The present invention relates to a method for manufacturing a long-term storage container for storage of radioactive material to inhibit radioactive radiation therefrom to the outside of the container, said container having a bottom and upright wall extending therefrom, the top of said container to be closed by a screw-on lid, said container having an integral inner container part of a first material, e.g. plastic material, with a bottom and upright wall, an integral outer container of a second material, e.g. plastic material with a bottom and upright wall, and radioactive radiation inhibiting material in an inter-space between the walls and bottoms of said inner and outer containers. The invention also relates to a long-term storage container for storage of radioactive material to inhibit radioactive radiation therefrom to the outside of the container.
Further the invention relates to a method for manufacturing a radioactive radiation inhibiting lid suitable for fitting onto a top region of a long-term storage container for storage of radioactive material and inhibiting radioactive radiation therefrom to the outside of the lid. Also, the invention relates to a lid for use with such long-term storage container.
Finally, the invention also relates to a moulding apparatus for manufacturing the storage container.
Long-term storage of radioactive material in a safe manner is an ever increasing environmental problem. Attempts have been made to have such material stored in metal barrels, but these are subject to rust or corrosion and therefore prone to leakage of the radioactive material.
To overcome such deterioration and possible leakage problems, there has been proposed to provide long-term storage containers of the type mentioned in the introductory part. Such container was essentially attempted to be made by inserting space members between the inner and outer container parts, and thereafter filling in liquid form the inter-space with
In recognition of such defective manufacturing method, and also the urgent need for safer, long-term storage containers which are ready to use after manufacturing without necessity of subsequent radioactive radiation leakage tests, the present invention provides for a method and container having properties of an inter-space container part made from a void free radioactive radiation inhibiting material, and being safe and simple to manufacture, thus providing a safe, reliable storage container not requiring subsequent reliability tests.
In accordance with the invention the manufacturing method of such container is characterised by the features as stated in the relevant independent method claims and further features thereof are stated in their respective sub-claims.
Suitably, the inner and outer container parts are made from a plastic material such as e.g. high density polyethylene, and the inter-space container part between the inner and outer container parts is moulded from a radioactive radiation inhibiting material which is selectable from one of: lead, lead alloy, tin and tin alloy.
According to the invention the method for manufacturing the radioactive radiation inhibiting lid comprises the features as stated in the relevant independent method claims. Further embodiments thereof are stated in the related sub-claims.
Characteristic features of the storage container are defined in the in the independent article claim and further features thereof are defined in its sub-claim.
Characteristic features of the lid for use with the container are defined in the relevant independent claim and further features thereof are defined in its sub-claims.
The inventive method preferably makes use of a moulding apparatus for manufacturing the storage container, as defined in the introductory part, as the characteristic features of the apparatus appear from the relevant independent claim. A further feature of the apparatus appears from its sub-claim.
It is important in a safe manner to be able to lift the storage container with its contents, and according to an embodiment of the lid there is at a lower end of the lid skirt provided a lifting or engagement face suitable to co-operate with a container lifting device when such device is made to engage a container having a fitted lid.
As soon as a storage container has been fully filled by radioactive substances and other material, it is important to be able to safeguard against the lid when fully screwed onto the storage container being removable from the container. Therefore, the step of casting said lid threads includes providing a locking member for non-releasable engagement with locking means on the outside of the storage container when the lid is fully screwed onto the container.
Suitably, said plastic material in the lid is high density polyethylene, and said radioactive radiation inhibiting material is selected from lead, lead alloy, tin and tin alloy.
The storage container thus comprises an integral inner container part of plastic material with a bottom and upright wall, an integral outer container part of plastic material with a bottom and upright wall, and a radioactive radiation inhibiting material in an inter-space between the walls and bottoms of said inner and outer storage container part, respectively. According to the invention, the radioactive radiation inhibiting material is in the form of an injection or pressure moulded, integral inter-space container having a bottom and an upright wall extending therefrom. In a preferred version the outer container part is thus a storage container part moulded onto the outside of the inter-space container when the inter-space container is fitted onto the outside of the inner container.
The storage container has on an outside face of the outer container part threads configured to engage threads on said lid, and the outer container part has locking means for non-releasable locking engagement with a locking member on said lid when said lid is fully screwed onto the storage container.
