Easy heating type safety molybdenum rod
Patent Information
- Application Number
- CN202522548679.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-12-01
- Publication Date
- 2026-09-15
- Estimated Expiration
- 2035-12-01
AI Technical Summary
[0002]钼杆是钼制品生产加工时的重要原材料,在进行使用时通常需要进行加热,现有的钼杆为圆柱形结构,在进行加热时放置在圆柱形放置架上再输送到加热炉内进行加热,加热时仅能够通过外部圆柱形结构面进行加热配合,整体的加热效率相对较低,而进行钼丝的生产时,在进行钼杆加热后通过拉丝进行加工,拉丝加工时,圆柱形结构面在拉力作用下的均匀性很难保障,而钼杆作为原材料进行切割加工时,由于现有的圆柱形钼杆产品没有定位结构,导向切割时的精度无法保障,切割时容易出现跑位等偏差,偏差比较大时会造成材料的浪费,也会影响切割加工时的效率
本实用新型采用全新的结构设计,通过在钼杆主体结构上设置加热辅助结构及切断辅助结构,能够在进行加热时保障整体的加热效率更高,有效增加了加热时的受热面积,并且在进行后期拉丝加工时能够使周围位置形成更均匀的轴向拉力,拉丝时的形变更均匀,拉丝质量更好,切断加工时通过辅助结构的设置能够确保切割时的精度更高,不仅能够提高切割效率,同时能够有效降低材料的浪费。
Smart Images

Figure CN224756745U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the technical field of molybdenum rod products, and in particular to an easy-to-heat safety molybdenum rod. Background Technology
[0002] Molybdenum rods are an important raw material in the production and processing of molybdenum products. They typically require heating during use. Existing molybdenum rods have a cylindrical structure and are placed on a cylindrical support frame before being transported to the heating furnace. Heating is only possible through the external cylindrical surface, resulting in relatively low overall heating efficiency. In the production of molybdenum wire, the rods are heated and then drawn. During the drawing process, it is difficult to ensure the uniformity of the cylindrical surface under tension. Furthermore, when molybdenum rods are used as raw materials for cutting, the lack of a positioning structure in existing cylindrical molybdenum rod products makes it difficult to guarantee the accuracy of the cutting process. Deviations such as misalignment are prone to occur during cutting, leading to material waste and impacting the efficiency of the cutting process. Utility Model Content
[0003] The purpose of this invention is to provide an easy-to-heat safe molybdenum rod. It adopts a brand-new structural design, which, by setting heating auxiliary structures and cutting auxiliary structures on the main structure of the molybdenum rod, can ensure higher overall heating efficiency during heating, effectively increase the heated area, and create a more uniform axial tension around the rod during the subsequent wire drawing process. This results in more uniform deformation and better wire drawing quality. The auxiliary structures also ensure higher cutting precision during cutting, which not only improves cutting efficiency but also effectively reduces material waste.
[0004] The technical solution of this utility model is as follows: An easily heated safety molybdenum rod includes a cylindrical molybdenum rod main body structure, the central axis of which is oriented vertically. The main body structure is characterized by four sets of evenly distributed, circumferentially extending heating auxiliary grooves that completely penetrate the entire vertical direction on its outer cylindrical surface. The cross-section of each heating auxiliary groove is an arc-shaped structure. A cutting auxiliary groove, evenly distributed vertically and opening to the right, is located on the right side of the molybdenum rod main body structure. This cutting auxiliary groove penetrates the front-to-back direction of the molybdenum rod main body structure, and its projection shape in the front-to-back direction is an arc-shaped structure.
[0005] Furthermore, the circumference of the heating-assisted mating groove is less than half the circumference of the cylindrical structure of the same diameter.
