EP1134872A2

Alternator stator winding assembly therefor, and method of manufacture for the stator winding assembly

Abstract

A stator winding includes a plurality of winding sub-portions in each of which a strand of wire formed from a continuous wire is wound so as to alternately occupy an inner layer and an outer layer in a slot depth direction within slots at intervals of a predetermined number of slots and form a lap winding having two turns in each lap, the strands of wire folding over outside the slots at end surfaces of a stator core, four of the strands of wire constituting the winding sub-portions being housed so as to line up in each of the slots in a slot depth direction, turn portions formed by folding the strands of wire over outside the slots at a first end surface of the stator core being disposed circumferentially to form two rows in a radial direction, and turn portions formed by folding the strands of wire over outside the slots at a second end surface of the stator core being disposed circumferentially to form two layers in an axial direction.

EP1134872A2, drawing sheet 1
Sheet 1 of 24

Term

Term ended

Projected expiry passed 8 December 2020, 5.8 years ago.

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8 claims: 5 independent, 3 dependent

  1. 1
    An alternator comprising:a stator (8,8A,8B,8C) having a cylindrical stator core (15) formed with a plurality of slots (15a) extending axially at a predetermined pitch in a circumferential direction, and a stator winding (16,16A,16B,16C) installed into said stator core (15);and a rotor (7) for forming north-seeking (N) and south-seeking (S) poles about a rotational circumference, said rotor being disposed on an inner circumferential side of said stator core, wherein said stator winding (16,16A,16B,16C) comprises a plurality of winding sub-portions (31,32) in each of which a strand of wire (30) formed from a continuous wire is wound so as to alternately occupy an inner layer and an outer layer in a slot depth direction within said slots (15a) at intervals of a predetermined number of slots by folding over said strand of wire (30) outside said slots at end surfaces of said stator core (15) and form a lap winding having two turns in each lap.
  2. 5
    A winding assembly for an alternator, said winding assembly (41) comprising a winding group composed of 2n winding sub-portions (31,32) disposed at a pitch of p, each of said winding sub-portions (31,32) being constructed by folding and bending one strand of wire (30) formed from a continuous wire into a pattern, said pattern having:first straight portions (30a) disposed at a pitch of 2np;second straight portions (30b) disposed at said pitch of 2np being offset by an amount w to a first side in a width direction from said first straight portions and offset by an amount np forwards relative to a direction of disposal of said first straight portions;third straight portions (30c) disposed at said pitch of 2np being offset by said amount w to said first side in said width direction from said second portions and offset by said amount np backwards relative to said direction of disposal of said second straight portions;fourth straight portions (30d) disposed at said pitch of 2np being offset by said amount w to said first side in said width direction from said third straight portions and offset by said amount np forwards relative to said direction of disposal of said third straight portions;first turn portions (30e) linking first ends of said first straight portions (30a) to first ends of said second straight portions (30b) offset by said amount np forwards relative to said direction of disposal of said first straight portions;second turn portions (30f) linking second ends of said second straight portions (30b) to second ends of said third straight portions (30c) offset by said amount np backwards relative to said direction of disposal of said second straight portions;third turn portions (30g) linking first ends of said third straight portions (30c) to first ends of said fourth straight portions (30d) offset by said amount np forwards relative to said direction of disposal of said third straight portions;and fourth turn portions (30h) linking second ends of said fourth straight portions (30d) to second ends of said first straight portions (30a) offset by said amount np forwards relative to said direction of disposal of said fourth straight portions, wherein said winding sub-portions (31,32) are disposed parallel to each other at said pitch of p in said direction of disposal such that said first to fourth straight portions (30a-30d) form four layers in said width direction, said first turn portions (30e) are disposed parallel to each other at said pitch of p and said third turn portions (30g) are disposed parallel to each other at said pitch of p such that said first turn portions (30e) and said third turn portions (30g) form two rows in said direction of disposal, and said second turn portions (30f) are disposed parallel to each other at said pitch of p and said fourth turn portions (30h) are disposed parallel to each other at said pitch of p such that said second turn portions (30g) and said fourth turn portions (30h) form two layers in a longitudinal direction of said straight portions.
  3. 6
