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Patent

Method for machining inner gear rings

Guohui Jiang
TLDR
In this article, a method for machining inner gear rings is described, which includes steps of forging, normalizing, rough lathing, finish lathing and carburizing, pressure quenching and shot blasting.
Abstract
The invention discloses a method for machining inner gear rings. The method includes steps of forging, normalizing, rough lathing, finish lathing, gear shaping, carburizing, pressure quenching and shot blasting. By the aid of the method, surface hardness, core structure and depth of a hardened layer of a gear ring are improved, machining cost is lowered, deformation of the gear ring is avoided assuredly, accordingly, the service life of the gear ring is prolonged, and the load capacity of a vehicle is enhanced.

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Citations
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Patent

Hollow shaft and manufacturing method thereof

TL;DR: In this paper, a hollow shaft and a manufacturing method for the hollow shaft was described. But the method was not described. And it was not shown how to construct the hollow shell.
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Mine vehicle axle wheel reductor planetary gear and manufacture method thereof

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TL;DR: In this article, a mine vehicle axle wheel reductor planetary gear and a manufacture method of the planetary gear is described. But the method is not suitable for the case of wheel reductors, as it requires the gear root to be strengthened with shot peening.
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Gear ring machining process

Jiang Guohui
TL;DR: In this paper, a gear ring machining process is described, which comprises the following steps of forging, rough turning, tempering, fine turning, gear shaping, fine gear broaching, carburizing, press quenching and shot blasting to obtain a finished product.
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Machining process for differential lock gear sleeve

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TL;DR: In this paper, a machining process for a differential lock gear sleeve is described, which has high mechanical strength, high abrasion resistance, high corrosion-resistance and has long service life.
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Machining process for fixed disks of synchronizers

Jiang Guohui
TL;DR: In this article, a machining process for fixed disks of synchronizers is described, which includes the following steps: forging, normalization, rough turning, finish turning, rough plane grinding, gear shaping, carburization and shot blasting.
References
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Patent

Thin-wall annular gear processing method

TL;DR: In this article, a thin-wall annular gear processing method was proposed, which comprises the steps of forging, rough turning, tempering, half-finished turning, finish turning and gear shaping.
Patent

Gear ring blank for automobile synchronizer and method for processing same

Luo Yong Chen
TL;DR: In this article, a rolling ring processing technique was applied in the process, which greatly reduces the manufacturing cost, improves precision, bettering the heat treatment performance of finished parts, reducing subsequent processing quantity, with improved productivity and lengthened durability of the finished geared ring.
Patent

Method of making a ring gear

TL;DR: In this article, a ring gear is formed from a blank taken from a hot extruded tube stock, and a toroidal blank is cut from the tube stock and measured to determine the mass thereof.
Patent

Processing method of annular gear of thin-wall member

TL;DR: In this paper, an annular gear of a thin-wall member is processed by selecting a seamless steel tube as a raw material, blanking, sawing the steel tube into a blank, normalization process and isothermal annealing process, finely turning the blank, turning the thermal-treatment blank into the exterior geometric size of a product by using a lathe, processing internal teeth, and finally carrying out thermal treatment.
Patent

Process of making annulus with bar steel

TL;DR: The process of annulus with bar steel includes the steps of winding the bar steel to form a spiral, cutting the spiral blank longitudinally to obtain several circular blank with gap, welding in the gaps to form circular blanks, forging and pressing the circular blank into ones with rectangular cross section, normalizing/tempering, turning the inner and outer circle and ends, hobbing, chamfering the teeth, high frequency quenching, oxidizing treatment, etc. as mentioned in this paper.