[0001] This invention relates to a knitting cam for controlling back and forth movement
of a compound needle having a single butt for back and forth movement of the needle,
and more particularly relates to a knitting and transfer cam for a flat knitting machine
which also performs transfer of a loop.
[0002] A knitting and transfer cam for a flat knitting machine for moving needles upwardly
and downwardly between a knit position, a tuck position and a welt position in order
to knit a knitted fabric and for operating the needles so as to transfer loops is
known for example from Japanese Laid-Open Patent Application No. Heisei 4-2847.
[0003] In a lock having a cam as described above, at a location above a needle raising cam
for raising a needle for knitting, a transfer raising cam for further raising a needle
on the delivery side in transfer is provided, so that a needle on the delivery side
is raised to a higher position than that adopted upon ordinary knitting. Meanwhile,
a loop receiving side cam for raising a needle on the loop receiving side in transfer
at such a timing that the needle on the loop receiving side is inserted into a loop
of a knitted fabric which is raised to its highest position at the timing at which
the needle on the delivery side is raised to its highest position and is held at a
shoulder portion provided on the shank of the needle on the loop delivery side is
provided in a central recessed portion of the needle raising cam.
[0004] Then, butt travel loci which extend along the cams are suitable changed over to perform
ordinary knitting or transfer of loops. The changing over between the butt travelling
loci is normally performed by suitable projection towards or retraction from an operative
position of a cam located at a predetermined position. However, a plurality of movable
cams are required for the changing over for ordinary knitting or for transfer of loops,
and this means that the lock is complicated due to the arrangement of the movable
cams.
[0005] Taking the foregoing into consideration, it is an object of the present invention
to provide a knitting cam for a knitting lock which allows transfer of a loop using
a needle of the type having a single butt for back and forth movement of the needle,
wherein, by using only one movable cam for transfer selection, occurrence of trouble
such as a failure in changing over in cam control which arises from employment of
a plurality of movable cams is eliminated and use for a long period of time can be
achieved.
[0006] This is achieved in accordance with the invention by a knitting and transfer cam
for a flat knitting machine, wherein, at a location above a needle raising cam having
a loop receiving needle raising cam in the inside thereof, a loop delivering needle
raising cam having a raising cam face continuous with a raising cam face of the needle
raising cam is mounted for movement into and out of an operative position, and a loop
receiving needle lowering cam face having a loop receiving needle butt lowering locus
continuous with a needle butt raising locus of the loop receiving needle raising cam
is formed along a lower edge of the loop delivering needle raising cam.
[0007] The loop receiving needle raising cam provided in a recessed portion in the inside
of the needle raising cam may comprise a fixed cam and a rockable cam.
[0008] Furthermore, in a preferred embodiment, along a lower edge of a needle raising cam
top element which faces a concave portion provided at the centre of the needle raising
cam, an inclined face continuous with the recessed portion is provided, and the needle
raising cam top element is formed as a half height element while a loop delivering
raising cam is formed with full height such that a loop receiving needle butt which
has been raised along a loop receiving needle raising locus extending along the loop
receiving needle raising cam passes the needle raising cam top element and is engaged
by the loop receiving needle lowering cam face on the lower edge of the loop delivering
needle raising cam so as to be introduced into the loop receiving needle butt lowering
locus.
[0009] In order to perform ordinary knitting of a knit stitch using the knitting cam mechanism
of the present invention, the loop delivering needle raising cam is retracted to its
inoperative position while the needle raising cam top element is formed as a cam which
can raise a needle to its highest position so that a needle to form a loop is first
raised to its highest position by the needle raising cam and the needle raising cam
top element and is then lowered by the knitting cam while it receives, in the hook
thereof, a yarn supply and draws out the supplied yarn through an old loop to form
a new loop.
[0010] In order to knit a tuck stitch, when a butt comes to the top portion of the needle
raising cam before it is raised to the needle raising cam top element, the butt is
sunk by a presser so that the butt subsequently passes the top portion of the needle
raising cam without engaging with the needle raising cam top element and is then lowered
by the knitting cam. Accordingly, the amount of rise of the needle is smaller, and
a supplied yarn in the last course held by the hook is not knocked over. Since a yarn
for formation of a new loop is further supplied into the hook, if the sequence is
repeated, then a plurality of supplied yarns are held in the hook. Then, if the needle
butt is subsequently raised to the top portion of the needle raising cam top element
similarly as upon knitting of a knit stitch and is then lowered by the knitting cam,
then a new loop is drawn out through loops of all supplied yarns already held in the
hook, thereby forming a tuck loop.
