STEERING JOINT WIRE ROPE FIXING DEVICE
20250228440 ยท 2025-07-17
Inventors
Cpc classification
International classification
Abstract
A steering joint wire rope fixing device is provided. The steering joint wire rope fixing device includes a front-end assembly, a cable and a resin. The front-end assembly includes a channel part and a groove. The channel part is located between two ends of the front-end assembly. The groove is located between one end of the front-end assembly and the channel part, and the channel part and the groove are interconnected. A part of the cable passes through the channel part and the groove. The resin is placed in the groove to fix the part of the cable located in the groove. Therefore, the invention can fix the steel cable in a limited space and reduce the overall volume. Further, the invention can prevent the cable cuts from protruding or the workpieces from falling off. Besides, the invention can decrease assembly time and reduce cost of parts and fabrication.
Claims
1. A steering joint wire rope fixing device, applied to an endoscope and comprising a front-end assembly, including a channel part, disposed between two ends of the front-end assembly; and a groove, disposed between one end of the front-end assembly and the channel part, wherein the channel part interconnects with the groove; a cable, wherein a portion of the cable is inserted into the channel part and the groove; and a resin, disposed inside the groove and used to fixing the portion of the cable disposed inside the groove.
2. The steering joint wire rope fixing device according to claim 1, wherein the groove has a lateral face and a guiding face opposite to the lateral face; the lateral face neighbors the channel part; the guiding face is obliquely extended upward from a bottom of the groove to a surface of the front-end assembly.
3. The steering joint wire rope fixing device according to claim 1, wherein the channel part includes a first channel, wherein one end of the first channel has a first via-hole, and another end of the first channel has a second via-hole; and a second channel, wherein one end of the second channel has a third via-hole, and another end of the second channel has a fourth via-hole, wherein the cable is inserted into the first channel through the first via-hole, protrudes into the groove through the second via-hole, and then is inserted into the second channel through the fourth via-hole.
4. The steering joint wire rope fixing device according to claim 3, wherein at least one of the first via-hole, the second via-hole, the third via-hole and the fourth via-hole is a trumpet-shape opening-expanded hole.
5. The steering joint wire rope fixing device according to claim 1, wherein one end of the cable is formed into a cephalization structure inside the groove, and a size of the cephalization structure is larger than a diameter of an opening of the channel part.
6. The steering joint wire rope fixing device according to claim 1, wherein the channel part includes a first channel, wherein one end of the first channel has a first via-hole, and another end of the first channel has a second via-hole; a trench, being a recessed portion arranged in a region where a surface of the front-end assembly and the groove interconnect, wherein one end of the cable passes through the first via-hole, the first channel, the second via-hole and the groove in sequence; then the cable is inserted into the trench and constrained by the trench.
7. The steering joint wire rope fixing device according to claim 6, wherein a first protrusion is formed on one side of the trench, and a second protrusion is formed on another side of the trench; the first protrusion and the second protrusion are arranged in a staggering way; the first protrusion and the second protrusion are used to confine the cable inside the trench.
8. The steering joint wire rope fixing device according to claim 6, wherein the resin is dispensed into the trench to fix a portion of the cable.
9. The steering joint wire rope fixing device according to claim 1, wherein the front-end assembly further includes an outer-rim trench; the outer-rim trench is extended along a diameter of the front-end assembly and interconnected with the groove; another portion of the cable is received by the outer-rim trench and the groove.
10. The steering joint wire rope fixing device according to claim 9, wherein a third protrusion and a fourth protrusion are formed in the outer-rim trench; the third protrusion and the fourth protrusion are respectively arranged on two sides of the outer-rim trench in a staggering way to confine the cable inside the outer-rim trench.
11. The steering joint wire rope fixing device according to claim 9, wherein the resin is dispensed into the outer-rim trench to fix a portion of the cable.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0013] The foregoing conceptions and their accompanying advantages of this invention will become more readily appreciated after being better understood by referring to the following detailed description, in conjunction with the accompanying drawings, wherein
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DESCRIPTION OF THE PREFERRED EMBODIMENTS
[0026] The embodiments of the present invention will be further demonstrated in details hereinafter in cooperation with the corresponding drawings. In the drawings and the specification, the same numerals represent the same or the like elements as much as possible. For simplicity and convenient labelling, the shapes and thicknesses of the elements may be exaggerated in the drawings. It is easily understood: the elements belonging to the conventional technologies and well known by the persons skilled in the art may be not particularly depicted in the drawings or described in the specification. Various modifications and variations made by the persons skilled in the art according to the contents of the present invention are to be included by the scope of the present invention.
