Turbocharger system with internally isolated turbocharger oil drainback passage

A technology of turbocharger and oil return channel, which is applied in the direction of fuel system, closed-circuit lubrication system, lubricating parts, etc., can solve the problems of increasing space, increasing radiated noise, and lack of rigidity, so as to prolong the service life and reduce the The effect of noise features

Active Publication Date: 2009-12-30
FORD GLOBAL TECH LLC
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

Unfortunately, the external fluid connections and associated plumbing and hoses pose problems as hoses are known to leak and suffer damage which is accelerated by the high temperatures prevailing in the engine compartment
Furthermore, in addition to durability concerns, the need for external piping for turbochargers increases the space required by turbochargers in an already congested under-hood environment
[0003] There is another reason why turbochargers mounted on engines usually consume a lot of space
Because known mounting arrangements make it difficult to locate the turbocharger close to the engine block, the turbocharger must be spaced from the engine to allow insertion of the turbocharger's fasteners
Furthermore, known turbocharger mounting systems increase radiated noise due to lack of rigidity and size issues associated with their use

Method used

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  • Turbocharger system with internally isolated turbocharger oil drainback passage
  • Turbocharger system with internally isolated turbocharger oil drainback passage
  • Turbocharger system with internally isolated turbocharger oil drainback passage

Examples

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Embodiment Construction

[0025] Such as figure 1 As shown, turbocharger system 10 includes a turbocharger 14 and a utility base 18 . The turbocharger 14 is preferably mounted to the utility base 18 before the turbocharger 14 is mounted on the engine. figure 1 Also shown is an engine block 30 having a valley 20 in which the turbocharger system 10 rests on a hard point, shown as a substantially flat mounting pad 22 . The utility base 18 provides rigid structural support for the turbocharger 14; this helps to reduce undesired engine noise emissions as well as reduce undesired vibrations associated with the turbocharger. Those skilled in the art will appreciate that, for purposes of this disclosure, the term "hard point" as used herein means a structurally rigid mounting location, such as a blockpad machined into the base metal of the cylinder block. , or separate pads or brackets, as in the Image 6 Shown in 100. Mounting pad 100 may be attached to the engine by bolting or welding, or by other suitab...

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Abstract

The invention relates to a turbocharger system with internally isolated turbocharger oil drainback passage. The invention provides a turbocharger system of an internal combustion engine. The system comprises a turbocharger system with a practical pedestal, wherein the practical pedestal extends between the turbocharger and a hard point associated with the cylinder body. The practical pedestal comprises a mounting pad which connects the combined turbocharger and pedestal assembly to the engine, an inner lubricating oil supply passage and a coolant supply passage which supply the pressurized lubricating oil and coolant to the turbocharger. The turbocharger system with internally isolated turbocharger oil drainback passage conveys waste oil from the turbocharger to a crankcase sump without permitting the waste oil to contact moving parts of the engine.

Description

technical field [0001] The present invention relates to a turbocharger system comprising not only a turbocharger but also a mounting base provided with utilities required to operate and position the turbocharger, wherein the utilities include Internally isolated turbocharger oil return passage. Background technique [0002] Turbocharging has been used in internal combustion engines for many years. While earlier turbochargers were typically cooled primarily by air and oil flow through the turbocharger bearings, later types of turbochargers, especially large turbochargers and those installed in heavy-duty engines The compressor is typically cooled with coolant that circulates from the engine's cooling system through the turbine and back into the engine's main cooling system. Of course, a turbocharger also requires an oil supply utility and an oil discharge utility to lubricate the bearings associated with the turbocharger. Needless to say, providing a source of coolant and ...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): F02B37/00F02B39/14F01M1/12F01P3/12
CPCF01M11/02F05D2240/126F02B39/005F01M2011/021F02B39/14F02C6/12F05B2240/121F01D25/18F02B75/22F01D25/28F02B2720/252
Inventor 克里斯托弗·凯利·珀拉佐罗帕特里克·塞克斯坦克里斯托弗·考兰德
Owner FORD GLOBAL TECH LLC
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