Container and container engaging member suitable for vacuum assisted filtration
09850040 · 2017-12-26
Assignee
Inventors
- Chris Scott (Billerica, MA, US)
- Kurt Greenizen (Billerica, MA, US)
- Paul Sydlowski (Billerica, MA, US)
- Jay Doyle (Billerica, MA, US)
Cpc classification
B65B7/2828
PERFORMING OPERATIONS; TRANSPORTING
B65D1/0246
PERFORMING OPERATIONS; TRANSPORTING
B01L2300/046
PERFORMING OPERATIONS; TRANSPORTING
B65D41/0414
PERFORMING OPERATIONS; TRANSPORTING
B65D2203/12
PERFORMING OPERATIONS; TRANSPORTING
B01L3/508
PERFORMING OPERATIONS; TRANSPORTING
B01L3/502
PERFORMING OPERATIONS; TRANSPORTING
B65D41/06
PERFORMING OPERATIONS; TRANSPORTING
B65D2251/01
PERFORMING OPERATIONS; TRANSPORTING
B65D41/0485
PERFORMING OPERATIONS; TRANSPORTING
International classification
B65D41/04
PERFORMING OPERATIONS; TRANSPORTING
B65B7/28
PERFORMING OPERATIONS; TRANSPORTING
B65D41/06
PERFORMING OPERATIONS; TRANSPORTING
B01L3/00
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A container and a container engaging member. The container engaging member may include a sample holder or reservoir, a filtration element and collar. In the assembled condition, the sample holder or reservoir is upstream of the filtration element, the container is downstream of the filtration element, and the sample holder or reservoir is attached to the container. The container engagement member is engageable and disengageable from the bottle or container in a quick attach, quick release manner, such as with only a 90 degree, ¼ turn. A tactile and/or audible indication that the engagement is complete is provided.
Claims
1. An assembly comprising a container, a container engaging member and a seal member, said container having a container body and an open neck, said open neck comprising a plurality of spaced, discontinuous open neck tabs extending radially from said neck; said container engaging member comprising a body having a neck engaging member, said neck engaging member comprising a plurality of spaced, discontinuous threads configured to engage with said spaced, discontinuous open neck tabs upon relative rotation of said neck and said neck engaging member; said container further comprising a circumferential flange extending radially outwardly from said neck, said flange comprising a plurality of spaced flange tabs; wherein said neck engaging member comprises a raised snap bead, a notch, and a raised stop member that are annularly aligned and cooperate with said flange tabs to create a snap fit engagement between said neck and said neck engaging member, said notch being positioned between said raised snap bead and said raised stop member, and wherein said seal member is positioned to engage said neck and compress upon relative rotation of said neck and said neck engaging member.
2. The assembly of claim 1, wherein said open neck tabs are positioned in plurality of stacked pairs, each stacked pair being equally spaced from another stacked pair.
3. The assembly of claim 2, wherein each said stacked pair comprises an upper open neck tab and a lower open neck tab, said lower open neck tab being parallel to, aligned with, and positioned just below said upper open neck tab.
4. The assembly of claim 2, wherein each open neck tab comprises a downwardly sloping ramp portion that transitions to a vertical portion.
5. The assembly of claim 1, wherein said container engaging member comprises a cap for closing said container.
6. The assembly of claim 1, wherein each said flange tab comprises a radially extending top portion that extends upwardly from said flange and radially outwardly from said neck, and a radially extending bottom portion that extends radially outwardly from said flange and terminates in a free end.
7. The assembly of claim 1, wherein said neck engaging member comprises at least one rotational limiting member that extends axially from said neck engaging member and abuts against said flange tabs on said flange to prevent relative rotation in one direction of said neck engaging member and container.
8. The assembly of claim 1, wherein said neck engaging member comprises a cantilever snap lock member and a raised stop member, said cantilever snap lock member being positioned radially outwardly from said raised stop member.
9. The assembly of claim 1, wherein said seal member comprises a foam gasket.
10. The assembly at claim 1, wherein said seal member comprises an annular ring extending from said container engaging member.
11. A method of engaging an engaging member with a container, comprising: providing a container having a container body and an open neck, said open neck comprising a plurality of spaced, discontinuous tabs extending radially from said neck; providing a container engaging member comprising a body having a neck engaging member, said neck engaging member comprising a plurality of spaced, discontinuous threads configured to engage with said spaced, discontinuous tabs upon relative rotation of said neck and said neck engaging member, said container further comprising a circumferential flange extending radially outwardly from said neck, said flange comprising a plurality of spaced flange tabs, and comprising at least one rotational limiting member extending axially from said neck engaging member, a raised snap bead, a notch, and a raised stop member that are annularly aligned and cooperate with said flange tabs to create a snap fit engagement between said neck and said neck engaging member, said notch being positioned between said raised snap bead and said raised stop member; providing a seal member; positioning said container engaging member over said container such that said at least one rotational limiting member is positioned in a region between said spaced, discontinuous tabs of said neck; rotating said container with respect to said neck engaging member 90° to engage said tabs of said container with said threads of said neck engaging member and compress said seal member to seal said container to said container engaging member.
