一种具备模块化集成运输的充电桩

The charging pile with modular integrated transportation design solves the problems of difficult deployment and insufficient scalability of charging piles in narrow spaces, and realizes a charging solution that can be deployed quickly and at low cost.

CN224510906UActive Publication Date: 2026-07-17NANTONG GOTION NEW ENERGY TECHNOLOGY CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
NANTONG GOTION NEW ENERGY TECHNOLOGY CO LTD
Filing Date
2025-07-22
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

Existing charging piles are difficult to deploy in confined spaces, lack scalability, and are complex to transport and install, making them difficult to deploy quickly and expand flexibly, resulting in low charging coverage and high deployment costs.

Method used

Design a charging pile with modular integrated transportation. Through the integrated structure of the support base, battery cluster frame and outer shell, the orderly installation of battery packs and the positioning of the charger can be realized. It is compatible with forklift and flatbed truck transportation and adopts a modular design for convenient installation and expansion.

Benefits of technology

It enables rapid deployment and flexible expansion of charging capacity in confined spaces, while reducing transportation and installation costs and improving charging coverage and deployment efficiency.

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Abstract

本实用新型公开了一种具备模块化集成运输的充电桩,包括承载底座,承载底座通过焊接与电池簇框架固定;电池簇框架在内部引导电池包按序排列安装;承载底座设放置区并通过销钉定位安装充电机,承载底座上有罩置在电池簇框架、充电机的外壳护罩,并且外壳护罩与电池簇框架、充电机的侧支架锁附。本专利通过将电池储能、功率变换、防护外壳、驱动行走四大功能模块高度集成,形成模块化移动充电桩。承载底座使整机无需托盘即可由叉车侧面或端面双向插运,兼容平板车、台阶货车;电池簇框架的矩形顶框‑分层导轨‑井字底板结构,实现电池包“投包‑分区‑定位”一步完成;外壳护罩通过壳体固定支架整体罩合,达到防护目的。
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Claims

1. A charging pile with modular integrated transportation, characterized in that, It includes a carrying base (5), and the carrying base (5) is fixed to the battery cluster frame (4) by welding; the battery cluster frame (4) guides the battery packs (3) to be installed in sequence inside; the carrying base (5) has a placement area and installs a charger (2) by pin positioning, and there is an outer shell cover (1) covering the battery cluster frame (4) and the charger (2) on the carrying base (5), and the outer shell cover (1) is locked to the side brackets of the battery cluster frame (4) and the charger (2).

2. The charging station with modular integrated transportation of claim 1, wherein: The carrying base (5) is welded by a cross beam (5-2), a longitudinal beam (5-1), and a tail longitudinal beam (5-3) to form a "mu" shaped skeleton; A tail middle beam (5-4) is connected between the tail longitudinal beam (5-3) and the adjacent longitudinal beam (5-1), and the three together constitute the bottom support surface of the placement area of the charger (2); mounting brackets (5-5) are welded on both sides of the bottom support surface, and pin positioning holes are provided on the mounting brackets (5-5).

3. The charging station with modular integrated transportation of claim 2, wherein: A tail fixing bottom plate (5-6) and a middle carrying bottom plate (5-7) are provided at the bottom of the bottom support surface. There are two tail fixing bottom plates (5-6) and they are arranged on both sides of the middle carrying bottom plate (5-7). The interval between the tail fixing bottom plate (5-6) and the middle carrying bottom plate (5-7) forms a first fork tooth area, and the interval between the end fixing plate (5-8) and the tail fixing bottom plate (5-6) is a second fork tooth area.

4. The charging station with modular integrated transportation of claim 2, wherein: The upper part of the battery cluster frame (4) is vertically welded by a top cross beam (4-3) and a top longitudinal beam (4-4) to form a rectangular top frame. A top layer longitudinal beam (4-6) parallel to the top longitudinal beam (4-4) is connected between the top cross beams (4-3), and a top layer middle cross beam (4-8) parallel to the top cross beam (4-3) is connected between the top layer longitudinal beams (4-6); a charger mounting plate (4-7) extending horizontally is connected to the top longitudinal beam (4-4) on the side close to the charger (2).

5. The charging station with modular integrated transportation of claim 4, wherein: The middle part of the battery cluster frame (4) is arranged along the four sides of the rectangular top frame by side mounting plates (4-1) to form four middle mounting surfaces. Side support plates (4-5) are connected across between the side mounting plates (4-1). Guide rails (4-2) aligned at different height positions are provided on two symmetrical middle mounting surfaces, and the guide rails (4-2) guide the battery packs (3) to be partitioned and positioned during package insertion; the bottom of the battery cluster frame (4) is welded vertically and horizontally by a bottom mounting plate (4-9) to form a bottom support surface, and bolt holes corresponding to the fixing holes of the longitudinal beam (5-1) are provided on the bottom mounting plate (4-9) to lock the battery cluster frame (4) to the carrying base (5).

6. The charging station with modular integrated transportation of claim 5, wherein: The outer periphery of the battery cluster frame (4) is connected to the outer shell cover (1) outward through a shell fixing bracket (4-10); the side vertical baffle (4-11) of the battery cluster frame is fixed to the bottom mounting plate (4-9) of the battery cluster frame through fasteners.