Bioprinter spray head assembly and bioprinter
10906241 ยท 2021-02-02
Assignee
Inventors
Cpc classification
B29C48/255
PERFORMING OPERATIONS; TRANSPORTING
B29C48/304
PERFORMING OPERATIONS; TRANSPORTING
B29C48/49
PERFORMING OPERATIONS; TRANSPORTING
B29C64/112
PERFORMING OPERATIONS; TRANSPORTING
B05B1/3066
PERFORMING OPERATIONS; TRANSPORTING
B33Y30/00
PERFORMING OPERATIONS; TRANSPORTING
B05B7/12
PERFORMING OPERATIONS; TRANSPORTING
B05B1/3026
PERFORMING OPERATIONS; TRANSPORTING
International classification
B33Y30/00
PERFORMING OPERATIONS; TRANSPORTING
B29C67/24
PERFORMING OPERATIONS; TRANSPORTING
B29C48/255
PERFORMING OPERATIONS; TRANSPORTING
B29C48/49
PERFORMING OPERATIONS; TRANSPORTING
Abstract
The present disclosure relates to a bioprinter spray head assembly, comprising a mounting block having a passage and a spray head mounted in the passage, wherein a first flow channel is provided in the mounting block, one end of the first flow channel is provided with a port communicating with the passage; the spray head comprises an equal diameter portion away from an outlet of the passage and a reduced diameter portion close to the outlet of the passage, wherein a second flow channel is formed between the reduced diameter portion and the passage, an opening is formed between the reduced diameter portion and the port to communicate the first flow channel and the second flow channel, and the equal diameter portion is configured to occlude the port. The adjustment of the circulation area of the spray head assembly may be achieved by changing the relative positions of the reduced diameter portion and the port, so that the adjustment is convenient and easy to carry out, and there is a favorable implementability.
Claims
1. A bioprinter spray head assembly, comprising a mounting block having a passage and a spray head mounted in the passage, wherein a first flow channel is provided in the mounting block, one end of the first flow channel is provided with a port communicating with the passage; the spray head comprises an equal diameter portion away from an outlet of the passage and a reduced diameter portion close to the outlet of the passage, wherein a second flow channel is formed between the reduced diameter portion and the passage, an opening is formed between the reduced diameter portion and the port to communicate the first flow channel and the second flow channel, and the equal diameter portion is configured to occlude the port, the spray head comprises a third flow channel which is configured to communicate with the outlet of the spray head, the bioprinter spray head assembly comprises a spray head groups comprising a plurality of alternative spray heads, wherein, each of the plurality of alternative sprayer heads is provided with corresponding equal diameter portion and reduced diameter portion having lengths different from the same of other alternative sprayer heads, and the spray head is selected from the plurality of alternative spray heads to achieve one of the following states: a fully occluded state: in the fully occluded state, the equal diameter portion completely occludes the port; a partially occluded state: in the partially occluded state, the equal diameter portion partially occludes the port; a fully open state: in the fully open state, the port fully faces the reduced diameter portion; or the spray head is movable in the passage, for adjusting a position of the reduced diameter portion relative to the port of the first flow channel to achieve one of the following states: a fully occluded state: in the fully occluded state, the equal diameter portion completely occludes the port; a partially occluded state: in the partially occluded state, the equal diameter portion partially occludes the port; a fully open state: in the fully open state, the port fully faces the reduced diameter portion.
2. The bioprinter spray head assembly according to claim 1, wherein the spray head is extensible.
3. The bioprinter spray head assembly according to claim 1, wherein the spray head is translatable.
4. The bioprinter spray head assembly according to claim 1, wherein the reduced diameter portion is tapered toward an outlet of the spray head.
5. The bioprinter spray head assembly according to claim 4, wherein the reduced diameter section has a conical section taken along a direction towards the outlet of the spray head.
6. The bioprinter spray head assembly according to claim 1, wherein the passage comprises an equal diameter section and a transition section, wherein the equal diameter section communicates with the outlet of the passage through the transition section, the equal diameter portion is disposed within the equal diameter section, the transition section is tapered towards the outlet of the passage, and a chamber is formed between the outlet of the spray head and the outlet of the passage, such that a second material passing through the second flow channel wraps in the chamber a first material sprayed from the outlet of the spray head to form a fluid printing unit.
7. The bioprinter spray head assembly according to claim 6, wherein the second flow channel is tapered from the transition section to the outlet of the spray head.
8. A bioprinter, comprising the bioprinter spray head assembly according to claim 1.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) The drawings described herein are used to provide a further understanding of the present disclosure and constitute a part of the present application. The illustrative embodiments of the present disclosure as well as the descriptions thereof, which are merely used for explaining the present disclosure, do not constitute improper definitions on the present disclosure. In the drawings:
(2)
(3)
(4)
EMBODIMENTS
(5) Next, the technical solution of the present disclosure is further described in detail by means of the drawings and embodiments.
(6) The specific embodiments of the present disclosure are further described in order to facilitate understanding of the concept of the present disclosure, the technical problem to be solved, the technical features constituting the technical solution and the technical effect produced therefrom. It is necessary to explain that, the explanations for such embodiments do not constitute definitions on the present disclosure. In addition, the technical features involved in the embodiments of the present disclosure described below may be combined with each other as long as they do not constitute a conflict therebetween.
