Electric drilling-free mounting device for mounting curtain and top beam mounting assembly thereof
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Solution Overview
Problem
Existing curtain mounting methods require drilling into window frames, causing damage and aesthetic issues, and manual, labor-intensive operations for mounting and adjustment.
Innovation Solution
An electric drilling-free mounting device with a power component, pressing assembly, and elastic adjusting assembly that allows for electrically controlled mounting and dismounting of curtains, using a telescoping mechanism with springs and a motor to achieve pre-positioning and locking without manual intervention.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Reliability
If manual drilling and screw mounting is used to fix curtains on window frames, then the mounting is stable and secure, but it causes damage to walls, creates aesthetic issues, and requires time-consuming manual operation
Solution Approach 1:
The invention extracts the harmful drilling operation from the mounting process by using a drilling-free design. The mounting bracket uses an elastic pressing mechanism that clamps onto the window frame without penetrating it, thereby removing the source of wall damage while maintaining mounting stability through friction and elastic force.
Solution Approach 2:
The invention replaces the traditional mechanical screw-fastening system with an elastic pressing mechanism. Instead of using screws that penetrate and damage the window frame, the system uses elastic deformation of the mounting bracket to create a secure friction-based connection, substituting a damaging mechanical system with a non-damaging one.
2Reliability
If manual drilling and mounting operation is performed, then the mounting can be securely fixed, but it consumes much time and labor
Solution Approach 1:
The mounting bracket is designed to be self-installing through a simple one-handed operation. The elastic pressing mechanism automatically secures itself to the window frame when the bracket is pressed into place, eliminating the need for manual drilling, screwing, or complex assembly steps, thereby dramatically reducing mounting time while maintaining security.
Solution Approach 2:
The mounting bracket incorporates dynamic elastic elements that allow for quick installation and removal. The elastic pressing mechanism can be rapidly engaged and disengaged without tools, enabling the user to mount or unmount curtains in seconds while maintaining a secure fixed position during normal use.
3Reliability
If traditional screw mounting is used, then the curtain is firmly fixed at the given mounting height, but new screw holes must be opened for remounting, damaging the walls
Solution Approach 1:
The mounting bracket is designed to be temporarily discarded and recovered. The elastic pressing mechanism allows the bracket to be easily removed from the window frame without causing damage, and then reinstalled at a different position. The original mounting location is fully recovered with no residual damage, enabling flexible remounting while maintaining secure fixation at any desired position.
Applied Scientific Principles
This section explains which scientific principles are used to turn an abstract innovation direction into a practical engineering solution.
Function Achieved in This Case
Facilitates quick and convenient mounting and dismounting of curtains by electrically controlling the locking and unlocking process, saving time and labor while preventing damage to walls and improving aesthetics.
Implementation Method 1
The elastic adjusting assembly has an elastic telescoping travel
Implementation Method 2
A power component, a pressing assembly and an elastic adjusting assembly are sequentially mounted inside the chamber
Data Source
Figure 1~2
Figure 3~4
Figure 5~6
AI summary
The present disclosure discloses an electric drilling-free mounting device for mounting a curtain and a top beam mounting assembly thereof, which comprises a housing (1); an end of the housing (1) is connected with an end cover (2) and a chamber (1.1) is disposed inside the housing (1); a power component (3) i.e. an electric motor, a pressing assembly and an elastic adjusting assembly are sequentially mounted inside the chamber (1.1) in a direction from an end away from the end cover (2) to the end cover (2); the power component (3) is fixedly disposed inside the chamber (1.1), and a power output end of the power component (3) is in transmission connection with the pressing assembly; one end of the elastic adjusting assembly is abutted against the pressing assembly and the other end is abutted against the end cover (2); the end of the elastic adjusting assembly abutted against the end cover (2) is partially penetrated through the end cover (2) and exposed outside the housing (1) for pre-positioning; the elastic adjusting assembly has an elastic telescoping travel, and the power component (3) drives the pressing assembly to press or release the elastic adjusting assembly. The locking and unlocking can be electrically achieved by the power component, without human operations, bringing use conveniences and saving time and labor.