The present invention relates to a heating vessel, and more particularly to a heating vessel of detecting and preventing leakage of high temperature metal material and a manufacture method thereof.
OLED (Organic Light Emitting Diode) possesses advantages of being all-solid state, ultra thin, no view angle limited, fast responding, room temperature workable, easy achievable flexible displaying and 3D displaying. It is supposed to be the main stream technology of next generation display. At present, heating vapor coating is a main manufacture way of the OLED elements. The coating material is heated in vacuum by using a heating vessel. The vapor coating material which is sublimable or fusable is vaporized under the high temperature circumstance and deposited on a substrate having TFT compositions or anode compositions.
During the present vapor deposition according to prior arts, a single layer vessel is commonly utilized as the vaporization vessel to be heated for vaporization. Nevertheless, micro cracks appear so common at the joint of the lateral side and the bottom of the heating vessel caused by condensation and shrinkage of the high temperature metal liquid and then material abnormal loss happens. Moreover, the high temperature liquid may outflow from the micro cracks and into the heating apparatus to lead to the internal short circuit and damage to the whole heating apparatus. Consequently, the OLED production progress is interrupted and the production quality descends. The fracture and leakage of the heating vessel are very difficult to be confirmed and hard to predict because the micro cracks are not easy to be found under the cooling status. Please refer to
Therefore, an objective of the present invention is to provide a heating vessel of detecting and preventing leakage of high temperature metal material to overcome the issue of the material loss due to the heating vessel damage for protecting the heating apparatus and to promote the pre-detecting ability of leakage risk.
Another objective of the present invention is to provide a manufacture method of the heating vessel of detecting and preventing leakage of high temperature metal material to make the heating vessel to overcome the issue of the material loss due to the heating vessel damage for protecting the heating apparatus and to promote the pre-detecting ability of leakage risk.
For realizing the aforesaid objective, the present invention provides a heating vessel of detecting and preventing leakage of high temperature metal material, comprising: an internal heating vessel employed for containing metal material, an external heating vessel employed to contain the internal heating vessel and to be heated by a heating apparatus and a detection apparatus; multiple bottom static wires are located between the internal heating vessel and the external heating vessel, where is close to the joint of a lateral side and a bottom of the internal heating vessel, and two ends of each of the bottom static wires are respectively connected to corresponding detection terminals on tops of the internal heating vessel and the external heating vessel, and the detection apparatus detects the material leakage by measuring resistance between the two detection terminals corresponding to the two adjacent ends of the two adjacent bottom static wires.
Material of the internal heating vessel and material of the external heating vessel are the same.
The heating vessel is employed as a heating vessel in an OLED vapor deposition process.
The internal heating vessel and the external heating vessel joint with each other at the tops as one body.
The bottom static wires are supported and fixed by insulation pads located between the internal heating vessel and the external heating vessel.
An inner diameter of the external heating vessel is larger than an outer diameter of the internal heating vessel, and a height of the external heating vessel is the same as a height of the internal heating vessel.
The detection apparatus is a multimeter.
The detection apparatus is an ohm meter.
The present invention also provides a heating vessel of detecting and preventing leakage of high temperature metal material, comprising: an internal heating vessel employed for containing metal material, an external heating vessel employed to be heated by a heating apparatus and a top cap having a vapor hole employed for escape of the vaporized metal material; the internal heating vessel is completely contained in the external heating vessel and positionally fixed relative to the external heating vessel, and an interspace exists between a side wall of the internal heating vessel and a side wall of the external heating vessel, and the top cap is fixed on tops of the internal heating vessel and the external heating vessel to cover opens of the internal heating vessel and the external heating vessel;
wherein material of the internal heating vessel and material of the external heating vessel are the same;
wherein the heating vessel is employed as a heating vessel in an OLED vapor deposition process;
wherein the internal heating vessel and the external heating vessel joint with each other at the tops as one body.
The bottom static wires are supported and fixed by insulation pads located between the internal heating vessel and the external heating vessel.
An inner diameter of the external heating vessel is larger than an outer diameter of the internal heating vessel, and a height of the external heating vessel is the same as a height of the internal heating vessel.
The detection apparatus is a multimeter.
The detection apparatus is an ohm meter.
The present invention also provides a manufacture method of the heating vessel, comprising:
Step 1, measuring an outer dimension and a height of an internal heating vessel;
Step 2, providing an external heating vessel made by the same material of the internal heating vessel, and the an inner diameter of the external heating vessel is larger than an outer diameter of the internal heating vessel, and a height of the external heating vessel is the same as a height of the internal heating vessel;
Step 3, locating multiple bottom static wires between the internal heating vessel and the external heating vessel, where is close to the joint of a lateral side and a bottom of the internal heating vessel;
Step 4, respectively connecting two ends of each of the bottom static wires to corresponding detection terminals on tops of the internal heating vessel and the external heating vessel;
Step 5, welding the tops of the internal heating vessel and the external heating vessel as one body;
Step 6, detecting the material leakage by measuring resistance between the two detection terminals corresponding to the two adjacent ends of the two adjacent bottom static wires with the detection apparatus.
The heating vessel is employed as a heating vessel in an OLED vapor deposition process.