The invention is now to be further described with reference to the attached drawing figures which illustrate non-limitative embodiments of the various aspects of the invention.
a shows schematically in cross-section a storage container according to the invention with a fitted lid, and
a is a simplified flow diagram illustrating major steps in a method for manufacturing the lid to be used with the storage container, and
a-7d illustrate in more detail practical aspects of steps used in manufacturing the storage container as depicted in
It is noted that the inner container part 2 has integral bottom and upright wall. Also, the outer container part 3 has integral bottom and upright wall. An inter-space between the inner container part 2 and the outer container part 3 is defined by an inter-space container part 4 having a bottom and upright wall integrally made from a radioactive radiation inhibiting material through injection moulding or pressure moulding.
The inner and outer container part 2, 3 are suitably made from a plastic material, e.g. high density polyethylene, through injection moulding, and the radioactive radiation inhibiting material is suitably one of: lead, lead alloy, tin and tin alloy.
As shown on
The lid 7 has an injection moulded, integral first lid member 7′, 7″; 7′″ of plastic material in the form of a top part 7′ and a skirt 7″ depending therefrom, an inside of said skirt 7″ having said threads 6 to enable fitting engagement with the external threads 5 on the storage container. There is in addition at least one recess 10; 11 in said top part, and a second lid member 12; 13 is provided in the form of a solidified radioactive radiation inhibiting material located in an inside region of said first lid member and said at least one recess, said material retained in said at least one recess 10; 11 providing for non-releasable locking of the second lid member 12; 13 to the first lid member 7′, 7″; 7′″.
A bottom end 14; 15 portion of the skirt portion of said first lid member 7′, 7″; 7′″ configured to be able to engage a container lifting device (not shown). Similarly to the storage container parts 2 and 3, the first lid member 7′, 7″; 7′″ is suitably made of a plastic material, e.g. high density polyethylene. The manufacturing of the first lid member is suitably through an injection moulding process. The radioactive radiation inhibiting material is suitably one of lead, lead alloy, tin and tin alloy.
From
It may also be considered to have inside the inner container an internal lid to be placed on top of the radioactive material located inside the inner container.
It is observed that in
Suitably in the injection moulding process of the inner and outer container parts there is used a plastic material which is e.g. high density polyethylene.
The inter-space container part 38 forming the second container part is moulded from a radioactive radiation inhibiting material selectable from one of: lead, lead alloy, tin and tin alloy.
Following the procedure according to
Further, the provision of threads on the outer container part also includes provision of locking means configured for non-releasable engagement with a locking member on said lid when said lid is fully screwed onto the container.
With reference to
The first mould is configured to provide at a lower end 14; 15 of the skirt a lifting or engagement face suitable to cooperate with a container lifting device (not shown) when such device is made to engage a container having a fitted lid.
Step 51 also includes in casting said threads 6 provision of a locking member 9 for non-releasable engagement with locking means 8 on the outside of the storage container when the lid is fully screwed onto the container.
As an alternative to the method depicted in
a-7d show in more detail practical aspects of the manufacturing steps in accordance with the invention.
a shows the moulding apparatus 61 closed and ready for moulding the inner container part 62 through injection moulding 63 via e.g. a screw conveyor 63′. The hot flow of plastic material to the cavity dedicated to casting of the outer container part has been shut off by a valve 64 located in a hot channel system 65.
b shows the inner container part 62 after having being cast, the moulding apparatus 61 has been opened and the inner container part 62 is ready to be removed from one mould core 66 to another mould core 67 of the apparatus, the mould core 67 being located in the part of the apparatus intended for casting the outer container part. Thus,
c shows the inner container part 62 located on the core 67 and with the separately made inter-space container part 68 of radioactive radiation inhibiting material fitted onto the outside of the inner container part 62. The container part 68 is suitably moved and positioned into engagement with the container part 62 through use of a dedicated robot (not shown).
The inter-space container part 68 which is to inhibit radioactive radiation from spreading from the inside of the storage container to the environment outside the container is suitably made from a radioactive radiation inhibiting material, such as e.g. lead, lead alloy, tin or tin alloy, to form to the extent possible a nuclear radiation barrier. The inter-space container part should be of a unitary structure in order to avoid any leaks therethrough of any highly radioactive material to be retained by the container. The inter-space container part has to be cast in a separate mould, in connection with the disclosure of
As indicated on
It will be recognized that in the context of
The container 62, 68, 69 is suitably made as a circular container having a volume of e.g. 200 litres, although larger or smaller volume contents are conceivable without departing from the concept of the invention. As indicated earlier, the lid and its inner liner are made separately. The container comprises the inner container part and the outer container part made from a plastic material, suitably polyethylene such as e.g. PEH (HDPE), although other plastic materials may be suitable.
