portion 24 and which is of a smaller diameter than the main portion 24 bears with a sealing surface 47 which is shown here as conical but which alternatively can also be convexly rounded and which tapers to the next cylindrical portion 31 which is of an even smaller diameter, against a conical sealing seat 48 provided in the interior of the through passage 42, in such a way that fuel which is indicated in
(31) At the same time, in that completely screwed-in position of the venting screw 22, the internal bore 37 which extends in the axial direction through the entire cylindrical portion 33 disposed at the left and into which the fuel coming from the return line 16 (see
(32) In
(33) In addition the sealing surface 47 provided on the cylindrical portion 30 is moved in the axial direction away from the sealing seat 48 at the inside wall of the through passage 42. By virtue of suitable adaptation of the inside diameters of the individual portions of the through passage 42 to the differing diameters of the cylindrical portions 30, 31 and 32, a flow gap communicating with the groove 34 is opened, the gap leading from the internal bore 37 of the cylindrical portion 33 disposed entirely at the right by way of the transverse bore 39 and the groove 34 between the sealing seat 48 and the sealing surface 47 to the transverse bore 35 which in turn is in communication with the longitudinal bore 25 of the main portion 24 so that in that venting position of the venting screw 22, pressurised medium in the pressure line region (fuel and/or air and/or a mixture thereof) can issue by way of the hose nozzle 27 and a venting line 20 which can be secured thereto (see
(34) It should be pointed out that
(35)
(36) At the lower side of the motor 3 as shown in
(37) The connecting hollow screw 52 is screwed from above into the connecting bore 43 of the line connecting body 17. Unlike the situation shown in