FIBER REINFORCED RESIN SCREW
20170241465 · 2017-08-24
Inventors
Cpc classification
F16B33/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B29C2045/0006
PERFORMING OPERATIONS; TRANSPORTING
F16B33/006
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B29K2071/00
PERFORMING OPERATIONS; TRANSPORTING
International classification
F16B33/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16B33/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
The present invention is relates to a fiber reinforced resin screw 10, 20 shaped using a resin composition containing reinforcing fiber in a resin. A pitch of threads has a length of 1.5 to 2 times of a standard pitch corresponding to an outer diameter of the threads prescribed in standards of a metric coarse screw, a unified coarse screw and a unified fine screw. An average fiber length of the reinforcing fiber is 1 to ⅓ times of the pitch of the threads in the fiber reinforced resin screw. A content rate of the reinforcing fiber is in a range of 20 to 80%. In this way, the fiber reinforced resin screw to have improved is provided in the strength of the thread.
Claims
1. A fiber reinforced resin screw formed with a resin composition containing reinforcing fiber in a resin, wherein a pitch of threads of the fiber reinforced resin screw has a length of 1.5 to 2 times of a standard pitch corresponding to an outer diameter of the threads prescribed in standards of a metric coarse screw, a unified coarse screw and a unified fine screw, wherein an average fiber length of the reinforcing fiber is 1 to ⅓ times of the pitch of the threads in the fiber reinforced resin screw, and wherein a content rate of the reinforcing fiber is in a range of 20 to 80%.
2. The fiber reinforced resin screw according to claim 1, wherein an angle of thread in the fiber reinforced resin screw is in a range of 60 to 90°.
3. The fiber reinforced resin screw according to claim 1, wherein the outer diameter of the fiber reinforced resin screw is in a range of 3.5 to 10 mm.
4. The fiber reinforced resin screw according to claim 1, wherein the resin is selected from the group consisting of aromatic polyether ketone resin, polyamide resin, polyimide resin, polyphenylene sulfide resin, polyvinylidene fluoride resin, polycarbonate resin, polyacetal resin, phenol resin, ultra-high molecular weight polyethylene resin, tetrafluoroethylene-perfluoralkyl vinyl ether resin, polybutylene terephthalate resin, and polyvinyl chloride resin.
5. The fiber reinforced resin screw according to claim 1, wherein the reinforcing fiber is selected from the group consisting of glass fiber, carbon fiber, silicon carbide fiber, aramid fiber, and ultra-high molecular weight polyethylene fiber.
6. A fiber reinforced resin screw formed with a resin composition containing reinforcing fiber in a resin, wherein a pitch of threads in the fiber reinforced resin screw has a length of ¼.3 to ½.2 times of an outer diameter of the screw, wherein an average fiber length of the reinforcing fiber is 1 to ⅓ times of the pitch, and wherein a content rate of the reinforcing fiber is in a range of 20 to 80%.
7. The fiber reinforced resin screw according to claim 6, wherein an angle of the thread in the fiber reinforced resin screw is in a range of 60 to 90°.
8. The fiber reinforced resin screw according to claim 6, wherein an outer diameter of the fiber reinforced resin screw is in a range of 3.5 to 10 mm.
9. The fiber reinforced resin screw according to claim 6, wherein the resin is selected from the group consisting of aromatic polyether ketone resin, polyamide resin, polyimide resin, polyphenylene sulfide resin, polyvinylidene fluoride resin, polycarbonate resin, polyacetal resin, phenol resin, ultra-high molecular weight polyethylene resin, tetrafluoroethylene-perfluoralkyl vinyl ether resin, polybutylene terephthalate resin, and polyvinyl chloride resin.
10. The fiber reinforced resin screw according to claim 6, wherein the reinforcing fiber is selected from the group consisting of glass fiber, carbon fiber, silicon carbide fiber, aramid fiber, and ultra-high molecular weight polyethylene fiber.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0015] [
[0016]
[0017] [
[0018]
[0019] [
[0020] (a) of
[0021] FIG. 3 is a diagram showing an orientation analysis result of the reinforcing fiber in the male screw which corresponds to UNF 3/16 and which has the angle A (=90°) of thread and the pitch P changed according to the angle A.