(7) Considering a fixed circulation area of the bioprinting material feeding tube of the existing bioprinter spray head assembly, if the flow rate needs to be adjusted, it can only be adjusted by depending on the extrusion device at the front end. The present disclosure designs a bioprinter spray head assembly, which is configured such that, by providing a port communicating with the passage at one end of the first flow channel, and designing the spray head in a structural form composed of an equal diameter portion and a reduced diameter portion, the adjustment of the circulation area of the spray head assembly may be realized by changing the relative positions of the reduced diameter portion and the port, such as to effectuate adjusting the flow rate of the bioprinting material fluid at the outlet end of the printer. Such adjustment is convenient and easy to carry out, and there is a favorable implementability.
(8) In one illustrative embodiment of the bioprinter spray head assembly of the present disclosure, as shown in
(9) Optionally, the spray head 1 comprising a third flow channel 11 which is configured to communicate with the outlet of the spray head 1 and supply the bioprinting material fluid to the outlet of the spray head 1. The first flow channel 4 and the third flow channel 11 may supply a single category of bioprinting material fluid, and may also be used to respectively supply different categories of bioprinting material fluids, such as a first material and a second material. For example, the third flow channel 11 is used to supply the first material, and the first flow channel 4 is used to supply the second material wrapping the first material.
(10) Among them, regarding the first material and the second material, one preferred embodiment is that, the first material is a printing material containing cells (for example bio-ink), and the second material is a printing material that does not contain cells. In this embodiment, more preferably, the second material is a material with temperature-sensitive properties, especially a biocompatible material with temperature-sensitive properties and certain viscosity (for example hydrogel). Certainly, as another embodiment, the first material is a printing material that does not contain cells, while the second material is a printing material that contains cells. In the remaining embodiments, the first material and the second material may also be printing materials that both contain cells, or may also be printing materials that do not contain cells.
(11) Regarding the morphology of the first material and the second material, either or both of the first material and the second material are one of the following several morphologies: homogeneous, non-homogeneous (e.g., granular mixture), continuous or discontinuous fluid.
(12) The bioprinter spray head assembly may comprise a first material supply source for supplying the first material to the third flow channel 11, and a second material supply source for supplying the second material to the first flow channel 4.
(13) As shown in
(14) As described in
(15) In the fully occluded state, as shown in
(16) In the partially occluded state, as shown in
(17) In the fully open state, as shown in
(18) In the illustrative embodiment, a port 41 communicating with the passage 5 is provided at one end of the first flow channel 4, and the spray head 1 is designed to include an equal diameter portion 12 and a reduced diameter portion 13. By changing the relative positions of the reduced diameter portion 13 and the port 41, it is realized that the circulation area of the spray head assembly is adjustable, such as to effectuate that the flow rate of the bioprinting material fluid is adjustable. Such adjustment is convenient and easy to carry out, and there is a favorable implementability.
(19) As shown in
(20) As shown in
(21) As shown in
(22) As a first embodiment of the present disclosure, the bioprinter spray head assembly comprises a spray head groups including a plurality of alternative spray heads, wherein, each of the plurality of alternative sprayer heads are provided with corresponding equal diameter portion 12 and reduced diameter portion 13 having lengths different from the same of other alternative sprayer heads. The spray head 1 is selected from a plurality of alternative spray heads as necessary, so as to realize one of the fully occluded state, the partially occluded state and the fully open state. In other words, by replacing the spray head having an equal diameter portion 12 and a reduced diameter portion 13 of different lengths, the position relation between the reduced diameter portion 12 of the spray head and the port 41, the size of the opening between the port 41 and the reduced diameter portion 13 is further adjusted, to realize one of the fully occluded state, the partially occluded state and the fully open state, so as to effectuate that the flow rate of the printing material is adjustable.
(23) As a second embodiment of the present disclosure, the spray head 1 is movable in the passage 5, such that the positional relation between the spray head 1 and the passage 5 varies, thereby changing the positional relation between the reduced diameter portion 13 of the spray head and the port 41. Further, the size of the opening between the port 41 and the reduced diameter portion 13 is changed, so that a shift among the fully occluded state, the partially occluded state and the fully open state may be realized, so as to effectuate that the flow rate of the second material is dynamically adjustable.
(24) The spray head 1 may be integrally translated in the passage, and may also be partially movable. For example, the equal diameter portion 12 or the reduced diameter portion 13 of the spray head 1 is extensible. The spray head 1 is further designed into a extensible structure in the passage 5, in which the extensible length of the spray head 1 in the passage 5 varies, so as to change the positional relation between the reduced diameter portion 13 of the spray head 1 and the port 41. Further, the size of the opening between the port 41 and the reduced diameter portion 13 is changed, so that a shift among the fully occluded state, the partially occluded state and the fully open state may be realized, such as to effectuate that the flow rate of the second material is dynamically adjustable.
(25) In the first and second embodiments, the reduced diameter portion 13 may be a cylindrical structure in which its radial dimension is smaller than the equal diameter portion 12, and may also be tapered towards the outlet 6. As shown in
(26) As an improvement to the first and second embodiments, as shown in
(27) As shown in
(28) The present disclosure further provides a bioprinter, which comprises the aforementioned bioprinter spray head assembly. The bioprinter spray head assembly of the present disclosure is especially suitable for a 3D bioprinter.
(29) The above-combined embodiments make detailed explanations for the embodiments of the present disclosure, but the present disclosure is not limited to the embodiments described. For a person skilled in the art, multiple changes, modifications, equivalent replacements, and variations made to such embodiments still fall within the protection scope of the present disclosure without departing from the principles and substantive spirit of the present disclosure.