Plant support collar
A plant support collar for supporting plant stems includes a central frame. The collar further includes a first hook member and a second hook member extending from the central frame in different directions. The first hook member and the second hook member each have a free end, the free end together with the central frame defining a passage for accommodating plant stems in the respective hook member. The central frame includes a support area configured to abut an intersection of the stems.
1. A plant support collar for supporting plant stems, the collar comprising:
a central frame;
a first hook member and a second hook member extending from the central frame in different directions, wherein the first hook member and the second hook member each have a free end, each free end together with the central frame defining a passage for accommodating plant stems in the respective hook member,
wherein the central frame comprises a support area configured to abut an intersection of the stems; and
wherein the central frame comprises an elongate front support protrusion and an elongate back support protrusion on opposite sides of the support area; and
wherein the front support protrusion and the back support protrusion at a distance from each other both protrude downwardly beyond the support area.
2. The collar according to claim 1 , wherein the support area comprises a concave surface.
3. The collar according to claim 1 , wherein the passage has a width which is smaller than an expected thickness of a stem to be supported.
4. The collar according to claim 1 , wherein the free ends each are bent back to face away from the central frame to facilitate the plant stems to enter the passage without damage to the plant stems.
5. The collar according to claim 1 , wherein the first hook member and the second hook member each have a planar inner surface configured to abut a plant stem.
6. The collar according to claim 5 , wherein the inner surface has a conical shape.
7. The collar according to claim 1 , wherein the first hook member and the second hook member are strip-shaped.
8. The collar according to claim 1 , wherein the first hook member and the second hook member each are provided with a finger on their outer surface, the finger having a free end, wherein the fingers are configured to widen the passage between the free ends of the first and second hook members and the central frame upon pushing the free ends of the fingers towards each other.
9. The collar according to claim 8 , wherein the fingers are strip-shaped.
10. The collar according to claim 8 , wherein the fingers, at sides facing away from each other, each are provided with a grip member.
11. A method for producing a plant support collar for supporting plant stems, the collar comprising:
a central frame comprising a support area configured to abut an intersection of a plant stem;
a first hook member and a second hook member extending from the central frame in different directions, wherein the first hook member and the second hook member each have a free end, each free end together with the central frame defining a passage for accommodating plant stems in the respective hook member, wherein the central frame comprises an elongate front support protrusion and an elongate back support protrusion on opposite sides of the support area, and wherein the front support protrusion and the back support protrusion at a distance from each other both protrude downwardly beyond the support area,
the method comprising manufacturing the collar in a molding process, in particular in an injection molding process.
12. The method according to claim 11 , wherein the collar is made from a weather resistant material, in particular from a plastic material, more in particular from polyamide.
13. A method for producing a plant support collar for supporting plant stems, the collar comprising:
a central frame comprising a support area configured to abut an intersection of a plant stem;
a first hook member and a second hook member extending from the central frame in different directions, wherein the first hook member and the second hook member each have a free end, each free end together with the central frame defining a passage for accommodating plant stems in the respective hook member, wherein the central frame comprises an elongate front support protrusion and an elongate back support protrusion on opposite sides of the support area, and wherein the front support protrusion and the back support protrusion at a distance from each other both protrude downwardly beyond the support area,
the method comprising manufacturing the collar in a 3D printing process.
14. The method according to claim 13 , wherein the collar is made from a weather resistant material, in particular from a plastic material, more in particular from polyamide.