Widia Introduces Solid End Mill for Shoulder and Side Milling

#Product Trends

Widia Introduces Solid End Mill for Shoulder and Side Milling

The WCE solid end milling series features a five-flute geometry specifically designed for optimal performance when shoulder milling and side milling carbon, stainless steel and cast iron.

Widia has expanded the capabilities of its WCE solid end milling series with a five-flute geometry specifically designed for optimal performance when shoulder milling and side milling carbon, stainless steel and cast iron. The WCE5 solid end mill combines the unequal index feature with an elevated 38° helix.

The five-flute, square-end end mill with sharp edges, chamfers and corner radii joins a four-flute square-end and ball-nose end mill with both straight and Weldon shanks as part of Widia’s WCE solid end mill portfolio. The WCE4, a four-flute geometry solid end mill, combines the asymmetrical index and variable helix features for operations like full slots and heavy cuts.

“Our customers look to Widia for solutions that prolong tool life and get the job done,” Tamir Sherif, Widia’s solid end milling global portfolio manager, says. “With Widia’s WCE5, we’re giving them a tool that delivers reliable performance for side and shoulder milling, as well as helical and dynamic milling. It is the next-gen solution for versatility and expands on the overall performance and capabilities of Widia’s trusted WCE platform.”

Other benefits of Widia’s WCE solid end mill series include faceted and eccentric relief to provide vibration dampening; core taper to improve chip evacuation; and a universal grade (WU20PD) to perform in steel, stainless-steel and cast-iron materials.

Both the WCE4 and WCE5 solid end mill series are available in imperial and metric measurement systems.

6 Ways to Make Your Travel Money Go Further

Holidaymakers have been hit hard this year due to the sinking value of the pound against the euro and US dollar, meaning many have had to tighten the purse strings or even cancel their holiday plans altogether. As the pound continues to be affected by the threat of a no deal Brexit, it’s hard to say when the currency will begin to strengthen again. In the meantime, holidaymakers are having to deal with the fact that they won’t be getting as much for their money compared to this time last year.

Families with school-aged children may be feeling the pinch even more, with inflated prices over the summer holidays and potential fines if school is missed combining to create a bit of a catch-22 situation. When you’re already struggling to make your holiday allowance fit your expectations, planning a trip away can feel more like a chore than a treat – and that’s not what going on holiday is all about!

A weak pound shouldn’t stop you from having the break that you need. Read on for some great tips to help stretch your holiday budget and make your foreign currency work hard so you don’t have to.

Consider a different type of holiday

Rather than stick with the same type of holiday you usually go for, why not try something new? If you’ve always stayed in hotels when overseas, you may want to consider self-catering instead. In the past, this may have meant staying in a property far below the standards of most hotels, but with the advent of sites like Air BnB, you may be surprised at the quality and price of local accommodation. There’s usually something for everyone, from very modern properties to bohemian apartments and even riverboats if you fancy something a little more unusual.

If you’ve fallen into the habit of going to the same place every year, this may now be the time to buck tradition and try a different, cheaper, destination. The pound may not be doing well in comparison to the euro or US dollar, but it is against some other currencies. This may be a good place to start when choosing where to go – check the H&T travel money department at your local store for the latest rates.

Research food options before you go

If you want to eat in a place that is popular with tourists, you are likely to find that food prices are inflated in the area compared to the norm for that country. Rather than stick to the restaurants recommended by your hotel or the ones in the centre of the action, check out what other visitors have said online – you’re likely to find some hidden gems this way. Some of the freshest, tastiest and cheapest meals can come from a restaurant just off the beaten track, so it’s always worth putting out the feelers before you go.

If you’ve booked into self-catering accommodation, it’s easier to eat cheaply as you’ll have somewhere to store, prepare and cook your food. Make sure you know where the nearest supermarket is for your essential provisions, but don’t just rely on the local chain store; find out about local food markets to find great produce at lower prices.

Set a budget

It may seem like an obvious tip, but it’s so easy to get carried away on holiday that it’s worth mentioning. After working hard and saving up for your trip, counting down the days and finally getting some time off work, the first couple of vacation days can get a little exciting. Suddenly you have all this freedom and money to spend… and before you know it you’re running out of money.

Split your money up into what you’ll need each day of your trip, and only take this amount with you. Leave the rest secured in a safe or lock-box at your accommodation, and remember to carry a small amount of emergency cash in a money belt or similar, just in case.

