一种用于电缆生产的碳足迹采集装置
The dehumidification and filtration system driven by a multi-stage rotary seal and servo motor solves the problems of gas leakage and impurity contamination in traditional carbon footprint collection devices, enabling efficient and accurate carbon footprint detection in the cable production process and meeting diverse testing needs.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- ZHONGHE CARBON SINK SCIENCE & TECHNOLOGY RESEARCH (WUHAN) CO LTD
- Filing Date
- 2025-06-10
- Publication Date
- 2026-07-17
AI Technical Summary
Traditional carbon footprint collection devices suffer from problems such as gas leakage, impurity contamination, low detection accuracy, and difficult equipment maintenance in cable production, making it impossible to achieve real-time and continuous carbon footprint monitoring.
The system employs a multi-stage rotary sealing structure, a servo motor-driven dehumidification and filtration system, and a modular detector design to ensure the airtightness of gas collection and the effectiveness of pretreatment, enabling continuous and stable gas detection.
It enables efficient and leak-free gas collection and accurate carbon footprint detection during cable production, improving detection accuracy and equipment lifespan, and meeting diverse testing needs.
Smart Images

Figure CN224518264U_ABST
Abstract
Claims
1. A carbon footprint acquisition device for cable production comprising a double pass pipe (1), characterized by: A collection mechanism (2) is provided on one side of the dual-channel tube (1), and a detection mechanism (3) is provided on one side of the collection mechanism (2); The collection mechanism (2) includes a probe assembly for collecting gas inside the double-pass tube (1) and a sealing assembly to prevent gas from overflowing. The sealing assembly includes a knob (202) movably mounted on one side of the sealing sleeve (201), a first turntable (203) and a second turntable (204) fixedly connected to the knob (202) via a rotating rod, and a positioning hole (206) penetrating one side of the knob (202), the first turntable (203) and the second turntable (204). The detection mechanism (3) includes a detection component and a dehumidification component for pre-treating the gas. The dehumidification component includes a detection chamber housing (301) connected to a hose (211), a rotating wheel (302) rotatably installed inside the detection chamber housing (301), and a filter element (303) for dehumidifying and filtering the gas. Multiple filter grooves are provided on one side of the rotating wheel (302). The filter element (303) is fixedly installed inside the filter groove. A first sealing side plate (304) is fixedly installed on one side of the detection chamber housing (301), and a second sealing side plate (306) is fixedly installed on the other side of the detection chamber housing (301). A servo motor (305) is fixedly installed on one side of the first sealing side plate (304), and the output end of the servo motor (305) is fixedly connected to the rotating wheel (302).
2. A carbon footprint collection device for cable production as claimed in claim 1, wherein: The sealing assembly of the acquisition mechanism (2) further includes a locking block (205) fixedly connected to one side of the first turntable (203) and the second turntable (204), and a limiting block (208) for limiting the rotation angle of the locking block (205). The limiting block (208) is fixedly connected to one side of the positioning ring (207), and the positioning ring (207) is fixedly sleeved inside the sealing sleeve (201).
3. A carbon footprint collection device for cable production as claimed in claim 2, wherein: The probe assembly of the acquisition mechanism (2) includes a probe (209) that passes through the knob (202), the first turntable (203) and the second turntable (204) and enters the inside of the double-pass tube (1), a small air pump (210) that draws gas through the probe (209), and a hose (211) that delivers gas to the outer shell (301) of the detection chamber. The probe (209) is fixedly sleeved inside the positioning hole (206), and the hose (211) is connected to the small air pump (210).
4. A carbon footprint collection device for cable production according to claim 3, characterized in that: The detection component of the detection mechanism (3) includes a positioning rod (307) for installing the detector (309) and a detector (309) for detecting the gas inside the detection chamber shell (301). The positioning rod (307) is fixedly installed on one side of the second sealing side plate (306), and the detector (309) is fixedly sleeved on one side of the second sealing side plate (306). An internal thread sleeve (308) is threaded onto one side of the positioning rod (307), and a detection gas tube (310) is provided through one side of the detector (309). The detection gas tube (310) is connected to the detection chamber shell (301), and a gas detection element is provided inside the detection gas tube (310).
5. A carbon footprint collection device for cable production as claimed in claim 4, wherein: The second sealing side plate (306) has an exhaust pipe extending from the side near the detector (309), and the exhaust pipe is inserted into the inside of the detection air pipe (310).
6. A carbon footprint collection device for cable production as claimed in claim 1, wherein: The filter grooves of the rotating wheel (302) are evenly distributed along the circumference, and the filter element (303) in each filter groove contains a composite structure of activated carbon layer and silica gel drying layer.
7. A carbon footprint collection device for cable production according to claim 2, characterized in that: The positioning ring (207) and the sealing sleeve (201) are connected by an interference fit, and the outer surface of the positioning ring (207) is provided with anti-slip texture.
8. A carbon footprint collection device for cable production as claimed in claim 3, wherein: The probe (209) has a tapered end and multiple gas collection holes are provided on the surface of the probe (209) along the axial direction.
9. A carbon footprint collection device for cable production as claimed in claim 4, wherein: The outer surface of the internal threaded sleeve (308) is provided with anti-slip protrusions, and a sealing ring is provided at the threaded connection between the internal threaded sleeve (308) and the positioning rod (307).