Blade tip clearance measurement sensor for gas turbine engines
View Patent ↗An electromagnetic field sensor assembly for blade tip clearance measurement in a gas turbine engine is disclosed that includes a ceramic sensor body, a multi-layered wire coil wound about a distal end portion of the sensor body for producing an electromagnetic field, a ceramic well enclosing the sensor body and the coil, and a metallic housing surrounding the well and having an open distal end.
1. An electromagnetic field sensor assembly, comprising:
a) a ceramic sensor body;
b) a wire coil wound about a distal end portion of the ceramic sensor body for producing an electromagnetic field, wherein the wire coil is formed from a platinum group metal or an alloy thereof;
c) a ceramic well enclosing the ceramic sensor body and the wire coil;
d) a metallic housing surrounding a periphery of the ceramic well and having an open distal end;
e) a cable adapter joined to a proximal end portion of the metallic housing, wherein a pair of coaxial cable assemblies are joined to the cable adapter for connection with the coil, wherein cable lead wires are joined to center conductors of the coaxial cables for connection to opposite ends of the coil, and wherein the center conductor of each coaxial cable is formed from two different conductor materials connected in series to one another.
2. An electromagnetic field sensor assembly comprising:
a) two ceramic sensor bodies;
b) a wire coil wound about a distal end portion of each ceramic sensor body for producing an electromagnetic field, wherein the wire coils are formed from a platinum group metal or an alloy thereof;
c) a ceramic well enclosing the two ceramic sensor bodies and the wire coils; and
d) a metallic housing surrounding a periphery of the ceramic well and having an open distal end.
3. An electromagnetic field sensor assembly comprising:
a) two ceramic sensor bodies;
b) a wire coil wound about a distal end portion of each ceramic sensor body for producing an electromagnetic field, wherein the wire coils are formed from a platinum group metal or an alloy thereof;
c) a ceramic well enclosing the two ceramic sensor bodies and the wire coils; and
d) a metallic housing surrounding a periphery of the ceramic well and having an open distal end, wherein the distal end portions of the two sensor bodies are axially off-set from one another.