WO2019223112A1 - 一种区域控制的跑步机及控制方法 - Google Patents

一种区域控制的跑步机及控制方法 Download PDF

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Publication number
WO2019223112A1
WO2019223112A1 PCT/CN2018/098355 CN2018098355W WO2019223112A1 WO 2019223112 A1 WO2019223112 A1 WO 2019223112A1 CN 2018098355 W CN2018098355 W CN 2018098355W WO 2019223112 A1 WO2019223112 A1 WO 2019223112A1
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Prior art keywords
treadmill
area
running belt
driven wheel
zone
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PCT/CN2018/098355
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English (en)
French (fr)
Inventor
罗肇峰
褚奇渊
王羽龙
周峻武
刘武
廖华勇
Original Assignee
深圳市若腾科技有限公司
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Publication date
Priority claimed from CN201820768234.4U external-priority patent/CN208481934U/zh
Priority claimed from CN201810491388.8A external-priority patent/CN108434667A/zh
Application filed by 深圳市若腾科技有限公司 filed Critical 深圳市若腾科技有限公司
Publication of WO2019223112A1 publication Critical patent/WO2019223112A1/zh

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    • AHUMAN NECESSITIES
    • A63SPORTS; GAMES; AMUSEMENTS
    • A63BAPPARATUS FOR PHYSICAL TRAINING, GYMNASTICS, SWIMMING, CLIMBING, OR FENCING; BALL GAMES; TRAINING EQUIPMENT
    • A63B22/00Exercising apparatus specially adapted for conditioning the cardio-vascular system, for training agility or co-ordination of movements
    • A63B22/02Exercising apparatus specially adapted for conditioning the cardio-vascular system, for training agility or co-ordination of movements with movable endless bands, e.g. treadmills
    • AHUMAN NECESSITIES
    • A63SPORTS; GAMES; AMUSEMENTS
    • A63BAPPARATUS FOR PHYSICAL TRAINING, GYMNASTICS, SWIMMING, CLIMBING, OR FENCING; BALL GAMES; TRAINING EQUIPMENT
    • A63B24/00Electric or electronic controls for exercising apparatus of preceding groups; Controlling or monitoring of exercises, sportive games, training or athletic performances