Understand tipping & haggling etiquette

Read up online for the most up-to-date information on what is deemed acceptable when it comes to both tipping and haggling, as both with play a big part in how far your money goes. If the country you are visiting has a strong haggling culture, it may even be rude not to haggle! Read up on the cultural norms by visiting travel forums and reading guides on sites like Lonely Planet and Nomadic Matt, and don’t be afraid to practice before you go.

It’s important to know what an acceptable amount to tip is when eating out or when purchasing goods and services. You don’t want to risk offending your hosts by tipping too little, or putting yourself out of pocket by tipping too much. In some countries, like Japan for instance, a tip is even seen as offensive, as they believe good service should be expected anyway, so it’s imperative that you know what to expect.

Visit friends and family

Keep your accommodation costs low by visiting friends and family who live in other parts of the world. Many of us know someone who has made a home abroad after travelling or after settling down with someone from a different country, so why not suggest a visit? If you don’t think this will work, why not suggest a house-swap instead, so you can both enjoy a holiday? There are many ways to make the most of knowing someone abroad; even if you incorporate a short visit into a longer holiday, it’ll still have an impact on your overall costs.

Never get your travel money at the airport

Finally, never ever get your foreign currency at the airport before you leave. While it may seem like the most convenient option, it’s usually by far the most expensive. This is because the foreign currency exchanges in airports know that they are the last option you have if you’ve not picked up your travel money ahead of time, so prices are inflated.

Get your travel money with us here at H&T – we have some of the lowest high-street rates and you can find us in 250 locations across the UK. Simply walk in to exchange your travel money on the same-day. (You may need to place an order if you’re looking for a more unusual currency). You can order any currency from us here at H&T by using our online order form. Once complete, simply call in to your local H&T branch to pick it up.

Blasting into Action: The Use of Drill Rigs in Surface and Underground Mining

In the world of mining, drill rigs play a crucial role in both surface and underground mining operations. Many minerals cannot be extracted using surface mining methods and tools, making the need for specialized equipment like drill rigs essential for the underground extraction process. This blog explores the significance of drill rigs in mining, highlighting their applications, advantages, and impact on the industry.

Understanding Drill Rigs

Drill rigs are heavy-duty machines specifically designed for drilling holes in the ground to access mineral deposits. These machines come in various types, including rotary drill rigs, hammer drill rigs, and down-the-hole (DTH) drills, each serving different purposes depending on the geological conditions and the type of mineral being extracted. In underground mining, drill rigs are indispensable for creating blast holes that enable the controlled use of explosives to break rock.

The Role of Drill Rigs in Underground Mining

In underground mining, drill rigs are used extensively to create holes for blasting. This process begins with careful planning and assessment of the geological features of the mining site. Engineers and geologists determine the optimal locations for drilling based on factors such as rock composition, structural integrity, and the presence of minerals.

Once the drilling locations are established, drill rigs are deployed to excavate holes of varying diameters and depths. These holes are then filled with explosives to break the rock, allowing miners to safely access the desired minerals. The precision and efficiency of modern drill rigs enable miners to maximize extraction rates while minimizing the environmental impact.

Advantages of Using Drill Rigs

  1. Increased Efficiency: Modern drill rigs are equipped with advanced technology that enhances drilling speed and accuracy. This efficiency is crucial in both surface and underground mining, where time is of the essence.
  2. Improved Safety: The use of drill rigs reduces the risk associated with manual drilling methods. Operators can maintain a safe distance from the blasting area, mitigating the potential dangers of rock falls or explosive mishaps.
  3. Versatility: Drill rigs can be adapted to various mining conditions. Whether in hard rock or soft soil, these machines can be configured to drill through different types of terrain, making them valuable assets for mining companies.
  4. Cost-Effectiveness: Although the initial investment in drill rigs may be substantial, the long-term benefits outweigh the costs. Increased production rates and reduced labor expenses contribute to overall cost savings for mining operations.
Drill Rigs in Surface Mining

While drill rigs are essential for underground mining, they also play a significant role in surface mining operations. In surface mining, drill rigs are used for exploratory drilling, enabling mining companies to assess the potential of mineral deposits before committing to full-scale operations. By collecting core samples, companies can analyze the composition and quantity of minerals available, ensuring informed decision-making.

Furthermore, drill rigs facilitate the development of access roads and other infrastructure necessary for surface mining activities. By providing accurate and efficient drilling solutions, these machines contribute to the overall productivity and success of surface mining operations.

