Print head with quick release mechanism
10406822 ยท 2019-09-10
Assignee
Inventors
Cpc classification
B41J2/325
PERFORMING OPERATIONS; TRANSPORTING
B29C64/118
PERFORMING OPERATIONS; TRANSPORTING
B41J2202/31
PERFORMING OPERATIONS; TRANSPORTING
B33Y30/00
PERFORMING OPERATIONS; TRANSPORTING
B41J21/04
PERFORMING OPERATIONS; TRANSPORTING
B41J2/33575
PERFORMING OPERATIONS; TRANSPORTING
B41J2202/15
PERFORMING OPERATIONS; TRANSPORTING
B41J2/1714
PERFORMING OPERATIONS; TRANSPORTING
International classification
B29C64/118
PERFORMING OPERATIONS; TRANSPORTING
B41J21/04
PERFORMING OPERATIONS; TRANSPORTING
B33Y30/00
PERFORMING OPERATIONS; TRANSPORTING
B41J2/355
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A quick release print head includes a heating block, a nozzle tube and a connecting tube. The nozzle tube is inserted in the heating block. One end of the nozzle tube has a nozzle and the other end is extended with an extension tube exposed to the heating block. The connecting tube is connected with the extension tube. Whereby, the extension tube extended from the nozzle tune is exposed to the heating block so that the nozzle tube disposed near the heating block cannot be disassembled. Thus, a process of replacing components by heating a nozzle can be bypassed, and advantages of quick disassembly and easy maintenance of the print head can be achieved.
Claims
1. A print head with quick release mechanism, including: a heating block; a nozzle tube inserted in the heating block; one end of the nozzle tube having a nozzle and the other end extending to form an extension tube exposed to the heating block; and a connecting tube connected with the extension tube, wherein the connecting tube and the extension tube are integrally formed, and a top end of the connecting tube is disposed over a top end of the heat sink set.
2. The print head with quick release mechanism according to claim 1, wherein an outer diameter of the extension tube is smaller than an outer diameter of the nozzle tube and an outer diameter of the connecting tube.
3. The print head with quick release mechanism according to claim 1, wherein the heating block sleeves on an outer circumference of the extension tube, and a spacing is formed between the heating block and the extension tube.
4. The print head with quick release mechanism according to claim 1, wherein an inner peripheral surface of the heating block has first internal threads, and an outer peripheral surface of the nozzle tube has first external threads; the first internal threads and the first external threads are screwed together.
5. The print head with quick release mechanism according to claim 4, wherein a protruding annular block is provided at an outer peripheral edge of an intersection of the nozzle tube and the nozzle, and the protruding annular block blocks the heating block.
6. The print head with quick release mechanism according to claim 4, further including a heat sink set, wherein the heat sink set sleeves on the connecting tube; an outer periphery of the connecting tube has second outer threads, and an inner periphery of the heat sink set has second internal threads; the second outer threads and the second internal threads are screwed together, and a helical direction of the first external threads is opposite to a helical direction of the second external threads.
7. The print head with quick release mechanism according to claim 6, wherein the connecting tube has an annular portion neighboring an outer periphery of an end of the extension tube, and the annular portion blocks the heat sink set.
8. The print head with quick release mechanism according to claim 1, wherein the nozzle tube is made of a stainless steel (SUS303).
9. A print head with quick release mechanism used for a material tube, the print head with quick release mechanism including: a heating block; a nozzle tube inserted in the heating block; one end of the nozzle tube having a nozzle and the other end extending to form an extension tube exposed to the heating block; and a connecting tube connected with the extension tube, the material tube being inserted through the connecting tube and the extension tube so that the connecting tube and the extension tube are sleeved on the material tube.
10. The print head with quick release mechanism according to claim 9, wherein an outer diameter of the extension tube is smaller than an outer diameter of the nozzle tube and an outer diameter of the connecting tube.
11. The print head with quick release mechanism according to claim 9, wherein the heating block sleeves on an outer circumference of the extension tube, and a spacing is formed between the heating block and the extension tube.
12. The print head with quick release mechanism according to claim 9, wherein an inner peripheral surface of the heating block has first internal threads, and an outer peripheral surface of the nozzle tube has first external threads; the first internal threads and the first external threads are screwed together.
13. The print head with quick release mechanism according to claim 12, wherein a protruding annular block is provided at an outer peripheral edge of an intersection of the nozzle tube and the nozzle, and the protruding annular block blocks the heating block.
14. The print head with quick release mechanism according to claim 12 further including a heat sink set, wherein the heat sink set sleeves on the connecting tube; an outer periphery of the connecting tube has second outer threads, and an inner periphery of the heat sink set has second internal threads; the second outer threads and the second internal threads are screwed together, and a helical direction of the first external threads is opposite to a helical direction of the second external threads.
