Vacuum-keeping multistage vacuum-generating and vacuum-destructing valve
10865909 ยท 2020-12-15
Assignee
Inventors
Cpc classification
Y10T137/8667
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
Y10T137/86083
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
F15B13/0839
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F15B2211/89
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16K51/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04F5/20
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04F5/22
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
Abstract
A vacuum-keeping multistage vacuum-generating and vacuum-destructing valve includes a main body, which includes an introduction port, a vacuum port, a discharge port, and a vacuum-generating valve, in combination with a vacuum-destructing valve. The vacuum-destructing valve is arranged in combination with a flow conducting passage formed in the main body and connected to the vacuum port to allow a pressure fluid received through the introduction port to partly flow through the vacuum-destructing valve, and a vacuum-destructing two-port two-position valve is arranged in the flow conducting passage to increase flow rate of the pressure fluid passing therethrough to make a response of the vacuum port more sensitive in switching to a vacuum-destructing state. The ports of the main body are arranged in a detachable manner to increase service efficiency and ease part replacement. Two side seats are arranged to couple multiple such main bodies together to cope with complicated automatic processing operations.
Claims
1. A vacuum-keeping multistage vacuum-generating and vacuum-destructing valve, comprising: a main body, which comprises an introduction port to which a pressure fluid is connected, a vacuum port adapted to connect to a suction mechanism, a discharge port through which the pressure fluid supplied through the introduction port is discharged to outside, and a vacuum-generating valve that when opened allows a negative pressure to be generated through the pressure fluid being supplied through the introduction port, wherein a vacuum-destructing valve is operable in combination with a flow conducting passage formed in the main body and connected to the vacuum port to allow the pressure fluid supplied through the introduction port to partly flow through the vacuum-destructing valve, and a vacuum-destructing two-port two-position valve is arranged in the flow conducting passage to increase flow rate of the pressure fluid passing therethrough to make a response of the vacuum port more sensitive in switching to a vacuum-destructing state; a reversal preventing valve is arranged between the vacuum port and the discharge port, which, when the vacuum port is in a condition of generating suction through vacuum, is closed when the vacuum-generating valve is closed, to allow the vacuum port to be full of negative pressure maintaining a vacuum-keeping state.
2. The vacuum-keeping multistage vacuum-generating and vacuum-destructing valve according to claim 1, wherein the flow conducting passage further comprises a destruction adjusting knob, which operates the vacuum-destructing two-port two-position valve to control flow rate through the valve.
3. The vacuum-keeping multistage vacuum-generating and vacuum-destructing valve according to claim 1, wherein the main body further comprises a vacuum filter, which is arranged in the vacuum port, the vacuum filter being operable to remove dust powders contained in the fluid flowing into the vacuum port.
4. The vacuum-keeping multistage vacuum-generating and vacuum-destructing valve according to claim 1, wherein the main body further comprises a plurality of troughs, the troughs each having an inside wall in which insertion holes are formed and extend to a side surface of the main body; and a connection plug, which is combined with a connection plug clip seat to create a unitary structure with the body, the connection plug clip seat having a circumference in which a clip groove is formed, so that the connection plug is disposable in the trough to have the insertion holes and the clip groove in alignment with each other, a clip being insertable and fixed in the insertion holes to fix the connection plug in the main body, the clip being selectively removable from the insertion holes to allow for detachment of the connection plug.
5. The vacuum-keeping multistage vacuum-generating and vacuum-destructing valve according to claim 4, wherein the insertion holes are symmetrically arranged and are spaced from each other.
6. The vacuum-keeping multistage vacuum-generating and vacuum-destructing valve according to claim 1, further comprising two side seats, which are each provided with a side seat fluid introduction channel and a side seat discharge channel and are arranged to allow multiple units of the main body to be coupled and installed, the multiple main bodies being each further provided with an introduction channel, a discharge channel, and a plurality of through holes, the introduction channel and the discharge channel each having two ends that are provided with a raised face and a recessed face, respectively, wherein the introduction channels and the discharge channels are connectable and expandable through coupling between the recessed faces and the raised faces, respectively, so that the pressure fluid is receivable through the side seat fluid introduction channel to flow through the introduction channels and the discharge channels into the side seat discharge channel.
7. The vacuum-keeping multistage vacuum-generating and vacuum-destructing valve according to claim 6, wherein the two side seats further comprise a plurality of bolt holes, through which fixing bolts are receivable and extending through the through holes to fix the main bodies and the two side seats together.
8. The vacuum-keeping multistage vacuum-generating and vacuum-destructing valve according to claim 6, wherein the two side seats further comprise a connection port provided on a surface of the two side seats and adapted to electrically connect with an external device for transmission of data.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
(20) The following descriptions are exemplary embodiments only, and are not intended to limit the scope, applicability or configuration of the invention in any way. Rather, the following description provides a convenient illustration for implementing exemplary embodiments of the invention. Various changes to the described embodiments may be made in the function and arrangement of the elements described without departing from the scope of the invention as set forth in the appended claims.
