[0001] The present invention relates to an improved folding apparatus for corrugated cardboard
sheets, and more particularly to a scoring device to be additionally provided in such
improved folding apparatus.
[0002] Before entering description of the present invention, a known folding apparatus for
producing collapsed corrugated cardboard box materials by folding corrugated cardboard
sheets will be explained briefly.
[0003] Fig. 1 is a side view of a sheet eject section (1) of a box making machine in the
prior art, Fig. 2 shows only a portion relevant to the present invention of the cross-section
taken along line A-A in Fig. 1 and Fig. 3 shows the state where a corrugated cardboard
sheet (2) worked in the sheet eject section (1) is being bent by a folding apparatus
(3).
[0004] In Figs. 1 and 2, a corrugated cardboard sheet (2) being fed from the preceding stage
of a process, is applied with scores (k) and slits (s) as seen in a sheet (2) shown
in Fig. 4 and Fig. 5 (plan view corresponding to Fig. 4) during the period when it
is passed through gap clearances between upper and lower scoring rolls (4) and (5)
and then passed through gap clearances between slotting rolls (9) having slotter knives
(8) and the opposed rolls (10) as guided by guide rolls (6) and (7).
[0005] The thus worked sheet (2) is folded as shown in Fig. 9 by means of folding rods (12),
rules not shown for guiding folds and lower conveyor belts (13) in a folding apparatus
(3) during the period when it is being conveyed in the direction of arrows by means
of conveyor belts (11) as shown in Fig. 3.
[0006] In such a heretofore known method of working, there was a shortcoming that since
bending work is effected by the folding apparatus (3) shown in Fig. 3 after the sheet
(2) has been applied with scores (k) by means of scoring rolls (4) applied with linings
(14) of elastic material and opposed scoring rolls (5) under a flat condition of the
sheet (2) as shown in Fig. 2, the scored sections would be restored to their original
shape before bending, it is impossible to maintain, the shape upon scoring, and so
the scores would become obscure.
[0007] In addition, due to the fact that the sheet (2) is scored in a flat condition and
hence a surface portion to be brought to the inside of the box is depressed, as the
score is applied more intensely to make the fold clear, a more tension would be produced
in the inner surface, and a phenomenon normally called "score break" would arise at
the scored portion. This phenomenon is more remarkable in the -case of a lower class
of sheets. As one solution for preventing this phenomenon, scoring was carried out
gradually by means of two or more stages of scoring devices, but the results were
still unsatisfactory.
[0008] Still further, there was a disadvantage that if folding of a sheet is effected under
such condition, the portions coming to the inside of a sheet (2') when it was worked
((C) in Fig. 6) would interfere with each other, and hence the sheet (2') would be
bent at a portion having a weak resistance due to the interference without being bent
at a predetermined position.
[0009] Figs. 7 and 8 show the states of the sheets (2') folded by 180
0 resulted from the above-mentioned cause, Fig. 7 shows the state where the positions
of the scored portions (k) (k) become lower than the contact surfaces (f) (f) and
a gap distance (g) between pasting portions become narrower than a standard dimension,
and Fig. 8 shows, on the contrary, the state where the positions of the scored portions
(k) (k) become higher than the contact surfaces (f) (f) and a gap distance (g') between
pasting portions become wider than a standard dimension. Such unstable formation of
the gap space between the pasting portions is caused by the fact that the sheet (2')
is not folded correctly at right angles along the scored portions (k) (k), and in
such a case, the configuration of the folded sheet (2') becomes as shown in Fig. 10,
which is not favorable.
[0010] It is therefore one object of the present invention to provide a folding apparatus
for-corrugated cardboard sheets which is free from the above-mentioned disadvantages
in the prior art.
[0011] A more specific object of the present invention is to provide a folding apparatus
for producing collapsed corrugated cardboard box materials, which can fold corrugated
cardboard sheets correctly at right angles along scored portions.
[0012] According to one feature of the present invention, there is provided a folding apparatus
for producing collapsed corrugated cardboard box materials by folding corrugated cardboard
sheets, in which a scoring device consisting of a pair of scoring rolls for pinching
a fold portion of the corrugated 'cardboard sheet to score along the fold portion
is additionally provided at the position corresponding to an initial period of a folding
process, the gap clearance between said scoring rolls is adjustable, and the pair
of scoring rolls are disposed with a common plane formed by the rolls inclined with
respect to the vertical direction by an angle equal to nearly one-half the bent angle
of said corrugated cardboard sheet at the position where said scoring device is provided.
