IP Library Granted Patent US 11,240,969
Granted Patent B2
US 11,240,969 · App. 16/324,666 · Granted Feb 8, 2022

Grafting apparatus, sowing apparatus, grafted seedling production method, and grafted seedling production system

Inventors: Michitaka Notaguchi (Nagoya, JP); Kenji Tachibana (Nagoya, JP); Ryusei Yamaguchi (Nagoya, JP)
Assignee: NATIONAL UNIVERSITY CORPORATION NAGOYA UNIVERSITY
A01G2/32A01C7/04A01G2/35A01G2/38
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Quick Facts
Patent No.
US 11,240,969
App. No.
16/324,666
Granted
Feb 8, 2022
Kind
B2
Abstract

A grafting apparatus includes plate-shaped grafting members each provided with, on a main surface on one side in a thickness direction thereof, at least one plant holder to hold a plant for grafting. The grafting apparatus includes a cutter and a joiner. The cutter is configured to cut a stem of the plant for grafting that is held by the at least one plant holder of each of the grafting members. The joiner is configured to mutually join at least parts of the grafting members, while the at least one plant holder holds a part of the plant for grafting that has been cut by the cutter, to thereby mutually join parts of the plants for grafting.

Claims (72)

1. A grafting apparatus comprising:

at least one grafting member, each grafting member comprising:

a first piece;

a second piece couplable to and separable from the first piece; and

at least one plant holder comprising a recessed shape so as to hold a plant for grafting, wherein the at least one plant holder extends over the first piece and the second piece, and is configured to be split into two with the plant for grafting; and

a cutter configured to cut a stem of the plant for grafting that is held by the at least one plant holder of each of the at least one grafting member; and

a joiner configured to mutually join at least parts of the at least one grafting member, while the at least one plant holder holds a part of the plant for grafting that has been cut by the cutter, to thereby mutually join parts of the plants for grafting,

wherein the cutter is configured to cut the plant for grafting into a portion held by the first piece and a portion held by the second piece, and

wherein the joiner mutually joins the first piece and the second piece, to thereby mutually join the portion of the plant for grafting held by the first piece and the portion of the plant for grafting held by the second piece.

2. The grafting apparatus according to claim 1 ,

wherein the cutter comprises a placement section including a placement surface configured to place thereon the grafting member.

3. The grafting apparatus according to claim 1 ,

wherein the joiner comprises joining holders each to hold at least a part of the grafting member, while the at least one plant holder holds the part of the plant for grafting that has been cut by the cutter, and

wherein the joiner is configured to mutually join at least parts of the at least one grafting member held by the joining holders, to thereby mutually join parts of the plants for grafting.

4. The grafting apparatus according to claim 1 ,

wherein each of the at least one grafting member has a plate shape, and

wherein the at least one plant holder is formed, in the main surface on the one side in the thickness direction of each of the at least one grafting member, to have a recessed shape that is open toward the one side in the thickness direction.

5. The grafting apparatus according to claim 4 ,

wherein each of the at least one grafting member comprises a cutting recess having a recessed shape and arranged in the main surface on the one side so as to intersect the at least one plant holder,

wherein the cutter comprises a cutting blade configured to cut the stem of the plant for grafting, and

wherein the cutting blade is configured to relatively move in the cutting recess of each of the at least one grafting member, to thereby cut the stem of the plant for grafting held by the at least one plant holder of each of the at least one grafting member.

6. The grafting apparatus according to claim 4 , further comprising:

a sower configured to place at least one seed of the plant for grafting in the at least one plant holder of each of the at least one grafting member.

7. The grafting apparatus according to claim 6 ,

wherein the sower comprises:

a seed container configured to be capable of containing a plurality of the seeds;

a seed ejector configured to be capable of ejecting the at least one seed from the seed container; and

a seed discharger configured to discharge the at least one seed ejected by the seed ejector to the at least one plant holder of each of the at least one grafting member.