15. The print head with quick release mechanism according to claim 14, wherein the connecting tube has an annular portion neighboring an outer periphery of an end of the extension tube, and the annular portion blocks the heat sink set.
16. The print head with quick release mechanism according to claim 9, wherein the connecting tube and the extension tube are integrally formed.
17. The print head with quick release mechanism according to claim 9, wherein the connecting tube and the extension tube are combined with each other; an outer periphery of the extension tube has third external threads, and an inner periphery of the connecting tube has third internal threads; the third external threads and the third internal threads are screwed together.
18. The print head with quick release mechanism according to claim 9, wherein the nozzle tube is made of a stainless steel (SUS303).
Description
BRIEF DESCRIPTION OF DRAWING
(1) The features of the invention believed to be novel are set forth with particularity in the appended claims. The invention itself, however, may be best understood by reference to the following detailed description of the invention, which describes a number of exemplary embodiments of the invention, taken in conjunction with the accompanying drawings, in which:
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DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS
(10) In cooperation with attached drawings, the technical contents and detailed description of the invention are described thereinafter according to a number of preferable embodiments, being not used to limit its executing scope. Any equivalent variation and modification made according to appended claims is all covered by the claims claimed by the present invention.
(11) Please refer to
(12) As shown in
(13) As shown in
(14) As shown in
(15) More details are descripted as follows. An outer peripheral surface of the nozzle tube 2 has first external threads 23, and a protruding annular block 24 is provided at an outer peripheral edge of an intersection of the nozzle tube 2 and the nozzle 21. The first internal threads 11 and the first external threads 23 are screwed together for the nozzle tube 2 will be locked inside the heating block 1, and the protruding annular block 24 blocks the heating block 1.
(16) Besides, nozzles on markets or nozzles of prior art are mostly copper nozzle. The temperature of printing of copper nozzles is about 200 degrees that leads to the nozzles cannot print materials at the temperature higher than 300 degrees (metal materials). However, the nozzle tube 2 of the present embodiment is made of stainless steel (SUS303); thus, the nozzle tube 2 can print metal materials at high temperatures (higher than 300 degrees).
(17) Please refer to
(18) Further description is as follows. An inner periphery of the heat sink set 4 has second internal threads 41; the second outer threads 31 and the second internal threads 41 are screwed together so that the heat sink set 4 is locked at an outer of the connection pipe 3, and the annular portion 32 blocks the heat sink set 4.
(19) Moreover, a helical direction of the first external threads 23 is opposite to a helical direction of the second external threads 31. Thus, in an unscrewing process of the heat sink set 4 and the connecting tube 3, the heating block 1 and the nozzle tube 2 will not be loosen but screwed more tightly because the threads has an opposite direction. Similarly, in an unscrewing process of the heating block 1 and the nozzle tube 2, the heat sink set 4 and the connecting tube 3 will not be loosen but screwed more tightly.
(20) With referring to
(21) In the present embodiment, the connecting tube 3, the extension tube 22 and the nozzle 21 are integrally formed as in integral part. When clogging of the nozzle 21 cannot be excluded, the process of heating the nozzle 2 through the heating block 1 is bypassed due to the nozzle cannot be departed, and thus the heating block 1 and the nozzle tube 2 are disassembled through threads to replace the whole nozzle tube 2 for facilitating replacement by users themselves and reducing the risk of burns.
(22) Furthermore, as heat will be transmitted in a direction to large surfaces, the outer diameter w2 of the extension tube 22 is smaller than the outer diameter w1 of the nozzle tube 2 and the outer diameter w3 of the connecting tube 3 for the heat of the heating block 1 can be accumulated as much as possible at the nozzle 21 of the end of the nozzle tube 21. As a result, printing materials are uniformly heated and melted only at the nozzle 21 to prevent the printing materials melted and clogged at the extension pipe 22 or connecting tube 3, and thus the print head 10 will not be clogged easily.
(23) Please refer to
(24) Further explanation is as follows. One end of the extension tube 22 and the nozzle 22 are integrally formed. An outer periphery of the other end of the extension tube 22 has third external threads 221, and an inner periphery of the connecting tube 3 has third internal threads 33, wherein the third external threads 221 and the third external threads 33 are screwed together for combining the connecting tube 3 and the extension tube 22 instead of integrally formed. Thereby, the nozzle tube 2 disposed near the heating block 1 cannot be disassembled to achieve the same function and effects as the first embodiment; however, the connecting tube 3 and the extension tube 22 can be loosen by unscrewing, and the nozzle tube 2 can be departed from the connecting tube 3 as demands.
(25) Although the present invention has been described with reference to the preferred embodiment thereof, it will be understood that the invention is not limited to the details thereof. Various substitutions and improvements have been suggested in the foregoing description, and others will occur to those of ordinary skill in the art. Therefore, all such substitutions and improvements are intended to be embraced within the scope of the invention as defined in the appended claims.