Perforated braid with dual core yarns and braiding apparatus
View Patent ↗A braiding apparatus for braiding the perforated braids with constant interval of perforations comprises a first braid section to braid one strand with a plurality of yarns, sequential braid section to braid with two strands and secondary sequential braid section to braid a final strand with the previous process of the strands. This braiding apparatus comprises a carrier guide plate ( 10 ) having a pair of core yarn holes ( 12 ), a plurality of coupling boles ( 13 ), two tracks of carrier contours ( 14 ), a base plate ( 40 ) having a plurality of carriers ( 20 ), feed gears ( 30 ), feed discs ( 31 ), feed gear shafts ( 32 ), actuators ( 42 ), carrier contour changers ( 50 ) including a main block ( 60 ), intermediate cross block ( 70 ) and inner split block ( 80 ) for performing repeated crossing and separating operations. So, the various braids with constant interval of perforations are possibly produced by differ the number of core yarns and carriers.
1. A braiding apparatus for braiding a perforated braid comprises:
a carrier guide plate ( 10 ) providing a pair of core yarn holes ( 12 , 12 ′) at each center of each left half and right half thereof,
a plurality of coupling holes ( 13 , 13 ′) formed in radial direction around circumference of each core yarn hole ( 12 , 12 ′) on said carrier guide plate ( 10 ),
two tracks of carrier contours ( 14 , 14 ′) formed in circular zigzag patterns with a certain depth along the circumferential coupling holes ( 13 , 13 ′), said two tracks of carrier contours ( 14 , 14 ′) forming inner and outer paths around said coupling holes ( 13 , 13 ′) to cross each other,
four square slots ( 15 , 15 ′) perpendicularly arranged each other to form a cross center on time two tracks of the carrier contours ( 14 , 14 ′) at a center of said carrier guide plate ( 10 ),
a plurality of carriers ( 20 ) installed on said carrier contours ( 14 , 14 ′) for rotating and traveling along said carrier contours ( 14 , 14 ′),
a base plate ( 40 ) disposed underneath said carrier guide plate ( 10 ) at a certain distance,
a plurality of feed gears ( 30 ) rotatably mounted on said base plate ( 40 ), a number of said feed gears ( 30 ) being equal to the number of said carriers ( 20 ),
a plurality of feed discs ( 31 ) fixed on top of feed gear shafts ( 32 ), and said feed discs ( 31 ) interposed into carrier bases ( 21 ) located at the lower part of said carriers ( 20 ),
a pair of carrier contour changers ( 50 , 50 ′) mounted underneath said carrier guide plate ( 10 ) and inserted into the four square slots ( 15 , 15 ′) for operationally providing alternate tracks of said carrier contours ( 14 , 14 ′) to cross and separate the carriers ( 20 ) at the cross center of said carrier contours ( 14 , 14 ′), and
a pair of actuators ( 42 , 42 ′) mounted underneath said base plate ( 40 ) connected to said carrier contour changers ( 50 , 50 ′) through an operating rod ( 41 ), a linkage ( 43 ) and a change rod ( 51 ), for repeatedly performing the crossing and separating operations.
2. The braiding apparatus of claim 1 , wherein said carrier guide-plate ( 10 ) provides a total of eight coupling holes ( 13 , 13 ′) and the corresponding carrier contours ( 14 , 14 ′) formed in radial direction around the circumference of each core yarn hole ( 12 , 12 ′) on said carrier guide plate ( 10 ), eight feed discs ( 31 ) mounted on the coupling holes ( 13 , 13 ′), and sixteen carriers ( 20 ) for sixteen strands of core yarns.
3. The braiding apparatus of claim 1 , wherein said carrier guide plate ( 10 ) provides a total of twelve coupling holes ( 13 , 13 ′) and the corresponding carrier contours ( 14 , 14 ′) arranged in the manner that eight coupling boles ( 13 , 13 ′) are formed in radial direction around the circumference of each core yarn hole ( 12 , 12 ′) and each pair of additional coupling holes ( 13 , 13 ′) is disposed parallel to the leftmost and rightmost coupling holes ( 13 , 13 ′) on said carrier guide plate ( 10 ), twelve feed discs ( 31 ) mounted on the coupling holes ( 13 , 13 ′), and twenty-six carriers ( 20 ) for twenty-six strands of core yarns to braid a perforated braid having a rectangular cross-section.