[0011] A higher density tuck stitch which has a smaller loop length than the tuck stitch
described above is knitted in the following manner. Upon formation of a tuck stitch
described above, the presser acts, when a butt having passed the top portion of the
needle raising cam comes to the knitting cam, to push the butt into a corresponding
needle groove so that the butt jumps the lowering cam face of the knitting cam without
engaging with the same. The butt is then engaged by the lowering cam face of the fixed
cam located in the inside of the knitting cam so that it is lowered by the lowering
cam face of the fixed cam. Since the most lowered position of the butt then is higher
than the most lowered position by the knitting cam, a new loop thus produced is a
higher density loop which is smaller than a loop formed by the knitting cam.
[0012] Transfer of a loop is performed in the following manner. Transfer of a loop is performed
with the loop delivering needle raising cam positioned in its operative position.
A needle on the loop delivery side is raised to its highest position, and the hook
in an open condition of a receiving side needle is inserted into a loop held at a
stepped portion of the needle at which a blade is provided. Thereafter, the loop delivery
side needle and then the receiving side needle are lowered, whereupon the delivery
side needle moves out of the loop while the loop is received in the hook of the receiving
side needle, thereby completing transfer of the loop.
[0013] In particular, while the needle butt on the loop delivery side is raised to its highest
position by the needle raising cam and the loop delivering needle raising cam, the
butt of the loop receiving side needle jumps the needle raising cam and is raised
to a position around its tuck position by the loop receiving needle raising fixed
cam and the rockable cam in the needle raising cam. As a result of the rising movement,
the loop receiving side needle inserts its hook into the blade of the loop delivery
side needle to thus insert the hook into the loop held at the stepped portion of the
loop delivery side needle. Then, the loop receiving side needle is lowered a little
by the loop receiving needle lower cam face provided on the lower edge of the transfer
raising cam, whereafter the needle butt is pushed in by an action of the presser.
The needle butt thus pushed in jumps the raising can face of the needle raising cam
and the lowering cam face of the knitting cam and then is engaged by the lowering
cam face of the fixed cam in the inside of the knitting cam so that it is lowered
to the height of the original position after a delay from the loop delivery side.
During this operation, the loop delivery side needle continues to be lowered until
it comes to the lowermost position of the knitting cam delivering its loop to the
hook of the loop receiving side needle.
[0014] In order to perform intermediate split knitting (increase of a stitch), when the
butt of the loop delivering needle is lowered to the tuck position, the butt is pushed
in by the presser so that it thereafter jumps the lowering cam face of the knitting
cam and enters the concave portion in the inner face of the knitting cam, in which
it passes substantially horizontally, whereafter it is lowered to the height adopted
upon starting by the lowering cam face of the fixed cam. During the operation, on
the loop receiving side, similarly as upon transfer of a loop described above, the
needle butt is first lowered by the loop receiving needle lowering cam face on the
lower face of the loop delivering needle raising cam and then jumps, by an action
of the presser, the raising cam face of the needle raising cam and the lowering cam
face of the knitting cam and moves generally horizontally in the recessed portion
in the inner face of the knitting cam. A loop is held in the hooks of both of the
needles on the loop delivery side and the loop receiving side. Then, the two needles
are both lowered to the same height positions as those upon starting along the fixed
cam faces.
[0015] An example of an embodiment of a cam in accordance with the present invention will
now be described by way of example and with reference to the accompanying drawings.
In the drawings:
Fig. 1 shows an embodiment of the present invention and is an arrangement view of
a cam lock of a carriage as viewed from below showing the travel loci of a butt upon
transfer of a loop and intermediate increase of a loop;
Fig. 2 is a side elevational view of a needle, a select jack, a selector and so forth;
Fig. 3 shows the embodiment of the present invention and is a cam arrangement view
of the cam lock of the carriage as viewed from below showing the travel loci of a
butt upon knitting of a knit stitch, a tuck stitch and a welt stitch; and,
Fig. 4 is a cam arrangement view showing the travel loci of a butt upon transfer of
a loop and intermediate increase of a loop.
