The present invention relates to airtight cover designs and more particularly, to a blender jar assembly and its cover.
Blenders, juicers and slow juicers are adapted for processing vegetables, fruits, nuts and other food into easy-to-eat juice. To the fruit, for example, when the fruit is processed into juice, the juice thus produced will be reacted with oxygen in the air inside the jar and turned into an oxidized color, and the food nutrition will be lost, so, it not only affects appetite, but also affects the taste of the food.
Further, a cover for covering a food processing container generally has a connection channel for accommodating a measuring cup. After insertion of a measuring cup into the connection channel, there is still a clearance kept between the measuring cup and the connection channel for air circulation between the inside of the food processing container and the atmosphere. In application, the measuring cup is removed so that a stirring rod can be inserted through the connection channel into the food processing container to stir up food ingredients. During stirring, outside air can flow into the inside of the food processing container to accelerate the oxidation reaction.
Therefore, many cover designs that eliminate a connection channel and a measuring cup have been created for closing a jar of a blender, juicer or slow juicer for allowing the operation of a vacuum pump to draw air out of the jar so as to reduce oxidation of the juice in the jar. For example, China Patent No. CN 204120771U and China Patent Publication No. CN 103720339A disclose different cover designs that eliminate the arrangement of a measuring cup and a connection channel.
However, these commercial vacuum juicers need the use of a specially designed closed cover that does not allow insertion of a stirring rod into the jar, therefore, for certain food ingredients that are not easy to stir, this design of vacuum juicers will not be effective for food processing.
The present invention has been accomplished under the circumstances in view. It is therefore the main object of the present invention to provide a blender jar assembly and a cover for the blender jar assembly, wherein the cover has a connection channel that is adapted for accommodating a measuring cup or for the insertion of a stirring rod and can be fastened with a sealing plug set to achieve an airtight effect for enabling a vacuum pump to perform a vacuuming operation.
To achieve this and other objects of the present invention, a cover is provided for covering an opening of a jar. The cover comprises a cover body and a sealing plug set. The cover body comprises a connection channel and a locking system. The locking system is formed on the cover body within the connection channel. The sealing plug set is detachably connectable to the cover body. Further, the sealing plug set is connected to the cover body by means of the locking system, and covered over the connection channel. Further, the sealing plug set comprises at least one air hole and an air valve. The air valve is adapted for blocking the at least one air hole.
To achieve this and other objects of the present invention, a blender jar assembly comprises a vacuum pump, a blender jar, and the above-described cover.
To achieve this and other objects of the present invention, a cover is provided and covered over an opening of a jar. The cover comprises at least one air hole, an air valve blocking the at least one air hole, and a vacuum pump mounted thereon for performing a vacuuming process to draw air out of the jar through the air valve and to further create a negative pressure in the jar. The cover further comprises a cover body and a sealing plug set. The cover body comprises a top surface, an opposing bottom surface, and a connection channel cut through the top surface and the bottom surface. The sealing plug set covers the connection channel, comprising a sealing device located at the top surface of the cover body. After vacuuming process of the vacuum pump to create the negative pressure in the jar, the sealing device is sucked by the negative pressure and secured to the top surface of the cover body in an airtight manner.
Thus, the sealing plug set of the present invention can be selectively mounted at the cover body, and a commercial measuring cup can be inserted into the connection channel of the cover body for enabling the stirring rod to pass through the connection channel.
Other advantages and features of the blender jar assembly and the cover of the present invention will be fully understood by reference to the following specification in conjunction with the accompanying drawings, in which like reference signs denote like components of structure.
A preferred embodiment of a blender jar assembly in accordance with the present invention is described hereinafter in conjunction with the annexed drawings. However, the components, dimension and outer appearance illustrated in the annexed drawings are simply for illustration purpose only but not intended to limit the technical features of the present invention.
Referring to
The cover 50 covers the opening of the jar body 10. Further, the cover 50 has a plurality of close-fitting structures located around the periphery thereof to abut against an inside wall of the jar body 10 to form an airtight seal. Further, the cover 50 can cover the opening of the jar body 10 by: inserting a part of the cover 50 into the inside of the jar body 10, threading an inner/outer thread of the cover 50 into/onto an outer/inner thread of the jar body 10, or operating a locking device to lock the cover 50 to the jar body 10, in other words, the cover 50 can be covered on the opening 11 of the jar body 10 in an airtight manner using any of a variety of known techniques. Thus, the shape of the cover 50 is not limited to what is illustrated in the annexed drawings.
The cover 50 comprises a cover body 51 and a sealing plug set 53. The sealing plug set 53 is detachably connected to the cover body 51. The vacuum pump 700 is adapted for connection to the sealing plug set 53 for the implementation of a vacuuming operation.
