1. Field of the Invention
The present invention relates to a display technology manufacture field, more particularly, to a viscosity measurement thermostatic waterbath device.
2. Description of the Prior Art
Due to advantages of slimness, energy saving and non-radiation, Liquid Crystal Display (LCD) is widely applied. Conventional LCDs in the market are mostly backlight LCDs comprising liquid crystal display panels and backlight modules. Liquid crystal display panels work by placing liquid crystal molecules between two parallel glass substrates, changing the direction of liquid crystal molecules through controlling by glass substrate voltage, and generating images through light refraction of backlight modules.
In the prior art, in manufacture procedure of liquid crystal display panel, conventional methods of filling liquid crystal in between glass substrates are traditional vacuum siphon method and one drop filling (ODF). Traditional vacuum siphon method is gradually absorbing liquid crystal through capillary theory after aligning upper and lower glass substrates; ODF is to aligning upper and lower glass substrates after instilling liquid crystal directly on glass. Comparing to traditional vacuum siphon method, ODF saves time to instill liquid crystal by a large margin, and saves liquid crystal material as well by greatly increase efficiency of utilization of liquid crystal. Therefore, when large size liquid crystal display panel becomes popular, ODF becomes the mainstream technology.
When manufacturing liquid crystal display panels applying ODF, laying on sealant around glass substrates is necessary for aligning upper and lower glass substrates. As the quality of sealant affects the quality of liquid crystal panels greatly, sealant material has to be highly endurable, reliable, precision solidifying and safe for manufacturing operation. Conventional sealant mainly made of acrylic resin and epoxy resin. As sealant viscosity affects the setting of manufacture parameters, strictly controlling sealant viscosity is necessary when laying on sealant Furthermore, as temperature greatly affects sealant viscosity, accurately controlling temperature is necessary when testing sealant viscosity.
When testing sealant viscosity, a viscosity measurement thermostatic waterbath device as
It is therefore a primary object of the present invention to provide a viscosity measurement thermostatic waterbath device suitable for inner containers with different diameters in purpose of solving the problems of conventional art mentioned above.
According to the present invention, a viscosity measurement thermostatic waterbath device comprises an outer container, an inner container embedded in the outer container's interior, and an interlayer set up between the outer container and the inner container. A circular cavity is formed between the interlayer and the outer container.
In one aspect of the present invention, the interlayer is made of flexible material.
In another aspect of the present invention, the viscosity measurement thermostatic waterbath device further comprises a supporting structure set up within the circular cavity, and the supporting structure bloats the interlayer into a bursiform, an opening of which is used to hold the inner container.
In another aspect of the present invention, the supporting component comprises a plurality of fixed connecting arms with one end fixedly connected to the outer container and the other end connected to a plurality of supporting arms, the plurality of supporting arms form a closed or a non-closed ring, where part of the interlayer locates and forms an opening in bursiform.
In another aspect of the present invention, the supporting arms are made of flexible material.
In another aspect of the present invention, a distance of two joints of the fixed connecting arms and supporting arms is less than a diameter of a ring circled by the supporting arms.
In another aspect of the present invention, the supporting arms are hinged with the fixed connecting arms, and an elastic member is set up to prompt the supporting arms into a closed ring.
In another aspect of the present invention, the elastic member is a spring.
In still another aspect of the present invention, the interlayer is made of latex material.
In yet another aspect of the present invention, the outer container and the inner container are both made of rigid material.
Benefits of the present invention are:
By a interlayer set between inner and outer containers, the viscosity measurement thermostatic waterbath device provided in the present invention selects inner containers with different diameters according to different samples to be tested, in order to save testing materials and reduces test cost; moreover, by guaranteeing tightness of circular cavities, it lowers tightness requirement of the joint between inner and outer containers, simplifies joint component's structure, in order to make it easier to replace inner containers and reduce test cost.
a shows an outer container,
b shows an interlayer and the outer container,
c shows an inner container, and
d shows a cross-section view of the viscosity measurement thermostatic waterbath device.
a shows an outer container,
b shows cross-section view of an interlayer and the outer container,
c shows an inner container, and
d shows a top view of the viscosity measurement thermostatic waterbath device embedding inner contains with various diameters.
a shows the supporting arm opening, and
b shows the supporting arm closing.