[0016] A carriage in which a cam 1 of the present invention is incorporated is shown as
viewed from the lower face side in Figs. 1 and 3, and a side elevation of a needle
2 and so forth operated by a cam lock of the carriage is shown in Fig. 2.
[0017] The cam 1 of the present invention is provided for use with a needle 2 of the one-butt
type. In the example shown, the needle 2 is of the type wherein a needle jack 4 is
engaged with a needle body 3, and a single needle butt 5 is provided on the needle
jack 4. A slider 7 is inserted on an upper edge of an end of the needle body 3 for
fitting sliding movement in a channel-shaped portion of the needle jack 4 so that,
when a slider butt 8 is operated, a hook 9 of the needle body 3 can be opened or closed
by a forward end portion of the slider 7. A head portion of a select jack 10 is engaged
with an upper portion of a tail portion of the needle jack 4, while a head portion
of a selector 11 is engaged with the select jack 10.
[0018] The needle body 3, needle jack 4, select jack 10 and selector 11 are inserted and
supported for sliding movement in each of needle grooves of a needle bed (not shown).
The select jack 10 has recesses 12, 13 and 14 formed along a lower edge of a tail
portion thereof. A wire 15 extending through the needle bed in a direction perpendicular
to the needle grooves in which the needles 2, select jacks 10 and so forth are inserted
and supported is engaged in one of the recesses 12, 13 and 14 to define the position
of the butt 16 of the select jack 10 in the needle groove. When the wire 15 is engaged
in the recess 12, 13 or 14, the butt 16 of the select jack 10 is positioned at an
A position, an H position or a B position, respectively.
[0019] A cam arrangement of a lock 21 will now be described. The cam 1 of the present invention
for performing knitting and transfer of loops is arranged at the centre of the lock.
A needle raising cam 23 provided on a base plate 22 at the position of the centre
of the lock 21 has a trapezoidal shape having a pair of raising cam faces 23a and
23b on the left and right sides thereof and has a pair of downwardly inclined faces
26a and 26b provided at a top portion thereof and extending parallel to the direction
of movement of the carriage such that they are inclined towards the centre of the
cam. A needle raising cam top element 28 of gate shape and of half height is positioned
between the inclined faces 26a and 26b, and has a pair of triangular raising cam faces
28a and 28b at a top portion thereof and has an inclined face 28d formed along a bottom
edge thereof and defining a recessed portion 28c therein.
[0020] The needle raising cam 23 is formed from a single part including the needle raising
cam top element 28. In order to work the needle raising cam in such a shape that the
inclined face 28d on the lower edge of the needle raising cam top element 28 encroaches
upon the needle raising cam top element 28, some extension must be left at a flat
portion of the needle raising cam top element 28 at the extremity of the inclined
face 28d, and to this end the width of the top portion in a horizontal direction to
be jumped upon knitting of a tuck stitch is greater than that of a conventional raising
cam. Although a construction of the needle raising cam 23 and of the needle raising
cam top element 28 from separate parts can decrease the range over which a needle
butt must jump by an action of a tuck presser, such a structure as described above
is used in the present invention in order to reduce the number of parts.
[0021] A pair of downwardly inclined faces 30a and 30b inclined towards the centre are provided
parallel to the direction of movement of the carriage on the inner sides of central
portions of the raising cam faces 23a and 23b of the needle raising cam 23 respectively,
and a loop receiving side needle raising cam 32 is provided between the inclined faces
30a and 30b. The loop receiving side needle raising cam 32 is composed of a loop receiving
side needle raising fixed cam 33 of a mountain shape having a pair of raising cam
faces 33a and 33b on the opposite side thereof, and a loop receiving side needle raising
rockable cam 34 having a pair of cam faces 34a and 34b of a mountain shape and supported
for rocking motion around a pivot 35. The loop receiving side needle raising rockable
cam 34 is provided in an overlapping condition with the loop receiving side needle
raising fixed cam 33 in a concave portion 31 continuous with the inclined faces 30a
and 30b. The loop receiving side needle raising rockable cam 34 has a top portion
projecting as a triangular shape from the top portion of the loop receiving side needle
raising fixed cam 33 until it is positioned within the recessed portion 28c of the
needle raising cam top element 28 such that, when the loop receiving side needle raising
rockable cam 34 is rocked to the right in Fig. 1, the raising cam face 34a is aligned
with the raising cam face 33a of the needle raising cam 23, but when the loop receiving
side needle raising rockable cam 34 is locked to the left, the raising cam face 34b
is aligned with the raising cam face 33b of the needle raising cam 23. The top portion
of the rockable cam 34 extends fully from the base plate 22 similarly to the needle
raising cam 23.
