Non-contact precision pneumatic injection valve
20220323976 · 2022-10-13
Inventors
Cpc classification
International classification
Abstract
A non-contact precision pneumatic injection valve includes a cylinder, a needle disposed inside the cylinder, and an adjustable stroke limiting component. The adjustable stroke limiting component includes a thread-toothed column threadedly engaging an upper end of the cylinder; a spring-limiting column disposed inside and fixedly attached to the thread-toothed column, the spring-limiting column having a first protrusion ring; a spring column axially movably disposed inside the spring-limiting column and having a second protrusion ring, a lower end of the spring column defining a stroke of the needle; and a spring. One end of the spring fixedly engages the first protrusion ring and the other end of the spring fixedly engages the second protrusion so that the spring keeps the spring column at least partially inside the spring-limiting column. The spring biases the lower end of the spring column toward the needle.
Claims
1. A non-contact precision pneumatic injection valve comprising: a cylinder; a needle disposed inside the cylinder; and an adjustable stroke limiting component comprising: a thread-toothed column threadedly engaging an upper end of the cylinder; a spring-limiting column disposed inside and fixedly attached to the thread-toothed column, the spring-limiting column comprising a first protrusion ring; a spring column axially movably disposed inside the spring-limiting column and comprising a second protrusion ring, a lower end of the spring column defining a stroke of the needle; and a spring, one end of the spring fixedly engaging the first protrusion ring and the other end of the spring fixedly engaging the second protrusion so that the spring keeps the spring column at least partially inside the spring-limiting column, the spring biasing the lower end of the spring column toward the needle.
2. The non-contact precision pneumatic injection valve of claim 1, wherein in a first position the thread-toothed column is threaded relative to the cylinder to compress the spring so that the spring column cannot move axially relative to the needle, and in a second position the thread-toothed column is threaded away from the cylinder in order to change the stroke of the needle.
3. The non-contact precision pneumatic injection valve of claim 1, wherein the one end of the spring fixedly engages the first protrusion ring by friction or tension.
4. The non-contact precision pneumatic injection valve of claim 1, wherein the other end of the spring fixedly engages the second protrusion ring by friction or tension.
5. The non-contact precision pneumatic injection valve of claim 1, wherein the thread-toothed column comprises a third protrusion ring that threadedly engages the upper end of the cylinder.
6. The non-contact precision pneumatic injection valve of claim 5, wherein the adjustable stroke limiting component further comprises a handle fixedly connected to the thread-toothed column, a fitting ring rotatably mounted on the thread-toothed column and being slidably engageable with the handle, a scale ring on the fitting ring, and a second spring disposed between the fitting ring and the third protrusion ring to bias the fitting ring so that the fitting ring engages the handle in a first position.
7. The non-contact precision pneumatic injection valve of claim 6, wherein when the fitting ring is axially pushed toward the third protrusion ring, the fitting ring disengages the handle in a second position so that the fitting ring and the scale ring can be rotated relative to the thread-toothed column to set the scale ring to zero.
8. The non-contact precision pneumatic injection valve of claim 6, wherein the handle has a toothed exterior surface on a lower end of the handle, and the fitting ring has a matching toothed interior surface on an upper end of the fitting ring, and when the matching toothed interior surface of the fitting ring engages the toothed exterior surface of the handle, the fitting ring is no longer rotatable relative to the thread-toothed column.
9. The non-contact precision pneumatic injection valve of claim 1, further comprising a nozzle assembly releasably attached to a lower end of the cylinder.
10. The non-contact precision pneumatic injection valve of claim 9, wherein the nozzle assembly comprises a fixing claw, a nozzle, a glue chamber disposed between the lower end of the cylinder and the nozzle and connectable to a glue source, and a nozzle heater surrounding the nozzle, and wherein the fixing claw engages the nozzle heater and rotatably engages the lower end of the cylinder to clamp the lower end of the cylinder, the glue chamber, the nozzle and the nozzle heater together.
11. The non-contact precision pneumatic injection valve of claim 10, wherein the nozzle assembly further comprises a sealing ring disposed between the lower end of the cylinder and the glue chamber, and a nozzle sealing ring disposed between the glue chamber and the nozzle.
12. A non-contact precision pneumatic injection valve comprising: a cylinder; a needle disposed inside the cylinder; and a nozzle assembly releasably attached to a lower end of the cylinder, the nozzle assembly comprising: a fixing claw; a nozzle; a glue chamber disposed between the lower end of the cylinder and the nozzle and connectable to a glue source; and a nozzle heater surrounding the nozzle, wherein the fixing claw engages the nozzle heater and rotatably engages the lower end of the cylinder to clamp the lower end of the cylinder, the glue chamber, the nozzle and the nozzle heater together.
13. The non-contact precision pneumatic injection valve of claim 12, wherein the nozzle assembly further comprises a sealing ring disposed between the lower end of the cylinder and the glue chamber, and a nozzle sealing ring disposed between the glue chamber and the nozzle.
14. The non-contact precision pneumatic injection valve of claim 13, wherein the fixing claw comprises a fixing portion that rotatably engages the lower end of the cylinder, and a pair of claws that engage a flange of the nozzle heater.