An important aspect of the making of the inter-space container part 68 as a separate is that it will be possible to inspect it properly before it is fitted into the moulding apparatus as shown on
The invention provides for a better engagement between the container parts, more easily made container parts and assembly thereof, and highly improved safeguard against unintended leakage of radioactive radiation from the inside to the outside of the container. Further, the invention provides for a more permanent storage of the radioactive material, thereby avoiding having to change storage containers at a later stage. The invention provides for a storage container which has a storage capacity substantially larger than that of any currently available storage container for known types of nuclear medium and high radioactive material. The invention therefore yields reduced need for transportation and replacement of storage containers, as well as reduced volumetric requirements compared to the requirements linked to the currently used containers.
The thickness of the inter-space container part will be determined by type of radioactive material to be contained by the container. Highly radioactive material may over time have a tendency to deteriorate a plastic material, and in this context the inter-space container part serves not only to protect against radioactive radiation to the outside of the container, but also serves to protect the outer container part against deterioration over time due to radiation from the radioactive waste contained by the storage container. The inner container part 62 may not need to be thick-walled as the outer container part 69, but the outer container part will need to have walls that are sufficiently strong to also withstand stress caused upon lifting and handling of the heavy containers. In some cases handling of the containers may necessitate that straps can be attached around the container to lift and move it.
If the radioactive material to be contained is extremely radioactive or chemically aggressive, an inner liner inside the inner container part may be desirable, suitable made of a chemically inert material which provides some resistance to deterioration caused by radiation. However, in most cases the inner container part is made of a chemically inert and to the best possible extent also durable against radioactive radiation, above all to protect the inter-space layer. Apart from PEH/HDPE as possible materials for the inner container part and any possible extra inner liner, it could be considered using materials like concrete or ceramic materials. The outer container part is suitably made from a chemically inert material which inherently protects not only the inter-space container part, but also the inner container part and the nuclear waste against physical damage, while simultaneously preserving the integrity of the container over time to prevent escape of its contents. Although the sufficient overall physical strength of the storage container will primarily be contributed to by the outer container part and the lid structure fitted thereto, it is also conceivable to have the main strength of the container related to two or all three of the inner, the outer and the inter-space container parts.
It will be appreciated that if a twin mould apparatus as shown on
However, it lies within the invention that both the inner container part 62; 62′ and the outer container part 69 could each be made in a separate injection moulding apparatus instead of a common one as shown on
In the practical, though not limitative embodiment of
As shown and disclosed above in connection with
It will be appreciated by the expert in the art that the closure valve 64 is suitably associated with the injection channel 65 for the hot, melted plastic material to be injected, so that just the inner container part 62 is cast at the start of a production start, whereby the next mould cavity having the core 67 at that stage is inoperative as regards casting. This implies that at the end of the production cycle only the mould cavity for casting the outer container part is operative, whereas the mould cavity for casting an inner container part is inoperative as regards casting. Thus, between the production start stage and the production end stage of a production series, both the first and the next mould cavities in the moulding apparatus will be operative to receive injection of plastic material.
In view of the in particular the heavy weights of the container parts and above all the radioactive radiation inhibiting material related the container as well as the lid, it will be required to have available robots or other handling equipment to move the various parts in and out of the moulding apparatus. Thus, the completed, heavy storage container when removed from the moulding apparatus subsequent to the step of
Further, a production plant will need to have required equipment related to moulding process, such as e.g. hydraulic or pneumatic units, basic moulding apparatus with pressure cylinders, valves etc. in addition to the mould or moulds, a supply of plastic material, any required grinder for such material, conveyors, material injectors, material heating equipment, as well as tools for maintenance, storage etc.
Furthermore, the casting of the lid part, including the radioactive radiation inhibiting material therein, will have to be made in a moulding apparatus which is preferably separate from that making the inner and outer container parts, in order not to complicate operations.
The lid, suitably made from the same plastic material, will also comprise a nuclear radiation barrier made from lead material.
Number | Date | Country | Kind |
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20044434 | Oct 2004 | NO | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/NO2005/000393 | 10/19/2005 | WO | 00 | 4/27/2006 |
Publishing Document | Publishing Date | Country | Kind |
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WO2006/043826 | 4/27/2006 | WO | A |
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WO 0157880 | Aug 2001 | WO |
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20080277602 A1 | Nov 2008 | US |