Definitions

  • the invention relates to the technical field of treadmills, and in particular, to a treadmill and a control method for area control.
  • treadmill is a kind of fitness equipment commonly used in homes and gyms, and it is the simplest one in today's home fitness equipment. It is the best choice for home exercise machines.
  • the purpose of using a treadmill for exercise is to keep your body healthy. Security is something we must consider;
  • the purpose of the present invention is to solve the problems of insufficient intelligence and poor user experience when adjusting the speed in the prior art, and a region-controlled treadmill and a control method therefor.
  • An area-controlled treadmill includes a treadmill body, a controller, a transmission device, a running belt, and a probe holder.
  • the running belt is disposed at the middle and rear ends of the treadmill body, and one side of the running belt is provided with a transmission device.
  • a probe bracket is fixedly installed at the middle position of the front end of the treadmill body, the controller is installed at the intermediate position between the probe bracket and the running belt, and the transmission device is electrically connected to the controller.
  • the transmission device includes a motor, a belt, a front driven wheel, a rear driven wheel, a front shaft, and a rear shaft.
  • the motor is rotatably connected to the front driven wheel and the rear driven wheel through a belt, and the front driven wheel is fixedly installed in the front.
  • the rear driven wheel is located at the rear end of the main body of the treadmill, and the rear driven wheel is a shaft-type structure.
  • the rear driven wheel is fixedly mounted on the rear shaft.
  • the running belt is wrapped around the front and rear shafts.
  • an induction probe is fixedly installed on the upper end of the probe holder, and the induction probe is a device that can clearly determine the position of the running belt, and the induction probe is electrically connected to the controller.
  • the motor can also be connected to the front driven wheel and the rear driven wheel through a chain.
  • the running zone is divided into a front zone, a middle zone and a final zone, the front zone is located at the front end of the running zone, and the area of the front zone accounts for one third of the total area of the running zone.
  • the middle zone is located at the middle position of the running belt, and the area of the middle zone accounts for one third of the total area of the running belt.
  • the end zone is located at the rear end of the running belt, and the area of the end zone accounts for one third of the total area of the running belt.
  • a method for controlling an area-controlled treadmill the specific steps are as follows:
  • the controller adjusts the speed according to the user's location.
  • the controller adjusts the speed according to the user's location in three ways: rapid acceleration according to 0.1Km / H, maintaining the original speed, and rapid deceleration according to 0.1Km / H; if the induction probe does not detect that the user is When the running belt is put on, the treadmill stops.
  • the sensor detects the user at the position of the front zone of the running belt, and then the machine is turned off.
  • the present invention provides an area-controlled treadmill and a control method, which have the following beneficial effects:
  • the parts not involved in the device are the same as or can be implemented by the existing technology.
  • the invention has a simple structure and convenient operation.
  • FIG. 1 is a schematic structural diagram of an area-controlled treadmill provided by the present invention
  • FIG. 2 is a cross-sectional view of an area-controlled treadmill provided by the present invention.
  • FIG. 3 is a block diagram of an overall process of a treadmill and a control method according to the present invention.
  • FIG. 4 is an automatic ranging sensing flowchart of an area-controlled treadmill and a control method according to the present invention.
  • An area-controlled treadmill includes a treadmill body 1, a controller 4, a transmission device 5, a running belt 14, and a probe holder 6.
  • the running belt 14 is disposed at the middle and rear ends of the treadmill body 1, and the running belt 14
  • a transmission device 5 is provided on one side of the treadmill.
  • a probe holder 6 is fixedly installed at the middle position of the front end of the treadmill body 1.
  • the controller 4 is installed at a position intermediate between the probe holder 6 and the running belt 14.
  • the controller 4 is electrically connected;
  • the transmission device 5 includes a motor 3, a belt 10, a front driven wheel 11, a rear driven wheel 12, a front shaft 13 and a rear shaft 15, and the motor 3 is connected to the front driven wheel 11 through the belt 10 and
  • the rear driven wheel 12 is rotatably connected, and the front driven wheel 11 is fixedly installed on the front shaft 13.
  • the rear driven wheel 12 is located at the rear end of the treadmill body 1, and the rear driven wheel 12 is a shaft-type structure. 12 is fixedly mounted on the rear axle 15, and the running belt 14 is wrapped around the front axle 13 and the rear axle 15;
  • the controller 4 controls the switch of the motor 3.
  • the motor 3 When the motor 3 is turned on, the front driven wheel 11 and the rear driven wheel 12 are rotated by the belt 10, and the running belt 14 is wrapped around the front shaft 13 and the rear shaft 15, and the front driven wheel 11 is fixedly installed.
  • the rear driven wheel 12 On the front shaft 13, the rear driven wheel 12 is fixedly installed on the rear shaft 15, thereby driving the running belt 14 to rotate, which is convenient for users to exercise;
  • An induction probe 2 is fixedly installed on the upper end of the probe holder 6, and the induction probe 2 is a device that can clearly determine the position of the running belt 14 of the user, so that the speed of the treadmill is controlled by the controller 4.
  • the induction probe 2 and the control The motor 4 can be electrically connected; the motor 3 can also be rotationally connected to the front driven wheel 11 and the rear driven wheel 12 through a chain;
  • the running zone 14 is divided into a front zone 7, a middle zone 8 and a final zone 9, the front zone 7 is located at the front end of the running zone 14, and the area of the front zone 7 accounts for one third of the total area of the running zone 14;