[0006] The beneficial effects of this utility model are: This utility model adopts a brand-new structural design. By setting heating auxiliary structures and cutting auxiliary structures on the main structure of the molybdenum rod, it can ensure higher overall heating efficiency during heating, effectively increase the heating area, and form a more uniform axial tension around the wire during the later wire drawing process. The deformation during wire drawing is more uniform and the wire drawing quality is better. During the cutting process, the setting of auxiliary structures can ensure higher cutting precision. This not only improves cutting efficiency but also effectively reduces material waste. Attached Figure Description
[0007] Figure 1 This is a three-dimensional structural diagram of the present invention; Figure 2 This is a front view of the present invention; Figure 3 This is a side view of the present invention; Figure 4 This is a top view of the present invention; Figure 5 This is a bottom view of the present invention; Figure 6 This is a three-dimensional structural diagram of the present invention in the second direction; In the figure: 1. Main structure of molybdenum rod, 2. Heating auxiliary fitting groove, 3. Cutting auxiliary fitting groove. Detailed Implementation
[0008] like Figures 1 to 6As shown, an easily heated safety molybdenum rod includes a cylindrical molybdenum rod main body structure 1. The central axis of the molybdenum rod main body structure 1 is vertical, and it is the main structure of this product, similar to existing molybdenum rod products. Four sets of evenly distributed, circumferentially distributed heating auxiliary grooves 2 are provided on the outer cylindrical surface of the molybdenum rod main body structure 1, completely penetrating the vertical direction. During heating, this structure effectively increases the heating area. The cross-section of the heating auxiliary grooves 2 is an arc-shaped structure, which improves the internal structural stability and ensures better uniformity of external deformation during subsequent wire drawing. On the right side of the molybdenum rod main body structure 1, there are evenly distributed vertically and vertically distributed cutting auxiliary grooves 3 that open to the right. During cutting, the molybdenum rod is processed as raw material. With the help of this structure, precise cutting is achieved, ensuring easier operation and preventing displacement or deviation during cutting. The cutting auxiliary groove 3 runs through the front and rear directions of the molybdenum rod main body structure 1. The projection shape of the cutting auxiliary groove 3 in the front and rear directions is an arc shape, which makes this structure more convenient during production and processing. It can be processed after the molybdenum rod is integrally formed, or it can be directly formed with the mold used in the molybdenum rod forming process. It adopts a brand-new structural design. By setting heating auxiliary structures and cutting auxiliary structures on the molybdenum rod main body structure, it can ensure higher overall heating efficiency during heating, effectively increase the heated area during heating, and form a more uniform axial tension in the surrounding area during the later wire drawing process. The deformation during wire drawing is more uniform and the wire drawing quality is better. During cutting, the setting of auxiliary structures can ensure higher cutting precision, which not only improves cutting efficiency, but also effectively reduces material waste.
[0009] Preferably, the structure includes a cylindrical molybdenum rod main body 1, with its central axis pointing vertically. Four sets of evenly distributed heating auxiliary grooves 2 are provided on the outer cylindrical surface of the molybdenum rod main body 1, completely penetrating the entire vertical direction. The cross-section of each heating auxiliary groove 2 is an arc shape. A cutting auxiliary groove 3, evenly distributed vertically and opening to the right, is provided on the right side of the molybdenum rod main body 1, penetrating the front-to-back direction of the molybdenum rod main body 1, ensuring greater convenience during production and processing. The projection shape of the cutting auxiliary groove 3 in the front-to-back direction is an arc shape. The circumference of the heating auxiliary groove 2 is less than half the circumference of the cylindrical structure of the same diameter, minimizing its impact on the overall structural strength and preventing situations where excessive depth would affect the overall structural strength.
[0010] The above description is the preferred embodiment of this utility model. It should be noted that for those skilled in the art, several improvements or substitutions can be made without departing from the principle of this utility model, and these improvements or substitutions should also be considered within the protection scope of this utility model.
Claims
1. An easily heated safety molybdenum rod, comprising a cylindrical molybdenum rod main body structure (1), wherein the central axis of the molybdenum rod main body structure (1) is in the vertical direction, characterized in that: The outer cylindrical surface of the molybdenum rod main structure (1) is provided with four sets of heating auxiliary fitting grooves (2) that are evenly distributed around the circumference and completely penetrate the entire vertical direction. The cross-section of the heating auxiliary fitting groove (2) is an arc-shaped structure. The right side of the molybdenum rod main structure (1) is provided with a cutting auxiliary fitting groove (3) that is evenly distributed vertically and opens to the right. The cutting auxiliary fitting groove (3) penetrates the front and back direction of the molybdenum rod main structure (1). The projection shape of the cutting auxiliary fitting groove (3) in the front and back direction is an arc-shaped structure.
2. The easily heated safety molybdenum rod according to claim 1, characterized in that: The circumference of the heating auxiliary fitting groove (2) is less than half the circumference of the cylindrical structure of the same diameter.