12. The method of claim 11, wherein said rotating of said container with respect to said neck engaging member is carried out with one hand by a user.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1)
(2)
(3)
(4)
(5)
(6)
(7)
(8)
(9)
(10)
(11)
(12)
(13)
(14)
(15)
DETAILED DESCRIPTION
(16) Turning first to
(17)
(18) The pitch of the tabs 14 is configured so that the tabs are capable of engaging and disengaging with a suitable engaging member with a 90 degree ¼ turn, and are also capable of engaging with a conventional engaging member (e.g., a standard buttress thread with a pitch of 0.1667 inches) with a full 360 degree or more turn. Pitch is defined as the z-axis (depth) of movement corresponding to a full, 360° turn. The thread start (starting with the depth of the first thread) and thread lead (angle where the first thread starts) are configured to ensure that the stop is engaged after the click is engaged and after the engaging member seal 48 is fully engaged. More specifically, in certain embodiments as shown in
(19) The neck 13 also includes a circumferential flange 30 extending radially outwardly. In certain embodiments, the flange extends radially outwardly a distance further than the tabs 14. In certain embodiments, the flange 30 is spaced from the bottom of the neck 13; that is, it is positioned just above the region where the neck 13 transitions to the body 12 of the container 10. In certain embodiments, the flange 30 includes two spaced tabs 31a, 31b, preferably spaced 180° from each other. Each tab includes a radially extending top portion 32 that extends upwardly from the flange 30 and radially outwardly from the neck 13 coextensively with the flange 30 extends. Each tab also includes a radially extending bottom portion 33 that extends radially outwardly from the edge of the flange 30 and terminates in a free end 34. In cooperation with certain elements on the collar 40 as discussed below, the tabs 31a, 31b serve to create a snap fit engagement between the collar 40 and the container 10, or a cap 60 and the container 10.
(20) Turning now to
(21) Within collar 40 there is an inner cylindrical member 41 extending axially from the underside of the top portion of the collar 40. In certain embodiments, the cylindrical member 41 is centrally located in the collar 40 and is a neck engaging member. In certain embodiments, the inner wall 42 of the cylindrical member 41 includes a plurality of spaced threads or helical sweeps 45, extending radially inwardly from the inner wall 42 and configured to receive respective tabs 14 on the neck 13 of the container 10. In certain embodiments, the threads 45 are discontinuous with respect to each other. In certain embodiments, there are nine spaced threads 45, positioned in three axially stacked groups, each stacked group being equally spaced from another stacked group. Each stacked group includes a first thread (e.g., thread 45a), a second intermediate thread (e.g., thread 45b), and a third thread (e.g., thread 45c), the second and third threads being parallel to, aligned with, and positioned just below (when the collar 40 is in the upright position) the first thread 45a. In certain embodiments, the cylindrical member 41 also includes one full thread 45′ that spans the entire inner circumference of the cylindrical member 41 near the bottom thereof. In certain embodiments, each of the threads 45 extends radially outwardly from the wall 42 to the same extent, and the threads are similarly shaped. In certain embodiments, two stacked groups of threads are shorter in length than the threads of the third stacked group, to ensure orientation is in one direction and that the container and engaging member line up. In certain embodiments, the threads of the two stacked groups that are shorter in length than the threads of the third are of equal length. In certain embodiments, the opposite ends of each thread taper inwardly towards each other. In certain embodiments, each thread 45 includes an upwardly sloping ramp portion 46 that transitions to a vertical portion 47. The upwardly sloping ramp portion of a thread contacts the downwardly sloping ramp portion 24 of a corresponding tab 14 when the collar 40 is engaged on the neck 13.
(22) The enlarged detail of
(23) In certain embodiments, the cylindrical member 41 includes one or more (two shown) rotational limiting members such as tabs 55a, 55b that extend axially from the cylindrical member 41 as shown in
(24) In certain embodiments, there are three spaced thread relief regions 57 and three spaced groups of threads 45. This allows the container 10 to drop in up to the single full thread 45′ on the bottom of the collar 40. Relative rotation of the container 10 and collar 40 will further engage all of the threads.
(25) In certain embodiments, it is advantageous to have a cap for the container 10. Users often store media in the container 10 for weeks at a time, and access the container 10 regularly to feed cells. Accordingly, the cap/container interface is often the primary interface of the device, and should be ergonomically designed. Turning now to
(26) In certain embodiments, the interior of the body 62 of cap 60 includes a single continuous helical thread 66. The thread 66 allows for free-spin operation; applying a slight rotation force to the cap 60 relative to the container 10 is sufficient to rotate the cap 60 relative to the container 10 enough to disengage the cap 60 from the container 10.
(27) In certain embodiments, the cap 60 includes a snap engagement feature 50′. The snap engagement feature 50′ cooperates with the tabs 31a, 31b of the container 10 to create a snap fit engagement between the cap 60 and the container 10. In certain embodiments, the snap engagement feature 50′ is formed on the surface of the cylindrical body 62 where it transitions to the bell shaped bottom region 63, and includes a raised snap bead 51′, a notch 52′, and a raised stop member 53′. In certain embodiments, there are two such snap engagement features 50′, spaced apart 180°, each capable of cooperating with a respective one of the tabs 31a, 31b of the container 10. As the cap 60 is rotated with respect to the container 10, the tab 31a approaches the snap fit engagement feature 50′ until it is raised axially by raised snap bead 51′. Further relative rotation in the same direction causes the tab 31a to drop into notch 52′. Still further relative rotation causes the tab 31a to about against side wall 54′ of raised stop member 53′, creating a backstop. The abutment of the tab 31a against the side wall 54′ causes an audible “click” sound as well as tactile feedback to the user, warning the user to cease the rotation, thereby preventing over-torquing. The tab 31a sits in the region of notch 52′ when the cap 60 is in the closed position on the container 10, and the raised snap bead 51′ is raised a sufficient amount to hinder premature or unwanted loosening of the tab 31a from the region of the notch 52′. Tab 31b cooperates with the other snap engagement feature in a similar way.
(28)
(29) As the cap 60 is rotated relative to the container 10, the tab 31a (and more specifically, the radially extending bottom portion 33 of the tab 31a) rides over the chamfered edge forcing the snap lock member 51″ radially outward. As shown in