This application claims the priority of German Application No. 10 2014 205 399.4, filed on Mar. 24, 2014, the disclosure of which is hereby incorporated by reference in its entirety into this application.
The invention relates to an injector nozzle having a housing and having an injector component arranged in the interior space of the housing at least in sections.
An aim of the invention is to provide an improved injector nozzle.
According to the invention, an injector nozzle having a housing and having an injector component arranged in the interior space of the housing at least in sections is provided, wherein the injector component has at least one handle portion which is accessible from the outer side of the housing.
Owing to the fact that the injector component or a handle portion of the injector component is accessible from the outer side of the housing, the injector component can be removed from the housing of the injector nozzle in a simple manner without using a tool. An essential feature thereby is that the handle portion of the injector component is accessible from an outer side of the housing in such a way that, even with the housing taken off from a nozzle support, the injector component does not have to be grasped from the inflow side, but may be grasped simply from the outer side of the housing at the handle portion, and may be pushed out of the housing counter to the flow direction, for example.
In an advanced embodiment of the invention, the housing has at least one through hole, wherein the at least one through hole is appropriate for a human finger to reach in, at least in sections, and wherein the handle portion of the injector component is accessible via the through hole.
By providing a through hole and a handle portion on the injector component, the injector component can be removed from the housing of the injector nozzle in a very simple manner without using a tool. Said feature is very advantageous in particular for use in agricultural technology.
Occasionally, injector components of injector nozzles need to be replaced or disassembled for cleaning. The possibility to remove the injector component of the injector nozzle according to the invention from the housing without using a tool, facilitates such maintenance procedures considerably and allows such operations to be accomplished in a short time and without difficulty, even during field work. Attention should be paid to the fact that in agricultural technology there is, in general, a need to wear protective gloves due to the spraying of agricultural chemicals. As a result, handling of tools is awkward so that by providing the invention, a considerable improvement in the handling of an injector nozzle is achieved.
In an advanced embodiment of the invention, a housing wall has two opposite through holes.
In this manner, an operator is enabled to grasp one or two handle portions of the injector component in a pinch grip using two fingers reaching through the two opposite through holes. Thereby, even comparatively high operating forces can be applied and the injector component can reliably be removed from the housing without a tool.
In an advanced embodiment of the invention, the at least one through hole is in a rectangular or oval shape.
Upon inserting the injector component into the housing, a rectangular or oval through hole provides a certain sliding path. In this case, a longer side or dimension of the through holes is parallel to the exit direction of the injector.
In an advanced embodiment of the invention, the injector component has corrugations at least in a region that is located in the vicinity of the at least one through hole of the housing in the assembled state.
By means of corrugation, the feel of the handle portion can be improved essentially so that, even with gloved fingers, the injector component can be removed without difficulty.
In an advanced embodiment of the invention, the injector component has a mixing chamber housing which together with an inner wall of the nozzle housing constitutes an air intake compartment, and at least one operating piece disposed at a distance to the mixing chamber housing and arranged in the vicinity of the at least one through hole of the housing, in the assembled state of the injector component.
In this manner, the operating piece with the handle portion can be arranged within the housing, and there is a zone of the air intake compartment defined between the operating piece and the mixing chamber housing.
In an advanced embodiment of the invention, the housing has two opposite through holes and the injector component has two opposite operating pieces each provided with a handle portion.
Providing two opposite handle portions allows not only reliable grasping and displacing of the injector component, but also there is application of force symmetrical to the injector component during sliding out of the latter, such that there is no risk of jamming or tilting of the injector component during sliding out. In any case, due to the symmetrical application of force on the opposite operating pieces, even a tight sitting injector component may be moved out of the housing reliably and without using a tool.
In an advanced embodiment of the invention, the at least one operating piece with the handle portion extends from a flange connected to the mixing chamber housing and projects freely beyond the flange.
In this manner, the operating pieces can be disposed immediately behind the inner wall of the housing and in the vicinity of the through holes and, all the same, there remains room for a sufficiently large air intake compartment between the operating pieces and the mixing chamber housing. Advantageously, the flange is a disc-shaped ring or an annular flange.
Further features and advantages of the invention will become apparent from the claims and the following description of a preferred embodiment of the invention in connection with the drawings. In the drawings:
The illustration of
A flat jet 38 exits from the first outlet opening 30 and has an output angle α with respect to a central longitudinal axis 40 of the housing 26 of the double flat spray nozzle 24. Said first flat jet 38 has a jet angle γ.