The use of drill rigs in both surface and underground mining is critical for efficient and safe mineral extraction. With advancements in technology and engineering, modern drill rigs have transformed the mining landscape, allowing for increased productivity and reduced environmental impact. As the mining industry continues to evolve, the importance of these powerful machines cannot be overstated.

For more information about our mining equipment and solutions, Get Free Quote by contacting us at +91 7604084406 or emailing us at [email protected]. Partner with Global Mining Equipments for your mining needs and experience the difference that quality equipment can make!

How to Write a Good Science Paper

Writing a good science paper is hard, but we’re here to
help. We’re going to show you the structure of a good science paper along with
some pointers that you need to keep in mind.

The Structure of a Good Science Paper

The structure of a science paper is as follow:

.

* Introduction

.

What was the problem you’re trying to solve? Use the
introduction to establish the context of your work and explain its importance. Present
the purpose of the study in the form of questions and hypothesis. Also, explain
the things you know and didn’t know prior to the study and how the study is
expected to improve your knowledge on the topic.

.

* Materials and
methods

.

How did you solve the problem and what materials did you
need to it? Include all the relevant information related to the object(s) being
studied then describe how you carried out the study. Organize your sentences so
the readers understand the logical flow of your study method.

.

* Results

What did you find out? 
Present your key findings objectively whether they’re positive or
negative. Remember that your job is to present the findings only. Reserve any
interpretation for the next section.

.

To help convey your results as clearly as possible, use a
combination of text, tables, and figures. Just make sure that each table and
figure is presenting different data.

.

* Discussion

What does it all mean? Now is the time to interpret your key
findings you’ve just described in the result section. Answer the questions and
hypothesis you presented earlier in the introduction.

.

Always connect your key findings with what others have found
by explaining any similarities and/or differences. Referencing other people’s
work also helps in interpreting your results.

.

At the end of the discussion, draw a conclusion based on
your interpretations. Remember that your conclusions must be drawn from the data
presented in the result section. Never introduce new results in the discussion
section.

Some Pointers to Help You Write a Good Science Paper

Now that we’ve got the structure taken care of, let’s
discuss some pointers that can help you write a good science paper.

.

* Use the past tense

Since your work is done, using the past tense throughout the
paper is the correct approach.

.

* Use active voice

.

Occasionally, you can’t help but use the passive voice,
especially when describing the result. Still, whenever possible, use active
voice as much as you can.

.

* Limit to one message
per paragraph

.

Each paragraph must cover only one topic. Most of the time,
you present the main idea in the first sentence then use the following
sentences to elaborate on the idea.

.

* User short
sentences

.

Short sentences are easy to read and understand. You’ll get
your point across easier that way.

.

* Avoid redundancy

.

Don’t repeat what you say just to state its significance.

.

* Go for quantitative
over qualitative

.

Instead of saying “Seeds
in group B germinated faster than
the seeds control group did”
say “Seeds
in group B germinated 5 hours earlier than
the seeds in the control group did.”

.

* Proofread your work

.

Read the paper aloud or have your colleague do
it to find flaws and grammatical errors in your paper. You can also rely on
tools such as an online spelling
and grammar checker if you’re not confident about your grammar.

Keyword: korean novel

12 Days Of HandT – Shop Online Christmas

On the first day of Christmas my true love sent to me:

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On the second day of Christmas my true love sent to me:

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  • and a Gold Rolex Cellini

On the third day of Christmas my true love sent to me:

  • Three Swiss Hands
  • Two Tag Lugs
  • and a Gold Rolex Cellini

On the fourth day of Christmas my true love sent to me:

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  • Three Swiss Hands
  • Two Tag Lugs
  • and a Gold Rolex Cellini

On the fifth day of Christmas my true love sent to me:

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  • Four Cartier Bleus
  • Three Swiss Hands
  • Two Tag Lugs
  • and a Gold Rolex Cellini

On the sixth day of Christmas my true love sent to me:

  • Six Breitling Oceans
  • Five Topaz Rings
  • Four Cartier Bleus
  • Three Swiss Hands
  • Two Tag Lugs
  • and a Gold Rolex Cellini

On the seventh day of Christmas my true love sent to me:

  • Seven Signets Shining
  • Six Breitling Oceans
  • Five Topaz Rings
  • Four Cartier Bleus
  • Three Swiss Hands
  • Two Tag Lugs
  • and a Gold Rolex Cellini

On the eighth day of Christmas my true love sent to me:

  • Eight Omeg-a Tocking
  • Seven Signets Shining
  • Six Breitling Oceans
  • Five Topaz Rings
  • Four Cartier Bleus
  • Three Swiss Hands
  • Two Tag Lugs
  • and a Gold Rolex Cellini

On the ninth day of Christmas my true love sent to me:

  • Nine Rubies Glowing
  • Eight Omeg-a Tocking
  • Seven Signets Shining
  • Six Breitling Oceans
  • Five Topaz Rings
  • Four Cartier Bleus
  • Three Swiss Hands
  • Two Tag Lugs
  • and a Gold Rolex Cellini

On the tenth day of Christmas my true love sent to me:

  • Ten Tudors Ticking
  • Nine Rubies Glowing
  • Eight Omeg-a Tocking
  • Seven Signets Shining
  • Six Breitling Oceans
  • Five Topaz Rings
  • Four Cartier Bleus
  • Three Swiss Hands
  • Two Tag Lugs
  • and a Gold Rolex Cellini

On the eleventh day of Christmas my true love sent to me:

  • Eleven Pendants Posing
  • Ten Tudors Ticking
  • Nine Rubies Glowing
  • Eight Omeg-a Tocking
  • Seven Signets Shining
  • Six Breitling Oceans
  • Five Topaz Rings
  • Four Cartier Bleus
  • Three Swiss Hands
  • Two Tag Lugs
  • and a Gold Rolex Cellini

On the twelfth day of Christmas my true love sent to me:

  • Twelve Diamonds Dazzling
  • Eleven Pendants Posing
  • Ten Tudors Ticking
  • Nine Rubies Glowing
  • Eight Omeg-a Tocking
  • Seven Signets Shining
  • Six Breitling Oceans
  • Five Topaz Rings
  • Four Cartier Bleus
  • Three Swiss Hands
  • Two Tag Lugs
  • and a Gold Rolex Cellini

Top 7 Methods For Making 3D Rapid Prototypes

While 3D printing technology has been around since the 1980s, it is constantly evolving, with new processes being introduced all the time. Some are best suited for consumer applications, while others for industrial environments. However, not all types are suited for rapid prototyping, a technique used to create prototypes quickly and test out a wide range of solutions in a shorter time-span. Let’s take a look at the top 7 methods for 3D rapid prototyping so that you can assess their strengths and weaknesses for yourself and decide which one might be the best option for your next project.

Stereolithography (SLA)

Stereolithography is one of the oldest and most popular commercial 3D printing methods in the industry. This process uses UV light to convert photosensitive liquid into 3D solid plastics. These layers are derived from two-dimensional cross sections of the 3D CAD model and controlled with a software file format called .stl.

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This is noteworthy because, being the first, .stl has become the default computer language used by most modern 3D printers, regardless of the printing technology employed.

Stereolithography is best for creating high-quality prototypes, complex geometrical shapes and master patterns for vacuum casting. SLA is also fast and inexpensive and the finished product is often strong with a smooth finish. Supports may or may not be needed depending on the machine.

Selective Laser Sintering (SLS)

Patented in the 1980s by Carl Deckard, SLS is an additive manufacturing method that uses a high-power laser to fuse powdered thermoplastics into parts. These parts are formed on a build plate one layer at a time. Because the support is surrounded on all sides of the powder media, additional structures are not needed.

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SLS can work for either plastic or metal prototypes. Like many other rapid prototyping 3D printing processes, the great advantage here is that parts can be made with complex geometries like internal lattice structures that would be difficult or impossible to do any other way. However, the surface finish is usually rough and may require secondary work to complete it, especially if it’s used as a master pattern for later casting. The strength is also not as high as SLA printed parts.

Fused Deposition Modeling (FDM)

Developed by Scott Crump, co-founder and chairman of leading 3D printing manufacturer, Stratasys Ltd., FDM is popular in industries ranging from automotive to consumer goods manufacturing. Put simply, FDM printers use a thermoplastic filament to create 3D objects. The filament is then melted inside the barrel of a printing nozzle. Once it becomes hot liquid resin, it is laid down layer-by-layer. Before an object can be printed, it has to be converted into a format the 3D printer can comprehend, which is typically an .STL format.

FDM printers are commonly found in small shops and even in the home.

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FDM printing is clean, inexpensive, easy-to-use and can accommodate different types and colors of plastic combined in a single build. It’s also safe enough that even children can use it in a classroom. However, FDM printed parts have poor resolution and finish quality, and the parts are not very strong compared to other 3D rapid prototyping techniques. On the plus side, one of the biggest advantages of FDM is its scalability, making it ideal for creating prototypes and models during the development stage.