As mentioned above, the primary object of the present invention is to provide a viscosity measurement thermostatic waterbath device suitable for inner containers with different diameters, in purpose of reducing test cost. The viscosity measurement thermostatic waterbath device comprises an outer container, an inner container embedded in the outer container's interior, and an interlayer set up between the outer container and the inner container. A circular cavity is formed between the interlayer and the outer container.
In order to illustrate the technique and effects of the present invention, a detailed description will be disclosed by the following disclosure in conjunction with figures. Please note, the same components are labeled by the same number.
Please refer to
To make sure the interlayer 230 fit snugly with the inner containers 220 with different diameters, the interlayer 230 is made of flexible material, meanwhile the inner container 220 and the outer container 210 are made of rigid material. Preferably, the interlayer 230 is made of latex material, so that it is comparatively thin and highly flexible. When the inner container 220 is embedded inside the interlayer 230, the pressure of the liquid in the circular cavity 216 forces the interlayer 230 to fit snugly with the inner container 220, so that uniform heating of the inner container 220 is guaranteed, and accurately controlling temperature of samples inside the inner container 220 is possible.
Please refer to
Please refer to
Diameter of the fixing wall 222 matches diameter of the opening of the outer container 210. Moreover, a clamping unit 2221 with downward protrusion is set up on the fixing wall 222, so that the fixing wall 222 covers on the outer container 210 to prevent horizontal movement of the inner container 220 in testing.
The viscosity measurement thermostatic waterbath device provided in the embodiment selects inner containers with different diameters according to different samples to be tested, in order to save testing materials and reduce test cost; moreover, it lowers tightness requirement of the joint between inner and outer containers, simplifies joint component's structure, in order to make it easier to replace inner containers and reduce test cost. Meanwhile, the viscosity measurement thermostatic waterbath device has merits of simple structure and convenient usage.
Please refer to
To make sure the interlayer 230 fit snugly with the inner containers 220 with different diameters, the interlayer 230 is made of flexible material, meanwhile the inner container 220 and the outer container 210 are made of rigid material. Preferably, the interlayer 230 is made of latex material, so that it is comparatively thin and highly flexible. When the inner container 220 is embedded inside the interlayer 230, the pressure of the liquid in the circular cavity 216 forces the interlayer 230 to fit snugly with the inner container 220, so that uniform heating of the inner container 220 is guaranteed, and accurately controlling temperature of samples inside the inner container 220 is possible.
Please refer to
Please refer to
The embodiment differs the foregoing two embodiments in the structure of the supporting component 212. As
In conclusion, by a interlayer set between inner and outer containers, the viscosity measurement thermostatic waterbath device provided in the present invention selects inner containers with different diameters according to different samples to be tested, in order to save testing materials and reduces test cost; moreover, by guaranteeing tightness of circular cavities, it lowers tightness requirement of the joint between inner and outer containers, simplifies joint component's structure, in order to make it easier to replace inner containers and reduce test cost.
The terms “a” or “an”, as used herein, are defined as one or more than one. The term “another”, as used herein, is defined as at least a second or more. The terms “including” and/or “having” as used herein, are defined as comprising. It should be noted that if it is described in the specification that one component is “connected,” “coupled” or “joined” to another component, a third component may be “connected,” “coupled,” and “joined” between the first and second components, although the first component may be directly connected, coupled or joined to the second component.
Those skilled in the art will readily observe that numerous modifications and alterations of the device and method may be made while retaining the teachings of the invention. Accordingly, the above disclosure should be construed as limited only by the metes and bounds of the appended claims.
Number | Date | Country | Kind |
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201410138504.X | Apr 2014 | CN | national |
Filing Document | Filing Date | Country | Kind |
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PCT/CN2014/075142 | 4/11/2014 | WO | 00 |