[0022] [
[0023] (a) of
[0024] [
[0025] (a) of
[0026] [
[0027] (a) of
[0028] [
[0029] (a) of
[0030] [
[0031]
DESCRIPTION OF THE EMBODIMENTS
[0032] A fiber reinforced resin screw according to embodiments of the present invention will be described below with reference to the attached drawings.
[0033]
[0034] Referring to
[0035] Here, by setting the pitch P of the fiber reinforced resin screw to be longer than the pitch of the standard screw used generally, the strength of the thread by making a root section of the thread long can be improved.
[0036] It is desirable that the pitch P of the fiber reinforced resin screw 10, 20 is in a range of D/4.3 to D/2.2 to the outer diameter D. Also, when the outer diameter D of the thread of the fiber reinforced resin screws 10, 20 is the same as the outer diameter of the thread prescribed in the standards of the metric coarse screw, the unified coarse screw, and the the unified fine screw, it is desirable that the pitch P of the fiber reinforced resin screw 10, 20 is longer than the outer diameter of the thread prescribed in the standards of the unified coarse screw, the unified coarse screw, and the unified fine screw by 1.5 times to 2 times.
[0037] When the fiber reinforced resin screw 10, 20 is injection molded, a gate is generally arranged at the head H or bottom B of the screw. At this time, most of the resin composition flows in a direction orthogonal to the direction of the thread. Therefore, in the thread, the flow of the resin composition tends to orientate to an axial direction. Since the entrance width of the resin can be widely taken to the height of the thread when a root section of the thread is set long or wide, the resin fluidity along the shape of the thread can be obtained. Thus, in case of injection molding of the fiber reinforced resin screw 10, 20, the reinforcing fiber contained in the resin composition is orientated along the orientation along the top shape of the thread or the surfaces of the thread top shape to increase the strength to the shearing of the thread. In this way, the resin screw with the high strength of the thread can be obtained.
[0038] Also, when the pitch P of the fiber reinforced resin screw 10, 20 is set long and the top (top land) of the thread and/or the bottom (bottom land) between the threads are formed in parallel to the axial direction of the screw and the parallel part is set long in the axial direction, it is possible to set the root section of the thread long. Also, the resin fluidity along the surface of the thread is accomplished so that it is possible to make more reinforcing fiber orientate along the top shape of the thread or the surfaces of the thread top shape. However, if the parallel part is made long too much, the engagement length (a length when the male screw and the female screw are engaged) becomes long too much when the fiber reinforced resin screws 10 and 20 are engaged.
[0039] Also, the loosening occurs naturally when the friction angle between the threads of the fiber reinforced resin screws 10 and 20 becomes smaller than a lead angle of the screw. Therefore, it desirable that the pitch P of the fiber reinforced resin screw 10, 20 is set to a range of 1.5 times to 2 times of the standard pitch of the metric coarse screw, the unified coarse screw or the unified fine screw. When the frictional coefficient.Math.of between the threads of the fiber reinforced resin screws 10 and 20 is about 0.1, the lead angle between the threads can be inclined to about 1.8 times to the standard screw.
[0040] It is desirable that the average fiber length of the reinforcing fiber contained in the fiber reinforced resin screw 10, 20 is equal to 1 to ⅓ times of the pitch P, or the height of the thread. When the average fiber length is short, the effect of improvement of the tensile strength of the screw in the axial direction and improvement of the thread strength due to containing the reinforcing fiber is hindered. On the other hand, when the average fiber length is too long, the flow of the reinforcing fiber at the time of the injection molding is difficult to be set along the top shape of the thread or the surfaces of the thread top shape, and the strength of the thread is not improved.