Selective Laser Melting (SLM)

Another form of powder bed fusion, SLM is an industrial process that requires carefully controlled conditions. This approach utilizes a high-power laser to melt and fuse metallic powders. Common metal powders may include titanium, stainless steel, maraging steel and cobalt chrome.

SLM is the preferred technique for making sophisticated parts of the highest strength, durability and complexity. It’s important to note that the process can be expensive and, therefore, should be controlled by a skilled engineer. But, the results are ideal for the most demanding applications in aerospace, automotive, defense and medical parts.

Laminated Object Manufacturing

In LOM, materials like plastic, paper or metal are laid out across a build platform by a system of feed rollers. With each layer, a computer-controlled laser or other cutting device traces out the pattern. The build platform then drops by one-sixteenth of an inch, which is the typical thickness of one layer, and a new laminate is glued on top and the process continues.

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This stacking process makes a finished part which is less sophisticated than an SLS or SLM equivalent, but it is more affordable and does not require specially controlled working conditions. Also, if paper is used as the laminate, the finished part will be similar to solid wood and can be manipulated accordingly.

Digital Light Processing

Another variation on the polymerization of a curable resin, this type of technology is comparable to SLA printing. It cures the resin with a more conventional light source but also requires support structures and post-build curing.

The approach is generally faster and a more shallow reservoir of photoresin can be used, which also cuts down on costs. Like with SLA, the finished part has excellent dimensional tolerances and surface finish.

An interesting variation of this process is called CLIP (Continuous Liquid Interface Production).  In this case, the part is pulled from the vat in a continuous motion – there are no layers, it is an uninterrupted process.  As the part is withdrawn it crosses a light barrier that is programmed to alter its configuration to produce the requisite cross-sectional pattern on the plastic.

Binder Jetting

A relatively new rapid prototyping 3D printing process, binder jetting printing systems offer larger build volumes than many other power bed technologies on the market. Over a horizontal print bed covered in metal powder, hundreds of nozzles spray micro-fine droplets of a liquid binder to form a single layer. This layer is then compacted with a roller, re-coated with powder and then sprayed for the next layer.

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When semi-finished parts are removed from the build chamber, they must still be cured in an oven to burn off the binding resin and fuse the metal powder together into a solid.

The advantage here is that many parts can be printed at one time, and the full volume of the chamber used. Such parts are not as strong as fully-welded SLS parts but they can work as mechanical fittings. Although this technology is still under development but it may be up to 100x more cost-effective than previous techniques.

5 Types of Rapid Prototyping Processes | CNC, Vacuum Casting, SLA, FDM, SLS |

Related posts:

  1. Is SLA The Right 3D Printing Solution For You?
  2. What is Powder Bed Fusion for Metal 3D Printing?
  3. Plastic 3D Printing vs. Metal 3D Printing: CAD Design Differences
  4. The Top 7 Design Tips For 3D Metal Printing

Top 7 Advantages to Using CNC Machining for Rapid Prototyping

Rapid prototyping means building a physical model of a new product design as quickly and as economically as possible. Some prototypes will be used merely as cosmetic mock-ups or scale models, while others must meet more demanding performance criteria. Prototypes are used for testing, design iteration and to improve overall performance through gradual refinements. For these reasons speed, flexibility and scalability in manufacturing are key attributes to look for.

Using CNC machining to make rapid prototypes can be an ideal product development solution. Here are the top 7 advantages to consider on your next project.

1. Speed

Speed refers not only to actual production time but all the preparatory steps preceding that, including programming and material set-up. In all cases, digital manufacturing is one of the fastest ways to go from a product design to a finished or semi-finished part.

CAD files can be turned into digital cutting files in a matter or hours, while actual cutting time can be measured in minutes. The resulting part is then ready for measurement, finishing (painting, sanding or other secondary processes) and shipment. Injection molding may be faster on a per-part basis, but there is a much longer set-up time to make and approve mold tools.

2. Choice

CNC milling and turning works on almost any solid stock, including hard plastics, stainless and mild steels, brass, nickel, aluminum, magnesium and many more. There are thousands of commercially available raw materials to choose from so it’s easy to find one that matches your application requirements.

And for prototypes, it’s possible to first use a less expensive and easy-to-machine variant, for example aluminum 6061, while optimizing your design. Only when the design is then perfected can you then switch to the final material, say a more expensive stainless steel. This is another way to save on development costs.

