Vertical Balancing Weighing Mechanism With Vibration Isolation

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Solution Overview

Problem

Existing vertical dynamic balancing machines face challenges in integrating a weighing mechanism due to instability and vibration transmission, which affect testing accuracy and sensor performance.

Innovation Solution

A weighing mechanism for vertical dynamic balancing machines featuring a base, support frame, and lifting assemblies with adjusting blocks and oil supply systems to maintain the mounting base horizontal, separate it from the weighing pan, and prevent vibration transmission.

Engineering Contradictions & Design Principles

VSEngineering Contradiction Analysis

1Productivity

If the weighing mechanism is integrated into the balancing machine with the mounting base directly above the weighing pan, then weight measurement and dynamic balancing testing can be continuously completed on a single apparatus, but the dynamic balancing mechanism becomes unstable and vibrations are transmitted to the weighing sensor

Engineering Contradiction:
Improveproduction efficiencyVSAvoidtesting accuracy
Core Design Contradiction:
ProductivityVSReliability

Solution Approach 1:

The patent introduces a telescopic support column as an intermediary element between the mounting base and the weighing pan. This column acts as a vibration isolator and structural mediator that prevents direct contact between the dynamic balancing mechanism and the weighing sensor, thereby eliminating vibration transmission while maintaining the integrated design for continuous operation

Inventive Principle:
Principle #24Intermediary (Mediator)

Solution Approach 2:

The patent segments the integrated structure into distinct functional zones: the weighing pan area for weight measurement and the mounting base area for dynamic balancing testing. By separating these functions spatially and connecting them through the telescopic support column, the system achieves both continuous operation and vibration isolation

Inventive Principle:
Principle #1Segmentation

2Ease of operation

If the mounting base is positioned directly above the weighing pan for integrated measurement, then operational complexity is reduced, but the dynamic balancing mechanism becomes unstable affecting testing precision

Engineering Contradiction:
Improveoperational simplicityVSAvoidtesting precision
Core Design Contradiction:
Ease of operationVSManufacturing precision

Solution Approach 1:

The telescopic support column serves as a mediator that maintains the vertical alignment and structural integrity of the integrated system while preventing vibration transmission. This intermediary element ensures operational simplicity is maintained without compromising testing precision

Inventive Principle:
Principle #24Intermediary (Mediator)

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

Ensures rapid weight measurement and dynamic balancing precision by stabilizing the mounting base, preventing vibration transmission, and extending sensor and electronic component life.

Implementation Method 1

a lifting assembly is used to lift the mounting base upward

Methodology Applied
Scientific EffectHydraulic pressure: Hydraulic Press

Implementation Method 2

a weighing sensor is mounted on the mounting seat, a weighing pan is fixedly mounted at a weighing end of the weighing sensor

Methodology Applied
Scientific EffectWeight measurement:

Data Source

PatentUS20260043705A1Weighing mechanism for vertical dynamic balancing machine
Publication Date: 2026.02.12 SHANGHAI JIANPING DYNAMIC BALANCING MACHINE MANUFACTURING CO LTD
  • US20260043705A1 patent drawing
  • US20260043705A1 patent drawing
  • US20260043705A1 patent drawing

AI summary

A weighing mechanism for a vertical dynamic balancing machine includes a base, a support frame, a horizontal positioning plate, a mounting base and a support plate, where four sides of the mounting base are fixedly provided with adjusting blocks, the horizontal positioning plate is configured in a concentric-square-shaped structure, the mounting base is located on an inner side of the horizontal positioning plate, and the mounting base does not come into contact with the horizontal positioning plate; and the four adjusting blocks are all located below the horizontal positioning plate. Rapid weight measurement of a to-be-tested workpiece is achieved, thereby facilitating weight addition or removal operations on the workpiece. When dynamic balancing testing is continued after weighing, the mounting base can be lifted and adjusted to a horizontal state by cooperation of lifting assemblies with the adjusting blocks, such that a dynamic balancing mechanism can be kept horizontal.