  • the middle zone 8 is located at the middle position of the running belt 14 and the area of the middle zone 8 accounts for one third of the total area of the running belt 14;
  • the end zone 9 is located at the rear end of the running belt 14 and The area accounts for one third of the total area of the running belt 14.
  • a method for controlling an area-controlled treadmill the specific steps are as follows:
  • the controller adjusts the speed according to the user's location.
  • step (3) the controller adjusts the speed according to the user's position in three ways: fast acceleration according to 0.1Km / H, maintaining the original speed, and rapid deceleration according to 0.1Km / H; if the sensor 2 does not detect that the user is in the running belt At 14 o'clock, the treadmill stops.
  • the sensing probe 2 detects the user at the position of the front zone 7 of the running belt 14, and then stops the power on.
  • An area-controlled treadmill includes a treadmill body 1, a controller 4, a transmission device 5, a running belt 14, and a probe holder 6.
  • the running belt 14 is disposed at the middle and rear ends of the treadmill body 1, and the running belt 14
  • a transmission device 5 is provided on one side of the treadmill.
  • a probe holder 6 is fixedly installed at the middle position of the front end of the treadmill body 1.
  • the controller 4 is installed at a position intermediate between the probe holder 6 and the running belt 14.
  • the controller 4 is electrically connected;
  • the transmission device 5 includes a motor 3, a belt 10, a front driven wheel 11, a rear driven wheel 12, a front shaft 13 and a rear shaft 15.
  • the motor 3 is rotatably connected to the front driven wheel 11 and the rear driven wheel 12 through a belt 10.
  • the front driven wheel 11 is fixedly installed on the front shaft 13.
  • the rear driven wheel 12 is located at the rear end of the treadmill body 1.
  • the rear driven wheel 12 is a shaft structure.
  • the rear driven wheel 12 is fixedly installed on the rear shaft 15.
  • On the running belt 14 is wrapped around the front shaft 13 and the rear shaft 15;
  • An induction probe 2 is fixedly mounted on the upper end of the probe bracket 6, and the induction probe 2 is a device that can clearly determine the position of the running belt 14 of the user, and the induction probe 2 is electrically connected to the controller 4;
  • the running zone 14 is divided into a front zone 7, a middle zone 8 and a final zone 9, the front zone 7 is located at the front end of the running zone 14, and the area of the front zone 7 accounts for one third of the total area of the running zone 14;
  • the middle zone 8 is located at the middle position of the running belt 14 and the area of the middle zone 8 accounts for one third of the total area of the running belt 14;
  • the end zone 9 is located at the rear end of the running belt 14 and The area accounts for one third of the total area of the running belt 14.
  • An area-controlled treadmill includes a treadmill body 1, a controller 4, a transmission device 5, a running belt 14, and a probe holder 6.
  • the running belt 14 is disposed at the middle and rear ends of the treadmill body 1, and the running belt 14
  • a transmission device 5 is provided on one side of the treadmill.
  • a probe holder 6 is fixedly installed at the middle position of the front end of the treadmill body 1.
  • the controller 4 is installed at a position intermediate between the probe holder 6 and the running belt 14.
  • the controller 4 is electrically connected;
  • the transmission device 5 includes a motor 3, a chain, a front driven wheel 11, a rear driven wheel 12, a front shaft 13 and a rear shaft 15.
  • the motor 3 is rotatably connected to the front driven wheel 11 and the rear driven wheel 12 through a chain.
  • the driven wheel 11 is fixedly mounted on the front shaft 13, the rear driven wheel 12 is located at the rear end of the treadmill body 1, and the rear driven wheel 12 is a shaft-type structure.
  • the rear driven wheel 12 is fixedly mounted on the rear shaft 15,
  • the running belt 14 is wrapped around the front shaft 13 and the rear shaft 15;
  • An induction probe 2 is fixedly mounted on the upper end of the probe bracket 6, and the induction probe 2 is a device that can clearly determine the position of the running belt 14 of the user, and the induction probe 2 is electrically connected to the controller 4;
  • the running zone 14 is divided into a front zone 7, a middle zone 8 and a final zone 9, the front zone 7 is located at the front end of the running zone 14, and the area of the front zone 7 accounts for one third of the total area of the running zone 14;
  • the middle zone 8 is located at the middle position of the running belt 14 and the area of the middle zone 8 accounts for one third of the total area of the running belt 14;
  • the end zone 9 is located at the rear end of the running belt 14 and The area accounts for one third of the total area of the running belt 14.
  • the motor 3 can be rotationally connected to the front driven wheel 11 and the rear driven wheel 12 through a chain or a belt 10 with the same effect.
  • a method for controlling an area-controlled treadmill the specific steps are as follows:
  • the controller adjusts the speed according to the user's location.
  • the user is sensed in the front zone 7 of the running belt 14 in the step (3);
  • the sensing probe 2 detects the user at the position of the front zone 7 of the running belt 14, and then stops the power on.
  • a method for controlling an area-controlled treadmill the specific steps are as follows:
  • the controller adjusts the speed according to the user's location.
  • the user is sensed in the middle zone 8 of the running belt 14 in the step (3);
  • the sensing probe 2 detects the user at the position of the front zone 7 of the running belt 14, and then stops the power on.
  • a method for controlling an area-controlled treadmill the specific steps are as follows:
  • the controller adjusts the speed according to the user's location.
  • the user is sensed in the end zone 9 of the running belt 14 in the step (3);
  • the sensing probe 2 detects the user at the position of the front zone 7 of the running belt 14, and then stops the power on.
  • Table 1 tests the speed change of the treadmill in different areas sensed by the induction probe:
  • Example 3 Front zone Fast acceleration at 0.1Km / H
  • Example 4 Central District Keep the speed
  • Example 5 Terminal area Rapid deceleration according to 0.1Km / H

