Queheillalt et al., 2009 - Google Patents

Titanium alloy lattice truss structures

Queheillalt et al., 2009

View PDF
Document ID
6980018399044981215
Author
Queheillalt D
Wadley H
Publication year
Publication venue
Materials & Design

External Links

Snippet

A high-temperature forming and diffusion bonding method has been investigated for the fabrication of modified pyramidal lattice core sandwich structures from a titanium alloy. A periodic asymmetric hexagonal perforation pattern was cut into thin Ti–6Al–4V sheets which …
Continue reading at www-eng.lbl.gov (PDF) (other versions)

Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B32LAYERED PRODUCTS
    • B32BLAYERED PRODUCTS, i.e. PRODUCTS BUILT-UP OF STRATA OF FLAT OR NON-FLAT, e.g. CELLULAR OR HONEYCOMB, FORM
    • B32B15/00Layered products comprising a layer of metal
    • B32B15/01Layered products comprising a layer of metal all layers being exclusively metallic
    • B32B15/017Layered products comprising a layer of metal all layers being exclusively metallic one layer being formed of aluminium or an aluminium alloy, another layer being formed of an alloy based on a non ferrous metal other than aluminium

Similar Documents

Publication Publication Date Title
Queheillalt et al. Titanium alloy lattice truss structures
Queheillalt et al. Mechanical properties of an extruded pyramidal lattice truss sandwich structure
Dong et al. Mechanical response of Ti–6Al–4V octet-truss lattice structures
Sypeck et al. Cellular metal truss core sandwich structures
US8176635B2 (en) Manufacture of lattice truss structures from monolithic materials
Moongkhamklang et al. Titanium matrix composite lattice structures
US7361412B2 (en) Nanostructured soldered or brazed joints made with reactive multilayer foils
US8650756B2 (en) Manufacture of lattice truss structures from monolithic materials
Zhang et al. Ultralight X-type lattice sandwich structure (I): Concept, fabrication and experimental characterization
Kooistra et al. Shear behavior of aluminum lattice truss sandwich panel structures
Lim et al. Mechanical behavior of sandwich panels with tetrahedral and Kagome truss cores fabricated from wires
Banhart et al. Aluminium foam sandwich panels: manufacture, metallurgy and applications
US6085965A (en) Pressure bonding and densification process for manufacturing low density core metal parts
JP2007501715A (en) Method for controlling heat waves in reactive multilayer bonding and products obtained thereby
Ubertalli et al. Joining of AL-6016 to Al-foam using Zn-based joining materials
Li et al. Mechanical properties of cast Ti-6Al-4V lattice block structures
Xiong et al. Mechanical behavior of sandwich panels with hollow Al–Si tubes core construction
Lim et al. A new type of sandwich panel with periodic cellular metal cores and its mechanical performances
D’Urso et al. The formability of aluminum foam sandwich panels
Marcadon et al. Mechanical behaviour of hollow-tube stackings: Experimental characterization and modelling of the role of their constitutive material behaviour
Biagi et al. In‐Plane Compression Response of Extruded Aluminum 6061‐T6 Corrugated Core Sandwich Columns
Rathbun et al. Structural performance of metallic sandwich beams with hollow truss cores
Zhang et al. Investigation of interface bonding mechanism of an explosively welded tri-metal titanium/aluminum/magnesium plate by nanoindentation
Heo et al. Microstructure and mechanical properties of Ni foam/stainless steel joint brazed using Ni-based alloy
Mansoor et al. Three dimensional forming of compressed open-cell metallic foams at elevated temperatures