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[0028] The groove 140 is a space for dispensing resin to fix the cable, having a lateral face 140A and a guiding face 140B opposite to the lateral face 140A. The lateral face 140A neighbors the channel part 120. The guiding face 140B starts from the bottom of the groove 140 and gradually tilts until it reaches a surface 100 of the front-end assembly 10. It should be noted: the inclined plane of the guiding face 140B may guide the cable 30 to protrude from the groove 140 and provides sufficient space for the subsequent operations. In the fabrication process, the cable 30 is pulled back to decrease the size of the loop 30 to completely sink the loop 30 inside the groove 140. Next, the resin 50 is dispensed into the groove 140. Then, the loop 30 is securely fixed by the resin dispensing method to prevent the cable 30 from displacement.
[0029] Refer to
[0030] It is easily understood: in order to facilitate inserting the cable 30 in a narrow space, the first via-hole h1, the second via-hole h2, the third via-hole h3 or the fourth via-hole h4 is preferably but is not limited to be a trumpet-shape opening-expanded hole. Alternatively, some of the first via-hole h1, the second via-hole h2, the third via-hole h3 and the fourth via-hole h4 are trumpet-shape opening-expanded holes. Via the guiding structure having a trumpet-shape opening-expanded hole, the cable 30 is inserted through the first channel 122 and runs along the first channel 122 to contact the guiding face 140B. The slope of the guiding face 140B lifts up the cable 30. Then, the cable 30 is inserted into the fourth via-hole h4. Thereby, the cable 30 is easy to insert and regulate. Thus, the cable 30 can be tightened up, and the resin is dispensed to fix the cable 30.
[0031] Below is introduced a second embodiment of the present invention. Refer to
[0032] In the case of using the laser fusion device, the laser light is focused at one end of the cable to melt it, and the molten material agglomerates to form the cephalization structure 32. The laser fusion device can produce a high-strength and high-precision cephalization structure 32 without using an adhesive agent or auxiliary material. The laser fusion technology can lower cost and reduce pollution. Further, the laser fusion technology favors automatic fabrication, raises the fabrication efficiency and stabilizes quality.
[0033] Below is introduced a third embodiment of the present invention. Refer to
[0034] A first protrusion s1 may be established on one side of the trench 126, and a second protrusion s2 may be established on another side of the trench 126, wherein the first protrusion s1 and the second protrusion s2 are arranged in a staggering way. The first protrusion s1 and the second protrusion s2 are used to confine the cable 30 inside the trench 126. Thereby, the first protrusion s1 and the second protrusion s2 clamp the cable 30 to the trench 126 to prevent the cable 30 and the loop 30 from popping up. Miniaturizing the front-end assembly has become an inevitable trend. Even though the front-end assembly 10 is very tiny, the present invention can still make one end of the cable 30 fixed in the trench 126 without inserting the cable 30 and then pulling back the cable 30. Therefore, the present invention not only can prevent from incorrect insertion in fabrication but also can simplify the fabrication process to promote the overall fabrication efficiency and raise the yield.
[0035] Below is introduced a fourth embodiment of the present invention. Refer to
[0036] In the fourth embodiment, a third protrusion s3 and a fourth protrusion s4 may be formed in the outer-rim trench 150. The third protrusion s3 and the fourth protrusion s4 are respectively disposed on two sides of the outer-rim trench 150 and arranged in a staggering way. Thereby, the cable 30 is confined inside the outer-rim trench 150.
[0037] In conclusion, the steering joint wire rope fixing device of the present invention favors steering the endoscope and applies to mechanical steering, electrical steering and magnetic steering. No matter whether the steering is driven by a hand crank, a turning knob, an electric motor, a server, or a magnetic device, the steering joint wire rope fixing device of the present invention can guide the sensing/illuminating module to the desired direction. The present invention can expand the inspection area of the endoscope and raise the accuracy in complicated and curved channels. Further, the present invention can decrease the time and difficulty of operating an endoscope as well as increase the efficiency and safety of inspection.
[0038] While the invention is susceptible to various modifications and alternative forms, a specific example thereof has been shown in the drawings and is herein described in detail. It should be understood, however, that the invention is not to be limited to the particular form disclosed, but to the contrary, the invention is to cover all modifications, equivalents, and alternatives falling within the appended claims.