In conclusion, the heating vessel of detecting and preventing leakage of high temperature metal material of the present invention provides a design of a special heating vessel, which is easy to detect whether the material leakage occurs or not and guarantees that the related experiment and production can continue under circumstance that heating vessel is broken. The issues of the material abnormal loss and production progress interruption due to the appeared unexpected fractures in daily usages can be overcome; the continuous steady running period of the heating apparatus is effectively promoted and the quality of the production is guaranteed.
The technical solution, as well as beneficial advantages, of the present invention will be apparent from the following detailed description of an embodiment of the present invention, with reference to the attached drawings.
In the attached drawings,
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Material of the internal heating vessel 22 and material of the external heating vessel 24 are the same. For instance, they can be crucibles of the same material but merely with different dimensions. Therefore, the external heating vessel 24 is capable of containing the internal heating vessel 22. An inner diameter of the external heating vessel 24 can be larger than or equivalent to an outer diameter of the internal heating vessel. A height of the external heating vessel 24 can be the same as a height of the internal heating vessel 22. The internal heating vessel 22 and the external heating vessel 24 joint with each other at the tops as one body. For example, the internal heating vessel 22 and the external heating vessel 24 can sleeve joint together and be welded at the tops. Only the internal heating vessel 22 contains the metal material 23. The heated part is the outermost external heating vessel 24. The internal heating vessel 22 receives the heat by conduction or radiation for heating up the metal material 23.
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The preferable embodiment is employed as a heating vessel in an OLED vapor deposition process. With the improvement of the traditional heating vessel, the entire heating vessel can still maintain the normal production status under circumstance that internal heating vessel is broken. Meanwhile, the ability of detecting leakage is promoted. The preferable embodiment provides a new type double layer heating vessel of OLED vaporization, the material leakage and loss can be efficiently controlled and the risk of damaging the heating apparatus can be prevented. The continuous steady running period of the heating apparatus is effectively promoted and the ability of detecting the damage and the leakage of the heating vessel is advanced in the mean time.
The present invention also provides a manufacture method in accordance with the heating vessel, comprising:
Step 1, measuring an outer dimension and a height of an internal heating vessel;
Step 2, providing an external heating vessel made by the same material of the internal heating vessel, and the an inner diameter of the external heating vessel is roughly larger than or equivalent to an outer diameter of the internal heating vessel, and a height of the external heating vessel is roughly the same as a height of the internal heating vessel;
Step 3, locating multiple bottom static wires between the internal heating vessel and the external heating vessel, where is close to the joint of a lateral side and a bottom of the internal heating vessel; For instance, multiple parts of bottom static wires can be discontinuously set at the bottom around the joint of the lateral side and the bottom of the heating vessel. Any two parts are ensured not to connect with each other;
Step 4, respectively connecting two ends of each of the bottom static wires to corresponding detection terminals on tops of the internal heating vessel and the external heating vessel; With the static wires having insulated heat-resistant material, pairs of disconnected ends are lined to the top of the heating vessel and form pairs of disconnected detection terminals;
Step 5, welding the tops of the internal heating vessel and the external heating vessel as one body;
Step 6, detecting the material leakage by measuring resistance between the two detection terminals corresponding to the two adjacent ends of the two adjacent bottom static wires with the detection apparatus.
When the internal heating vessel is broken and the high temperature liquid drops on the disconnected ends at the bottom, the multimeter can be employed to detect the corresponding detection terminals to judge whether the internal heating vessel is broken and the broken location. Therefore, the ability of detecting leakage is promoted. There will be enough time to remedy for the risk of leakage. Meanwhile, the double layer design of the heating vessel can guarantee the progress of the production without interruption.
With the improvement of the traditional heating vessel according to the present invention, a present single layer vessel is improved to be a double layer heating vessel. Meanwhile, multiple static wires are discontinuously located between the internal heating vessel and the external heating vessel, where is a circle of the bottom close to the joint of the lateral side and the bottom of the internal heating vessel. Then, two adjacent disconnected ends of the static wires are lined to the top edge of the heating vessel and form two disconnected detection terminals with the static wires having insulated heat-resistant material. When the fractures and damages appear the internal heating vessel around the joint, a small amount of material leakage will connected the previously disconnected ends, which can be detected via the detection terminals. Accordingly, the pre-detecting ability of the high temperature metal material leakage is promoted. The following steady production can be guaranteed and the productivity is raised.
In conclusion, the present invention applies a design of a special heating vessel, which is easy to detect whether the material leakage occurs or not by using the detection apparatus, such as a multimeter and guarantees that the related experiment and production can continue under circumstance that heating vessel is broken. The issues of the material abnormal loss and production progress interruption due to the appeared unexpected fractures in daily usages can be overcome; the continuous steady running period of the heating apparatus is effectively promoted and the quality of the production is guaranteed.
Above are only specific embodiments of the present invention, the scope of the present invention is not limited to this, and to any persons who are skilled in the art, change or replacement which is easily derived should be covered by the protected scope of the invention. Thus, the protected scope of the invention should go by the subject claims.
Number | Date | Country | Kind |
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201410204509.8 | May 2014 | CN | national |
Filing Document | Filing Date | Country | Kind |
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PCT/CN2014/078677 | 5/28/2014 | WO | 00 |