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  • Health & Medical Sciences (AREA)
  • General Health & Medical Sciences (AREA)
  • Physical Education & Sports Medicine (AREA)
  • Cardiology (AREA)
  • Vascular Medicine (AREA)
  • Rehabilitation Tools (AREA)

Abstract

一种区域控制的跑步机,包括跑步机主体(1)、控制器(4)、传动装置(5)、跑步带(14)和探头支架(6),跑步带(14)设置在跑步机主体(1)的中后端,且跑步带(14)的一侧设置有传动装置(5),跑步机主体(1)的前端中间位置固定安装有探头支架(6),控制器(4)安装在探头支架(6)与跑步带(14)的中间位置,传动装置(5)与控制器(4)电性连接。还公开了一种区域控制的跑步机的控制方法。

Description

一种区域控制的跑步机及控制方法 技术领域
本发明涉及跑步机技术领域,尤其涉及一种区域控制的跑步机及控制方法。
背景技术
人们对健康的意识提高以及对更高生活品质的追求使得设计周全,性价比高,实用有效的家用跑步机应运而生并深受百姓欢迎。现在跑步机是家庭及健身房常备的健身器材,而且是当今家庭健身器材中最简单的一种,是家庭健身器的最佳选择;使用跑步机进行锻炼的目的就是为了身体的健康,因此跑步机的安全性是我们必须要考虑的;
现有技术的传统跑步机,用户在跑步时,改变速度需要用手调节,当跑步机速度过快时不够安全,调节速度时不够智能,提高用户使用体验成为本技术领域需解决的技术问题。
发明内容
本发明的目的是为了解决现有技术中调节速度时不够智能,用户使用体验不好的问题,而提出的一种区域控制的跑步机及控制方法。
为了实现上述目的,本发明采用了如下技术方案:
一种区域控制的跑步机,包括跑步机主体、控制器、传动装置、跑步带和探头支架,所述跑步带设置在跑步机主体的中后端,且跑步带的一侧设置有传动装置,所述跑步机主体的前端中间位置固定安装有探头支架,所述控制器安装在探头支架与跑步带的中间位置,所述 传动装置与控制器电性连接。
优选的,所述传动装置包括马达、皮带、前从动轮、后从动轮、前轴和后轴,所述马达通过皮带与前从动轮及后从动轮转动连接,且前从动轮固定安装在前轴上,所述后从动轮位于跑步机主体的后端,且后从动轮为轴型结构,所述后从动轮固定安装在后轴上,所述跑步带环绕包裹于前轴和后轴。
优选的,所述探头支架的上端固定安装有感应探头,且感应探头为可明确判定所处跑步带位置的装置,所述感应探头与控制器电性连接。
优选的,所述马达还可以通过链条与前从动轮及后从动轮转动连接。
优选的,所述跑步带分为前区、中区和末区,所述前区位于跑步带的前端位置,且前区的面积占跑步带总面积的三分之一。
优选的,所述中区位于跑步带的中间位置,且中区的面积占跑步带总面积的三分之一。
优选的,所述末区位于跑步带的后端位置,且末区的面积占跑步带总面积的三分之一。
一种区域控制的跑步机的控制方法,所述具体步骤如下:
(1)、按开始键,跑步机初始化;
(2)、通过感应探头获取用户在跑步带上的位置;
(3)、控制器根据用户所在的位置调节速度。
优选的,所述步骤(3)中控制器根据用户所在的位置调节速度 有三种:按0.1Km/H快速加速、保持原速和按0.1Km/H快速减速;若感应探头未检测到用户在跑步带上时,则跑步机停止运转。
优选的,所述步骤(1)跑步机初始化时感应探头在跑步带前区位置检测到用户,则停止开机
与现有技术相比,本发明提供了一种区域控制的跑步机及控制方法,具备以下有益效果:
无需用户双手进行调速,通过感应探头感应用户的位置,从而进行自主调速,可使跑步机根据用户的节奏实时调速,提高用户使用体验。