4. The braiding apparatus of claim 1 , wherein said carrier guide plate ( 10 ) provides a total of twelve coupling holes ( 13 , 13 ′) and the corresponding carrier contours ( 14 , 14 ′) formed in radial direction around the circumference of each core yarn hole ( 12 , 12 ′) on said carrier guide plate ( 10 ), twelve feed discs ( 31 ) mounted on the coupling holes ( 13 , 13 ′), and twenty-four carriers ( 20 ) for twenty-four strands of core yarns.
5. The braiding apparatus of claim 1 , wherein said carrier guide plate ( 10 ) provides a total of sixteen coupling holes ( 13 , 13 ′) and the corresponding carrier contours ( 14 , 14 ′) formed in radial direction around the circumference of each core yarn hole ( 12 , 12 ′) on said carrier guide plate ( 10 ), sixteen feed discs ( 31 ) mounted on the coupling holes ( 13 , 13 ′), and thirty-two carriers ( 20 ) for thirty-two strands of core yarns.
6. The braiding apparatus of claim 1 , wherein said carrier guide plate ( 10 ) provides a total of twenty coupling holes ( 13 , 13 ′) and the corresponding carrier contours ( 14 , 14 ′) formed in radial direction around the circumference of each core yarn hole ( 12 , 12 ′) on said carrier guide plate ( 10 ), twenty feed discs ( 31 ) mounted on the coupling holes ( 13 , 13 ′), and forty carriers ( 20 ) for forty strands of core yarns.
7. The braiding apparatus of claim 1 , wherein a pair of carrier contour changers ( 50 , 50 ′) mounted underneath said carrier guide plate ( 10 ) further comprises a pair of change block assemblies ( 90 , 90 ′) and operating frames ( 52 , 52 ′).
8. The braiding apparatus of claim 7 , wherein a pair of change block assemblies ( 90 , 90 ′) further comprises:
a main block ( 60 ) having a longitudinal slot ( 61 ) formed at the lower center of both lateral surfaces that penetrates through the block transversely, a pair of vertical coupling holes ( 67 , 67 ′) formed at opposite ends and perforated at a right angle, a protruding portion ( 62 ) formed at the center between both coupling holes ( 67 , 67 ′) and a concave recess ( 63 ), a vertical split rising opening ( 65 ) of rectangular shape formed at the center of the concave recess ( 63 ) and both side projections ( 64 , 64 ′) constituting the protruding portion ( 62 ), and cross rising openings ( 66 ) of triangular shape formed at opposite sides of the split rising openings ( 65 ),
an intermediate cross block ( 70 ) having an inclined slot ( 71 ) penetrating through the block, a vertical insertion opening ( 72 ) formed at the center of the cross block ( 70 ) and a pair of cross guide flaps ( 73 , 73 ′) formed at opposite sides of the vertical insertion opening ( 72 ) for mating with the cross rising opening ( 66 ) of the main black ( 60 ),
an inner split block ( 80 ) having a declined slot ( 81 ) formed at the lateral surface in the opposite direction of the inclined slot ( 71 ) of said intermediate cross block ( 70 ) and a split guide flap ( 82 ) formed at the center of the upper portion to mate with the split rising opening ( 65 ) of said main block, and
a pair of fixing pins ( 53 ) inserted from one lateral side of the operating frames ( 52 , 52 ′) for sequentially mounting said main block ( 60 ), intermediate cross block ( 70 ) and inner split block ( 80 ) on said operating frames ( 52 , 52 ′).
9. The braiding apparatus of claim 8 , wherein the two operating frames ( 52 , 52 ′) are arranged to cross each other, the upper operating frame (either 52 or 52 ′) has a fixing pin ( 53 ) located at the center of its frame thickness, and the lower operating frame (either 52 or 52 ′) includes a raised mounting portion corresponding to the location of the fixing pin ( 53 ′) on the above operating frame ( 52 or 52 ′), so that each fixing pin ( 53 , 53 ′) mounted on the operating frames ( 52 , 52 ′) is located at the same distance below the carrier guide plate ( 10 ).
10. The braiding apparatus of claim 8 , wherein an inner lateral surface of the concave recess ( 63 ) of said main block ( 60 ) has a convex shape protruding inwards and an outer lateral surface of said cross guide flaps ( 73 , 73 ′) of said intermediate cross block ( 70 ) and both lateral faces of the split guide flaps ( 82 ) of said inner split block ( 80 ) have an inwardly recessed concave shape, so that said carrier base ( 21 ) is able to move smoothly along said carrier contours ( 14 , 14 ′).