METHOD FOR MANUFACTURING MEDICAL LINEAR MEMBER
20180221057 ยท 2018-08-09
Inventors
Cpc classification
A61B17/68
HUMAN NECESSITIES
C22F1/006
CHEMISTRY; METALLURGY
A61B17/84
HUMAN NECESSITIES
International classification
A61B17/68
HUMAN NECESSITIES
C22F1/00
CHEMISTRY; METALLURGY
Abstract
A method of manufacturing a medical linear member includes a step of forming a first spiral body 1 whose cross-sectional shape is a substantially substantially perfect circular shape by spirally winding a base body 3 having a plurality of arrayed wires 2 formed a shape memory alloy, around a winding core 4, a step of performing a first shape memory process on the first spiral body 1, a step of cutting the first spiral body 1 into a first predetermined length, a step of removing the winding core 4 from the cut first spiral body 1, a step of forming a second spiral body 6 whose cross-sectional shape is a flat shape by compressing the first spiral body 1 in a diametral direction, and a step of performing a second shape memory process on the second spiral body 6.
Claims
1. A method of manufacturing a medical linear member, the method comprising: a step of forming a first spiral body whose cross-sectional shape is a substantially substantially perfect circular shape by spirally winding a base body having a plurality of arrayed wires formed of a shape memory alloy, around a winding core formed of a round bar, at intervals in an array direction; a step of performing a first shape memory process by heating the first spiral body; a step of cutting the first spiral body into a first predetermined length; a step of removing the winding core from the cut first spiral body; a step of forming a second spiral body whose cross-sectional shape is a flat shape by compressing the first spiral body from which the winding core is removed, in a diametral direction of the substantially perfect circular shape; and a step of performing a second shape memory process by heating the second spiral body.
2. The method of manufacturing a medical linear member according to claim 1, further comprising: a step of cutting the second spiral body subjected to the second shape memory process, into a second predetermined length.
3. The method of manufacturing a medical linear member according to claim 1, wherein the first spiral body is compressed by placing the first spiral body heated by the first shape memory process, on a base while a heated state is maintained, and by pressing a compression member from above.
4. The method of manufacturing a medical linear member according to claim 3, wherein the compression member is pressed by a spring member which biases the compression member in a direction toward the first spiral body.
Description
BRIEF DESCRIPTION OF DRAWINGS
[0018]
[0019]
[0020]
[0021]
[0022]
[0023]
[0024]
DESCRIPTION OF EMBODIMENTS
[0025] Next, an embodiment according to the present invention will be described in more detail with reference to the accompanying drawings.
[0026] As illustrated in
[0027] In this case, the base body 3 is spirally wound at an interval S in an array direction. As the shape memory alloy configuring the wires 2, a nickel-titanium alloy or a nickel-titanium-cobalt alloy can be used.
[0028] Next, in STEP 2 in
[0029] If the first shape memory process is completed, the first spiral body 1 is taken out from the heating furnace. After the first spiral body 1 is cooled, the first spiral body 1 is cut into a length of 3 to 100 cm, for example, a length of 30 cm in STEP 3 in
[0030] As a result, as illustrated in
[0031] Next, in STEP 5 in
[0032] The compression jig 11 includes a slide bar 14 disposed between a base 12 and a top plate 13, and a plate-shaped press member 15 slidable and movable up and down along the slide bar 14. Each of the base 12, the top plate 13, and the press member 15 has a square shape whose one side is 30 cm in a plan view, and the slide bar 14 is disposed at four corners of the square shape. In addition, the press member 15 is biased in a direction toward the base 12 by a spring member 16 installed on an outer peripheral side of the slide bar 14.
[0033] When the first spiral body 1 is compressed using the compression jig 11, first, in a state where the press member 15 is moved to the top plate 13 side against a biasing force of the spring member 16, a spacer 17 is disposed at the four corners on the base 12. A thickness of the spacer 17 is selected depending on a target compression degree.
[0034] Next, the first spiral body 1 is placed on the base 12. The first spiral body 1 can be placed on the base 12 by avoiding the spacer 17 so that a plurality of pieces is parallel to each other, and at intervals so as not to interfere with each other when compressed. Although the number of the first spiral bodies 1 placed on the base 12 depends on a diameter thereof, the number is usually in a range from several pieces to ten-odd pieces.
[0035] Next, as illustrated in
[0036] As illustrated in
[0037] Next, in STEP 6 in
[0038] Next, in STEP 7 in
[0039] In the present embodiment, an example has been described in which the spiral bodies 1 and 6 are formed from the base body 3 having only one layer. However, the spiral bodies 1 and 6 may include a configuration in which a plurality of the base bodies 3 is stacked with respect to an axis thereof. In addition, in this case, the base bodies 3 and 3 stacked adjacent to each other may have spiral directions opposite to each other.
DESCRIPTION OF REFERENCE NUMERALS
[0040] 1 first spiral body
[0041] 2 wire
[0042] 3 base body
[0043] 4 winding core
[0044] 5 space portion
[0045] 6 second spiral body
[0046] 11 compression jig
[0047] 16 spring member