Temperature Control Unit for a Gaseous or Liquid Medium
US-2016377330-A1 · Dec 29, 2016 · US
US9920717B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9920717-B2 |
| Application number | US-201314441832-A |
| Country | US |
| Kind code | B2 |
| Filing date | Oct 22, 2013 |
| Priority date | Nov 9, 2012 |
| Publication date | Mar 20, 2018 |
| Grant date | Mar 20, 2018 |
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A preheating device for an internal combustion engine may include an inlet connection for connecting a distributor rail of a fuel injection system and an outlet connection for connecting a fuel injector of the fuel injection system. A preheating chamber may be fluidically connected with the inlet connection and the outlet connection and be flowable through by a fuel flow. At least one electrical heating element may be included for heating the fuel flow in the preheating chamber. At least one metallic heating body, which may be exposed to the fuel flow in the preheating chamber, may receive the at least one heating element.
Opening claim text (preview).
The invention claimed is: 1. A preheating device for an internal combustion engine, comprising: an inlet connection for connecting a distributor rail of a fuel injection system; an outlet connection for connecting a fuel injector of the fuel injection system; a preheating chamber flowable through by a fuel flow, the preheating chamber fluidically connected with the inlet connection and the outlet connection; at least one electrical heating element for heating the fuel flow in the preheating chamber, the at least one electrical heating element having an electrical connection for receiving electrical power and providing heat; at least one metallic heating body exposed to the fuel flow in the preheating chamber, wherein the at least one metallic heating body receives the at least one electrical heating element; and the at least one metallic heating body is in heat transferring contact with the at least one electrical heating element; wherein the at least one electrical heating element is completely and securely surrounded by the at least one metallic heating body, the at least one metallic heating body shielding the at least one electrical heating element from direct contact with the fuel flow; and wherein the at least one metallic heating body includes at least one inner shell and at least one outer shell, and the at least one electrical heating element is arranged in an intermediate space between the at least one inner shell and the at least one outer shell, and wherein the intermediate space is closed off from the fuel flow in the preheating chamber. 2. The preheating device according to claim 1 , further comprising: a first electro-connection and a second electro-connection each being connectable to an electrical energy supply; a contact element electrically connected to the first electro-connection, the contact element further electrically connected with the electrical connection of the at least one electrical heating element; wherein the second electro-connection is electrically connected with the at least one metallic heating body, and the at least one metallic heating body is electrically connected with a second electrical connection of the at least one electrical heating element. 3. The preheating device according to claim 2 , wherein the contact element is at least one of configured as a spring and includes at least one elastic section to prestress the at least one electrical heating element against the at least one metallic heating body. 4. The preheating device according to claim 1 , wherein the at least one metallic heating body surrounds the preheating chamber and includes an inlet connected fluidically with the inlet connection, and an outlet connected fluidically with the outlet connection, and wherein the at least one metallic heating body is arranged in and sealed with respect to a housing, which has the inlet connection and the outlet connection, the at least one metallic heating body including an inner side facing the preheating chamber in fluid contact with the fuel flow. 5. The preheating device according to claim 1 , wherein the at least one metallic heating body defines an axially open hollow body, and wherein the axially open hollow body is arranged in the preheating chamber and contacts the fuel flow with at least one of a radial outer side and a radial inner side. 6. The preheating device according to claim 5 , wherein: the inlet connection and the outlet connection are disposed on a housing, the housing surrounding the preheating chamber and including an outlet duct, originating from the outlet connection, projecting axially into the preheating chamber, the at least one metallic heating body is arranged in the housing and extends coaxially to the outlet duct, and a fuel path extending from the inlet connection through an outer gap disposed between the housing and the radially outer side of the at least one metallic heating body, through an axial clearance disposed between the housing and a face side of the at least one metallic heating body facing the outlet connection, through an inner gap disposed between the outlet duct and the radially inner side of the at least one metallic heating body, and through the outlet duct to the outlet connection. 7. The preheating device according to claim 1 , wherein: the at least one metallic heating body further includes a base section and a dipping section extending from the base section, the dipping section containing the at least one electrical heating element and defining a profile dipping into the preheating chamber in contact with the fuel flow on an outer side of the dipping section, and wherein the base section closes the preheating chamber inside a housing, the base section including at least one electro-connection for supplying the at least one electrical heating element with electrical energy. 8. The preheating device according to claim 7 , wherein the dipping section includes a flow duct on the outer side, wherein the flow duct directs a fuel path extending from the inlet connection to the outlet connection in a peripheral direction at least partially around the dipping section. 9. The preheating device according to claim 7 , wherein the outer side of the dipping section includes a plurality of ribs extending transversely to an axial direction, the axial direction corresponding to the outlet connection, the plurality of ribs spaced apart from one another in the axial direction, and wherein a fuel path extends between at least two adjacent ribs, the flow path fluidically connecting the inlet connection to the outlet connection. 10. The preheating device according to claim 8 , wherein the flow duct projects away from the dipping section and extends helically around the dipping section. 11. The preheating device according to claim 9 , wherein at least one of: the dipping section further includes an axially-extending distributor duct on an inlet side facing the inlet connection the distributor duct extending through at least one of the ribs, the outlet connection is open to the preheating chamber on an outlet side of the dipping section facing away from the inlet connection, and wherein the outlet connection is closed on an inlet side facing the inlet connection, and the dipping section further includes an axially-extending collecting duct on an outlet side facing away from the inlet connection, the collecting duct extending through at least one of the ribs. 12. The preheating device according to claim 1 , wherein the at least one electrical heating element is a PTC element, the PTC element defining two outer sides facing away from one another, and wherein the two outer sides each include an electrical connection. 13. A preheating device for an internal combustion engine, comprising: a housing including an inlet connection for connecting to a distributor rail of a fuel injection system and an outlet connection for connecting to a fuel injector of the fuel injection system; a preheating chamber defined in the housing and disposed in a flow path between the inlet connection and the outlet connection, the preheating chamber fluidically connected with the inlet connection and the outlet connection for communicating a fluid; at least one metallic heating body disposed in the preheating chamber of the housing and exposed to the fluid in the flow path; at least one electrical heating element for heating the fuel flow in the preheating chamber, the at least one electrical heating element disposed in the at least one metallic heating body; the at least one electrical heating element covered from the flow path by the at least one metallic heating body to facilitate avoiding direc
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