The invention relates to an inspection chamber, comprising a plastic sleeve, a plastic base accommodated in the sleeve and at least two branches joined onto the sleeve, which base has a flow profile that extends between the two branches.
Such an inspection chamber is known. With this inspection chamber there is the possibility for making up different inspection chambers from a number of shafts and bases. The length of the shafts can differ and can be chosen with a view to the installation depths of the inspection chamber. Furthermore, a choice can be made between various bases, all of which have a different pattern with branches and associated flow profile.
The disadvantage of this known inspection chamber is that a separate base is needed for each variant. This means that a large number of such bases must be held in stock. Furthermore, transport is not as easy in the case of larger diameters.
The aim of the invention is therefore to provide an inspection chamber that does not have these disadvantages and that with a limited number of variants nevertheless offers a large number of different bases. Said aim is achieved in that the base is made up of at least two separate base parts that are permanently fixed to one another at their edges facing one another, such as by welding, fusing, gluing and the like.
The base parts, each with sections of flow profiles as well as branches associated with the flow profiles of the base parts, are preferably located next to one another in a direction transverse to the axial direction of the shaft and can be made up in many different ways. The major advantage of this is that a relatively large number of bases can be obtained with a limited stock of different base parts.
What is concerned here is first of all a variant where the branches are located opposite one another and the flow profile runs straight between them. According to a further variant at least two branches are oriented at approximately 90 degrees with respect to one another and the flow profile runs in a curve between said branches. According to yet another possibility at least two branches are oriented at approximately 135 degrees with respect to one another and the flow profile runs in a curve between said branches.
In the case of the inspection chamber according to the invention the diameter can also be adapted. This can be achieved if the base comprises base parts forming a ring as well as central base parts, which base parts forming a ring are contiguous with the outer periphery of the central base parts, to the outer periphery of which base parts forming a ring the sleeve is connected, and are profiled correspondingly to the central base parts.
In order to achieve this the invention furthermore relates to a set for an inspection chamber as described above, comprising a shaft, at least two base parts with sections of flow profiles as well as branches associated with the flow profiles of the base parts. The various variants described above can be made up with the aid of a set comprising five base parts, every two of which can be combined to give a base, which base parts comprise:
Thus, in total only five different base parts have to be kept in stock in order to be able to provide all variants. The base parts each relate to only a portion of the finished base, so that storage and transport is facilitated.
An inspection chamber with a specific nominal diameter can be made up using the abovementioned set. According to a further variant of the inspection chamber according to the invention the nominal diameter can be chosen larger. To this end the set can further comprise four ring sections that can be arranged around, in each case, two combined base parts. In said ring sections there are profilings that join onto the profilings in the base parts. A shaft of enlarged diameter can then be placed on the outer periphery of said ring sections.
The shaft can be double-walled with a smooth inner tube and a ribbed outer tube fixed to the inner tube. Furthermore, a sleeve can be provided to which the shaft and the branches can be joined and within which sleeve the combined base parts can be accommodated.
To simplify the assembly of the base and to increase the rigidity and tightness thereof, the base can have a plastic end wall or plastic end ring on which the combined base parts are supported. Said end wall/end ring is preferably fixed to one end of the sleeve, whilst the other end of the sleeve is fixed to the shaft.
Reference is made to the inspection chamber base construction that is disclosed in EP-A 1 174 550. This inspection chamber base construction comprises a concrete body in which a plastic base lining is accommodated. This base lining is made up of a number of base segments that have a specific flow profile.
Such an inspection chamber base construction is used with a different type of inspection chamber to that to which the invention relates. The rigidity of the known inspection chamber is obtained by the concrete body. The shaft that is placed on the inspection chamber base also consists of rings made of a concrete material.
In contrast, the inspection chamber according to the invention relates to a completely plastic construction. The plastic base and plastic shaft have an appreciably lower weight than a concrete product. Furthermore, the plastic base and plastic shaft themselves provide the requisite strength and rigidity for the inspection chamber, without a concrete support being needed for this.
The invention will now be explained in more detail below with reference to a few illustrative embodiments shown in the figures.
a to i show different variants diagrammatically in plan view.
a to i show further different variants.
The modular inspection chamber shown in
The base 2 comprises two separate base parts 8, 9, each of which contains a section 10 and 11, respectively, of the flow profile 3. The base parts 8, 9 are tightly joined to one another by means of the seam 12.
The shaft 1 and the base 2 are fixed to one another by means of the sleeve indicated in its entirety by 14. This sleeve extends with a tight fit around the shaft 1, in particular around the outer part thereof that has a convex profile. The inside of the shaft 1 has a smooth wall 16.
At the top the sleeve 14 has a rim 17 that is angled outwards, which facilitates the insertion of the shaft 1. At the bottom the sleeve 14 has a shoulder 18 around which an end ring 19 has been snap-fitted. The shaft 1 bears on the top 22 of the base parts 8, 9. This top can also be made such that it slopes somewhat downwards towards the profiling 3, such that it is always ensured that any liquid does not remain on the base parts 8, 9.
The variant of the modular inspection chamber according to
The base 2 is made up of the base parts 8, 9, each of which has a section 10 and 11, respectively, of the flow profile 3.
However, a subsidiary connection 23 with a coupling joint 24 is now arranged in the sleeve, which subsidiary connection 23 is at a higher level than the surface 22 of the base part 8. The sleeve also has a shoulder 25, on which the shaft 1 is supported above the subsidiary connection 23.
The surface 22 of the base parts 8, 9 slopes downwards towards the profiling 3.
Nine different variants of profiled bases, made up of five different base parts, are shown in the variant in
Of course, further variants can be made up from these base sections by closing off specific connections. For instance, the base section according to
The profiled bases made up from the five different base parts 31, 32, 33, 34 and 35 according to
The diameter of the modular inspection chamber according to the invention can be increased in a simple manner by means of these ring parts 56, 57, 58, 59.
Number | Date | Country | Kind |
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1024276 | Sep 2003 | NL | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/NL2004/000631 | 9/13/2004 | WO | 00 | 3/3/2006 |
Publishing Document | Publishing Date | Country | Kind |
---|---|---|---|
WO2005/024147 | 3/17/2005 | WO | A |
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