该装置中未涉及部分均与现有技术相同或可采用现有技术加以实现,本发明结构简单,操作方便。
附图说明
图1为本发明提出的一种区域控制的跑步机的结构示意图;
图2为本发明提出的一种区域控制的跑步机的剖视图;
图3为本发明提出的一种区域控制的跑步机及控制方法的整体流程框图;
图4为本发明提出的一种区域控制的跑步机及控制方法的自动测距感应流程图。
图中:1、跑步机主体;2、感应探头;3、马达;4、控制器;5、传动装置;6、探头支架;7、前区;8、中区;9、末区;10、皮带;11、前从动轮;12、后从动轮;13、前轴;14、跑步带;15、后轴。
具体实施方式
下面将结合本发明实施例中的附图,对本发明实施例中的技术方 案进行清楚、完整地描述,显然,所描述的实施例仅仅是本发明一部分实施例,而不是全部的实施例。
在本发明的描述中,需要理解的是,术语“上”、“下”、“前”、“后”、“左”、“右”、“顶”、“底”、“内”、“外”等指示的方位或位置关系为基于附图所示的方位或位置关系,仅是为了便于描述本发明和简化描述,而不是指示或暗示所指的装置或元件必须具有特定的方位、以特定的方位构造和操作,因此不能理解为对本发明的限制。
一种区域控制的跑步机,包括跑步机主体1、控制器4、传动装置5、跑步带14和探头支架6,所述跑步带14设置在跑步机主体1的中后端,且跑步带14的一侧设置有传动装置5,所述跑步机主体1的前端中间位置固定安装有探头支架6,所述控制器4安装在探头支架6与跑步带14的中间位置,所述传动装置5与控制器4电性连接;所述传动装置5包括马达3、皮带10、前从动轮11、后从动轮12、前轴13和后轴15,所述马达3通过皮带10与前从动轮11及后从动轮12转动连接,且前从动轮11固定安装在前轴13上,所述后从动轮12位于跑步机主体1的后端,且后从动轮12为轴型结构,所述后从动轮12固定安装在后轴15上,所述跑步带14环绕包裹于前轴13和后轴15;
控制器4控制马达3的开关,马达3开启时,通过皮带10带动前从动轮11和后从动轮12转动,跑步带14环绕包裹于前轴13和后轴15上,前从动轮11固定安装在前轴13上,后从动轮12固定安装 在后轴15上,从而带动跑步带14转动,方便用户锻炼身体;
所述探头支架6的上端固定安装有感应探头2,且感应探头2为可明确判定用户所处跑步带14位置的装置,从而通过控制器4控制跑步机的速度,所述感应探头2与控制器4电性连接;马达3还可以通过链条与前从动轮11及后从动轮12转动连接;
所述跑步带14分为前区7、中区8和末区9,所述前区7位于跑步带14的前端位置,且前区7的面积占跑步带14总面积的三分之一;所述中区8位于跑步带14的中间位置,且中区8的面积占跑步带14总面积的三分之一;所述末区9位于跑步带14的后端位置,且末区9的面积占跑步带14总面积的三分之一。
一种区域控制的跑步机的控制方法,所述具体步骤如下:
(1)、按开始键,跑步机初始化;
(2)、通过感应探头获取用户在跑步带上的位置;
(3)、控制器根据用户所在的位置调节速度。
所述步骤(3)中控制器根据用户所在的位置调节速度有三种:按0.1Km/H快速加速、保持原速和按0.1Km/H快速减速;若感应探头2未检测到用户在跑步带14上时,则跑步机停止运转。
所述步骤(1)跑步机初始化时感应探头2在跑步带14前区7位置检测到用户,则停止开机。
实施例1
一种区域控制的跑步机,包括跑步机主体1、控制器4、传动装置5、跑步带14和探头支架6,所述跑步带14设置在跑步机主体1 的中后端,且跑步带14的一侧设置有传动装置5,所述跑步机主体1的前端中间位置固定安装有探头支架6,所述控制器4安装在探头支架6与跑步带14的中间位置,所述传动装置5与控制器4电性连接;
所述传动装置5包括马达3、皮带10、前从动轮11、后从动轮12、前轴13和后轴15,所述马达3通过皮带10与前从动轮11及后从动轮12转动连接,且前从动轮11固定安装在前轴13上,所述后从动轮12位于跑步机主体1的后端,且后从动轮12为轴型结构,所述后从动轮12固定安装在后轴15上,所述跑步带14环绕包裹于前轴13和后轴15;