[0022] A loop delivering needle raising cam 40 is provided at a location above the needle
raising cam top element 28. The loop delivering needle raising cam 40 has a mountain
shape having a pair of raising cam faces 40a and 40b on the left and right sides thereof
and has a concave portion 40c formed along a lower edge thereof such that it accepts
a top portion of the needle raising cam top element 28 therein. The loop delivering
needle raising cam 40 has a pair of half thickness portions 40f and 40g having lowering
cam faces 40d and 40e on the left and right sides of the concave portion 40c respectively.
The loop delivering needle raising cam 40 is supported such that it is projected to
or retracted from a full position in a vertical direction by suitable means. A pair
of shoulder portions 44a and 44b are formed along a lower side of the cam 40 such
that the width of the lower side of the cam 40 is a little narrower than the width
of the top portion of the needle raising cam 23, but the raising cam face 23a of the
needle raising cam 23 and the raising cam face 40a of the loop delivering needle raising
cam 40 are continuous with each other. A guard cam 46 is provided in such a position
that it surrounds a top portion of the loop delivering needle raising cam 40 with
a butt path 45 left therebetween.
[0023] A pair of knitting cams 49 and 50 having lowering cam faces 47 and 48 opposed to
the raising cam faces 23a and 23b of the needle raising cam 23 are mounted for upward
and downward movement with butt paths 51 and 52 left therebetween. Since the knitting
cams 49 and 50 have a symmetrical structure to each other, only the knitting cam 50
will be described.
[0024] While the knitting cam 50 has the lowering cam face 48 formed from a face opposed
to the raising cam face 23b of the needle raising cam 23, a central portion thereof
is formed as a very thin concave portion 53, and an inclined face 54 is formed from
a portion of the knitting cam 50 positioned a little inwardly from the lowering cam
face 48 towards the concave portion 53.
[0025] Further, a guide cam 56 having an extension 55 extending into the concave portion
53 of the knitting cam 50 is provided at a fixed position adjacent to the knitting
cam 50. The knitting cam 50 is supported on the base plate 22 for movement in the
direction of the lowering cam face 48 by a member which is not shown. One side of
the extension 55 forms a lowering cam face 57 for knitting a higher density tuck stitch,
for a loop receiving needle and for intermediate stitch increase. The lowering cam
face 57 extends parallel to the lowering cam face 48 for loop formation of the knitting
cam 50.
[0026] A slider guide cam 58 for engaging with the slider butt 8 to operate the slider 7
for the needle 2 is provided at the centre of the lock 21 above the guard cam 46.
In connection with the slider guide cam of Figs. 1 and 3, each cam denoted at H is
a cam of half height, and each cam denoted at F is a cam of full height.
[0027] A pair of A position pressers 60 and 61 are provided at positions below the needle
raising cam 23 on a locus along which the butt 16 of the select jack 10 moved to the
A position by the selector 11 moves, and three pressers 62, 63 and 64 are provided
at positions on another locus along which the butt 16 selected to the H position by
the selector 11 moves. A presser 65 is provided at a position on a further locus along
which the butt 16 selected to the B position moves. Each of the pressers 60, 61 and
63 assumes, in an inoperative condition, a respective upwardly rocked position as
shown in Fig. 1, while each of the pressers 62 and 64 assumes a downwardly rocked
position, and the presser 65 is fixed. It is to be noted that the pressers 60 to 64
may be constructed so as not to be rocked but to be sunk.
[0028] While the presser 63 sinks a needle jack butt corresponding to a needle butt which
is to jump the needle raising cam top element 28 as described hereinabove, since the
jumping width is great as described above, the presser 63 also has a great length
so as to cover the extent of the width. Consequently, the opposite ends of the presser
63 must be arranged in an overlapping relationship with the end portions of the pressers
62 and 64 positioned on each side of the presser 63 and are thus arranged as in the
embodiment.
[0029] Methods of knitting a knitted fabric will now be described.
