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修磨數控刀具

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伊爾耐德(天津)科技有限公司自成立以來,一直專注于數控刀具生產修磨業務。

在數控刀具生產方面,公司憑借自身強大的技術力量與研發能力,精心打造高品質的數控刀具。從原材料的嚴格篩選,到生產工藝的精準把控,再到成品的嚴格檢驗,每一個環節都遵循高標準、嚴要求,致力于為客戶提供精度可靠的數控刀具產品。

在數控刀具修磨領域,公司擁有豐富的經驗與專業的團隊,同時具備諸多技術上的創新點:

- 精密修磨工藝創新:公司采用了先進的數字化檢測技術,能夠對刀具的磨損情況進行高精度的測量和分析。基于這些測量數據,運用智能修磨算法,精確控制修磨的深度和角度,實現個性化、精準化的修磨方案,有效恢復刀具的切削刃性能,同時避免過度修磨導致刀具壽命縮短。

- 修磨設備的創新研發:公司采購了一批先進的數控刀具修磨設備。這些設備具備高精度的運動控制系統,能夠實現刀具在三維空間內的精確運動和修磨,保證修磨精度達到微米級別。此外,設備還配備了智能監控和反饋系統,實時監測修磨過程中的各項參數,確保修磨質量的穩定性和一致性。

- 刀具材料適配創新:針對不同材質和特性的數控刀具,公司開展了深入的材料適配研究。通過試驗和模擬分析,開發出了一系列與之匹配的修磨工藝和修磨砂輪。

- 表面處理技術創新:在完成刀具修磨后,公司還注重刀具的表面處理。采用先進的涂層技術在刀具表面沉積一層具有高硬度、低摩擦系數和良好耐磨性的涂層。這不僅能進一步增強刀具的切削性能,還能有效減少切削過程中的熱量產生和刀具磨損,延長刀具的使用壽命。

公司始終以客戶需求為導向,以高品質的產品和優質的服務,在數控刀具生產修磨行業內樹立了良好的口碑,贏得了眾多客戶的信賴與支持。

Since its establishment, IRNID (Tianjin) Technology Co., Ltd. has been focusing on the production and grinding of CNC tools.

In the production of CNC tools, the company relies on its strong technical strength and R&D capabilities to carefully create high-quality CNC tools. From the strict screening of raw materials to the precise control of production processes, to the strict inspection of finished products, every link follows high standards and strict requirements, and is committed to providing customers with CNC tool products with excellent performance and reliable precision.

In the field of CNC tool grinding, the company has rich experience and a professional team, and also has many technical innovations:

- Precision grinding process innovation: The company uses advanced digital detection technology to measure and analyze the wear of tools with high precision. Based on these measurement data, the intelligent grinding algorithm is used to accurately control the depth and angle of grinding, realize personalized and precise grinding solutions, effectively restore the cutting edge performance of the tool, and avoid excessive grinding leading to shortened tool life.

- Innovative research and development of grinding equipment: The company has purchased a batch of advanced CNC tool grinding equipment.  These devices are equipped with high-precision motion control systems, which can realize the precise movement and grinding of tools in three-dimensional space, ensuring the grinding accuracy reaches the micron level. In addition, the equipment is also equipped with an intelligent monitoring and feedback system to monitor various parameters in the grinding process in real time to ensure the stability and consistency of the grinding quality.

- Tool material adaptation innovation: The company has carried out in-depth material adaptation research for CNC tools of different materials and characteristics. Through experiments and simulation analysis, a series of matching grinding processes and grinding wheels have been developed.

- Surface treatment technology innovation: After completing the tool grinding, the company also pays attention to the surface treatment of the tool. Advanced coating technology is used to deposit a layer of coating with high hardness, low friction coefficient and good wear resistance on the surface of the tool. This can not only further enhance the cutting performance of the tool, but also effectively reduce the heat generation and tool wear during the cutting process, and extend the service life of the tool.

The company has always been customer-oriented, with high-quality products and excellent services, and has established a good reputation in the CNC tool production and grinding industry, and won the trust and support of many customers.