    A winding assembly for an alternator, said winding assembly (41B) comprising a winding group composed of 2n winding sub-portions (31,32) disposed at a pitch of p, each of said winding sub-portions being constructed by folding and bending one strand of wire (30) formed from a continuous wire into a pattern, said pattern having:first straight portions (30a) disposed at a pitch of 2np;second straight portions (30b) disposed at said pitch of 2np being offset by an amount w to a first side in a width direction from said first straight portions and offset by an amount np forwards relative to a direction of disposal of said first straight portions;third straight portions (30c) disposed at said pitch of 2np being offset by said amount w to said first side in said width direction from said second portions and offset by said amount np forwards relative to said direction of disposal of said second straight portions;fourth straight portions (30d) disposed at said pitch of 2np being offset by said amount w to said first side in said width direction from said third straight portions and offset by said amount np backwards relative to said direction of disposal of said third straight portions;first turn portions (30e) linking first ends of said first straight portions (30a) to first ends of said second straight portions (30b) offset by said amount np forwards relative to said direction of disposal of said first straight portions;second turn portions (30f) linking second ends of said second straight portions (30b) to second ends of said third straight portions (30c) offset by said amount np forwards relative to said direction of disposal of said second straight portions;third turn portions (30g) linking first ends of said third straight portions (30c) to first ends of said fourth straight portions (30d) offset by said amount np backwards relative to said direction of disposal of said third straight portions;and fourth turn portions (30h) linking second ends of said fourth straight portions (30d) to second ends of said first straight portions (30a) offset by said amount np forwards relative to said direction of disposal of said fourth straight portions, wherein said winding sub-portions (31,32) are disposed parallel to each other at said pitch of p in said direction of disposal such that said first to fourth straight portions (30a-30d) form four layers in said width direction, said first turn portions (30e) are disposed parallel to each other at said pitch of p and said third turn portions (30g) are disposed parallel to each other at said pitch of p such that said first turn portions (30e) and said third turn portions (30g) form two rows in said direction of disposal, and said second turn portions (30f) are disposed parallel to each other at said pitch of p and said fourth turn portions (30h) are disposed parallel to each other at said pitch of p such that said second turn portions (30f) and said fourth turn portions (30h) form two layers in a longitudinal direction of said straight portions.
  4. 7
    A method of manufacture for a winding assembly (41) for an alternator, said method comprising steps of:disposing a group of 2n straight strands of wire (30) at a pitch p in a first plane;forming a lightning-bolt shaped pattern composed of a plurality of basic patterns by folding and bending said group of strands of wire (30) in said plane, each of said basic patterns comprising: first straight portions (30a) having a length l 0 ;second straight portions (30b) having said length l 0 being linked to said first straight portions by first inclined portions (30e) having a length l 1 , said second straight portions being offset by an amount np to a first side in a direction of disposal of said strands of wire relative to said first straight portions;third straight portions (30c) having said length l 0 being linked to said second straight portions by second inclined portions (30f) having said length l 1 , said third straight portions being offset by said amount np to a second side in a direction of disposal of said strands of wire relative to said second straight portions;and fourth straight portions (30d) having said length l 0 being linked to said third straight portions by third inclined portions (30g) having said length l 1 , said fourth straight portions being offset by said amount np to said first side in a direction of disposal of said strands of wire relative to said third straight portions, wherein said lightning-bolt shaped pattern is constructed by repeating said basic pattern a predetermined number of times by offsetting said basic pattern to said first side in said direction of disposal of said strands of wire by fourth inclined portions (30h) having a length 12, said length 12 being greater than said length l 1 ;forming a flattened cylindrical body (40) by folding over said group of strands of wire (30) formed into said lightning-bolt shaped pattern in a first direction at central portions of said first and said third inclined portions (30e,30g), said cylindrical body being constructed by helically winding said group of strands of wire such that said second and third straight portions (30b,30d) linked by said second inclined portions (30f) and said first and fourth straight portions (30d,30a) linked by said fourth inclined portions (30h) alternately occupy said first plane and a second plane;and forming a winding group by