所述探头支架6的上端固定安装有感应探头2,且感应探头2为可明确判定用户所处跑步带14位置的装置,所述感应探头2与控制器4电性连接;
所述跑步带14分为前区7、中区8和末区9,所述前区7位于跑步带14的前端位置,且前区7的面积占跑步带14总面积的三分之一;所述中区8位于跑步带14的中间位置,且中区8的面积占跑步带14总面积的三分之一;所述末区9位于跑步带14的后端位置,且末区9的面积占跑步带14总面积的三分之一。
实施例2
一种区域控制的跑步机,包括跑步机主体1、控制器4、传动装置5、跑步带14和探头支架6,所述跑步带14设置在跑步机主体1的中后端,且跑步带14的一侧设置有传动装置5,所述跑步机主体1的前端中间位置固定安装有探头支架6,所述控制器4安装在探头支 架6与跑步带14的中间位置,所述传动装置5与控制器4电性连接;
所述传动装置5包括马达3、链条、前从动轮11、后从动轮12、前轴13和后轴15,所述马达3通过链条与前从动轮11及后从动轮12转动连接,且前从动轮11固定安装在前轴13上,所述后从动轮12位于跑步机主体1的后端,且后从动轮12为轴型结构,所述后从动轮12固定安装在后轴15上,所述跑步带14环绕包裹于前轴13和后轴15;
所述探头支架6的上端固定安装有感应探头2,且感应探头2为可明确判定用户所处跑步带14位置的装置,所述感应探头2与控制器4电性连接;
所述跑步带14分为前区7、中区8和末区9,所述前区7位于跑步带14的前端位置,且前区7的面积占跑步带14总面积的三分之一;所述中区8位于跑步带14的中间位置,且中区8的面积占跑步带14总面积的三分之一;所述末区9位于跑步带14的后端位置,且末区9的面积占跑步带14总面积的三分之一。
本发明中马达3可通过链条或者皮带10与前从动轮11及后从动轮12转动连接,效果相同。
实施例3
一种区域控制的跑步机的控制方法,所述具体步骤如下:
(1)、按开始键,跑步机初始化;
(2)、通过感应探头获取用户在跑步带上的位置;
(3)、控制器根据用户所在的位置调节速度。
所述步骤(3)中感应到用户在跑步带14的前区7;
所述步骤(1)跑步机初始化时感应探头2在跑步带14前区7位置检测到用户,则停止开机。
实施例4
一种区域控制的跑步机的控制方法,所述具体步骤如下:
(1)、按开始键,跑步机初始化;
(2)、通过感应探头获取用户在跑步带上的位置;
(3)、控制器根据用户所在的位置调节速度。
所述步骤(3)中感应到用户在跑步带14的中区8;
所述步骤(1)跑步机初始化时感应探头2在跑步带14前区7位置检测到用户,则停止开机。
实施例5
一种区域控制的跑步机的控制方法,所述具体步骤如下:
(1)、按开始键,跑步机初始化;
(2)、通过感应探头获取用户在跑步带上的位置;
(3)、控制器根据用户所在的位置调节速度。
所述步骤(3)中感应到用户在跑步带14的末区9;
所述步骤(1)跑步机初始化时感应探头2在跑步带14前区7位置检测到用户,则停止开机。
表1对感应探头感应到用户在不同区域的跑步机速度变化测试:
表1
抛光次数 区域 跑步机速度变化
实施例3 前区 按0.1Km/H快速加速
实施例4 中区 保持原速
实施例5 末区 按0.1Km/H快速减速
由表1可知感应到用户在跑步带14的前区7时,则跑步机按0.1Km/H快速加速;若感应到用户在跑步带14的中区8时,则保持原速;若感应到用户在跑步带14的末区9时,则跑步机按0.1Km/H快速减速,本发明的跑步机无需用户双手进行调速,通过感应探头感应用户的位置,从而进行自主调速,可使跑步机根据用户的节奏实时调速,提高用户使用体验。
以上所述,仅为本发明较佳的具体实施方式,但本发明的保护范围并不局限于此,任何熟悉本技术领域的技术人员在本发明揭露的技术范围内,根据本发明的技术方案及其发明构思加以等同替换或改变,都应涵盖在本发明的保护范围之内。

