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Vibration equilong multi-angle sprint specific strength training and monitoring device

A technology of monitoring device and vibration device, which is applied to muscle training equipment, sports accessories, gymnastics equipment, etc., can solve the problem of lack of long-term multi-angle training means and monitoring means such as vibration in sprint special strength training, and achieve the effect of improving muscle strength

Inactive Publication Date: 2012-01-04
HARBIN NORMAL UNIVERSITY
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0004] The purpose of the present invention is to provide a vibration isometric multi-angle sprint special strength training and monitoring device based on the principles of sports biomechanics, electronics, mechanics, etc., to solve the lack of vibration isometric multi-angle training means and monitoring The problem of means

Method used

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  • Vibration equilong multi-angle sprint specific strength training and monitoring device
  • Vibration equilong multi-angle sprint specific strength training and monitoring device
  • Vibration equilong multi-angle sprint specific strength training and monitoring device

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Experimental program
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specific Embodiment approach 1

[0011] Specific implementation mode one: combine Figure 1 to Figure 4 Describe this embodiment, the training and monitoring device described in this embodiment includes a column 1, a first casing 2, a second casing 3, a first pin 4, a second pin 5 and a plurality of jackscrews 6; The training and monitoring device also includes a limit sleeve 7, a first spring 9, a first pressure sensor 10, a first pressure display 11, a second pressure sensor 35, a first pressure display 36, a vibrating device 15, an inclined beam 22, a curved plate 16. Arc-shaped plate 17, handle 19, support column 23, resistance gauge 24, gear installation shaft 25, first speed regulating motor 26, shaft sleeve 27, gear transmission pair 28, backing plate 29, spring pin 30, angle Indicating needle 31, inclined bar 32, protractor 33, velcro 34 and two spacer plates 21; The left end of the upper end surface of the upper panel 15-1 is affixed, the lower end of the column 1 is arranged between the two limitin...

specific Embodiment approach 2

[0012] Specific implementation mode two: combination figure 1 and image 3 Explain that the vibration device 15 in this embodiment includes an upper panel 15-1, a base 15-2, a second speed-regulating motor 15-3, a first belt transmission mechanism 15-4, a second belt transmission mechanism 15-5, a transition Shaft 15-6, eccentric shaft 15-7, two first shaft seats 15-8, two second shaft seats 15-9, two eccentric shaft sleeves 15-10 and two support handles 15-11; upper panel 15-1 is located directly above the base 15-2, the second speed regulating motor 15-3 is fixed on the upper end surface of the base 15-2, and the output shaft of the second speed regulating motor 15-3 passes through the first belt transmission mechanism 15 -4 The power is transmitted to the transition shaft 15-6, each of the two ends of the transition shaft 15-6 is equipped with a first shaft seat 15-8 which is rotationally connected with it, and the transition shaft 15-6 passes through the second belt trans...

specific Embodiment approach 3

[0013] Specific implementation mode three: combination figure 1Note that the vibrating device 15 in this embodiment also includes two second springs 15-12; the left end and the right end of the lower end surface of the upper panel 15-1 are respectively fixed with a second spring 15-12, and the two second springs 15 The lower end of -12 is set on the ground. Such setting can improve the stability of the vibrating device 15 in operation. Others are the same as in the second embodiment.

[0014] The pressure sensor, pressure indicator, resistance meter, speed regulating motor and spring pin used in the present invention are all outsourced.

[0015] Training process: adjust the resistance meter to the strength limit of the practitioner himself, adjust the handle and protractor so that the practitioner's legs and the upper panel of the vibration device are at 58° (the back kick angle suitable for sprinting is about 58°), and then kick the legs Standing on the second pressure sen...

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Abstract

The invention discloses a vibration equilong multi-angle sprint specific strength training and monitoring device, relates to a sprint specific strength training and monitoring device and aims at solving the problems that the sprint specific strength training lacks of vibration equilong multi-angle practice means and monitoring means. A base plate is connected with a vibration device; a protractoris fixedly arranged on the base plate and an angle pointer is connected with the protractor; a circular arc plate and a prop are fixedly connected with the vibration device; an upright post is connected with the circular arc plate; a top collar, a first spring and a first casing are sleeved on the upright post which is hinged with an oblique beam; a second casing is sleeved on a handle and is fixedly connected with the oblique beam which is fixedly connected with a bending plate; the upright post is connected with the bending plate; a shaft sleeve is sleeved on a gear mounting shaft; a diagonal rod is connected with the gear mounting shaft and is fixedly connected with a first pressure sensor; a resistance gauge is fixedly mounted on the prop; a first speed-regulating motor transmits the power to the gear mounting shaft through the gear mounting shaft; and a first pressure display device is fixedly mounted on the prop. The invention is used for sprint specific equilong strength training.

Description

technical field [0001] The invention relates to a special strength training and monitoring device for sprinting. Background technique [0002] At present, the special strength training for sprints uses isotonic (also known as dynamic) exercises, such as: swinging legs with weight, pulling rubber bands to swing legs, etc., but not enough attention is paid to isometric (also called static) exercises, and the means are lacking. , and lack of monitoring the technical process of athletes' movements. Research has shown that isotonic exercises combined with isometric exercises are very effective for developing strength. There is a new theory of vibration isometric training strength, using 5 Hz to 26 Hz sinusoidal wave vibration to perform short isometric training on an action is very effective for developing strength. Isometric training is only effective for the maximum strength of a certain angle of the joint and a small area (±15°) around it. In order to improve the maximum mus...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): A63B69/00A63B21/002A63B23/04
Inventor 夏国滨程荣进梁鹏张锐宏孙宽
Owner HARBIN NORMAL UNIVERSITY