[0041] The angle A of thread is 60° in the metric coarse screw, the unified coarse screw or the unified fine screw. By setting the angle A of thread in the fiber reinforced resin screw 10, 20 more than the angle A of thread in the general standard screw, the inclination of the thread in the axial direction becomes gentle, and the reinforcing fiber becomes easy to flow along the top shape of the thread or the surfaces of the thread top shape. However, it would be considered that the upper limit of the angle A of thread is about 105° from the independence conditions of the screw. In practice, it is desirable that the angle A of thread is in a range of about 60° or 90°.
[0042] In the embodiment shown in
[0043] The raw material of the resin of the fiber reinforced resin screw 10, 20 can be selected the group consisting of aromatic polyether ketone resin (PEEK, PEK, and so on), polyamide resin, polyimide resin, polyphenylene sulfide resin, polyvinylidene fluoride resin, polycarbonate resin, polyacetal resin, phenol resin, ultra-high molecular weight polyethylene resin, tetrafluoroethylene-perfluoralkyl vinyl ether resin, polybutylene terephthalate resin, polyvinyl chloride resin, other thermosetting resin, and thermoplastic resin, according to an application field of the fiber reinforced resin screw 10, 20.
[0044] As the reinforcing fiber, glass fiber, carbon fiber, silicon carbide fiber, aramid fiber, ultra-high molecular weight polyethylene fiber, and other reinforcing fiber can be used. The content of the reinforcing fiber in the fiber reinforced resin screw 10, 20 is desirable to be 20% to 80%, and more desirable to 30% to 60%. Especially, it is desirable to use the reinforcing fiber having non-conductivity such as glass fiber for the application field in which explosion-proof and electrolytic corrosion prevention are required.
[0045] Next, referring to
[0046] The gate from which the resin composition containing the reinforcing fiber at the time of injection molding is injected is arranged in the bottom B of the screw. Then, by making the resin composition flow in the axial direction at the time of the injection molding, the tensile strength of fiber reinforced resin screws 10, 20 is improved. Also, the average fiber length of the reinforcing fiber contained in fiber reinforced resin screw 10, 20 is 1 to ⅓ times of the pitch P. The orientation analysis result of the reinforcing fiber in the fiber reinforced resin screw shown in
[0047] (a) of
[0048] (a) of
[0049] As shown in
[0050] Next, the orientation analysis results of the reinforcing fiber in the fiber reinforced resin screws shown in
[0051] (a) of
[0052] (a) of
[0053] (a) of
[0054] As shown in
[0055] The examination result of tensile strength in the condition that the fiber reinforced resin screws 10 and 20 shown in
[0056] The symbol A of the material shows the resin composition which uses high viscosity PEEK (polyether etherketone) as the resin and which contains the glass fiber of 30% as the reinforcing fiber. The symbol B of the material shows the resin composition which uses low viscosity PEEK as the resin and which contains the glass fiber of 60% as the reinforcing fiber. The symbol C of the material shows the resin composition which uses intermediate viscosity PEEK as the resin and which contains the glass fiber of 30% as the reinforcing fiber. The symbol D of the material shows the resin composition which uses low viscosity PEEK as the resin and which contains the glass fiber of 50% as the reinforcing fiber.
[0057] The measurement results of the symbols A, B, C, and D are the tensile strength examination results about thee fiber reinforced resin screw 10, 20 which corresponds to UNF 3/16 and which has the angle A) (60°) of thread and the pitch P (32 piles/the inch). To these, the symbols A (1.5P), B (1.5P), C (1.5P) and D (1.5P) shows the tensile strength examination results about fiber reinforced resin screws 10, 20 which corresponds to UNF 3/16 and which has the angle) A(60°) of thread, and the pitch P (21 piles/the inch).
[0058] As shown in
[0059] In the above, the fiber reinforced resin screws of various embodiments have been described but the present invention is not limited to the above embodiments. Various modifications can be carried out to the above embodiments. In the range in which technical contradiction does not occur, the technical matter in one embodiment can be combined with the technical matter in another embodiment.