High-voltage components
The present invention relates to high-voltage components, especially for electromobility, comprising polymer compositions based on at least one polyester and at least one pigment system based on mixed oxides containing titanium dioxide, tin oxide and zinc oxide, and to the use thereof for production of polyester-based high-voltage components or for marking of polyester-based products as high-voltage components by laser.
1 . A polymer composition comprising
A) 100 parts by mass of at least one polyester, and
B) 0.01 to 5 parts by mass of at least one pigment system based on an inorganic mixed oxide containing titanium oxide, tin oxide and zinc oxide,
with the proviso of a ΔE<30 with respect to the L*a*b* coordinates of a colour number beginning with “2” in the RAL colour chart.
2 . The polymer composition according to claim 1 , wherein the polyester is C 2 -C 10 -polyalkylene terephthalate.
3 . The polymer composition according to claim 1 , wherein the polyester is polybutylene terephthalate or polycarbonate.
4 . The polymer composition according to claim 1 , wherein the ΔE is <20 with respect to the L*a*b* coordinates of a colour number beginning with “2” in the RAL colour chart.
5 . The polymer composition according to claim 1 , wherein the ΔE is <12 with respect to the L*a*b* coordinates of a colour number beginning with “2” in the RAL colour chart.
6 . The polymer composition according to claim 1 , wherein the ΔE is <5 with respect to the L*a*b* coordinates of a colour number beginning with “2” in the RAL colour chart.
7 . The polymer composition according to claim 1 , wherein component B) is C.I. Pigment Orange 82 with CAS No. 2170864-77-2 or C.I. Pigment Yellow 216 with CAS No. 817181-98-9.
8 . The polymer composition according to claim 1 , further comprising C) 1 to 150 by mass of at least one filler or reinforcer.
9 . The polymer composition according to claim 8 , further comprising D) 3 to 100 parts by mass of at least one flame retardant in addition to components A), B) and C) or in place of C).
10 . The polymer composition according to claim 8 , further comprising E) 0.01 to 80 parts by mass of at least one further additive other than components B), C) and D) in addition to components A), B), C) and D) or in place of C) and/or D).
11 . The polymer composition according to claim 8 , wherein the filler or reinforcer C) is selected from the group consisting of glass beads, solid or hollow glass beads, glass fibres, ground glass, amorphous quartz glass, aluminium borosilicate glass having an alkali metal content of 1%, amorphous silica, quartz flour, calcium silicate, calcium metasilicate, magnesium carbonate, kaolin, calcined kaolin, chalk, kyanite, powdered or ground quartz, mica, phlogopite, barium sulfate, feldspar, wollastonite, montmorillonite, pseudoboehmite of the formula AlO(OH), magnesium carbonate and talc.
12 . The polymer composition according to claim 9 , wherein the flame retardant D) is selected from the group consisting of mineral flame retardants, nitrogen-containing flame retardants and phosphorus-containing flame retardants.
13 . The polymer composition according to claim 10 , wherein additive E) is at least one thermal stabilizer selected from the group consisting of sterically hindered phenols, sterically hindered phenols containing at least one 2,6-di-tert-butylphenyl group and/or 2-tert-butyl-6-methylphenyl group, phosphites, hypophosphites, sodium hypophosphite NaH 2 PO 2 , hydroquinones, aromatic secondary amines and 3,3′-thiodipropionates.
14 . The polymer composition according to claim 10 , wherein the additive E) is titanium dioxide.
15 . A high-voltage component based on a polymer composition according to claim 1 .
16 . The high-voltage component according to claim 15 , wherein said component is a cover for electrics or electronics, control devices, covers/housings for fuses, relays, battery cell modules, fuse holders, fuse plugs, terminals, cable holders or sheathings, especially sheathings of high-voltage bus bars.
17 . A process for producing high-voltage components, comprising the steps of mixing
A) 100 parts by mass of at least one polyester and
B) 0.01 to 5 parts by mass of at least one pigment system based on inorganic mixed oxides containing titanium dioxide, tin oxide and zinc oxide to form a polymer composition,
extruding the polymer composition to strands,
cooling the strands until pelletizable,
drying the strands,
pelletizing the strands, and
injection moulding, including the special methods of gas injection methodology, water injection methodology and projectile injection methodology, by extrusion methods, including profile extrusion, or by blow moulding, with the proviso of ΔE<30 with respect to the L*a*b* coordinates of a colour number beginning with “2” in the RAL colour chart.
18 . The process according to claim 17 , wherein the high-voltage component is subsequently inscribed with a laser.