folding over said cylindrical body (40) at central portions of said second and said fourth inclined portions (30f,30h) in a second direction such that said second and said third straight portions (30b,30c) face each other, wherein said first to fourth straight portions (30a-30d) are disposed parallel to each other at said pitch of p in said direction of disposal such that said first to fourth straight portions (30a-30d) form four layers in said width direction, first turn portions (30e) formed by folding over said group of strands of wire at said first inclined portions (30e) are disposed parallel to each other at said pitch of p and third turn portions (30g) formed by folding over said group of strands of wire at said third inclined portions (30g) are disposed parallel to each other at said pitch of p such that said first turn portions and said third turn portions (30e,30g) form two rows in said direction of disposal, and second turn portions (30f) of said strands of wire formed by folding over said cylindrical body (40) at said second inclined portions (30f) are disposed parallel to each other at said pitch of p and said fourth turn portions (30h) of said strands of wire formed by folding over said cylindrical body (40) at said fourth inclined portions (30h) are disposed parallel to each other at said pitch of p such that said second turn portions (30f) and said fourth turn portions (30h) form two layers in a longitudinal direction of said straight portions.
  5. 8
    A method of manufacture for a winding assembly (41B) for an alternator, said method comprising steps of:disposing a group of 2n straight strands of wire (30) at a pitch p in a first plane;forming a lightning-bolt shaped pattern composed of a plurality of basic patterns by folding and bending said group of strands of wire (30) in said plane, each of said basic patterns comprising: first straight portions (30a) having a length l 0 ;second straight portions (30b) having said length l 0 being linked to said first straight portions by first inclined portions (30e) having a length l 1 , said second straight portions being offset by an amount np to a first side in a direction of disposal of said strands of wire relative to said first straight portions;third straight portions (30c) having said length l 0 being linked to said second straight portions by second inclined portions (30f) having said length l 1 , said third straight portions being offset by said amount np to said first side in a direction of disposal of said strands of wire relative to said second straight portions;and fourth straight portions (30d) having said length l 0 being linked to said third straight portions by third inclined portions (30g) having said length l 1 , said fourth straight portions being offset by said amount np to a second side in a direction of disposal of said strands of wire relative to said third straight portions, wherein said lightning-bolt shaped pattern is constructed by repeating said basic pattern a predetermined number of times by offsetting said basic pattern to said first side in said direction of disposal of said strands of wire by fourth inclined portions (30h) having a length 12, said length 12 being greater than said length l 1 ;forming a flattened cylindrical body (40B) by folding over said group of strands of wire formed into said lightning-bolt shaped pattern in a first direction at central portions of said first and said third inclined portions (30e,30g), said cylindrical body (40B) being constructed by helically winding said group of strands of wire (30) such that said second and third straight portions (30b,30c) linked by said second inclined portions (30f) and said first and fourth straight portions (30a,30d) linked by said fourth inclined portions (30h) alternately occupy said first plane and a second plane;and forming a winding group by folding over said cylindrical body (40B) at central portions of said second and said fourth inclined portions (30f,30h) in a second direction such that said second and said third straight portions (30b,30c) face each other, wherein said first to fourth straight portions (30a-30d) are disposed parallel to each other at said pitch of p in said direction of disposal such that said first to fourth straight portions (30a-30d) form four layers in said width direction, first turn portions (30e) formed by folding over said group of strands of wire at said first inclined portions (30e) are disposed parallel to each other at said pitch of p and third turn portions (30g) formed by folding over said group of strands of wire at said third inclined portions (30g) are disposed parallel to each other at said pitch of p such that said first turn portions (30e) and said third turn portions (30g) form two rows in said direction of disposal, and second turn portions (30f) of said strands of wire formed by folding over said cylindrical body (40B) at said second inclined portions (30f) are disposed parallel to each other at said pitch of p and said fourth turn portions (30h) of said strands of wire formed by folding over said cylindrical body (40B) at said fourth inclined portions (30h) are disposed parallel to each other at said pitch of p such that said second turn portions (30f) and said fourth turn portions (30h) form two layers in a longitudinal direction of said straight portions.