 

 

 

銑削加工、鉆削加工、車削加工、切槽加工、刀具修磨、機床附件

伊爾耐德(天津)科技公司針對修磨數控刀具提供專業的修磨解決方案。

修磨數控刀具的具體工作流程如下:

首先,對復合臺階鉆進行全面檢測,使用各種高精度測量儀器獲取刀具的各臺階尺寸、切削刃狀況等信息,記錄磨損數據。

接著,依據檢測數據進行深入分析,根據不同臺階的切削要求和材質特性,結合刀具的整體性能要求,制定個性化的修磨方案,確定各臺階的修磨深度、角度以及修磨順序。

然后,采用專業的磨削設備,先將復合臺階鉆固定在合適的夾具上,然后按照修磨方案依次對各個臺階進行精細磨削,確保每個臺階的切削刃鋒利度和尺寸精度都達到要求。在磨削過程中,嚴格控制磨削速度、進給量等參數,保證磨削質量的一致性。

最后,在修磨完成后,再次對復合臺階鉆進行全面檢測,確保各臺階之間的尺寸精度和同心度符合要求,同時測量切削刃的粗糙度和鋒利度,保證復合臺階鉆在鉆孔過程中能夠繼續穩定、高效地進行作業,滿足各種復雜的鉆孔加工需求。

修磨數控刀具的特點:  

1.提高刀具使用壽命:  

通過修磨刀具,可以有效延長刀具的使用壽命,減少更換刀具的頻率,降低生產成本。  

2.恢復刀具的性能:  

修磨后的刀具能夠恢復銳利的切削刃,提升切削性能,保持較高的加工精度。  

3.節約資源:  

修磨刀具是再利用資源的一種方式,可以減少廢棄刀具的數量,降低環保壓力。  

4.高精度修磨:  

修磨過程通常采用精密的設備和技術,確保刀具幾何形狀和切削性能的恢復。修磨精度高,能夠達到原刀具的標準。  

5.適應多種刀具類型:  

數控刀具修磨技術適用于多種類型的刀具,如立銑刀、車刀、鉆頭、刀片等,不同材料(如硬質合金、鋼、陶瓷等)的刀具都可以進行修磨。  

6.成本效益顯著:  

成本較新刀具便宜,且加工性能恢復良好,因此修磨刀具在一些需要大量使用刀具的行業具有較高的性價比。  

修磨數控刀具的應用場景:  

1.大規模生產企業:  

在大規模的生產線中,刀具經常需要高頻率的更換和修磨。通過修磨刀具,企業可以減少刀具更換次數,降低生產成本,提高生產效率。  

2.精密加工行業:  

在要求高精度、高表面質量的加工行業(如航空航天、汽車、醫療器械等行業),刀具的鋒利程度直接影響產品質量。能夠恢復刀具的精度,保證加工效果。  

3.硬質合金刀具的維護:  

硬質合金刀具在加工硬材料時,磨損較為嚴重。通過修磨,可以恢復刀具的性能,減少硬質合金刀具的報廢率,提升經濟效益。  

4.中小型制造企業:  

中小型制造企業通常在刀具采購方面成本壓力較大,修磨刀具能夠幫助這些企業降低成本,延長刀具的使用周期,提升競爭力。  

5.多刀具切換應用:  

對于一些需要頻繁切換不同類型刀具的工藝流程,修磨刀具可以確保切換后刀具的性能和精度,減少對生產的影響。  

6.精密零部件加工:  

在精密零部件的加工過程中,刀具的鋒利度和精度直接影響到加工質量。修磨刀具可以提高刀具的穩定性,保證高精度加工的需求。  

7.小批量定制生產:  

小批量生產的加工過程中,使用修磨刀具可以避免頻繁更換刀具的浪費,使小批量定制生產更具成本優勢。

Composite step drill grinding product introduction

lrnide(Tianjin) Technology Co., Ltd. provides professional grinding solutions for composite step drills.

The specific work flow of composite step drill grinding is as follows:

First, conduct a comprehensive inspection of the composite step drill, use various high-precision measuring instruments to obtain the size of each step of the tool, cutting edge condition and other information, and record wear data.

Then, conduct in-depth analysis based on the inspection data, formulate a personalized grinding plan based on the cutting requirements and material characteristics of different steps, and combine the overall performance requirements of the tool to determine the grinding depth, angle and grinding order of each step.

Then, use professional grinding equipment to first fix the composite step drill on a suitable fixture, and then finely grind each step in turn according to the grinding plan to ensure that the cutting edge sharpness and dimensional accuracy of each step meet the requirements. During the grinding process, strictly control parameters such as grinding speed and feed rate to ensure the consistency of grinding quality.

Finally, after grinding, the composite step drill is fully inspected again to ensure that the dimensional accuracy and concentricity between the steps meet the requirements. At the same time, the roughness and sharpness of the cutting edge are measured to ensure that the composite step drill can continue to operate stably and efficiently during the drilling process to meet various complex drilling processing needs.

 

 



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