[0030] While methods of forming a knit stitch, a tuck stitch and a miss stitch are described
with reference to Fig. 3, upon knitting of the stitches, the loop delivering needle
raising cam 40 is sunk to an inoperative position.
[0031] The operation of knitting a knit stitch will now be described.
[0032] It is assumed that, upon knitting of a knitted fabric, the carriage moves in the
direction indicated by the arrow in Fig. 3. Selection of the needles 2 to the knit,
tuck and welt positions upon knitting is performed by known means, and those select
jack butts 16 which correspond to those needles to be raised to the knit position
are positioned at the A position. In this instance, the pressers 60 and 61 are positioned
to their respective inoperative positions so that they may not act upon the select
jack butts 16. Consequently, as seen from a locus A' in Fig. 3, the needle butt 5
of each of those needles is engaged with the raising cam face 23a of the raising cam
23 and is raised along the cam face 23a. In this instance, since the loop delivering
needle raising cam 40 is in its sunk position, the needle butt 5 having been raised
along the cam face 23a then moves horizontally relative to the carriage remaining
at the position of the shoulder 44a of the needle raising cam 23, whereafter it is
raised to its highest position by the needle raising cam top element 28. Then, the
needle receives a yarn supply from a yarn feed (not shown), and then as the carriage
moves further, the needle butt 5 is engaged with and lowered by a lowering cam face
46b of the guard cam 46. Thereafter, the needle butt 5 is lowered to its lowermost
position by the lowering cam face 48 while forming a needle loop from the supplied
yarn. The needle butt 5 having been lowered to its lower end position is then raised
to the height of the original position by a guide cam 66.
[0033] During the upward and downward movements of the needle 2, the slider butt 8 follows
another locus A" wherein it is first raised by the slider cam 58 after a delay of
the raising movement of the needle body 3 to open the hook 9 and then lowered by the
slider guide cam 58 after a delay of the lowering movement of the needle body 3 to
close the hook 9. The loci of the needle butt 5 and the slider butt 8 are each indicated
by a single-short, single-long broken line.
[0034] The operation of knitting a tuck stitch will now be described.
[0035] The select jack butt 16 corresponding to each needle to perform knitting of a tuck
stitch is positioned to the H position by an action of the selector 11. Then, the
presser 63 at the H position is positioned to its operative position while the other
pressers 62 and 64 at the H position are positioned to their respective inoperative
positions.
[0036] If it is assumed that the carriage moves in the direction of the arrow in Fig. 3,
the select jack butt 16 and the needle 5 move from the left to the right relative
to the carriage following loci H, H' represented by double-short, single-long lines
in Fig. 3. In this instance, since the pressers 62 and 64 are in their inoperative
positions and the presser 63 is in its operative position, the needle butt 5 is raised
along the raising cam face 23a of the needle raising cam 23 and then moves horizontally
relative to the carriage from the shoulder portion 44a. Here, since the select jack
butt 16 is pushed in by the presser 63, the needle butt 5 of the needle 2 corresponding
to the select jack 10 is pushed in the corresponding needle groove, and consequently
the needle butt 5 is not engaged by the needle raising cam top element 28 and accordingly
moves horizontally succeeding the shoulder portion 44a without being raised along
the raising cam face 28a of the needle raising cam top element 28. During the movement,
the needle 2 receives in the hook 9 thereof a new yarn supply with a previous loop
or loops held therein. Thereafter, the needle butt 5 is engaged by and lowered by
the lowering cam face 48 of the knitting cam 50 so that it thereafter follows the
locus H' shown by a double-short, single-long line, in a similar way to the knitting
of a knit stitch. During the movement, the slider 7 follows the locus H' shown by
a double-short, single-long line in which the slider butt 8 is moved upwardly and
downwardly by the slider guide cam 58 to open and close the hook 9 of the needle 2.
[0037] A higher density tuck stitch wherein the size of a knitted loop is comparatively
small is formed in the following manner.
[0038] Upon such knitting of a tuck stitch as described above, when the needle butt 5 having
been sunk by the presser 63 and passed without engaging with the needle raising cam
top element 28 is engaged by the lowering cam face 48 of the knitting cam 50, if the
presser 64 is positioned at its operative position so that the butt 16 is pushed into
the corresponding needle groove by the presser 64, then the needle butt 5 jumps the
lowering cam face 48 of the knitting cam 50 along a locus indicated by a broken line.
