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Tempered glass homogenizing furnace

A tempered glass and homogenizing furnace technology, applied in the field of tempered glass homogenizing furnace, can solve the problems of low processing efficiency in the tempered glass homogenizing process, achieve the effects of shortening the processing cycle time, eliminating heat loss, and improving work efficiency

Active Publication Date: 2018-12-11
肇庆市鑫润科技有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

The invention is mainly used to solve the problem of low processing efficiency in the tempered glass homogenization process

Method used

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  • Tempered glass homogenizing furnace
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  • Tempered glass homogenizing furnace

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Embodiment Construction

[0029] use as Figure 1-Figure 9 The structure of the tempered glass homogenization furnace according to one embodiment of the present invention will be described below.

[0030] like Figure 1 to Figure 7As shown, a tempered glass homogeneous furnace according to the present invention includes a furnace body 2, one end of the furnace body 2 is a furnace door 1, and the other end of the furnace body 2 is provided with a cooling fan 4, and the length direction of the furnace body 2 is divided into Five sections, each section is equipped with a heating control system and a heat balance system, an insulation layer 7 is provided around the furnace body 2, and a circulation fan 3 and a heat circulation air duct 8 are provided in the insulation layer 7 on both sides and the top of the furnace body 2; The bottom of the heat circulation air duct 8 is provided with a heater 6, and the top is provided with a circulation fan 3. The inlet and outlet of the heat circulation air duct 8 are...

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Abstract

The invention belongs to the technical field of tempered glass production equipment, and particularly relates to a tempered glass homogenizing furnace. The tempered glass homogenizing furnace comprises a furnace body, wherein one end of the furnace body is a furnace door; the other end of the furnace body is provided with a cold air blower; a heat insulation layer is arranged at the periphery of the furnace body; circulation fans and heat circulation air passages are arranged on the heat insulation layer on the top and the two sides of the furnace body; heaters are arranged at the bottom of the heat circulation air passages; the tops of the heat circulation air passages are provided with the circulation fans; guide plates are arranged on inlet and outlet openings of the heat circulation air passages; a cooling circulation air passage is arranged between the top heat circulation air passages of the furnace body; a vehicle frame is arranged in the furnace body; a groove is formed in themiddle of the vehicle frame; a double-output-shaft motor is fixed in the groove; two slide grooves in a left and right symmetrical state are formed in the vehicle frame; a group of installing blocks is arranged in each of the two slide grooves; a through hole is formed in each installing block; an annular block is arranged on the inner wall of the through hole of each installing block; a spring passes through the middles of the annular blocks for connecting the installing blocks; the spring and the double-output-shaft motor are connected; the pitch of the spring is uniformly increased from themiddle of the vehicle frame to the end part of the vehicle frame.

Description

technical field [0001] The invention belongs to the technical field of tempered glass production equipment, in particular to a tempered glass homogenizing furnace. Background technique [0002] Tempered glass will still self-explode under the condition of no external force. The reason is that nickel sulfide is in a high temperature state (α-Nis) during the heating stage of tempering treatment. In the rapid cooling stage of tempering, the high-temperature state (α-Nis) has no time to transform to the low-temperature state (β-Nis). This crystalline transition persists from minutes after processing to more than a decade after installation. The transformation of (α-Nis) into (β-Nis) will cause volume expansion, break the stress balance inside the glass, and cause the tempered glass to self-explode. To make the treated tempered glass no longer self-explode. The tempered glass is placed in a homogeneous furnace for heating, heat preservation and cooling process. Greatly impro...

Claims

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Application Information

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IPC IPC(8): C03B32/00
CPCC03B32/00
Inventor 章慧妍潘玉娇
Owner 肇庆市鑫润科技有限公司