[0013] The above-mentioned and other features and objects of the present invention will
become more apparent by reference to the following description of a preferred embodiment
of the invention taken in conjunction with the accompanying drawings, wherein:
Fig. 1 is a side view showing one example of a sheet eject section of a paper making
machine in the prior art,
Fig. 2 is a cross-section view taken along line A-A in Fig. 1,
Fig. 3 is a perspective view showing the state of a corrugated cardboard sheet being
bent in a folding apparatus in the prior art,
Fig. 4 is a front view of a corrugated cardboard sheet applied with scores and slots,
Fig. 5 is a plan view of the corrugated cardboard sheet shown in Fig. 4,
Figs. 6, 7 and 8 are schematic cross-section views showing different folded states
of a corrugated cardboard sheet folded by a folding apparatus in the prior art,
Fig. 9 is a perspective view of a folded corrugated cardboard sheet,
Fig. 10 is a plan view showing a folded state of a wrongly folded corrugated cardboard
sheet, and
Fig. 11 is a cross-section view of a scoring device to be equipped in a folding apparatus
according to the present invention.
[0014] Now one preferred embodiment of the present invention will be described with reference
to the accompanying drawings. Fig. 11 is a cross-section view of a scoring device
to be equipped in a folding apparatus according to the present invention, and this
scoring device is disposed along line B-B in the folding apparatus in the prior art
illustrated in Fig. 3. Also the bent configuration of the corrugated cardboard sheet
(2') shown in Fig. 11 is the same as that of the sheet (2') shown in Fig. 3, and the
sheet (2') is illustrated in a state where it has been already bent by a certain bent
angle (o().
[0015] In Fig. 11, upper and lower scoring rolls (19) and (20) having, for instance, the
illustrated configuration and rotatably carried by supports (17) and (18), respectively,
which is in turn fixedly secured to frames (15) and (16), respectively, of a folding
apparatus (3), are disposed in such manner that they may pinch a folding portion of
the sheet (2') therebetween and may be placed on a bisector (22) of an angle formed
by the bent corrugated cardboard sheet (2') as opposed to each other. It is to be
noted that sheet support rolls (21) and conveyor belts (11) shown in Fig. 11 are similar
to those used in the folding apparatus in the prior art. In addition, there is separately
provided a gap adjusting device for appropriately increasing or decreasing the gap
clearance between the upper and lower scoring rolls (19) and (20). However, since
this is a known device, illustration and description there of will be omitted.
[0016] Explaining now the operation of the novel folding apparatus, the operation that a
corrugated cardboard sheet (2) is passed through the sheet eject section (1) shown
in Fig. 1, then it is worked into the sheet (2') shown in Fig. 3 (the scoring along
the folding portion could not be effected) and it is fed into a folding apparatus
(3), is quite similar to that effected in the prior art apparatus.
[0017] In Fig. 11, the sheet (2') which has been conveyed on the sheet support rolls (21)
by the conveyor belts (11) and which has been bent by a bent angle α° (45
0 or less) along a rule not shown, is applied with scores along the bent portions (at
the same positions as the scores applied by the scoring rolls (4) and (5) in Fig.
1) by means of the upper and lower scoring rolls (19) and (20), and thereafter the
sheet (2') is subjected to a bending work similar to that in the prior art by means
of the folding apparatus (3).
[0018] The scoring in the prior art had a shortcoming that since it is effected entirely
when the sheet is in a plane state, when the sheet is charged in a folding apparatus
the scored portions would be restored to their original shape due to elasticity of
the sheet itself, and hence the scores would become obscure. In addition, there was
a short coming that if it is intended to score intensely to make the restoration of
the scores little, then tensions would arise in the inside surface of the bent portion,
"score break" would occur, and thus unacceptable products would be produced.
[0019] According to the present invention, even if scoring effected in the sheet eject section
is not present or weak, scoring is effected to a fold of a sheet where the sheet has
been bent by a certain angle by means of a pair of scoring rolls disposed in a tilted
state by an angle equal to nearly one-half the bent angle of the sheet, and then bending
is effected immediately, and therefore, strong and sufficient scoring can be achieved
without restoration of the scored portions and without occurrence of score break owing
to weak tensions in the surface on the inside, hence precise bending can be achieved.
Accordingly, the proposed folding apparatus does not have the shortcomings that loss
of raw materials in a production process and degradation of strength and quality of
products such as score breaks generated in the sheet eject section as a result of
necessitating intense scoring or surplus raw materials for preventing the score breaks
as is the case with the prior art forling apparatus, would be brought about, and therefore,
the present invention can contribute to saving of resources and lowering of a cost.
[0020] Since many changes could be made in the above construction and many apparently widely
different embodiments of this invention could be made without departing from the scope
thereof, it is intended that all matter contained in the above description or shown
in the accompanying drawings shall be interpreted as illustrative and not as a limitation
to the scope of the invention.