Thereafter, the needle butt 5 is lowered along the inclined face 54 and enters the
concave portion 53 of the knitting cam 50, whereafter it is engaged by the lowering
cam face 57 formed on the extension 55 of the guide cam 56. The needle butt 5 is lowered
to its lowermost position by the lowering cam face 57.
[0039] The lowermost position is higher than the position to which the needle butt 5 is
lowered otherwise by the lowering cam face 48 of the knitting cam 50. Consequently,
a loop formed by the needle 2 is smaller in size than a loop which is formed by an
action of the knitting cam 50, and accordingly, the loop formed is a loop of a higher
density tuck stitch. Such stitch is used, for example, for the knitting of a boundary
portion of an intarsia knitted fabric and so forth. The needle butt 5 lowered to the
lowermost position by the guide cam 56 enters, as the carriage advances, into the
ordinary tuck locus indicated by a double-short, single-long line.
[0040] When the welt position from which a needle 2 is not raised is adopted, the select
jack butt 16 is selected to the B position by the selector 11. Since the presser 65
is fixed and always assumes an operative position, when the carriage moves, the select
jack butt 16 is pushed in by the presser 65 so that also the needle butt 5 is sunk
into the corresponding needle groove. Consequently, the needle butt 5 and the slider
butt 8 are engaged by none of the cams of the lock 21, but pass the positions B' and
B", and the needle 2 does not act at all.
[0041] Transfer of a loop will now be described.
[0042] In order to perform transfer of a loop, as shown in Fig. 1, at least on the needle
bed on the loop delivery side, the loop delivering needle raising cam 40 is projected
fully to its operative position. Then, a loop is transferred from a needle on one
of the two beds raised by the loop delivering needle raising cam 40 on the carriage
to another needle on the other bed raised by the loop receiving side needle raising
cam 32 on the carriage.
[0043] Transfer of a loop wherein a loop is transferred from a needle on the needle bed
for the rear side carriage B to another needle of the needle bed for the front side
carriage F shown at a lower location in Fig. 4 will now be described with reference
to Fig. 4.
[0044] It is to be noted that the front and rear carriages F and B move in the direction
indicated by the arrow from the right to the left in Fig. 4. A loop delivering select
jack butt is selected to the A position while a loop receiving select jack butt is
selected to the H position.
[0045] If the carriages are moved in the direction of the arrow with the select jack butt
16 of the loop delivery side needle 2 selected to the A position and with the pressers
60 and 61 of the A position set to the respective inoperative positions, then the
needle butts 5 are raised, without being acted upon by the pressers 60 and 61, to
the uppermost positions along the raising cam face 23b of the needle raising cam 23
and the raising cam face 40b of the loop delivering needle raising cam 40 and then
are lowered along the lowering cam faces 46a and 47 of the quard cam 46 and the knitting
cam 49, whereafter they are guided to the original height positions by a guide cam
67, respectively, as indicated by single-short, single long lines in Fig. 4 The loci
are denoted at A' in Fig. 4.
[0046] Each delivery side needle butt 5 having followed the locus of the line A' described
above, after passing the A position in Fig. 4, is engaged by and is thereafter raised
along the raising cam face 23b of the needle raising cam 23. However, the slider butt
8 advances straightforwardly relative to the carriage B as indicated by A" also after
passing the A position. Consequently, the slider 7 assumes a lower position with respect
to the needle body 3, and consequently the hook 9 is put into an open condition. Keeping
this condition, the loop delivery side needle butt 5 is raised along the raising cam
face 23b of the needle raising cam 23. As the needle butt 5 rises, a loop which has
been held in the hook leaves the hook and is stopped by a stepped portion 18 in the
proximity of a blade 17 in a condition wherein it surrounds the spring. Thereafter,
the needle 2 is continuously raised to its highest position along the loop delivering
needle raising cam 40 (the B position in Fig. 4).
