Energy-storage high-precision multi-narrow-cavity aluminum alloy part machining tool
By designing high-precision multi-narrow cavity aluminum alloy component processing fixtures for energy storage, and adopting a multi-station structure and automated control, the low efficiency problem caused by clamping the spacer components one by one was solved, and efficient processing of the spacer bars inside the energy storage cabinet was achieved.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-06
- Publication Date
- 2026-03-27
AI Technical Summary
In the existing technology, the spacer components need to be clamped one by one during the processing of the energy storage cabinet, which results in low processing efficiency and cannot meet the production needs of the energy storage cabinet.
Design a high-precision multi-narrow cavity aluminum alloy component processing fixture for energy storage. It adopts a two-station structure, combining end positioning blocks, side positioning blocks, pads, pressing devices and quick clamps to achieve rapid positioning and processing of spacers. The opening and closing of the pressing device is controlled by a rotary cylinder and a solenoid valve to achieve non-stop cyclic processing.
This significantly improves the processing efficiency of spacers, enables non-stop cyclic processing in machining centers, reduces manual operation time, and increases production efficiency.
Smart Images

Figure CN224043155U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to energy storage cabinet component production technical field, concretely relates to a kind of energy storage high-precision multi-narrow cavity aluminum alloy component machining tool. BACKGROUND
[0002] Energy storage cabinet is a kind of equipment specially designed to store electric energy, and is widely used to provide standby power and stabilize grid voltage. It is usually composed of battery pack, converter, control chip and other parts. Its main function is to store electric energy when power supply is sufficient, and release these electric energy when power demand is high or power is insufficient, which can suppress load jump, play the role of frequency modulation and voltage regulation, improve power factor. So as to balance the supply and demand of power grid, improve the stability and efficiency of power system, and make it become the key component of modern energy system.
[0003] Most of the space in the inner cavity of the energy storage cabinet is used to place battery units. Multiple battery units are arranged neatly to form an array for packaging. The lower and side surfaces of the battery array are supported and separated by partition strips, so as to form several narrow cavities inside the energy storage cabinet cavity, and narrow cavity spaces are formed between the battery arrays for heat dissipation. Therefore, the partition strip component needs a large amount of quantity, and is one of the important components inside the energy storage cabinet. In order to reduce the overall weight of the energy storage cabinet, the partition strip is usually made of aluminum profile with multiple porous cavities. In addition to the need for machining several connecting holes on the partition strip, the end part also needs to be precisely milled to achieve a relatively accurate length tolerance. These processing procedures are processed by numerical control machining center. In the previous processing procedure, if the partition strip components are clamped and processed one by one, it needs a long time. Under the premise of not increasing equipment and manpower, it is impossible to quickly increase the processing capacity of the partition strip, and it is impossible to meet the needs of matching energy storage cabinet production and assembly. SUMMARY
[0004] In view of the above problems, the utility model provides a kind of energy storage high-precision multi-narrow cavity aluminum alloy component machining tool, it is installed on the workbench of machining center, and is specially used for the clamping of dynamic energy storage cabinet inner cavity partition strip, with the advantages of quick and convenient operation, high expansibility, compact equipment structure, easy maintenance and the like, and can greatly increase the processing efficiency of the energy storage cabinet inner cavity partition strip after use.
[0005] To achieve the above purpose, the utility model provides the following technical solutions:
[0006] A kind of energy storage high-precision multi-narrow cavity aluminum alloy component machining tool, two workstations are provided on the tool, the front end of connecting beam is fixed with front mounting bracket, and the rear end of connecting beam is fixed with rear mounting plate;End positioning block, side positioning block and backing plate are installed on one of the workstations on the rear mounting plate, and a plurality of sets of backing plate, pressing device and side positioning block are installed on the corresponding workstation of front mounting bracket;Backing plate and quick clamp are installed on the other workstation on the rear mounting plate, and a plurality of sets of backing plate, pressing device and side positioning block are installed on the corresponding workstation of front mounting bracket.
[0007] The end positioning block is used for positioning against the end of the workpiece, the side positioning block is used for positioning against the side wall of the workpiece, and the base plate is used for supporting the bottom surface of the workpiece; the quick clamp is installed on the end positioning block and is used for clamping and pressing one end of the workpiece to make it well positioned; the workpiece is subjected to milling of the end profile and milling of the hole at the front end on the work station.
[0008] The pressing device comprises a rotary cylinder installed below and a pressing plate installed at the end of the piston rod of the cylinder.
