[0001] Photographic processing tanks for processing lengths of exposed photographic film
are well known and they consist essentially of a light-tight tank in which the film,
arranged in a spiral coil, is supported on a holder. The film is loaded on to the
holder under darkroom conditions, such as safelight illumination or in total darkness.
The holder is then placed in the tank and the tank is made light-tight. Thereafter,
the processing can be accomplished with the tank in normal lighting conditions.
[0002] The processing solutions are introduced in turn into the tank. The tanks function
with the minimum of processing solutions (dictated by the exhaustion rate of the processing
solutions) and yet not only allow for rapid filling and emptying of the liquids, but
also ensure that the formation of air bells on the film surface is inhibited to a
maximum extent.
[0003] The processing solutions must be able to move freely over the film surface so that
solutions which have been exhausted in certain areas of the film euml si on may be
moved to other areas of the film. Similarly, solutions which have not been involved
in a great deal of activity, and are, therefore, not exhausted, must be moved to those
areas of the film where interaction with the film emulsion is greater. This periodic
movement of the processing solution is conveniently brought about by completely inverting
the processing tank at regular intervals.
[0004] The film holder for use in such a tank comprises a central column and a pair of annular
plates mounted in spaced apart relation on the column. Each plate has a number of
radially extending ribs which carry a further rib arranged in a spiral. The film is
carried in the holder with the lateral edges of the film in the spaces between the
turns of the respective spirally arranged further ribs.
[0005] According to the present invention, the further rib on each annular plate has such
a depth relative to the radial ribs thereon to provide extra strength thereby allowing
the spacing between adjacent turns of the furthers rib to be increased.
[0006] Some of the advantages of the invention are
(a) that the speed at which the tank may be filled and emptied is increased;
(b) the formation and trapping of air bells is lessened;
(c) the flow of processing solution during inversion of the tank is improved; and
(d) residual solution in the tank at the end of the final processing stage can efficiently
be washed out.
[0007] Conveniently, the shaped further rib produces a "venturi effect" which assists in
the flow of processing liquid. All these advantages are achieved without resorting
to a tank of larger volume than that generally required for satisfactory processing
of 35 mm and/or 120/220 roll film lengths and widths.
[0008] In order that the invention may be more readily understood, it will now be described,
by way of example only, with reference to the accompanying drawings, in which:-
Figure 1 is a diagrammatic side elevation of a film holder;
Figure 2 is a plan view of part of a holder;
Figure 3 is a section on the line 3-3 of Figure 2; and
Figure 4 is a' section on the line 4-4 of Fi gure 2.
[0009] A holder for a film processing tank comprises a generally cylindrical hollow tube
1 having an enlarged foot 3. A pair of annular plates 5, each with an integral stub-column
7, are mounted on the tube 1. The two stub-columns are arranged in overlapping relation
so that the annular plates are in spaced apart relation. The amount of overlap of
the stub-columns can be adjusted so as to vary the spacing between the plates 5 and
thereby accommodate films of different widths. Each annular plate has a plurality
of radially extending ribs 9 and these ribs support a further rib 11 integral therewith
which is arranged on the ribs 9 in the form of a spiral.
[0010] As shown in Figure 4, each radial rib 9 is of generally rectangular cross-section
with one side providing a support surface for the film. One of the corners 13 of the
support surface is chamfered. Each turn of the further rib 11 has a first part 15
which projects beyond the support surface of the ribs 9 and a second part 17 which
extends almost to the side of the rib which is opposite the support surface.
[0011] Adjacent sides of adjacent turns of the further rib diverge at the first part 15
and also diverge at the second part 17 so that the space 19 between adjacent turns,is
in the form of a venturi.
[0012] The further rib is of more rigid construction than has been known heretofore and
this permits the spacing between adjacent turns of the rib to be increased.
1. A film holder for use In a photographic developing tnnk, the holder including a
central column (1) and a pair of annular plates (5) mounted in spread-apart relation
on the column, each plate including a number of radially-extending support ribs (9)
which carry a spiral rib (11) forming a spiral channel between its turns for retaining
the edge of the film, the said spiral rib having an elongate cross-section which has
a first portion (15) which is tapered inwardly in the axial direction facing towards
the other plate, and a second portion (17) which is tapered inwardly in the axial
direction facing away from the other plate.
2. A film holder according to claim 1, in which the said first portion of the spiral
rib projects beyond the support surfaces of the radial ribs and the said second portion
extends across a major part of the depth of the radial ribs toward the side which
is opposite the support surface.
3. A film holder according to claim 1 or claim 2, in which each radial rib has a chamfered
surface (13) facing the leading edge of a film as it is fed into the spiral, to facilitate
entry of the film.