[0047] In the meantime, on the carriage F side, since the pressers 62 and 64 are positioned
in their respective operative positions and the presser 63 is positioned in its inoperative
position, the needle butt 5 of the receiving side needle 2 is pushed into the corresponding
needle groove as the select jack butt 16 of the needle 2 is pushed in by the presser
62 in the operative position immediately before the needle butt 5 is engaged by the
raising cam face 23a of the needle raising cam 23. Consequently, the needle butt 5
jumps the raising cam face 23a of the needle raising cam 23 without engaging with
the same. Thereafter, the needle butt 5 is lowered along the inclined face 30a and
enters the concave portion 31 in the needle raising cam 23, whereafter it is engaged
by the raising cam face 33a of the loop receiving side needle raising fixed cam 33
(the C position in Fig. 4) so that it is raised along the raising cam face 33a. Then,
the needle butt 5 is engaged by and raised by the cam face 34a of the loop receiving
side needle raising rockable cam 34 (the D position of Fig. 4). Upon such rising movement,
the receiving side needle inserts the hook 9 thereof into the blade 17 (shown in Fig.
2) provided on a side face of the delivery side needle and hence into the loop held
on the stepped portion 18. After passing the D point, the loop receiving side needle
butt is raised by the inclined face 28d of the needle raising cam top element 28 of
half height, passes the needle raising cam top element 28 and is then engaged by the
lowering cam face 40e on the lower edge of the loop delivering needle raising cam
40 (the E position in Fig. 4). Thereafter, the loop receiving side needle butt is
lowered along the lowering cam face 40e until it enters the inclined face 26b (the
F position in Fig. 4).
[0048] The needle butt 5 having entered the inclined face 26b rides over the inclined face
26b and is disengaged from the needle raising cam 23 as the carriages advance. Thereupon,
the select jack butt 16 is pushed by the presser 64 again. Consequently, the needle
butt 5 jumps the raising cam face 23b of the needle raising cam 23 and the lowering
cam face 48 of the knitting cam 50 and enters the concave portion 53, in which it
moves horizontally relative to the carriage, keeping its height until it is engaged
by the lowering inclined face of the extension 55 of the guide cam 56 (the G position
in Fig. 4). Meanwhile, the loop delivery side needle has been lowered to the receiving
side needle by the lowering cam face 46a of the guard cam 46 while closing the hook
thereof to start the escape therefrom of the loop to be transferred. Then, the loop
delivery side needle butt 5 having been lowered along the lowering cam face 46a of
the guard cam 46 is further lowered by the lowering cam face 47 of the knitting cam
49, whereupon the needle escapes from the loop which has been held thereon so that
the loop remains on the hook of the receiving side needle (the G position in Fig.
4). Then, also the loop receiving needle is lowered by the lowering cam face 57 of
the extension 55 of the guide cam 56. In this instance, while the slider butt of the
loop receiving side needle is lowered a little by the slider guide cam 58, since the
amount of the lowering movement of the needle by the needle butt is larger, the hook
is closed after it receives the loop, and the needle receiving side needle returns
to its original height with the hook closed.
[0049] When slip knitting (intermediate increase of a stitch) is to be performed, the travel
locus of a loop receiving side needle is the same as that upon transfer of a loop.
The travel loci of the needle butt and of the slider butt on the loop delivery side
are denoted by H' and H" respectively. The loop delivering needle passes the top portion
of the loop delivering needle raising cam 40 and is lowered along the lowering cam
face 46a of the guard cam 46. Then, when the needle butt 5 comes to the position (the
F position of Fig. 4) at the lowermost portion of the cam face 46a, the presser 62
acts to push in the needle butt 5 so that the needle butt 5 thereafter moves horizontally
relative to the carriage B. Consequently, the hook of the loop delivery side needle
cannot escape from a loop which has been held thereon, and while the loop remains
held on the hook of the loop delivering needle, it is held also on the hook of the
receiving side needle. Then, the needle butt 5 jumps the lowering cam face 47 of the
knitting cam 49 so that it is guided into the recess in the knitting cam 49, whereafter
it is lowered by a lowering cam face 68a of a fixed cam 68. During the operation,
in the locus after passing the E point, the loop is held on the hooks of both the
delivery side and the receiving side.
[0050] Since the cam lock of the present invention is constructed such that only a loop
delivering needle raising cam for transfer selection is formed as a movable cam mounted
for movement into and out of an operative position so that a loop delivering needle
is raised and a loop receiving needle is lowered by the cam, occurrence of trouble
such as a failure in changing over in cam control which arises from use of a plurality
of movable cams is eliminated and the cam lock can withstand use for a long period
of time.