Claims (10)

  1. 一种区域控制的跑步机,包括跑步机主体(1)、控制器(4)、传动装置(5)、跑步带(14)和探头支架(6),其特征在于,所述跑步带(14)设置在跑步机主体(1)的中后端,且跑步带(14)的一侧设置有传动装置(5),所述跑步机主体(1)的前端中间位置固定安装有探头支架(6),所述控制器(4)安装在探头支架(6)与跑步带(14)的中间位置,所述传动装置(5)与控制器(4)电性连接。
  2. 根据权利要求1所述的一种区域控制的跑步机,其特征在于,所述传动装置(5)包括马达(3)、皮带(10)、前从动轮(11)、后从动轮(12)、前轴(13)和后轴(15),所述马达(3)通过皮带(10)与前从动轮(11)及后从动轮(12)转动连接,且前从动轮(11)固定安装在前轴(13)上,所述后从动轮(12)位于跑步机主体(1)的后端,且后从动轮(12)为轴型结构,所述后从动轮(12)固定安装在后轴(15)上,所述跑步带(14)环绕包裹于前轴(13)和后轴(15)。
  3. 根据权利要求1所述的一种区域控制的跑步机,其特征在于,所述探头支架(6)的上端固定安装有感应探头(2),且感应探头(2)为可明确判定用户所处跑步带(14)位置的装置,所述感应探头(2)与控制器(4)电性连接。
  4. 根据权利要求2所述的一种区域控制的跑步机,其特征在于,所述马达(3)还可以通过链条与前从动轮(11)及后从动轮(12)转动连接。
  5. 根据权利要求1所述的一种区域控制的跑步机,其特征在于, 所述跑步带(14)分为前区(7)、中区(8)和末区(9),所述前区(7)位于跑步带(14)的前端位置,且前区(7)的面积占跑步带(14)总面积的三分之一。
  6. 根据权利要求5所述的一种区域控制的跑步机,其特征在于,所述中区(8)位于跑步带(14)的中间位置,且中区(8)的面积占跑步带(14)总面积的三分之一。
  7. 根据权利要求5所述的一种区域控制的跑步机,其特征在于,所述末区(9)位于跑步带(14)的后端位置,且末区(9)的面积占跑步带(14)总面积的三分之一。
  8. 根据权利要求1-7任一所述的一种区域控制的跑步机的控制方法,其特征在于,所述具体步骤如下:
    (1)、按开始键,跑步机初始化;
    (2)、通过感应探头获取用户在跑步带上的位置;
    (3)、控制器根据用户所在的位置调节速度。
  9. 根据权利要求8所述的一种区域控制的跑步机的控制方法,其特征在于,所述步骤(3)中控制器根据用户所在的位置调节速度有三种:按0.1Km/H快速加速、保持原速和按0.1Km/H快速减速;若感应探头(2)未检测到用户在跑步带(14)上时,则跑步机停止运转。
  10. 根据权利要求8所述的一种区域控制的跑步机的控制方法,其特征在于,所述步骤(1)跑步机初始化时感应探头(2)在跑步带(14)前区(7)位置检测到用户,则停止开机。
PCT/CN2018/098355 2018-05-21 2018-08-02 一种区域控制的跑步机及控制方法 WO2019223112A1 (zh)

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