3. Economy

This means that it’s not necessary to create casting or mold tools or other complex fixtures. To be sure, dedicated tools and dies are needed for large volume production for pressure die casting or plastic injection molding. But for only a few hundred or even a thousand parts, it may make more sense and be more economical to opt instead for CNC machining.

Avoiding unnecessary expense helps product developers to instead focus their resources on design improvements, testing and certification.

4. Accuracy

Digital manufacturing using modern CNC machine tools lets manufacturers easily dial in tolerances of a few microns, or thousandths of an inch, at the press of a button

For a product developer, this means quicky making prototypes that have full production-quality accuracy and repeatability. Then, by exploiting this same accuracy, it’s easy to make further refinements to a part’s dimensions by simply tweaking the digital program.

5. Flexibility

Do you need one part? Five? A hundred? CNC machining is indifferent to volume, so it is just as effective making one part as one hundred.

This advantage is perfect for developers when they are introducing a new product to the market and are unsure about consumer response. But it’s also relevant for non-consumer industrial products that may have fluctuating and unpredictable demand cycles and therefore will benefit from the scalability inherent to digital manufacturing. This can also help developers to avoid carrying unwanted inventory for stock items that can otherwise be made on-demand.

6. Versatility

Versatility means that one machine can be pre-loaded with a variety of cutting tools mounted on a rotating carousel. Multiple tools are then called up, as needed, to machine tapped and threaded holes, complex curves, flat faces, precise angles and other geometric features – all without requiring that the workpiece be dismounted and moved to another work cell. This is time and money saved.

7. Quality

CNC machining produces completely functional, full-strength finished parts and components. They can be used for full performance testing and certification or to build working models. This is an important advantage if you’re developing a product that needs to meet more stringent engineering requirements.

Quality also extends to the surface finish and appearance. Using the right cutting tools at the right cutting speed produces surface finishes that need little post-processing. This again saves time and money so you get the prototypes you need faster.

Taken together, these seven advantages make CNC machining a very attractive alternative to some other rapid prototyping methods. Find out how we can support your next project when you upload your CAD files for a free quotation today.

Related posts:

  1. Successful Product Development: The Importance of Proof of Concept
  2. All About The OLO 3D Printer
  3. The Top 7 Ways to Make Rapid Prototypes
  4. Five Rapid Prototyping Solutions For Great Results

Stack Picture Jasper and Black Onyx Bracelet

Stack Picture Jasper and Black Onyx Bracelet

Unlock Your Chakra Collection

Picture Jasper is a grounding and harmonizing stone with a strong connection to the earth. Its grounding energy can give you a strong sense of who you are, where you’ve been and where you are going. Picture jasper is a landscape stone that’s believed to help us find our place in the world. When we’ve stepped off the path or gone down a path we never intended, picture jasper is thought to give the time and space alone to sort through things. Picture Jasper is a powerful grounding stone that promotes connection to the earth. Some view this stone as a direct message from the Earth itself, instilling a sense of proportion, bringing comfort, alleviating fear and cultivating harmony.

Black Onyx is the symbol of restfulness and purity. This stone has the power to relief you all worries, tension, stress and fears. It is believed to provide a positive feeling, strong mental support and helps to take wise decisions.

These gorgeous beaded bracelet is created with real 8mm natural Picture Jasper and Black Onyx gemstone beads. Designed and hand made with extreme love and care, it is carefully packaged in a beautiful handcrafted bracelet gift box with a bracelet description card.  

These bracelets will add a touch of casual elegance to your wardrobe for any season of the year.

Great gift for family, friends and loved-ones

• High Quality beaded bracelet
• Unisex
• Genuine Picture Jasper and Black Onyx
• Packaged with bracelet description card
• Stretch bracelet with quality elastic cord
• Custom made to fit your wrist
• Handmade in Los Angeles, California
• Made with pure positive energy

 

IMPORTANT
Please measure your wrist before selecting bracelet size.
For best fit please add an extra half inch to wrist size to get the bracelet size
(Wrist size + half inch) = Bracelet size

(size: S, M, L, Xl, XXL)
(For larger size, when placing your order, please add the bracelet size in the note section)
See bracelet size chart tab below

Nordic Spirit Berry Citrus Regular

Description

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Weight: 15 grams
Flavour Description: Berries, Citrus
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Manufacturer Nordic Spirit – Nordic Snus