15. The non-contact precision pneumatic injection valve of claim 12, further comprising an adjustable stroke limiting component connected to an upper end of the cylinder.
16. The non-contact precision pneumatic injection valve of claim 15, wherein the adjustable stroke limiting component comprises: a thread-toothed column threadedly engaging the upper end of the cylinder; a spring-limiting column disposed inside and fixedly attached to the thread-toothed column, the spring-limiting column comprising a first protrusion ring; a spring column axially movably disposed inside the spring-limiting column and comprising a second protrusion ring that is disposed lower than the first protrusion ring, a lower end of the spring column defining a stroke of the needle; and a compression spring, one end of the compression spring fixedly engaging the first protrusion ring and the other end of compression spring fixedly engaging the second protrusion so that the compression spring keeps the spring column at least partially inside the spring-limiting column.
17. The non-contact precision pneumatic injection valve of claim 16, wherein the one end of the compression spring fixedly engages the first protrusion ring by friction or tension.
18. The non-contact precision pneumatic injection valve of claim 16, wherein the other end of the compression spring fixedly engages the second protrusion ring by friction or tension.
19. The non-contact precision pneumatic injection valve of claim 16, wherein the thread-toothed column comprises a third protrusion ring that threadedly engages the upper end of the cylinder.
20. The non-contact precision pneumatic injection valve of claim 19, wherein in one position, the third protrusion ring is disposed lower than the first protrusion ring but higher than the second protrusion ring.
Description
BRIEF DESCRIPTIONS OF THE DRAWINGS
[0019] These and other features, aspects, and advantages of the present invention will become better understood with regard to the following description, appended claims, and accompanying drawings where:
[0020]
[0021]
[0022]
[0023] Numerals of the drawings are described as follows: nozzle assembly 1, fixing claw 11, glue chamber 12, nozzle 13, nozzle heater 14, spring-energized sealing ring 15, nozzle sealing ring 16, cylinder 2, high-pressure inlet air assembly 3, inlet air pipe 31, inlet air connector 32, solenoid valve 33, solenoid valve sealing ring 34, outlet air assembly 4, outlet air sealing ring 41, outlet air connector 42, outlet air pipe 43, needle 5, adjustable stroke limiting component 6, thread-toothed column 61, a third protrusion ring 61, a spring limiting column 62, a first protrusion ring 62a, spring column 63, a second protrusion ring 63a, a spring 64, a rotary handle 65, a fitting groove 66, a fitting ring 67, a scale ring 68, a spring sheet 69, a cable box 71, a cable 72, a glue container holder 73, a chamber seat 74, washers 75, and a hanging bracket 76.
DETAILED DESCRIPTIONS OF EMBODIMENTS
[0024] In order to make the above object, features and advantages of the present invention clearer, the present disclosure will be detailed below in combination with the accompanying drawings and specific embodiments. Many details in the following descriptions help to fully understand the present invention. However, the present invention can be carried out in manners different from the manners described herein. Those skilled in the art may make similar improvements without departing from the essence of the present invention. Therefore, the present invention is not limited to the specific embodiments described below.
[0025] It should be noted that when an element is called “fixed” to another element, such element may be directly located on the another element or an intermediate element is present; when one element is considered as connected to another element, such element may be directly connected to the another element or an intermediate element is present at the same time.
[0026] Unless otherwise stated, all technical and scientific terms used herein have the same meanings as understood by those skilled in the art. The terms used in the specification of the present disclosure are used only for the purpose of describing the specific embodiments rather than limiting the present invention. The terms “and/or” used herein include any or all combinations of one or more associated listed items.
[0027] As shown in
[0028] Based on the above and as illustrated in
[0029] Based on the above and as illustrated in
[0030] Based on the above, the high-pressure inlet air assembly 3 includes an inlet air pipe 31, an inlet air connector 32 and a solenoid valve 33 connected in sequence as well as a solenoid valve sealing ring 34 disposed between the inlet air connector 32 and the solenoid valve 33. The outlet air assembly 4 includes an outlet air sealing ring 41 disposed at the air outlet. The outlet air assembly 4 further includes an outlet air channel in communication with the chamber is disposed on the cylinder 2. The outlet air assembly 4 further includes an outlet air connector 42 in communication with the outlet air channel and an outlet air pipe 43 connected with the outlet air connector 42. When glue is to be injected, the solenoid valve 33 is firstly turned on to allow high-pressure air to enter the chamber and lift up the needle 5; when the solenoid valve 33 is turned off, the high-pressure air is discharged through the outlet air channel, the outlet air connector 42 and the outlet air pipe 43. In this case, there is no air pressure on the needle 5 and the needle 5 drops under its gravity and/or the force of the spring 64 to strike glue in the nozzle assembly 1 and inject the glue, thus achieving accurate control over glue injection.
[0031] Based on the above and as illustrated in
[0032] Based on the above and as illustrated in
[0033] Based on the above and as illustrated in
[0034] The above specific embodiments further describe the object, technical solutions and the beneficial effects of the present disclosure in details. It should be understood that the above descriptions are merely specific embodiments of the present disclosure and shall not be intended to limit the scope of the present disclosure. Any modifications, equivalent substitutions, and improvements and the like made within the spirit and principle of the present disclosure shall all be encompassed in the scope of protection of the present disclosure.