Claims
- 1. A flow converter for an air flow rate meter, comprising:
- a plastic flow rectifier for converting an aspirated air mass into a laminar air flow moving in a given flow direction, said flow rectifier including a honeycomb body and a ring integral with said honeycomb body, said honeycomb body having a surface disposed at right angles to said given flow direction, and said ring including a portion protruding out of said surface; and
- a grid being permanently secured to the protruding portion downstream of said flow rectifier for generating microscopic eddies in the laminar air flow; and
- said flow rectifier further including means for securing a predetermined angle between said honeycomb body and an edge surface of the air flow rate meter and fixing said flow rectifier in alignment with the air flow rate meter said means including elements that individually both center and fix the flow rectifier relative to the air flow rate meter.
- 2. The flow converter according to claim 1, wherein said honeycomb body has honeycomb walls with constant trapezoidal cross-sectional areas as seen in said given flow direction at each point along said honeycomb body.
- 3. The flow converter according to claim 2, wherein said honeycomb body has rounded upstream edges.
- 4. The flow converter according to claim 3, wherein said honeycomb body has a maximum width of substantially 5 mm.
- 5. The flow converter according to claim 4, wherein said grid and said honeycomb body are spaced apart by a distance of at least 1 mm.
- 6. The flow converter according to claim 5, wherein said grid is formed of a metal being highly resistant to chemical reactions.
- 7. In a motor vehicle having an internal combustion engine with an intake conduit and an air flow rate meter in the intake conduit, the improvement comprising a flow converter for the air flow rate meter including a plastic flow rectifier for converting an aspirated air mass into a laminar air flow moving in a given flow direction, said flow rectifier including a honeycomb body and a ring integral with said honeycomb body, said honeycomb body having a surface disposed at right angles to said given flow direction, and said ring including a portion protruding out of said surface; and a grid being permanently secured to the protruding portion downstream of said flow rectifier for generating microscopic eddies in the laminar air flow; said ring including means for fixing and securing a predetermined angle between said honeycomb body an edge surface of the air flow rate meter said flow rectifier in the intake conduit in alignment with the air flow meter said means including elements to individually both center and fix the flow rectifier relative to the air flow rate meter.
Priority Claims (1)
Number |
Date |
Country |
Kind |
90110285.5 |
May 1990 |
EPX |
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Parent Case Info
This application is a continuation of application Ser. No. 07/707,636, filed May 30, 1991, now abandoned.
US Referenced Citations (9)
Foreign Referenced Citations (1)
Number |
Date |
Country |
2434374 |
Mar 1980 |
FRX |
Non-Patent Literature Citations (2)
Entry |
Fisita Congress Report 1986, No. 865078, pp. 3.125-3.131: Hartel et al. |
Messen & Prufen, No. 12 Dec. 1985, pp. 668-671: Hohenstatt et al. |
Continuations (1)
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Number |
Date |
Country |
Parent |
707636 |
May 1991 |
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