As illustrated in
Further, the top surface 511a of the cover body 51 can be a plane around the connection channel 511; alternatively, the top surface 511a can be the whole top surface of the cover body 51; therefore, the area of the top surface 511a is not limited to the plane around the connection channel 511 as illustrated in the present preferred embodiment. The bottom surface 511b is a surface of the cover body 51 opposite to the top surface 511a, therefore, the bottom surface 511b is not limited to the area as illustrated in the annexed drawing.
As illustrated in
Referring to
In the present preferred embodiment, the two second legs 515 are disposed adjacent to the outlet 5113 of the connection channel 51, however, in actual application, the two second legs 515 can be disposed at any locations remote from the inlet 5111 of the connection channel 511, for example, the two second legs 515 can be located on the bottom surface of the connection channel 511.
As illustrated in
Further, the hollow annular wall 5311 can be a smooth circular wall, or an annular wall with a multi-angle geometric design, i.e., the inner wall surface 53111 and outer wall surface 53113 of the hollow annular wall 5311 can be flat vertical surfaces or irregular surfaces. In the present preferred embodiment, the hollow annular wall 5311 exhibits a multi-angle geometric design, however, this design is not a limitation. Further, the top of the hollow annular wall 5311 is configured to work as a grip.
Referring to
As illustrated in
The positioning portions 5151 of the cover body 51 each have a chamfered edge at the front side so that the two lower protruding blocks 5317 of the adapter 531 can be easily moved along the chamfered edges of the respective positioning portions 5151 to the second supporting surfaces 5155 of the respective second legs 515 into abutment against the respective stop edges 517.
Thus, the sealing plug set 53 is locked to the cover body 51 with the sealing device 533 held down tightly by the hollow annular wall 5311 and upper flange 5315 of the adapter 531 of the sealing plug set 53 and the cover body 51 to achieve an airtight effect.
In the present preferred embodiment, the sealing plug set 53 is inserted through the top surface of the cover body 51 into the inside of the cover body and then locked in position by the locking system. However, in actual application, the sealing plug set 53 can be configured for insertion through the bottom surface of the cover body 51 into the inside of the cover body and then locked in position by the locking system. Therefore, the connection between the sealing plug set 53 and the cover body 51 can be achieved by the method described above, other locking system designs can be selectively used to achieve connection between the sealing plug set 53 and the cover body 51 without departing from the spirit and scope of the present invention.
Referring to
It should be noted that, during the vacuuming operation, the negative pressure in the jar body 10 of the blender jar 100 thus created will suck the sealing plug set 53 to achieve airtight connection between the sealing device 533 of the sealing plug set 53 and the top surface 511a of the cover body 51, maintaining the negative pressure in the jar body 10 of the blender jar 100. The negative pressure means the internal air of the jar body 10 of the blender jar 100 has been drawn out of the jar body 10 through the air holes 53131 by the vacuum pump 700 to create a vacuum in the jar body 10 of the blender jar 100.
The cover body locking system can be omitted when the sealing device 533 is used to achieve airtight connection between the sealing plug set 53 and the cover body 51, that is, before creation of a vacuum in the jar body 10 of the blender jar 100, the sealing plug set 53 is not fixedly connected with the cover body 51; after creation of a vacuum in the jar body 10 of the blender jar 100, the sealing device 533 is naturally sucked by the negative pressure, achieving airtight connection between the sealing plug set 53 and the cover body 51.
Finally, upon completion of the vacuuming operation, the vacuum pump 700 can be separated from the cover 50, and the air valve 535 returns to the state shown in
In the present preferred embodiment, the connection between the cover body 51 and the sealing plug set 53 is achieved by means of the locking system of the cover body 51 and the two lower protruding blocks 5317 of the sealing plug set 53. However, in actual application, any other equivalent structure such as screw threads can be employed to substitute for the locking system; in this case, the sealing plug set 53 is configured to provide a mating thread for engagement with the thread of the locking system of the cover body 51. Thus, the locking system and the connection structure of the sealing plug set 53 are not limited to the above-described design of the present preferred embodiment.
Further, if the two lower protruding blocks are respectively located at the two second legs for enabling the cover body and the sealing plug set to be connected in an airtight manner. In this case, the two stop edges can be omitted. Further, the sealing device is adapted to achieve airtight connection between the cover body and the adapter, thus, the sealing device can be an O-ring, and the number is not limited to 1.
In the present preferred embodiment, the air holes and the air valve are located at the sealing plug set, however, in actual application, the air holes and the air valve can be located at the cover body. The sealing plug set can be connected to the cover body by the locking system to achieve airtight connection with the cover body, or, an airtight connection between the sealing plug set and the cover body can be achieved upon creation of a negative pressure to suck the sealing plug set, and thus, the air holes and the air valve can be located at the cover body without limiting to the positioning design of the preferred embodiment.
Although a particular embodiment of the invention has been described in detail for purposes of illustration, various modifications and enhancements may be made without departing from the spirit and scope of the invention. Accordingly, the invention is not to be limited except as by the appended claims.
Number | Date | Country | Kind |
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105132926 | Oct 2016 | TW | national |