(21) The present invention provides a vacuum-keeping multistage vacuum-generating and vacuum-destructing valve, of which a preferred feasible embodiment will be described in detail with reference to
(22) A vacuum-destructing valve (30) is arranged and operated in combination with a flow conducting passage (11) that is formed in an interior of the main body (10) and connected to the vacuum port (102) to allow the pressure fluid (P) supplied through the introduction port (101) to partly flow through the vacuum-destructing valve (30). The flow conducting passage (11) is provided therein with a vacuum-destructing two-port two-position valve (40), which is generally arranged posterior to the vacuum-destructing valve (30), so that the pressure fluid (P), after passing through the vacuum-destructing valve (30), enters the vacuum-destructing two-port two-position valve (40) to help increase flow rate of the pressure fluid (P) so as to make a response of the vacuum port (102) more sensitive in switching to a vacuum-destructing state.
(23) As shown in
(24) Referring to
(25) Referring to
(26) Referring to
(27) A destruction adjusting knob (41) is additionally provided between the flow conducting passage (11) and the vacuum port (202) and more specifically, is located posterior to the vacuum-destructing two-port two-position valve (40), for the purpose of controlling the flow rate of the pressure fluid (P) passing through the two-port two-position valve (21). The vacuum port (102) may be additionally provided with a vacuum filter (1022) for removing dust powders from the fluid.
(28) Referring to
(29) Additionally or alternatively, two side seats (50) are provided and are arranged at left and right sides in a horizontal direction and the two side seats (50) are each provided with a side seat introduction channel (51) and a side seat discharge channel (52) to receive a supply of the pressure fluid (P) fro the outside. The two side seats (50) define therebetween a receiving space (501) in which multiple main bodies (10) may be arranged and fixed.
(30) Each of such multiple main bodies (10) is additionally or alternatively provided with an introduction channel (13), a discharge channel (14), and a plurality of through holes (15). The introduction channel (13) has two opposite ends at which a raised face (131) and a recessed face (132) are respectively formed. The discharge channel (14) has two ends at which a raised face (141) and a recessed face (142) are respectively formed. To assemble the multiple main bodies (10), as viewed in the cross-sections taken along lines A-A and B-B of
(31) The two side seats (50) are further provided with a plurality of bolt holes (53). The bolt holes (53) are arranged to correspond, in position, to the through holes (15) of the main body (10). With a desired number of main bodies (10) are provided between the side seats (50), fixing bolts (54) are provided to extend through the through holes (15) to securely fix the side seats (50) and the main bodies (10) together.
(32) Referring to
(33) In summary, the present invention provides an arrangement in which a vacuum-destructing valve (30) is arranged in combination with a flow conducting passage (11) in which a vacuum-destructing two-port two-position valve (40) is additionally provided to allow a pressure fluid (P) passing through the vacuum-destructing valve (30) to subject to an increase of flow rate of the pressure fluid (P) by means of the vacuum-destructing two-port two-position valve (40) thereby making a response to vacuum destruction more sensitive. In addition, a reversal preventing valve (1021) is further arranged between a vacuum port (102) and a discharge port (103) to maintain a state of vacuum suction mechanism for a predetermined period of time for operation without additional supply of pressure fluid (P). A main body (10) is structured such that a plurality of troughs (12) are formed and a clip groove (1222) is formed in a connection plug clip seat (1221), wherein a connection plug (122) is disposed in each of the troughs (12) and insertion holes (121) and the clip groove (1222) are in alignment with each other to ease coupling made with a clip (123) thereby securing fixing the connection plug (122) in the main body (10), whereby the connection plug (122) is made replaceable according to requirements and problems associated with insufficiency of structural strength and easiness of deformation can be overcome. In addition two side seats (50) are provided for coupling multiple main bodies (10) together, wherein side seat fluid introduction channels (51) and side seat discharge channels (52) formed in the side seats (50) are connectable with introduction channels (13) and discharge channels (14) of the main bodies to allow the pressure fluid (P) supplied through the two side seats (50) to be used to drive multiple main bodies (10), to achieve the purposes of more complicated vacuum suction operations or automatic programmable control, without being constrained to the number of the main bodies (10) that are allowed for installation, making the application thereof more flexible.
(34) It will be understood that each of the elements described above, or two or more together may also find a useful application in other types of methods differing from the type described above.
(35) While certain novel features of this invention have been shown and described and are pointed out in the annexed claim, it is not intended to be limited to the details above, since it will be understood that various omissions, modifications, substitutions and changes in the forms and details of the device illustrated and in its operation can be made by those skilled in the art without departing in any way from the claims of the present invention.