GOODMAN TECHNOLOGIES LLC — National Aeronautics and Space Administration SBIR Phase I: S2

GOODMAN TECHNOLOGIES LLC — SBIR Phase I award from National Aeronautics and Space Administration.

Amount
$124,983
Agency
National Aeronautics and Space Administration
Program / Phase
SBIR · Phase I
Topic
S2
Solicitation
SBIR_18_P1
NAICS
Place of performance
NM
Period
2018-07-27 → 2019-02-15

Description

<p style="margin-left:0in; margin-right:0in">High-contrast (10<sup>-10</sup>) imaging and spectroscopy for exoplanet science is critically dependent on telescope optics and wavefront stability. A challenging requirement on the opto-mechanical system is that of wavefront error stability on the order of 10 pm RMS per wavefront control step (~10s of minutes).&nbsp; Goodman Technologies proposes a purposefully engineered 2<sup>nd</sup> Generation structural-grade &ldquo;RoboSiC-S&rdquo; to provide the degree of passive athermality required by the HaBEX, LUVOIR, eLISA, and LISA missions, concomitant with low areal density (4-5 kg/m<sup>2</sup>) and the ability to perform active precision adjustment. The combination of 3D/AM allows the&nbsp;manufacture of high structural efficiency pyramidal, tetrahedral or Kagome truss sandwich core configurations, honeycomb cores, or&nbsp; lattice cores. Clever core design provides the additional stability benefit of cryogenic damping.&nbsp; RoboSiC-S, at 298K, is predicted to have 12X and 2.5X better steady state stability, respectively, &nbsp;than Zerodur&reg; and M55J/954-6 (using the composites cryo-CTE). The average value of the CTE for the JWST M55J/T300/954-6 composite over the 25-150K temperature range calculated from measured Backplane Stability Test Article strains is -0.3 ppm/K (V1 tubes) and -0.125 ppm/K (spanner tubes). For comparison, RoboSiC-S has predicted a CTE of &lt;1 ppm/K from 20-180K, and near-0 CTE (0.027 ppm/K) from 20-60K.&nbsp; In addition to 3D/AM, electrical conductivity of RoboSiC-S allows precision threaded holes and bolts to employ a &ldquo;bolt-together&rdquo; approach such as was used for the composite mirror backplane of the JWST.&nbsp; Ultra-fine &frac14;-80 bolts with 0.25mm pitch threads can be used as positioning actuators for hinged components to provide stable, athermal, and precision alignment. &nbsp;We plan a well-designed project to demonstrate a deployable primary mirror with backing structure, hinges, latches with stability to picometers, areal density of 4-5 kg/m<sup>2</sup>, and packaging efficiency of 7 deployed/stowed diameter.</p><p style="margin-left:0in; margin-right:0in">&nbsp;</p>