8. The grafting apparatus according to claim 6 ,

wherein the at least one plant holder of the at least one grafting member comprises a seed storage section configured to place the at least one seed therein, and

wherein the sower is configured to place the at least one seed in the seed storage section of the at least one plant holder of each of the at least one grafting member.

9. A sowing apparatus comprising:

at least one grafting member, each grafting member comprising:

at least one plant holder comprising a recessed shape so as to hold a plant for grafting; and

a sower configured to place at least one seed of the plant for grafting in the at least one plant holder of each of the sat least one grafting member,

wherein the at least one plant holder comprises:

a seed storage section including an opening configured to place the at least one seed therein; and

a stem storage section allowing extension therethrough of a stem growing from the at least one seed placed in the seed storage section, and

wherein the sower is configured to place the at least one seed in the seed storage section.

10. The sowing apparatus according to claim 9 ,

wherein the sower comprises:

a seed container configured to be capable of containing a plurality of the seeds;

a seed ejector configured to be capable of ejecting at least one seed from the seed container; and

a seed discharger configured to discharge the at least one seed ejected by the seed ejector to the at least one plant holder of each of the grafting members.

11. A grafted seedling production method using grafting members, each grafting member comprising a first piece, a second piece couplable to and separable from the first piece, and at least one plant holder comprising a recessed shape so as to hold a plant for grafting and extending over the first piece and the second piece, the method comprising:

cutting stems of the plants for grafting that are held by the plant holders each into a portion held by the first piece and a portion held by the second piece;

separating each of the grafting members at a cut section of the plant for grafting into the first piece and the second piece so that the at least one plant holder is split into two together with the plant for grafting; and

mutually joining the first piece and the second piece, to thereby mutually join cut parts of the plants for grafting.

12. The grafted seedling production method according to claim 11 ,

wherein at least one of cutting the stems, separating each of the grafting members, or mutually joining the parts of the plants for grafting is performed automatically.

13. The grafted seedling production method according to claim 11 , further comprising:

healing the joined plant for grafting in the at least one plant holder of the joined grafting members.

14. A grafted seedling production system comprising:

grafting members, each grafting member comprising:

a first piece;

a second piece couplable to and separable from the first piece; and

at least one plant holder comprising a recessed shape so as to hold a plant for grafting and extending over the first piece and the second piece;

a cutter to cut stems of the plants for grafting that are held by the plant holders each into a portion held by the first piece and a portion held by the second piece;

a separator to separate each of the grafting members at a cut section of the plant for grafting into the first piece and the second piece so that the at least one plant holder is split into two together with the plant for grafting; and

a joiner to mutually join the first piece and the second piece, to thereby mutually join cut portions of the plants for grafting.

15. The grafted seedling production system according to claim 14 ,

wherein at least one of the cutter, the separator, or the joiner operates automatically.

16. The grafted seedling production system according to claim 14 , further comprising:

a healer to heal the joined plant for grafting in the at least one plant holder of the joined grafting member.

17. The grafted seedling production method according to claim 11 , further comprising:

placing a seed of the plant for grafting in a seed storage section of the at least one plant holder of each of the grafting members;

germinating the seeds; and

raising seedlings of the plants for grafting by allowing each of the stems growing from the seeds to extend in a stem storage section of the at least one plant holder subsequent to germination of the seeds.

18. The grafted seedling production system according to claim 14 , further comprising:

a sower to place a seed of the plant for grafting in a seed storage section of the at least one plant holder of each of the grafting members;

a germinator to germinate the seeds; and

a seedling raising device to raise seedlings of the plants for grafting by allowing each of the stems growing from the seeds to extend in a stem storage section of the at least one plant holder subsequent to germination of the seeds.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 11, 2019
From: NOTAGUCHI, MICHITAKA; TACHIBANA, KENJI; YAMAGUCHI, RYUSEI
To: NATIONAL UNIVERSITY CORPORATION NAGOYA UNIVERSITY
Reel/Frame 048293/0826 →
Priority Claims (1)
JP JP2016-158993 · Aug 12, 2016 · national
Continuity (1)
Related Publication 20190174681A1 · Jun 13, 2019