一种综合训练架史密斯组件

By installing adjustable guide rods and mounting brackets on the Smith fitness frame, the tilt angle of the guide rods can be continuously adjusted, solving the problem of fixed sliding direction of the crossbar, meeting personalized needs, improving the applicability and safety of the equipment, and reducing manufacturing costs.

CN224506167UActive Publication Date: 2026-07-17SHANDONG TATE SPORTS PRODUCTS CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
SHANDONG TATE SPORTS PRODUCTS CO LTD
Filing Date
2025-06-13
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

The existing Smith fitness racks have a fixed direction of crossbar sliding, which cannot adapt to the personalized biomechanical needs of different users, resulting in poor applicability and insufficient safety protection measures when exhausted.

Method used

By incorporating adjustable guide rods and mounting brackets on the Smith frame, the guide rod inclination angle can be continuously adjusted. Combined with rotatable hooks and limiting parts, it can meet the personalized needs of squats/bench presses, and retain core safety features through fixing with connectors.

Benefits of technology

It achieves continuous adjustment of the guide rod tilt angle to meet personalized biomechanical needs, improves the applicability and safety of the equipment, reduces manufacturing costs, and provides dual protection through the limiting part and the buffer assembly to reduce the risk of accidental falls.

✦ Generated by Eureka AI based on patent content.

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Abstract

本申请涉及健身器械的技术领域,尤其是涉及一种综合训练架史密斯组件,其中包括:导杆,设置有两组,沿其长度方向滑移连接有滑套,一端连接有第一安装架,另一端连接第二安装架,其中第一安装架通过转动件转动连接在史密斯框架上,第二安装架沿导杆的长度方向开设有腰型连接孔,腰型连接孔内穿设连接件,连接件史密斯框架可拆卸连接,连接件用于固定第二安装架;立杆,设置于第一安装架和第二安装架之间,且沿长度方向设置有多个挂杆;转动环,转动连接在滑套上,且设置有挂钩,挂钩能够挂扣在其中一个挂杆上;奥杆,两端分别一一对应两个转动环且与转动环连接。本申请具有提高设备适用性的效果。
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Claims

1. A comprehensive training rack Smith component, characterized by: include: The guide rod (110) is provided with two sets of sliding sleeves (120) that slide along its length. One end is connected to a first mounting bracket (130), and the other end is connected to a second mounting bracket (140). The first mounting bracket (130) is rotatably connected to the Smith frame (100) via a rotating member (160). The second mounting bracket (140) has a waist-shaped connecting hole (141) along the length of the guide rod (110). A connector (170) passes through the waist-shaped connecting hole (141). The connector (170) is detachably connected to the Smith frame (100) and is used to fix the second mounting bracket (140). The upright (200) is disposed between the first mounting bracket (130) and the second mounting bracket (140), and has a plurality of hanging rods (420) along its length. A rotating ring (300) is rotatably connected to the sliding sleeve (120) and is provided with a hook (410) which can be hooked onto one of the hanging rods (420); The rod (500) has two ends that correspond one-to-one with the two rotating rings (300) and are connected to the rotating rings (300).

2. The comprehensive training rig Smith component of claim 1, wherein: The cross-section of the upright (200) is C-shaped, and both ends of the hanging rod (420) are connected to the upright (200).

3. The comprehensive training rig Smith component of claim 1 or 2, wherein: The two guide rods (110) are located on opposite sides of the two uprights (200), and the hook (410) is located on the front side of the hanging rod (420).

4. The comprehensive training rig Smith component of claim 3, wherein: It also includes a slide bar (610), which is mounted on the Smith frame (100) and corresponds to the sliding sleeve (120); a counterweight (620) slides on the slide bar (610), which is connected to the sliding sleeve (120) via a steel cable passing over a pulley, and the counterweight (620) is used to balance the weight of the Olympic rod (500).

5. The comprehensive training rig Smith component of claim 4, wherein: The guide rod (110) is slidably connected to a limiting part (640), and a limiting hook (650) is formed on the limiting part (640). The limiting hook (650) can be hooked onto one of the hanging rods (420).

6. The comprehensive training rig Smith component of claim 5, wherein: A buffer assembly (700) is provided on the side of the limiting part (640) near the sliding sleeve (120). The buffer assembly (700) forms a supporting part for supporting the Olympic rod (500) and buffers the fall of the Olympic rod (500).

7. The comprehensive training rig Smith component of claim 6, wherein: The buffer assembly (700) includes a fixed tube (710), a sliding tube (720), a support plate (730), and an elastic element (740). The fixed tube (710) and the sliding tube (720) are both sleeved on and slide on the guide rod (110). The elastic element (740) is disposed between the fixed tube (710) and the sliding tube (720) to drive the fixed tube (710) and the sliding tube (720) away from each other. The support plate (730) is disposed on the sliding tube (720) and is used to support the Olympic rod (500) or the rotating ring (300).

8. The comprehensive training rig Smith component of claim 7, wherein: An adjustment mechanism (800) is provided on the fixed tube (710); the adjustment mechanism (800) includes an adjustment plate (810) and an adjustment ring (820). The adjustment plate (810) slides on the fixed tube (710) and is connected to the elastic element (740) to adjust the compression stroke of the elastic element (740); the adjustment ring (820) is threaded on the fixed tube (710) and is used to drive the adjustment plate (810) to slide.

9. The comprehensive training rig Smith component of claim 5, wherein: The limiting part (640) is provided with a plurality of elastic pieces (910). The ends of the plurality of elastic pieces (910) away from the limiting part (640) are provided with a raised anti-slip layer. The anti-slip layer is in contact with the guide rod (110). A locking ring (920) is threadedly connected to the plurality of elastic pieces (910). The locking ring (920) is rotated to adjust the clamping force between the anti-slip layer and the guide rod (110).