The present invention relates to a machine for sealing a cryotube with a film, and particularly to a machine for sealing a cryotube with a thermoplastic film through heating the thermoplastic film to shrink.
A manner for long term preserving biologic samples (including microbe, cell, tissue, spermatozoon and so on) includes mixing the sample with a cryo-culture medium, distributing the mixture to a cryotube or a cryovial and then putting the cryotube into a liquid nitrogen tank for storage at −196° C. A cap of the cryotube and a tube body of the cryotube have different degrees of thermal expansion and contraction due to the structure and material difference therebetween, when the cryotube are immerged into the liquid nitrogen. As a result, the liquid nitrogen is liable to invade into the tube body of the cryotube, which not only contaminates the biologic sample, but a gas explosion may also occur due to rapid vaporization of the liquid nitrogen in the tube body of the cryotube when the cryotube is taken out from the liquid nitrogen tank.
A commercially available thermoplastic film which is made from polyethylene (PE) can be used in for the long term storage at the temperature of the liquid nitrogen. In use, the translucent tubular PE film is cut in a desired length, is put on the cryotube and then is heated directly by intense heat flame of a gas gun or a small torch gun. The PE film shrinks for being heated and tightly seals the cryotube, thereby preventing the problems of contamination, and gas explosion caused by the invasion of the liquid nitrogen. However, the sealing process is done by an experienced operator manually, which is time consuming and laborious. Furthermore, quality of the sealing process varies and the chance of failure in the sealing process is high, which is about 40% for one of the inventors of the present invention. Further, if the heating time is too long during the sealing process due to inexperience or neglect of an operator, the biologic sample in the cryotube may be destroyed due to the overheating, or even the cryotube may be damaged. Therefore, the thermoplastic film sealing process is waived for most of the cryotube storage, and thus the problems caused by the migration of the liquid nitrogen into the cryotube are not solved.
Accordingly, an object of the present invention is to provide a machine for sealing a cryotube with a film through heating a thermoplastic film to shrink.
Another object of the present invention is to provide a machine for sealing a cryotube with a film, which has a control unit for automatically heating a thermoplastic film to shrink and seal the cryotube.
A cryotube suitable for use in the present invention comprises a tube body, a cap threadedly engaging with an open end of the tube body, and a tubular thermoplastic film received at the joint of the cap and the tube body.
In order to accomplish the objects of the present invention, a machine for sealing a cryotube with a film constructed according to the present invention comprises
a holder adapted to hold the cryotube, wherein a bottom opposite to the open end of the tube body is to be hold in the holder while the cap and the thermoplastic film extend out from the holder;
a rotation mechanism for driving the holder to rotate around a longitudinal axis of the cryotube hold in the holder; and
a heating mechanism for heating the thermoplastic film of the cryotube hold in the holder, so that the thermoplastic film shrinks.
Preferably, the machine of the present invention further comprises a control unit for controlling start of the rotation mechanism and start of the heating mechanism so that the thermoplastic film of the cryotube hold in the holder is heated for a predetermined time by the heating mechanism while the holder is rotating.
Preferably, the machine of the present invention further comprises a conveying mechanism for conveying the holder and the rotation mechanism from a working position to a heating position and from the heating position to the working position, wherein at the heating position, the cryotube hold in the holder locates at such a position that the thermoplastic film is able to be heated by the heating mechanism. More preferably, the machine of the present invention further comprises a control unit for controlling start of the rotation mechanism, start of the heating mechanism and start of the conveying mechanism, so that the holder and the rotation mechanism are conveyed from the working position to the heating position by the conveying mechanism, the thermoplastic film of the cryotube hold in the holder is heated for a predetermined time by the heating mechanism while the holder is rotating, and then the holder and the rotation mechanism are conveyed from the heating position to the working position by the conveying mechanism after the heating is finished.
Preferably, the holder is of heat insulation.
Preferably, the heating mechanism blows hot wind to heat the thermoplastic film.
By using the machine of the present invention, a cryotube can be easily sealed with a film with consistent quality for preventing liquid nitrogen from migrating into the cryotube, thereby assuring the storage quality and safe thaw.
Other objects, advantages, and novel features of the invention will become more apparent from the following detailed description when taken in conjunction with the accompanying drawings.
Referring to
Referring to
Operation steps of the machine for sealing a cryotube with a film of the present invention are described as follows:
a) providing the cryotube 10 with the cap thereof being threadedly engaged to the tube body and with the thermoplastic film being received thereon, and placing the cryotube 10 in the holder 43 made of a heat insulation material (as shown in
b) starting the conveying motor 30 to convey the rotation motor 44 and the holder 43 from the working position to a heating position through the rack 31, the link lever 32 and the platform 42, and keeping the rotation motor 44 and the holder 43 at the heating position for a predetermined time (as shown in
c) starting the rotation motor 44 to rotate the holder 43 so that the thermoplastic film 15 heated in the following step can evenly shrink;
d) starting the hot wind blowing device 20 to provide hot wind with the temperature of 160° C. for heating the thermoplastic film 15 of the cryotube, so that the thermoplastic film 15 rapidly shrinks and tightly seals the joint of the cap 11 and the tube body 12 (as shown in
e) stopping the hot wind blowing device 20 and the rotation motor 44 in accordance with the predetermined time, and then starting the conveying motor 30 to convey the rotation motor 44 and the holder 43 from the heating position to the working position; and
f) taking out the cryotube sealed with the thermoplastic film from the holder 43.
The above steps b)-f) can be carried out through a control unit 50 disposed at a side of the machine frame body 90. The control unit 50 has a control circuit therein and the control circuit is electrically connected with the conveying motor 30, the rotation motor 44 and the hot wind blowing device 20, respectively. Therefore, through starting/stopping the conveying motor 30, the rotation motor 44 and the hot wind blowing device 20 in accordance with the configuration of the control circuit, the above steps b)-f) are automatically accomplished.
Alternatively, the sealing machine as shown in
The present invention not only can prevent the liquid nitrogen from migrating into the cryotube, but also prevent water from migrating into the cryotube when the cryotube is immerged in a water bath for rapid thaw.
Although the present invention has been explained in relation to its preferred embodiment, it is to be understood that many other possible modifications and variations can be made without departing from the spirit and scope of the invention as hereinafter claimed.
Number | Date | Country | Kind |
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93220802 | Dec 2004 | TW | national |