A second flat jet 42 exits from the second outlet opening 32. Said second flat jet 42 has an output angle β with respect to the central longitudinal axis 40 of the housing 26. Said second flat jet 42 has a jet angle δ.
The outlet openings 30, 32 and, thus, the bottom end of the housing 26 in
The two nozzle devices 18, 20 are disposed at a distance C along the central longitudinal axis 16 of the distributor tube. Said distance C is matched to the jet width B in such a manner that the flat jets of the respective double flat spray nozzles are overlapping in a marginal region.
In the illustration of
The illustration of
The injector component 36 has a mixing chamber 50 located inside a wall 50a of the injector component 36, which chamber 50 has an initially circular cylindrical cross section and is then conically enlarging along the outflow direction. The agricultural chemical is injected into the mixing chamber 50 in the form of a single spray jet from the end located on the right hand side in
The injector component 36 is provided with two operating pieces 54 which are located one opposite to the other and accessible via the through holes 74 of the housing 26 in the vicinity of the respective handle portion 44, as is apparent from
The housing 26 has a circular cylindrical interior space 51 into which the portion of the injector component 36 constituting the mixing chamber 50 is inserted. Said interior space 51 is provided with two air ventilation openings 76 for communicating connection of the interior space to the environment. Between the mixing chamber portion or wall 50a of the injector component 36 and the inner wall of the interior space 51, there is an annular gap space 70 produced in the assembled state, cf.
In order to insert the injector component 36 into the housing 26, the component is pushed into the housing 26 along the flow direction. In order to remove the injector component 36 again from the housing 26, for example, to replace it due to wear or obstruction, all that needs to be done is to grasp the handle portions 44 of the operating pieces 54 by reaching through the through holes 74 and displacing them counter to the outflow direction. In that context, the through holes 74 are dimensioned such that a human thumb or a human index finger may reach through the through holes 74 and get hold of the handle portions 44 of the operating pieces 54. Thereby, the injector component 36 can be removed from the housing 26 and installed back therein in a very simple manner, even with a gloved hand, without using a tool.
In the illustration according to
The illustration according to
During operation, a liquid jet enters into the circular cylindrical portion 60 of the mixing chamber 50 via the inlet openings 56 in the baffle 55. Therein, a diameter of the jet entering the mixing chamber 50 is significantly smaller than the diameter of the cylindrical portion 60 of the mixing chamber 50, since the diameter of the inlet opening 56 is also essentially smaller than the diameter of the cylindrical portion 60. As a result, a negative pressure is produced in the cylindrical portion 60, causing air to enter into the mixing chamber 50 from the annular gap space 70 via the air ventilation openings 52 and to admix with the liquid jet. A frustoconical enlargement 62 of the mixing chamber 50 adjoins the cylindrical portion 60. Then, the conical enlargement 62 passes into two outlet chambers 66 and 68. The outlet openings 30, 32 are cut in the outlet chambers 66 and 68. In the outlet chambers 66 and 68, there is a coarse drop distribution of liquid present, which liquid is then outputted via the outlet openings 30, 32, in each case in the form of a flat jet.
The annular gap space 70 provided between the injector component 36 and the housing 26 is vented via the air ventilation openings 76 from the environment. Environmental air is supplied to the intake openings 52 via said annular gap space 70.
The injector component 36 further has a housing portion with a circumferential groove 72, wherein an O-ring made of elastic material is placed. By means of the O-ring, the injector component 36 is held within the housing 26. The O-ring rests on the inner wall of the interior space 51, and the diameter of the injector component 36 above and below the groove 72 is slightly smaller than the diameter of the circular cylindrical interior space 51. During insertion of the injector component 36, said component is, thus, guided by means of the zones above and below the groove 72 in the interior space 51.
The illustration according to
In
The illustration of
The annular flange 78 is provided with a circumferential collar 84 on its upstream located side, which collar is a recess in circular cylindrical shape, cf.
In
Number | Date | Country | Kind |
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10 2014 205 399 | Mar 2014 | DE | national |
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Search Report of European Patent Office issued in Application No. 15 158 170.9 with English translation of categories of cited documents dated Sep. 2, 2015 (5 pages). |
Office Action of German Patent Office issued in Application No. 10 2014 205 399.4 dated Dec. 10, 2014 (5 pages). |
Number | Date | Country | |
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20150266045 A1 | Sep 2015 | US |