[0009] The rotary cylinder of the pressing device is connected with an electromagnetic valve through a gas pipe, the electromagnetic valve is installed below the rear mounting plate, and the electromagnetic valve is controlled through the button on the control panel.
[0010] The button control can make the pressing device at the remote end open and close, and improve the loading and unloading efficiency of workers.
[0011] The tool of the utility model is a tool unit, one processing unit can process a pair of baffle strip profiles, a plurality of tool units are fixed and installed side by side on the machining center workbench, and the processing program is set, the machining center can continuously and sequentially process workpieces of each tool unit, and the operator only needs to repeatedly unload or turn around and place the processed workpieces, so that the effect of continuous and circulating processing of the machining center without shutdown can be realized.
[0012] Advantages of the utility model
[0013] 1. The utility model is specially used for clamping of the energy storage high-precision narrow-cavity aluminum alloy baffle strip part of the dynamic energy storage cabinet, changes the status of repeated shutdown and manual loading and unloading of the baffle strip production, utilizes parallel installation of a plurality of tool units, realizes the effect of continuous and circulating processing of the machining center without shutdown, and greatly improves the processing efficiency.
[0014] 2. The utility model has compact structure and reasonable position setting of the positioning part.
[0015] 3. The utility model has extremely low technical requirements for operators, and any operator can operate on duty only after simple training. BRIEF DESCRIPTION OF DRAWINGS
[0016] Figure 1 It is a front view of the utility model; (not containing a workpiece)
[0017] Figure 2 It is a front view of the utility model; (containing a workpiece)
[0018] Figure 3 It is a side view of the utility model; (containing a workpiece)
[0019] Figure 4The elevation structure diagram of the workpiece;
[0020] The figure is marked by each serial number: 1-connection beam; 2-rear mounting plate; 3-front mounting frame; 41-end positioning block; 42-side positioning block; 43-pad plate; 5-pressing device; 6-quick clamp; 7-solenoid valve; 8-control panel. DETAILED DESCRIPTION
[0021] Example 1
[0022] A kind of energy storage high-precision multi-narrow cavity aluminum alloy component processing frock, frock is provided with left and right two stations, the front end of connection beam 1 is fixed front mounting frame 3, the rear end of connection beam 1 is fixed rear mounting plate 2;Rear mounting plate 2 one of the stations is installed end positioning block 41, side positioning block 42 and pad plate 43, the corresponding station of front mounting frame 3 is installed several groups of pad plate 43, pressing device 5 and side positioning block 42;Rear mounting plate 2 another station is installed pad plate 43 and quick clamp 6, the corresponding station of front mounting frame 3 is installed two groups of pad plate 43, pressing device (5) and side positioning block 42.
[0023] The pressing device 5 includes the rotating cylinder installed below and the pressing plate installed at the end of cylinder piston rod.
[0024] The rotating cylinder of the pressing device 5 is connected with solenoid valve 7 through air pipe respectively, solenoid valve 7 is installed below rear mounting plate 2, solenoid valve 7 is controlled through the button on control panel 8.
Claims
1. An energy storage high-precision multi-narrow-cavity aluminum alloy component processing tool, characterized in that, Two work stations are arranged on the tool, the front end of the connecting beam (1) is fixed with the front mounting frame (3), the rear end of the connecting beam (1) is fixed with the rear mounting plate (2); the end positioning block (41), the side positioning block (42) and the backing plate (43) are arranged on one of the work stations on the rear mounting plate (2), a plurality of groups of the backing plate (43), the pressing device (5) and the side positioning block (42) are arranged on the corresponding work station of the front mounting frame (3); the backing plate (43) and the quick clamp (6) are arranged on the other work station on the rear mounting plate (2), a plurality of groups of the backing plate (43), the pressing device (5) and the side positioning block (42) are arranged on the corresponding work station of the front mounting frame (3).
2. The energy storage high-precision multi-narrow-cavity aluminum alloy component processing tooling according to claim 1, characterized in that, The pressing device (5) comprises a rotary cylinder arranged below and a pressing plate arranged at the end of the piston rod of the cylinder.
3. The energy storage high-precision multi-narrow-cavity aluminum alloy component processing tooling according to claim 2, characterized in that, The rotary cylinders of the pressing device (5) are respectively connected with electromagnetic valves (7) through air pipes, the electromagnetic valves (7) are arranged below the rear mounting plate (2), and the electromagnetic valves (7) are controlled through the buttons on the control panel (8).